REPORT HIGHLIGHTS * Valued at an estimated $337 million in 2010, the global MBR market is rising at a compound annual growth rate (CAGR) of 13.2% and is expected to reach $627 million by 2015. The MBR market is growing faster than both the larger market for wastewater treatment equipment and the market for other membrane systems treating wastewater. * MBRs used for treating municipal and domestic sewage hold the largest market value and largest treatment capacity. Valued at $216 million in 2010, this application will remain the largest market for MBRs, increasing by a compound annual growth rate (CAGR) of 15.2% to $439 million in 2015. * Landfill leachate treatment is valued at $18 million and is expected to increase at a compound annual growth rate (CAGR) of 5.9% during the forecast period, reaching $24 million in 2015. Until recently, this application has been slow find widespread use outside of Western Europe.REPORT SCOPEINTRODUCTIONSTUDY GOAL AND OBJECTIVESThis comprehensive market research report evaluates the global market for membrane bioreactors (MBRs) used for wastewater treatment. Existing and potential markets for MBRs on the global stage are identified. The goals are to provide meaningful information, unbiased analysis, and an assessment of the roles that MBR systems can play now and in the future of wastewater treatment technology. Twenty-eight countries' water needs are evaluated in four global regions.REASONS FOR DOING THE STUDYThe need for pure water is a problem of global proportions. In the earth's hydrologic cycle, fresh water supplies are fixed and constant, while global water demand is growing. With each passing year, the quality of the planet's water measurably deteriorates, presenting challenges for the major users: the municipal, industrial, and environmental sectors. Water treatment has become an area of global concern as individuals, communities, industries, countries, and their national institutions strive for ways to keep this essential resource available and suitable for use. Membrane bioreactor systems (MBRs) have, over the past 10 years, emerged as an effective solution to transforming various wastewaters into high-quality effluent suitable for discharge to the environment and increasingly into a reusable product.INTENDED AUDIENCEThis report is designed to be as comprehensive as possible and to be useable by a broad audience of business, technical, and regulatory practitioners on a global scale. The document is an information source on the industry, a reference manual on an advanced technology and its system components, and a resource that provides information to decision-makers who need to stay abreast of the state of the art.This report presents analysis and forward-thinking knowledge that will be of advantage to manufacturers, suppliers, and to local, state, and federal government as well as foreign governments. Engineers, utilities, and corporate planners will benefit in accessing the global demand for membrane bioreactors.SCOPE OF REPORT The study is divided into chapters dealing with the membrane component of MBRs, the biological component, system configurations, typical MBR performance, cost analyses, system applications, companies active in the market, market share, and industry structure. Quantitative evaluations are given for the major market segments, historically and for a 5-year horizon. The global scope of the MBR market is identified within four major geographical regions with information on regional economics, water needs, MBR experience, and proposed projects.The MBR market in this study is centered on biological/membrane wastewater treatment for the municipal, industrial, and environmental sectors. The evaluated market does not include catalytic membrane reactors or enzymatic membrane reactors.METHODOLOGYBoth primary and secondary research methodologies were used in preparing this study. Research for this report began with a re-analysis of the available t
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Membrane Bioreactors: Global Markets
Published on March 2011
Report Summary
REPORT HIGHLIGHTS
* Valued at an estimated $337 million in 2010, the global MBR market is rising at a compound annual growth rate (CAGR) of 13.2%
and is expected to reach $627 million by 2015. The MBR market is growing faster than both the larger market for wastewater
treatment equipment and the market for other membrane systems treating wastewater.
* MBRs used for treating municipal and domestic sewage hold the largest market value and largest treatment capacity. Valued at
$216 million in 2010, this application will remain the largest market for MBRs, increasing by a compound annual growth rate (CAGR)
of 15.2% to $439 million in 2015.
* Landfill leachate treatment is valued at $18 million and is expected to increase at a compound annual growth rate (CAGR) of
5.9% during the forecast period, reaching $24 million in 2015. Until recently, this application has been slow find widespread use
outside of Western Europe.
REPORT SCOPE
INTRODUCTION
STUDY GOAL AND OBJECTIVES
This comprehensive market research report evaluates the global market for membrane bioreactors (MBRs) used for wastewater
treatment. Existing and potential markets for MBRs on the global stage are identified. The goals are to provide meaningful
information, unbiased analysis, and an assessment of the roles that MBR systems can play now and in the future of wastewater
treatment technology. Twenty-eight countries' water needs are evaluated in four global regions.
REASONS FOR DOING THE STUDY
The need for pure water is a problem of global proportions. In the earth's hydrologic cycle, fresh water supplies are fixed and
constant, while global water demand is growing. With each passing year, the quality of the planet's water measurably deteriorates,
presenting challenges for the major users: the municipal, industrial, and environmental sectors. Water treatment has become an
area of global concern as individuals, communities, industries, countries, and their national institutions strive for ways to keep this
essential resource available and suitable for use. Membrane bioreactor systems (MBRs) have, over the past 10 years, emerged as
an effective solution to transforming various wastewaters into high-quality effluent suitable for discharge to the environment and
increasingly into a reusable product.
INTENDED AUDIENCE
This report is designed to be as comprehensive as possible and to be useable by a broad audience of business, technical, and
regulatory practitioners on a global scale. The document is an information source on the industry, a reference manual on an
advanced technology and its system components, and a resource that provides information to decision-makers who need to stay
abreast of the state of the art.
This report presents analysis and forward-thinking knowledge that will be of advantage to manufacturers, suppliers, and to local,
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state, and federal government as well as foreign governments. Engineers, utilities, and corporate planners will benefit in accessing
the global demand for membrane bioreactors.
SCOPE OF REPORT
The study is divided into chapters dealing with the membrane component of MBRs, the biological component, system configurations,
typical MBR performance, cost analyses, system applications, companies active in the market, market share, and industry structure.
Quantitative evaluations are given for the major market segments, historically and for a 5-year horizon. The global scope of the MBR
market is identified within four major geographical regions with information on regional economics, water needs, MBR experience,
and proposed projects.
The MBR market in this study is centered on biological/membrane wastewater treatment for the municipal, industrial, and
environmental sectors. The evaluated market does not include catalytic membrane reactors or enzymatic membrane reactors.
METHODOLOGY
Both primary and secondary research methodologies were used in preparing this study. Research for this report began with a
re-analysis of the available technical and business literature, as well as an evaluation of the personal records of the water treatment
industry available to the author. Conversations with industry experts and company representatives and a review of their published
works provide the backbone for an evaluation of the water treatment equipment industry. Other sources of information include
product literature from system suppliers, patent information, and annual reports. .
Growth rates of MBR systems are not the same for all world regions and are not increasing from the same base. Common to all
regions, however, is the fact that sales of the technology are growing faster than the gross domestic products (GDPs) of countries
installing the systems and more rapidly than the industries that use them. Forecasts in this report are based on announced projects
and anticipated capacity additions over the next 5 years.
MBR costs are based on published data and interviews with industry participants. MBR 'systems' include headworks (screens,
pumps, grit chamber) and other pretreatment systems, membrane units, reactor vessels, and other process tanks. Site costs, system
installation costs, piping, instrumentation, and electrical/electronic controls are not included in the cost analysis.
The capital cost of a 50,000 gpd plant is estimated at $350,000, a 100,000 gpd plant at $500,000, and a 500,000 gpd plant at $2
million. For systems 1 mgd and larger, capