SlideShare une entreprise Scribd logo
1  sur  52
Télécharger pour lire hors ligne
Low Temperature Shift
Catalyst
By:
Gerard B. Hawkins
Managing Director, CEO
Conventional Hydrogen Plant
Low Temperature Shift
 Purpose
 Chemistry
 Operating Conditions
 Catalyst Activity
 Poisons
 By-Product Formation
 Effects of Water
 Catalyst Requirements
 VSG-C111/1122 - Series
LTS - Purpose
 Generate H2 from steam - improve plant
efficiency
 Convert CO to CO2 for easier removal
• CO is converted to CO2 in two stages of
shift conversion
 LTS is the second stage of shift conversion to
generate H2
• Residual CO conversion - critical to
operating economics
• Reduce CO levels to typically 0.3 mol%
(dry)
LTS - Chemistry
CO + H2O ⇔ CO2+ H2 ∆H = -41.1 kJ/kgmol
• Reaction catalyzed by Cu for LTS
• CO lowered from typically 3% to 0.3%
• High conversion is favored by
– Low temperatures
– High steam concentration
• Typically accomplished using copper on a
zinc-alumina support
Cu
LTS – Typical Operating Conditions
SOR EOR
Temp (°F) 356 - 392 410 - 446
CO (vol%) 3 – 5
Temp (°F) 410 - 518
CO (vol%) 0.2 – 0.3
CO + H2O
CO2 + H2
Inlet
Outlet
Inlet temperature ≥ 27°F above dew point
LTS - Temperature Profile
Top
Bed Depth
Bottom
Temperature
Ageing
Movement
• Ageing mechanism is gradual poisoning
LTS - Catalyst Activity
 Good, stable catalyst activity
• Maximum conversion of CO to CO2
• High kinetic rate at low LTS inlet
temperatures
 Conversion limited to equilibrium
 Operational measure of activity:
• temperature gradient through catalyst
bed
• higher activity gives steeper gradient
LTS - Catalyst Activity
 Activity is NOT directly related to Cu
content or Cu surface area
• Cu content must be highly dispersed and
stabilised
(hence content is not a good measure)
• Cu crystal phases and structure important
to activity (therefore surface area is not a
direct measure)
 Only real test is in laboratory under
faithfully reproduced plant conditions and
on operating plants
• Initial activity may not have any
relationship with long term activity
retention
LTS – Catalyst Activity
 ATE (approach to equilibrium) is usually
very close
• CO slip not impacted by activity for
most of catalyst life
• Does not affect movement of
temperature profile through bed
 Minimum inlet temperature restricted by
dew point
• Not always possible to reduce inlet
temperature to optimal value to take
advantage of activity
Not the most important parameter!
LTS - Temperature Profile
Top
Bed Depth
Bottom
Temperature
Ageing
Movement
• Ageing mechanism is gradual poisoning
Goal: Slow the rate of temperature profile
movement down the bed
LTS – Catalyst Poisons
 Sulfur
• Powerful poison
• Trapped by the catalyst as Cu2S and ZnS
 Chloride
• Severe poison
• Reacts with copper and zinc to form
chlorides
• CuCl formation provides a mechanism for
loss of activity by sintering
LTS - Mechanism of Sulfur Poisoning
ZnO
Cu
ZnO
Cu
Zn2+
Cu
ZnO
Cu
Adsorption on Copper Surface Mobility
Surface Sulphide
Formation
Bulk Sulphide
Formation
S
S
ZnS
LTS - Chloride Poisoning
 Chloride reacts with copper to form
CuCl (mp = 430oC)
 CuCl formation provides a mechanism
for loss of activity by sintering
 Requires well dispersed and
stabilized copper to minimize the
effect of chloride
Chloride Poisoning of LTS Catalysts
Chlorided LTS Non-chlorided LTS
Copper clusters
normal sizeCopper clusters sintered
Lost surface area
Chloride Poisoning of LTS Catalysts
Chlorided
LTS
Sintered Copper
ball large surface
area loss
Effect of Particle Size on Poisons
Resistance
0
20
40
60
80
100
Cumulative Chloride Level
COconversion(%)
0.3 - 0.6mm
0.6 - 1.0mm
1.18 - 1.4mm
1.4 - 1.7mm
•Poisoning reactions with H2S and HCl are strongly
diffusion limited
•Poisons resistance and activity can be increased
by increasing the pellet geometrical surface area
LTS - By Product Formation
• Methanol
– Effect quality of CO2
– Quality of process condensate
• Environmental legislation
• Increased treatment costs
– Odor in CO2 vent
• Can produce amines
• When vented can be a nuisance
– Other oxygenates such as ethanol, ketones
LTS - By Product Formation
• Methanol Formation
CO2 + 3H2 <====> CH3OH + H2O
• MeOH increases with
– High Temperatures
– High inlet CO levels - increases LTS temperature rise
– low S:C ratio
– Low space velocity / catalyst bed volume
• MeOH production decreases rapidly in the
first few months of LTS catalyst operation
• Condensate
– If catalyst is operated at too low temperature
• Waste Heat Boiler Leaks
– Wetting then evaporation reduces strength
significantly
– Can cause catastrophic failure due to thermal
shock
– Loss of activity due to blocking of active sites
– Pressure drop increase
• catalyst break-up
• boiler solids fouling catalyst
LTS - Effects Of Water
LTS - Effects Of Water
• Water will dissolve soluble poisons
– wash poisons deep into the bed
– Increase affected bed depth
– accelerate change-out of the catalyst
Remember
CuCl2 is soluble in water!
Key Performance Requirements
 Poisons Resistance
• Self guarding capacity
 Selectivity
• Minimize by-product formation
(methanol)
 Activity
• Minimize CO slip
• With minimal catalyst volume
 Strength
• Withstand upsets such as condensation
VSG-C111/112
Superior Poison Resistance
Low Methanol By-product Options
High Activity
High Strength
Extended Catalyst Life
Short Load Potential to fit T/A Cycles
Maximize Hydrogen Production
Address Environmental Concern
Resilient
Superior Poison
Resistance
Improved Poison Retention using
VSG-C111/112 series
High sulfur retention
Typical = 1% at top &
0.1% at the bottoms
Impact of chloride poisoning
on CO conversion
Extra Chloride Poisons resistance
 Applications confirm expected
activity for CO and low methanol.
 Additional benefit is the
enhanced ability to chloride
guard.
• Caesium and potassium have the
highest driving force for chloride.
• This is shown by the fact that CsCl
and KCl will be formed at very low
levels of HCl.
Equilibrium HCl Concentration
Chloride Guarding Properties of
VSG-C111/112 series
• Very stable chlorides are formed
Chloride Mp (o
C) Bp (o
C)
CuCl 430 1490
ZnCl2 283 732
CsCl 645 1290
KCl 770 1500 subl
Mechanism of Chloride
Resistance
ZnO
Cu
Adsorption on Potassium
HCl
CsCl
ZnOCs
Bulk Chloride Formation
K and Cs protect the Cu/ZnO lattice by preferentially
reacting with and trapping chloride poison
Cu
Sulfur Poisoning & Surface Area
Competitors
VSG-C111/112
2 4 6 8 10 12 14 16
0
0.2
0.4
0.6
0.8
1
1.2
1.4
Sample Depth (ft)
Poison Level (%)
Cl (%)
S (%)
Poison Profile for VSG-C111, Chinese Hydrogen Plant
Sulfur & Chloride Retention of
VSG-C111/112
= 13,000ppm!
Relative Impact of Activity
and Poison
Base (VSG-C111)
+20%act
+20%poison
Low By-product Formation
(Methanol)
Plant Performance
 Optimized alkali promoters to achieve
high activity for shift conversion while
reducing methanol synthesis
--------VSG-C111 ---------VSG-C112 Plant Data
Laboratory Testing
Product Methanol Activity
VSG-C112 0.18
Comp A low MeOH 0.26
Comp B low MeOH 0.33
High Activity
Activity Comparison (Laboratory)
Minimize CO slip
0.20
0.22
0.24
0.26
0.28
0.30
0.32
0.34
0 2 4 6 8 10
Time on-line (years)
COslip
Com petitor A
KATALCO 83-3X
Com petitor C
---------- Competitor A
---------- VSG-C112
---------- Competitor C
Case Study: Longer Life
(1700 stpd China Ammonia Plant)
 Previous competitive charge achieved only 3-yr
life before high CO slip (> 0.3 mol%) when 4-yr
was expected
 Replaced with VSG-C112 and operating 5+ yrs
with less than 0.25 mol%
$$$ Saved ~ $170,000
+
Avoided Unscheduled S/D
+
12-month Extension on T/A
High Strength
Relative Strengths of Fresh and
Reduced Catalyst
 VSG-C112 series formulated to
have high strength after reduction
VSG-C112 Competitor A Competitor B
Horizontal Crush Strength after
Reduction and Condensing Steam
Conditions
 Compares relative strength of VSG-C112
and competitive low methanol products
VSG-C112
Conclusions
 VSG-C112 excels over all products
with
• More than adequate activity
• Poisons resistance at least equal to a
‘famous and soon to be obsolete’ guard
material with claimed ‘unrivalled poisons
resistance’
• The lowest by-product Methanol in the
industry
 So for long life, low CO slip, Low
Methanol VSG-C112 is the winner
Catalyst Characteristics
 VSG-C111
Copper oxide/Zinc Oxide/Alumina
 VSG-C112
As above, promoted by alkali metals
Lab Based Test Program
 Ability of the Topsoe LSK Guard to
withstand chloride poisoning relative to
VSG-C112
 Determined in the laboratory using an
accelerated poisoning test.
 In the test a guard layer of the catalyst
sample is placed above a main bed of
VSG-C111 catalyst and the CO conversion
is measured using LTS gas containing
very low levels (50 ppb in this case) of
HCl.
Chloride resistance test rig
LTS Feed gas
(60% H2, 21% N2, 16% CO2, 3% CO)
with
50 ppb Chloride poison addition
Analysis of CO
conversion
Standard bed
Test bed
LSK
Analysis of CO
conversion
Standard bed
VSG-C111
Test bed
VSG-C112
VSG-C111
Chloride poison test results
% Conv vs Wt Cl addition (gms)
Run No PR133 - 50 ppb HCl addition
0
10
20
30
40
50
60
70
80
90
100
0 0.0005 0.001 0.0015 0.002 0.0025 0.003 0.0035 0.004 0.0045
Wt Cl addition (gms)
%Conversion
PR133B - U4676 Topsoe LSK PR133C - H1106K Std 83-3XVSG-C111
Chloride poison test results
TOPSOE LK-823 and LK-821-2
1ppm HCl addition
Charged as guard beds (0.2mls) above main beds Std 83-3 (0.4mls)
Main Bed SV ~ 127000
0
20
40
60
80
100
0 0.002 0.004 0.006 0.008 0.01 0.012 0.014 0.016 0.018 0.02
Wt Cl addition (gm)
%conversion
PR59 - 83-3X PR59 - LK-823 PR59 - LK-821-2 PR59 - 83-3KVSG-C111
Overall comparisons
Activity/selectivity on volume comparison
Catalyst Relative
Activity(v/v)
Relative
Methanol
Make(v/v)
LSK 0.52 0.44
LK 821-2 1.20 0.88
VSG-C111 1.18 0.20
Competitive Summary
Laboratory Poisoning Data
Analysis of CO
conversion
Standard bed
Test bed
Cat B
Analysis of CO
conversion
Standard bed
Test bed
Cat C
LTS Feed gas
(60% H2, 21%N2, 16% CO2, 3% CO)
with
Chloride poison addition
Analysis of CO
conversion
Standard bed
VSG-C111
Test bed
Cat A
Analysis of CO
conversion
Standard bed
Test bed
Cat D
VSG-C111 VSG-C111 VSG-C111
How do We Compare?
Product Relative Poisons
Absorption *
VSG-C111 1.0
VSG-C112 2.13
Comp A Guard ** 2.1
Comp A std 1.0
Comp A low MeOH 1.28
Comp B std ?
Comp B low MeOH 0.70
* Chloride pickup relative to VSG-C!!! measured by CO slip vs time and chloride
analysis on spent material
** Guard with almost no sulfur capacity and very low activity
(LTS) Low Temperature Shift Catalyst - Comprehensive Overview

Contenu connexe

Tendances

Theory of Carbon Formation in Steam Reforming
Theory of Carbon Formation in Steam Reforming Theory of Carbon Formation in Steam Reforming
Theory of Carbon Formation in Steam Reforming Gerard B. Hawkins
 
Normal Operation of Steam Reformers on Hydrogen Plants
Normal Operation of Steam Reformers on Hydrogen PlantsNormal Operation of Steam Reformers on Hydrogen Plants
Normal Operation of Steam Reformers on Hydrogen PlantsGerard B. Hawkins
 
Ammonia Synthesis Flowsheet - Operator training
Ammonia Synthesis Flowsheet - Operator trainingAmmonia Synthesis Flowsheet - Operator training
Ammonia Synthesis Flowsheet - Operator trainingGerard B. Hawkins
 
Steam Reforming - Carbon Formation
Steam Reforming - Carbon FormationSteam Reforming - Carbon Formation
Steam Reforming - Carbon FormationGerard B. Hawkins
 
Feedstock Purfication in Hydrogen Plants
Feedstock Purfication in Hydrogen PlantsFeedstock Purfication in Hydrogen Plants
Feedstock Purfication in Hydrogen PlantsGerard B. Hawkins
 
Introduction To Syngas Plant Flowsheet Options
Introduction To Syngas Plant Flowsheet OptionsIntroduction To Syngas Plant Flowsheet Options
Introduction To Syngas Plant Flowsheet OptionsGerard B. Hawkins
 
Ammonia Formation over Steam Reforming Catalysts
Ammonia Formation over Steam Reforming CatalystsAmmonia Formation over Steam Reforming Catalysts
Ammonia Formation over Steam Reforming CatalystsGerard B. Hawkins
 
Primary Reforming Flowsheets
Primary Reforming FlowsheetsPrimary Reforming Flowsheets
Primary Reforming FlowsheetsGerard B. Hawkins
 
A presentation on reformer new
A presentation on reformer newA presentation on reformer new
A presentation on reformer newGowri Shankar
 
Ammonia Plant - Secondary Reforming
Ammonia Plant - Secondary ReformingAmmonia Plant - Secondary Reforming
Ammonia Plant - Secondary ReformingGerard B. Hawkins
 
Steam Reforming - Tube Design
Steam Reforming - Tube DesignSteam Reforming - Tube Design
Steam Reforming - Tube DesignGerard B. Hawkins
 
Start Up Procedures for Primary Reforming Catalyst
Start Up Procedures for Primary Reforming CatalystStart Up Procedures for Primary Reforming Catalyst
Start Up Procedures for Primary Reforming CatalystGerard B. Hawkins
 
Hydrocarbon Feed Purification for Ammonia Plants
Hydrocarbon Feed Purification for Ammonia PlantsHydrocarbon Feed Purification for Ammonia Plants
Hydrocarbon Feed Purification for Ammonia PlantsGerard B. Hawkins
 
Theory and Operation of Methanation Catalyst
Theory and Operation of Methanation CatalystTheory and Operation of Methanation Catalyst
Theory and Operation of Methanation CatalystGerard B. Hawkins
 
Gas Heated Reforming - An Overview
Gas Heated Reforming - An OverviewGas Heated Reforming - An Overview
Gas Heated Reforming - An OverviewGerard B. Hawkins
 
Steam Reforming - Types of Reformer Design
Steam Reforming - Types of Reformer DesignSteam Reforming - Types of Reformer Design
Steam Reforming - Types of Reformer DesignGerard B. Hawkins
 
101 Things That Can Go Wrong on a Primary Reformer - Best Practices Guide
101 Things That Can Go Wrong on a Primary Reformer -  Best Practices Guide101 Things That Can Go Wrong on a Primary Reformer -  Best Practices Guide
101 Things That Can Go Wrong on a Primary Reformer - Best Practices GuideGerard B. Hawkins
 

Tendances (20)

Theory of Carbon Formation in Steam Reforming
Theory of Carbon Formation in Steam Reforming Theory of Carbon Formation in Steam Reforming
Theory of Carbon Formation in Steam Reforming
 
Normal Operation of Steam Reformers on Hydrogen Plants
Normal Operation of Steam Reformers on Hydrogen PlantsNormal Operation of Steam Reformers on Hydrogen Plants
Normal Operation of Steam Reformers on Hydrogen Plants
 
Ammonia Synthesis Flowsheet - Operator training
Ammonia Synthesis Flowsheet - Operator trainingAmmonia Synthesis Flowsheet - Operator training
Ammonia Synthesis Flowsheet - Operator training
 
Steam Reforming - Carbon Formation
Steam Reforming - Carbon FormationSteam Reforming - Carbon Formation
Steam Reforming - Carbon Formation
 
Feedstock Purfication in Hydrogen Plants
Feedstock Purfication in Hydrogen PlantsFeedstock Purfication in Hydrogen Plants
Feedstock Purfication in Hydrogen Plants
 
Introduction To Syngas Plant Flowsheet Options
Introduction To Syngas Plant Flowsheet OptionsIntroduction To Syngas Plant Flowsheet Options
Introduction To Syngas Plant Flowsheet Options
 
Ammonia Formation over Steam Reforming Catalysts
Ammonia Formation over Steam Reforming CatalystsAmmonia Formation over Steam Reforming Catalysts
Ammonia Formation over Steam Reforming Catalysts
 
Primary Reforming Flowsheets
Primary Reforming FlowsheetsPrimary Reforming Flowsheets
Primary Reforming Flowsheets
 
A presentation on reformer new
A presentation on reformer newA presentation on reformer new
A presentation on reformer new
 
Ammonia Plant - Secondary Reforming
Ammonia Plant - Secondary ReformingAmmonia Plant - Secondary Reforming
Ammonia Plant - Secondary Reforming
 
Ammonia CO2 Removal Systems
Ammonia CO2 Removal SystemsAmmonia CO2 Removal Systems
Ammonia CO2 Removal Systems
 
Steam Reforming - Tube Design
Steam Reforming - Tube DesignSteam Reforming - Tube Design
Steam Reforming - Tube Design
 
Ammonia plant
Ammonia plantAmmonia plant
Ammonia plant
 
Start Up Procedures for Primary Reforming Catalyst
Start Up Procedures for Primary Reforming CatalystStart Up Procedures for Primary Reforming Catalyst
Start Up Procedures for Primary Reforming Catalyst
 
Hydrocarbon Feed Purification for Ammonia Plants
Hydrocarbon Feed Purification for Ammonia PlantsHydrocarbon Feed Purification for Ammonia Plants
Hydrocarbon Feed Purification for Ammonia Plants
 
Secondary Reforming Burners
Secondary Reforming BurnersSecondary Reforming Burners
Secondary Reforming Burners
 
Theory and Operation of Methanation Catalyst
Theory and Operation of Methanation CatalystTheory and Operation of Methanation Catalyst
Theory and Operation of Methanation Catalyst
 
Gas Heated Reforming - An Overview
Gas Heated Reforming - An OverviewGas Heated Reforming - An Overview
Gas Heated Reforming - An Overview
 
Steam Reforming - Types of Reformer Design
Steam Reforming - Types of Reformer DesignSteam Reforming - Types of Reformer Design
Steam Reforming - Types of Reformer Design
 
101 Things That Can Go Wrong on a Primary Reformer - Best Practices Guide
101 Things That Can Go Wrong on a Primary Reformer -  Best Practices Guide101 Things That Can Go Wrong on a Primary Reformer -  Best Practices Guide
101 Things That Can Go Wrong on a Primary Reformer - Best Practices Guide
 

En vedette

Shift Conversion Catalysts - Operating Manual
Shift Conversion Catalysts - Operating ManualShift Conversion Catalysts - Operating Manual
Shift Conversion Catalysts - Operating ManualGerard B. Hawkins
 
Water Gas Shift Reactor Design
Water Gas Shift Reactor DesignWater Gas Shift Reactor Design
Water Gas Shift Reactor Designl16cn
 
Water-Gas-Shift Reactor Loading & Unloading Considerations
Water-Gas-Shift Reactor Loading & Unloading ConsiderationsWater-Gas-Shift Reactor Loading & Unloading Considerations
Water-Gas-Shift Reactor Loading & Unloading ConsiderationsGerard B. Hawkins
 
Water Gas Shift & Hydrogen Purification Section Flowsheet
Water Gas Shift & Hydrogen Purification Section FlowsheetWater Gas Shift & Hydrogen Purification Section Flowsheet
Water Gas Shift & Hydrogen Purification Section FlowsheetGerard B. Hawkins
 
Steam Reforming - A Comprehensive Review
Steam Reforming - A Comprehensive ReviewSteam Reforming - A Comprehensive Review
Steam Reforming - A Comprehensive ReviewGerard B. Hawkins
 
Theory and Practice of Steam Reforming
Theory and Practice of Steam ReformingTheory and Practice of Steam Reforming
Theory and Practice of Steam ReformingGerard B. Hawkins
 
Principles of Pre-reforming Technology
Principles of Pre-reforming TechnologyPrinciples of Pre-reforming Technology
Principles of Pre-reforming TechnologyGerard B. Hawkins
 
Steam reforming - The Basics of Reforming
Steam reforming  - The Basics of ReformingSteam reforming  - The Basics of Reforming
Steam reforming - The Basics of ReformingGerard B. Hawkins
 
Steam Reforming - Common Problems
Steam Reforming - Common ProblemsSteam Reforming - Common Problems
Steam Reforming - Common ProblemsGerard B. Hawkins
 
Methanol Synthesis Loop Troubleshooting
Methanol Synthesis Loop TroubleshootingMethanol Synthesis Loop Troubleshooting
Methanol Synthesis Loop TroubleshootingGerard B. Hawkins
 
Landmark Review of Population Health Management
Landmark Review of Population Health ManagementLandmark Review of Population Health Management
Landmark Review of Population Health ManagementHealth Catalyst
 
Top 7 Healthcare Trends and Challenges for 2015 - From Our Financial Expert
Top 7 Healthcare Trends and Challenges for 2015 - From Our Financial ExpertTop 7 Healthcare Trends and Challenges for 2015 - From Our Financial Expert
Top 7 Healthcare Trends and Challenges for 2015 - From Our Financial ExpertHealth Catalyst
 
6 Steps for Implementing Successful Performance Improvement Initiatives in He...
6 Steps for Implementing Successful Performance Improvement Initiatives in He...6 Steps for Implementing Successful Performance Improvement Initiatives in He...
6 Steps for Implementing Successful Performance Improvement Initiatives in He...Health Catalyst
 
The Changing Role of Healthcare Data Analysts
The Changing Role of Healthcare Data AnalystsThe Changing Role of Healthcare Data Analysts
The Changing Role of Healthcare Data AnalystsHealth Catalyst
 
The Key to Transitioning from Fee-for-Service to Value-Based Reimbursements
The Key to Transitioning from Fee-for-Service to Value-Based ReimbursementsThe Key to Transitioning from Fee-for-Service to Value-Based Reimbursements
The Key to Transitioning from Fee-for-Service to Value-Based ReimbursementsHealth Catalyst
 
Présentation Créagora: Le "Lean Startup"
Présentation Créagora: Le "Lean Startup"Présentation Créagora: Le "Lean Startup"
Présentation Créagora: Le "Lean Startup"Davender Gupta
 
Gcspwwapril2013linkedin
Gcspwwapril2013linkedinGcspwwapril2013linkedin
Gcspwwapril2013linkedinwinklepw
 
Nitrogen Summary study of private fleet greg stephens 2014
Nitrogen Summary study of private fleet greg stephens 2014Nitrogen Summary study of private fleet greg stephens 2014
Nitrogen Summary study of private fleet greg stephens 2014Lean Transit Consulting
 

En vedette (20)

Shift Conversion Catalysts - Operating Manual
Shift Conversion Catalysts - Operating ManualShift Conversion Catalysts - Operating Manual
Shift Conversion Catalysts - Operating Manual
 
Water Gas Shift Reactor Design
Water Gas Shift Reactor DesignWater Gas Shift Reactor Design
Water Gas Shift Reactor Design
 
Water-Gas-Shift Reactor Loading & Unloading Considerations
Water-Gas-Shift Reactor Loading & Unloading ConsiderationsWater-Gas-Shift Reactor Loading & Unloading Considerations
Water-Gas-Shift Reactor Loading & Unloading Considerations
 
Water Gas Shift & Hydrogen Purification Section Flowsheet
Water Gas Shift & Hydrogen Purification Section FlowsheetWater Gas Shift & Hydrogen Purification Section Flowsheet
Water Gas Shift & Hydrogen Purification Section Flowsheet
 
Steam Reforming - A Comprehensive Review
Steam Reforming - A Comprehensive ReviewSteam Reforming - A Comprehensive Review
Steam Reforming - A Comprehensive Review
 
Theory and Practice of Steam Reforming
Theory and Practice of Steam ReformingTheory and Practice of Steam Reforming
Theory and Practice of Steam Reforming
 
Principles of Pre-reforming Technology
Principles of Pre-reforming TechnologyPrinciples of Pre-reforming Technology
Principles of Pre-reforming Technology
 
Steam reforming - The Basics of Reforming
Steam reforming  - The Basics of ReformingSteam reforming  - The Basics of Reforming
Steam reforming - The Basics of Reforming
 
Steam Reforming - Common Problems
Steam Reforming - Common ProblemsSteam Reforming - Common Problems
Steam Reforming - Common Problems
 
Methanol Synthesis Loop Troubleshooting
Methanol Synthesis Loop TroubleshootingMethanol Synthesis Loop Troubleshooting
Methanol Synthesis Loop Troubleshooting
 
Designer As Catalyst
Designer As CatalystDesigner As Catalyst
Designer As Catalyst
 
Landmark Review of Population Health Management
Landmark Review of Population Health ManagementLandmark Review of Population Health Management
Landmark Review of Population Health Management
 
Top 7 Healthcare Trends and Challenges for 2015 - From Our Financial Expert
Top 7 Healthcare Trends and Challenges for 2015 - From Our Financial ExpertTop 7 Healthcare Trends and Challenges for 2015 - From Our Financial Expert
Top 7 Healthcare Trends and Challenges for 2015 - From Our Financial Expert
 
6 Steps for Implementing Successful Performance Improvement Initiatives in He...
6 Steps for Implementing Successful Performance Improvement Initiatives in He...6 Steps for Implementing Successful Performance Improvement Initiatives in He...
6 Steps for Implementing Successful Performance Improvement Initiatives in He...
 
The Changing Role of Healthcare Data Analysts
The Changing Role of Healthcare Data AnalystsThe Changing Role of Healthcare Data Analysts
The Changing Role of Healthcare Data Analysts
 
The Key to Transitioning from Fee-for-Service to Value-Based Reimbursements
The Key to Transitioning from Fee-for-Service to Value-Based ReimbursementsThe Key to Transitioning from Fee-for-Service to Value-Based Reimbursements
The Key to Transitioning from Fee-for-Service to Value-Based Reimbursements
 
Présentation Créagora: Le "Lean Startup"
Présentation Créagora: Le "Lean Startup"Présentation Créagora: Le "Lean Startup"
Présentation Créagora: Le "Lean Startup"
 
Presentation platform flash
Presentation platform flashPresentation platform flash
Presentation platform flash
 
Gcspwwapril2013linkedin
Gcspwwapril2013linkedinGcspwwapril2013linkedin
Gcspwwapril2013linkedin
 
Nitrogen Summary study of private fleet greg stephens 2014
Nitrogen Summary study of private fleet greg stephens 2014Nitrogen Summary study of private fleet greg stephens 2014
Nitrogen Summary study of private fleet greg stephens 2014
 

Similaire à (LTS) Low Temperature Shift Catalyst - Comprehensive Overview

Methanol Synthesis - Theory and Operation
Methanol Synthesis - Theory and OperationMethanol Synthesis - Theory and Operation
Methanol Synthesis - Theory and OperationGerard B. Hawkins
 
POWER PLANT CHEMISTRY
POWER PLANT CHEMISTRYPOWER PLANT CHEMISTRY
POWER PLANT CHEMISTRYDilip Kumar
 
Power Plant Chemistry FEED WATER TREATMENT
Power Plant Chemistry FEED WATER TREATMENTPower Plant Chemistry FEED WATER TREATMENT
Power Plant Chemistry FEED WATER TREATMENTDilip Kumar
 
Monnet EL presentation 21 10 11.ppt
Monnet EL presentation 21 10 11.pptMonnet EL presentation 21 10 11.ppt
Monnet EL presentation 21 10 11.pptPraveenYadav102375
 
ammonia National Fertilizer Limited Bathinda
ammonia National Fertilizer Limited Bathindaammonia National Fertilizer Limited Bathinda
ammonia National Fertilizer Limited BathindaDngL611667
 
Cooling water chemistry .pdf
Cooling water chemistry .pdfCooling water chemistry .pdf
Cooling water chemistry .pdfssuserb7b9f0
 
Ammonia production from natural gas, haldor topsoe process
Ammonia production from natural gas, haldor topsoe processAmmonia production from natural gas, haldor topsoe process
Ammonia production from natural gas, haldor topsoe processGaurav Soni
 
SRU Troubleshooting
SRU TroubleshootingSRU Troubleshooting
SRU TroubleshootingAhmed Omran
 
Chemical Looping Combustion
Chemical Looping CombustionChemical Looping Combustion
Chemical Looping CombustionRajan Lanjekar
 
WVWC - Alt Oxidant & CC - AZ Presentation May 2012
WVWC - Alt Oxidant & CC - AZ Presentation May 2012WVWC - Alt Oxidant & CC - AZ Presentation May 2012
WVWC - Alt Oxidant & CC - AZ Presentation May 2012Joel Wade
 
Manufacture of caustic soda and chlorine using electrolysis process ...
Manufacture of caustic soda and chlorine using electrolysis process          ...Manufacture of caustic soda and chlorine using electrolysis process          ...
Manufacture of caustic soda and chlorine using electrolysis process ...Ankush Gupta
 
ALD Vacuum Carburizing and Low Pressure Carburizing | LPC
ALD Vacuum Carburizing and Low Pressure Carburizing | LPCALD Vacuum Carburizing and Low Pressure Carburizing | LPC
ALD Vacuum Carburizing and Low Pressure Carburizing | LPCALD Vacuum Systems Inc.
 
Thermal Power Plants
Thermal Power PlantsThermal Power Plants
Thermal Power Plantspeeyush95
 

Similaire à (LTS) Low Temperature Shift Catalyst - Comprehensive Overview (20)

Methanol Synthesis - Theory and Operation
Methanol Synthesis - Theory and OperationMethanol Synthesis - Theory and Operation
Methanol Synthesis - Theory and Operation
 
POWER PLANT CHEMISTRY
POWER PLANT CHEMISTRYPOWER PLANT CHEMISTRY
POWER PLANT CHEMISTRY
 
Power Plant Chemistry FEED WATER TREATMENT
Power Plant Chemistry FEED WATER TREATMENTPower Plant Chemistry FEED WATER TREATMENT
Power Plant Chemistry FEED WATER TREATMENT
 
Monnet EL presentation 21 10 11.ppt
Monnet EL presentation 21 10 11.pptMonnet EL presentation 21 10 11.ppt
Monnet EL presentation 21 10 11.ppt
 
CATALYST.ppt
CATALYST.pptCATALYST.ppt
CATALYST.ppt
 
CATALYST.ppt
CATALYST.pptCATALYST.ppt
CATALYST.ppt
 
ammonia National Fertilizer Limited Bathinda
ammonia National Fertilizer Limited Bathindaammonia National Fertilizer Limited Bathinda
ammonia National Fertilizer Limited Bathinda
 
Cooling water chemistry .pdf
Cooling water chemistry .pdfCooling water chemistry .pdf
Cooling water chemistry .pdf
 
Ammonia production from natural gas, haldor topsoe process
Ammonia production from natural gas, haldor topsoe processAmmonia production from natural gas, haldor topsoe process
Ammonia production from natural gas, haldor topsoe process
 
SRU Troubleshooting
SRU TroubleshootingSRU Troubleshooting
SRU Troubleshooting
 
Chemical Looping Combustion
Chemical Looping CombustionChemical Looping Combustion
Chemical Looping Combustion
 
WVWC - Alt Oxidant & CC - AZ Presentation May 2012
WVWC - Alt Oxidant & CC - AZ Presentation May 2012WVWC - Alt Oxidant & CC - AZ Presentation May 2012
WVWC - Alt Oxidant & CC - AZ Presentation May 2012
 
Does Heavy Oil Recovery Need Steam?
Does Heavy Oil Recovery Need Steam?Does Heavy Oil Recovery Need Steam?
Does Heavy Oil Recovery Need Steam?
 
Manufacture of caustic soda and chlorine using electrolysis process ...
Manufacture of caustic soda and chlorine using electrolysis process          ...Manufacture of caustic soda and chlorine using electrolysis process          ...
Manufacture of caustic soda and chlorine using electrolysis process ...
 
C2 Hakkı Aydın
C2 Hakkı AydınC2 Hakkı Aydın
C2 Hakkı Aydın
 
ALD Vacuum Carburizing and Low Pressure Carburizing | LPC
ALD Vacuum Carburizing and Low Pressure Carburizing | LPCALD Vacuum Carburizing and Low Pressure Carburizing | LPC
ALD Vacuum Carburizing and Low Pressure Carburizing | LPC
 
Thermal Power Plants
Thermal Power PlantsThermal Power Plants
Thermal Power Plants
 
FCC Off Gas Treatment
FCC Off Gas TreatmentFCC Off Gas Treatment
FCC Off Gas Treatment
 
Ppt assgn 1
Ppt assgn  1Ppt assgn  1
Ppt assgn 1
 
Presntation hds today
Presntation hds todayPresntation hds today
Presntation hds today
 

Plus de Gerard B. Hawkins

Pressure Relief Systems Vol 2
Pressure Relief Systems   Vol 2Pressure Relief Systems   Vol 2
Pressure Relief Systems Vol 2Gerard B. Hawkins
 
GAS DISPERSION - A Definitive Guide to Accidental Releases of Heavy Gases
GAS DISPERSION -  A Definitive Guide to Accidental Releases of Heavy GasesGAS DISPERSION -  A Definitive Guide to Accidental Releases of Heavy Gases
GAS DISPERSION - A Definitive Guide to Accidental Releases of Heavy GasesGerard B. Hawkins
 
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...Gerard B. Hawkins
 
Adiabatic Reactor Analysis for Methanol Synthesis Plant Note Book Series: P...
Adiabatic Reactor Analysis for Methanol Synthesis   Plant Note Book Series: P...Adiabatic Reactor Analysis for Methanol Synthesis   Plant Note Book Series: P...
Adiabatic Reactor Analysis for Methanol Synthesis Plant Note Book Series: P...Gerard B. Hawkins
 
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTSSTEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTSGerard B. Hawkins
 
Calculation of an Ammonia Plant Energy Consumption:
Calculation of an Ammonia Plant Energy Consumption:  Calculation of an Ammonia Plant Energy Consumption:
Calculation of an Ammonia Plant Energy Consumption: Gerard B. Hawkins
 
Calculation of Caloric Value and other Characteristic Data of Fuel Gas
Calculation of Caloric Value and other Characteristic Data of Fuel GasCalculation of Caloric Value and other Characteristic Data of Fuel Gas
Calculation of Caloric Value and other Characteristic Data of Fuel GasGerard B. Hawkins
 
Piping and Vessels Flushing and Cleaning Procedure
Piping and Vessels Flushing and Cleaning ProcedurePiping and Vessels Flushing and Cleaning Procedure
Piping and Vessels Flushing and Cleaning ProcedureGerard B. Hawkins
 
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS Gerard B. Hawkins
 
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...Gerard B. Hawkins
 
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...Gerard B. Hawkins
 
Getting the Most Out of Your Refinery Hydrogen Plant
Getting the Most Out of Your Refinery Hydrogen PlantGetting the Most Out of Your Refinery Hydrogen Plant
Getting the Most Out of Your Refinery Hydrogen PlantGerard B. Hawkins
 
EMERGENCY ISOLATION OF CHEMICAL PLANTS
EMERGENCY ISOLATION OF CHEMICAL PLANTS EMERGENCY ISOLATION OF CHEMICAL PLANTS
EMERGENCY ISOLATION OF CHEMICAL PLANTS Gerard B. Hawkins
 
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND PRELIMINARY ENGINEER...
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND  PRELIMINARY ENGINEER...PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND  PRELIMINARY ENGINEER...
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND PRELIMINARY ENGINEER...Gerard B. Hawkins
 
Purificación – Mecanismos de Reacción
Purificación – Mecanismos de Reacción Purificación – Mecanismos de Reacción
Purificación – Mecanismos de Reacción Gerard B. Hawkins
 
Amine Gas Treating Unit - Best Practices - Troubleshooting Guide
Amine Gas Treating Unit  - Best Practices - Troubleshooting Guide Amine Gas Treating Unit  - Best Practices - Troubleshooting Guide
Amine Gas Treating Unit - Best Practices - Troubleshooting Guide Gerard B. Hawkins
 
Investigation of the Potential Use of (IILs) Immobilized Ionic Liquids in Sha...
Investigation of the Potential Use of (IILs) Immobilized Ionic Liquids in Sha...Investigation of the Potential Use of (IILs) Immobilized Ionic Liquids in Sha...
Investigation of the Potential Use of (IILs) Immobilized Ionic Liquids in Sha...Gerard B. Hawkins
 
GBHE Over View jan_13_español
GBHE Over View jan_13_españolGBHE Over View jan_13_español
GBHE Over View jan_13_españolGerard B. Hawkins
 

Plus de Gerard B. Hawkins (20)

Pressure Relief Systems Vol 2
Pressure Relief Systems   Vol 2Pressure Relief Systems   Vol 2
Pressure Relief Systems Vol 2
 
Pressure Relief Systems
Pressure Relief Systems Pressure Relief Systems
Pressure Relief Systems
 
GAS DISPERSION - A Definitive Guide to Accidental Releases of Heavy Gases
GAS DISPERSION -  A Definitive Guide to Accidental Releases of Heavy GasesGAS DISPERSION -  A Definitive Guide to Accidental Releases of Heavy Gases
GAS DISPERSION - A Definitive Guide to Accidental Releases of Heavy Gases
 
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
El impacto en el rendimiento del catalizador por envenenamiento y ensuciamien...
 
Adiabatic Reactor Analysis for Methanol Synthesis Plant Note Book Series: P...
Adiabatic Reactor Analysis for Methanol Synthesis   Plant Note Book Series: P...Adiabatic Reactor Analysis for Methanol Synthesis   Plant Note Book Series: P...
Adiabatic Reactor Analysis for Methanol Synthesis Plant Note Book Series: P...
 
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTSSTEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
STEAMING PROCEDURE FOR VULCAN STEAM REFORMING CATALYSTS
 
Calculation of an Ammonia Plant Energy Consumption:
Calculation of an Ammonia Plant Energy Consumption:  Calculation of an Ammonia Plant Energy Consumption:
Calculation of an Ammonia Plant Energy Consumption:
 
Calculation of Caloric Value and other Characteristic Data of Fuel Gas
Calculation of Caloric Value and other Characteristic Data of Fuel GasCalculation of Caloric Value and other Characteristic Data of Fuel Gas
Calculation of Caloric Value and other Characteristic Data of Fuel Gas
 
Pickling & Passivation
Pickling & PassivationPickling & Passivation
Pickling & Passivation
 
Piping and Vessels Flushing and Cleaning Procedure
Piping and Vessels Flushing and Cleaning ProcedurePiping and Vessels Flushing and Cleaning Procedure
Piping and Vessels Flushing and Cleaning Procedure
 
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
DESIGN OF VENT GAS COLLECTION AND DESTRUCTION SYSTEMS
 
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
PRACTICAL GUIDE ON THE SELECTION OF PROCESS TECHNOLOGY FOR THE TREATMENT OF A...
 
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
PRACTICAL GUIDE ON THE REDUCTION OF DISCHARGES TO ATMOSPHERE OF VOLATILE ORGA...
 
Getting the Most Out of Your Refinery Hydrogen Plant
Getting the Most Out of Your Refinery Hydrogen PlantGetting the Most Out of Your Refinery Hydrogen Plant
Getting the Most Out of Your Refinery Hydrogen Plant
 
EMERGENCY ISOLATION OF CHEMICAL PLANTS
EMERGENCY ISOLATION OF CHEMICAL PLANTS EMERGENCY ISOLATION OF CHEMICAL PLANTS
EMERGENCY ISOLATION OF CHEMICAL PLANTS
 
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND PRELIMINARY ENGINEER...
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND  PRELIMINARY ENGINEER...PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND  PRELIMINARY ENGINEER...
PRACTICAL GUIDE TO DEVELOPING PROCESS FLOW DIAGRAMS AND PRELIMINARY ENGINEER...
 
Purificación – Mecanismos de Reacción
Purificación – Mecanismos de Reacción Purificación – Mecanismos de Reacción
Purificación – Mecanismos de Reacción
 
Amine Gas Treating Unit - Best Practices - Troubleshooting Guide
Amine Gas Treating Unit  - Best Practices - Troubleshooting Guide Amine Gas Treating Unit  - Best Practices - Troubleshooting Guide
Amine Gas Treating Unit - Best Practices - Troubleshooting Guide
 
Investigation of the Potential Use of (IILs) Immobilized Ionic Liquids in Sha...
Investigation of the Potential Use of (IILs) Immobilized Ionic Liquids in Sha...Investigation of the Potential Use of (IILs) Immobilized Ionic Liquids in Sha...
Investigation of the Potential Use of (IILs) Immobilized Ionic Liquids in Sha...
 
GBHE Over View jan_13_español
GBHE Over View jan_13_españolGBHE Over View jan_13_español
GBHE Over View jan_13_español
 

Dernier

Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityPrincipled Technologies
 
🐬 The future of MySQL is Postgres 🐘
🐬  The future of MySQL is Postgres   🐘🐬  The future of MySQL is Postgres   🐘
🐬 The future of MySQL is Postgres 🐘RTylerCroy
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Drew Madelung
 
Manulife - Insurer Innovation Award 2024
Manulife - Insurer Innovation Award 2024Manulife - Insurer Innovation Award 2024
Manulife - Insurer Innovation Award 2024The Digital Insurer
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerThousandEyes
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024Rafal Los
 
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost SavingRepurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost SavingEdi Saputra
 
Top 5 Benefits OF Using Muvi Live Paywall For Live Streams
Top 5 Benefits OF Using Muvi Live Paywall For Live StreamsTop 5 Benefits OF Using Muvi Live Paywall For Live Streams
Top 5 Benefits OF Using Muvi Live Paywall For Live StreamsRoshan Dwivedi
 
Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024The Digital Insurer
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfsudhanshuwaghmare1
 
HTML Injection Attacks: Impact and Mitigation Strategies
HTML Injection Attacks: Impact and Mitigation StrategiesHTML Injection Attacks: Impact and Mitigation Strategies
HTML Injection Attacks: Impact and Mitigation StrategiesBoston Institute of Analytics
 
Real Time Object Detection Using Open CV
Real Time Object Detection Using Open CVReal Time Object Detection Using Open CV
Real Time Object Detection Using Open CVKhem
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)Gabriella Davis
 
Deploy with confidence: VMware Cloud Foundation 5.1 on next gen Dell PowerEdg...
Deploy with confidence: VMware Cloud Foundation 5.1 on next gen Dell PowerEdg...Deploy with confidence: VMware Cloud Foundation 5.1 on next gen Dell PowerEdg...
Deploy with confidence: VMware Cloud Foundation 5.1 on next gen Dell PowerEdg...Principled Technologies
 
Exploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone ProcessorsExploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone Processorsdebabhi2
 
presentation ICT roal in 21st century education
presentation ICT roal in 21st century educationpresentation ICT roal in 21st century education
presentation ICT roal in 21st century educationjfdjdjcjdnsjd
 
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...Connector Corner: Accelerate revenue generation using UiPath API-centric busi...
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...DianaGray10
 
Artificial Intelligence Chap.5 : Uncertainty
Artificial Intelligence Chap.5 : UncertaintyArtificial Intelligence Chap.5 : Uncertainty
Artificial Intelligence Chap.5 : UncertaintyKhushali Kathiriya
 
A Year of the Servo Reboot: Where Are We Now?
A Year of the Servo Reboot: Where Are We Now?A Year of the Servo Reboot: Where Are We Now?
A Year of the Servo Reboot: Where Are We Now?Igalia
 
Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024The Digital Insurer
 

Dernier (20)

Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivity
 
🐬 The future of MySQL is Postgres 🐘
🐬  The future of MySQL is Postgres   🐘🐬  The future of MySQL is Postgres   🐘
🐬 The future of MySQL is Postgres 🐘
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
 
Manulife - Insurer Innovation Award 2024
Manulife - Insurer Innovation Award 2024Manulife - Insurer Innovation Award 2024
Manulife - Insurer Innovation Award 2024
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024
 
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost SavingRepurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
Repurposing LNG terminals for Hydrogen Ammonia: Feasibility and Cost Saving
 
Top 5 Benefits OF Using Muvi Live Paywall For Live Streams
Top 5 Benefits OF Using Muvi Live Paywall For Live StreamsTop 5 Benefits OF Using Muvi Live Paywall For Live Streams
Top 5 Benefits OF Using Muvi Live Paywall For Live Streams
 
Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdf
 
HTML Injection Attacks: Impact and Mitigation Strategies
HTML Injection Attacks: Impact and Mitigation StrategiesHTML Injection Attacks: Impact and Mitigation Strategies
HTML Injection Attacks: Impact and Mitigation Strategies
 
Real Time Object Detection Using Open CV
Real Time Object Detection Using Open CVReal Time Object Detection Using Open CV
Real Time Object Detection Using Open CV
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)
 
Deploy with confidence: VMware Cloud Foundation 5.1 on next gen Dell PowerEdg...
Deploy with confidence: VMware Cloud Foundation 5.1 on next gen Dell PowerEdg...Deploy with confidence: VMware Cloud Foundation 5.1 on next gen Dell PowerEdg...
Deploy with confidence: VMware Cloud Foundation 5.1 on next gen Dell PowerEdg...
 
Exploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone ProcessorsExploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone Processors
 
presentation ICT roal in 21st century education
presentation ICT roal in 21st century educationpresentation ICT roal in 21st century education
presentation ICT roal in 21st century education
 
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...Connector Corner: Accelerate revenue generation using UiPath API-centric busi...
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...
 
Artificial Intelligence Chap.5 : Uncertainty
Artificial Intelligence Chap.5 : UncertaintyArtificial Intelligence Chap.5 : Uncertainty
Artificial Intelligence Chap.5 : Uncertainty
 
A Year of the Servo Reboot: Where Are We Now?
A Year of the Servo Reboot: Where Are We Now?A Year of the Servo Reboot: Where Are We Now?
A Year of the Servo Reboot: Where Are We Now?
 
Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024
 

(LTS) Low Temperature Shift Catalyst - Comprehensive Overview

  • 1. Low Temperature Shift Catalyst By: Gerard B. Hawkins Managing Director, CEO
  • 3. Low Temperature Shift  Purpose  Chemistry  Operating Conditions  Catalyst Activity  Poisons  By-Product Formation  Effects of Water  Catalyst Requirements  VSG-C111/1122 - Series
  • 4. LTS - Purpose  Generate H2 from steam - improve plant efficiency  Convert CO to CO2 for easier removal • CO is converted to CO2 in two stages of shift conversion  LTS is the second stage of shift conversion to generate H2 • Residual CO conversion - critical to operating economics • Reduce CO levels to typically 0.3 mol% (dry)
  • 5. LTS - Chemistry CO + H2O ⇔ CO2+ H2 ∆H = -41.1 kJ/kgmol • Reaction catalyzed by Cu for LTS • CO lowered from typically 3% to 0.3% • High conversion is favored by – Low temperatures – High steam concentration • Typically accomplished using copper on a zinc-alumina support Cu
  • 6. LTS – Typical Operating Conditions SOR EOR Temp (°F) 356 - 392 410 - 446 CO (vol%) 3 – 5 Temp (°F) 410 - 518 CO (vol%) 0.2 – 0.3 CO + H2O CO2 + H2 Inlet Outlet Inlet temperature ≥ 27°F above dew point
  • 7. LTS - Temperature Profile Top Bed Depth Bottom Temperature Ageing Movement • Ageing mechanism is gradual poisoning
  • 8. LTS - Catalyst Activity  Good, stable catalyst activity • Maximum conversion of CO to CO2 • High kinetic rate at low LTS inlet temperatures  Conversion limited to equilibrium  Operational measure of activity: • temperature gradient through catalyst bed • higher activity gives steeper gradient
  • 9. LTS - Catalyst Activity  Activity is NOT directly related to Cu content or Cu surface area • Cu content must be highly dispersed and stabilised (hence content is not a good measure) • Cu crystal phases and structure important to activity (therefore surface area is not a direct measure)  Only real test is in laboratory under faithfully reproduced plant conditions and on operating plants • Initial activity may not have any relationship with long term activity retention
  • 10. LTS – Catalyst Activity  ATE (approach to equilibrium) is usually very close • CO slip not impacted by activity for most of catalyst life • Does not affect movement of temperature profile through bed  Minimum inlet temperature restricted by dew point • Not always possible to reduce inlet temperature to optimal value to take advantage of activity Not the most important parameter!
  • 11. LTS - Temperature Profile Top Bed Depth Bottom Temperature Ageing Movement • Ageing mechanism is gradual poisoning Goal: Slow the rate of temperature profile movement down the bed
  • 12. LTS – Catalyst Poisons  Sulfur • Powerful poison • Trapped by the catalyst as Cu2S and ZnS  Chloride • Severe poison • Reacts with copper and zinc to form chlorides • CuCl formation provides a mechanism for loss of activity by sintering
  • 13. LTS - Mechanism of Sulfur Poisoning ZnO Cu ZnO Cu Zn2+ Cu ZnO Cu Adsorption on Copper Surface Mobility Surface Sulphide Formation Bulk Sulphide Formation S S ZnS
  • 14. LTS - Chloride Poisoning  Chloride reacts with copper to form CuCl (mp = 430oC)  CuCl formation provides a mechanism for loss of activity by sintering  Requires well dispersed and stabilized copper to minimize the effect of chloride
  • 15. Chloride Poisoning of LTS Catalysts Chlorided LTS Non-chlorided LTS Copper clusters normal sizeCopper clusters sintered Lost surface area
  • 16. Chloride Poisoning of LTS Catalysts Chlorided LTS Sintered Copper ball large surface area loss
  • 17. Effect of Particle Size on Poisons Resistance 0 20 40 60 80 100 Cumulative Chloride Level COconversion(%) 0.3 - 0.6mm 0.6 - 1.0mm 1.18 - 1.4mm 1.4 - 1.7mm •Poisoning reactions with H2S and HCl are strongly diffusion limited •Poisons resistance and activity can be increased by increasing the pellet geometrical surface area
  • 18. LTS - By Product Formation • Methanol – Effect quality of CO2 – Quality of process condensate • Environmental legislation • Increased treatment costs – Odor in CO2 vent • Can produce amines • When vented can be a nuisance – Other oxygenates such as ethanol, ketones
  • 19. LTS - By Product Formation • Methanol Formation CO2 + 3H2 <====> CH3OH + H2O • MeOH increases with – High Temperatures – High inlet CO levels - increases LTS temperature rise – low S:C ratio – Low space velocity / catalyst bed volume • MeOH production decreases rapidly in the first few months of LTS catalyst operation
  • 20. • Condensate – If catalyst is operated at too low temperature • Waste Heat Boiler Leaks – Wetting then evaporation reduces strength significantly – Can cause catastrophic failure due to thermal shock – Loss of activity due to blocking of active sites – Pressure drop increase • catalyst break-up • boiler solids fouling catalyst LTS - Effects Of Water
  • 21. LTS - Effects Of Water • Water will dissolve soluble poisons – wash poisons deep into the bed – Increase affected bed depth – accelerate change-out of the catalyst Remember CuCl2 is soluble in water!
  • 22. Key Performance Requirements  Poisons Resistance • Self guarding capacity  Selectivity • Minimize by-product formation (methanol)  Activity • Minimize CO slip • With minimal catalyst volume  Strength • Withstand upsets such as condensation
  • 23. VSG-C111/112 Superior Poison Resistance Low Methanol By-product Options High Activity High Strength Extended Catalyst Life Short Load Potential to fit T/A Cycles Maximize Hydrogen Production Address Environmental Concern Resilient
  • 25. Improved Poison Retention using VSG-C111/112 series High sulfur retention Typical = 1% at top & 0.1% at the bottoms Impact of chloride poisoning on CO conversion
  • 26. Extra Chloride Poisons resistance  Applications confirm expected activity for CO and low methanol.  Additional benefit is the enhanced ability to chloride guard. • Caesium and potassium have the highest driving force for chloride. • This is shown by the fact that CsCl and KCl will be formed at very low levels of HCl.
  • 28. Chloride Guarding Properties of VSG-C111/112 series • Very stable chlorides are formed Chloride Mp (o C) Bp (o C) CuCl 430 1490 ZnCl2 283 732 CsCl 645 1290 KCl 770 1500 subl
  • 29. Mechanism of Chloride Resistance ZnO Cu Adsorption on Potassium HCl CsCl ZnOCs Bulk Chloride Formation K and Cs protect the Cu/ZnO lattice by preferentially reacting with and trapping chloride poison Cu
  • 30. Sulfur Poisoning & Surface Area Competitors VSG-C111/112
  • 31. 2 4 6 8 10 12 14 16 0 0.2 0.4 0.6 0.8 1 1.2 1.4 Sample Depth (ft) Poison Level (%) Cl (%) S (%) Poison Profile for VSG-C111, Chinese Hydrogen Plant Sulfur & Chloride Retention of VSG-C111/112 = 13,000ppm!
  • 32. Relative Impact of Activity and Poison Base (VSG-C111) +20%act +20%poison
  • 34. Plant Performance  Optimized alkali promoters to achieve high activity for shift conversion while reducing methanol synthesis --------VSG-C111 ---------VSG-C112 Plant Data
  • 35. Laboratory Testing Product Methanol Activity VSG-C112 0.18 Comp A low MeOH 0.26 Comp B low MeOH 0.33
  • 37. Activity Comparison (Laboratory) Minimize CO slip 0.20 0.22 0.24 0.26 0.28 0.30 0.32 0.34 0 2 4 6 8 10 Time on-line (years) COslip Com petitor A KATALCO 83-3X Com petitor C ---------- Competitor A ---------- VSG-C112 ---------- Competitor C
  • 38. Case Study: Longer Life (1700 stpd China Ammonia Plant)  Previous competitive charge achieved only 3-yr life before high CO slip (> 0.3 mol%) when 4-yr was expected  Replaced with VSG-C112 and operating 5+ yrs with less than 0.25 mol% $$$ Saved ~ $170,000 + Avoided Unscheduled S/D + 12-month Extension on T/A
  • 40. Relative Strengths of Fresh and Reduced Catalyst  VSG-C112 series formulated to have high strength after reduction VSG-C112 Competitor A Competitor B
  • 41. Horizontal Crush Strength after Reduction and Condensing Steam Conditions  Compares relative strength of VSG-C112 and competitive low methanol products VSG-C112
  • 42. Conclusions  VSG-C112 excels over all products with • More than adequate activity • Poisons resistance at least equal to a ‘famous and soon to be obsolete’ guard material with claimed ‘unrivalled poisons resistance’ • The lowest by-product Methanol in the industry  So for long life, low CO slip, Low Methanol VSG-C112 is the winner
  • 43. Catalyst Characteristics  VSG-C111 Copper oxide/Zinc Oxide/Alumina  VSG-C112 As above, promoted by alkali metals
  • 44. Lab Based Test Program  Ability of the Topsoe LSK Guard to withstand chloride poisoning relative to VSG-C112  Determined in the laboratory using an accelerated poisoning test.  In the test a guard layer of the catalyst sample is placed above a main bed of VSG-C111 catalyst and the CO conversion is measured using LTS gas containing very low levels (50 ppb in this case) of HCl.
  • 45. Chloride resistance test rig LTS Feed gas (60% H2, 21% N2, 16% CO2, 3% CO) with 50 ppb Chloride poison addition Analysis of CO conversion Standard bed Test bed LSK Analysis of CO conversion Standard bed VSG-C111 Test bed VSG-C112 VSG-C111
  • 46. Chloride poison test results % Conv vs Wt Cl addition (gms) Run No PR133 - 50 ppb HCl addition 0 10 20 30 40 50 60 70 80 90 100 0 0.0005 0.001 0.0015 0.002 0.0025 0.003 0.0035 0.004 0.0045 Wt Cl addition (gms) %Conversion PR133B - U4676 Topsoe LSK PR133C - H1106K Std 83-3XVSG-C111
  • 47. Chloride poison test results TOPSOE LK-823 and LK-821-2 1ppm HCl addition Charged as guard beds (0.2mls) above main beds Std 83-3 (0.4mls) Main Bed SV ~ 127000 0 20 40 60 80 100 0 0.002 0.004 0.006 0.008 0.01 0.012 0.014 0.016 0.018 0.02 Wt Cl addition (gm) %conversion PR59 - 83-3X PR59 - LK-823 PR59 - LK-821-2 PR59 - 83-3KVSG-C111
  • 48. Overall comparisons Activity/selectivity on volume comparison Catalyst Relative Activity(v/v) Relative Methanol Make(v/v) LSK 0.52 0.44 LK 821-2 1.20 0.88 VSG-C111 1.18 0.20
  • 50. Laboratory Poisoning Data Analysis of CO conversion Standard bed Test bed Cat B Analysis of CO conversion Standard bed Test bed Cat C LTS Feed gas (60% H2, 21%N2, 16% CO2, 3% CO) with Chloride poison addition Analysis of CO conversion Standard bed VSG-C111 Test bed Cat A Analysis of CO conversion Standard bed Test bed Cat D VSG-C111 VSG-C111 VSG-C111
  • 51. How do We Compare? Product Relative Poisons Absorption * VSG-C111 1.0 VSG-C112 2.13 Comp A Guard ** 2.1 Comp A std 1.0 Comp A low MeOH 1.28 Comp B std ? Comp B low MeOH 0.70 * Chloride pickup relative to VSG-C!!! measured by CO slip vs time and chloride analysis on spent material ** Guard with almost no sulfur capacity and very low activity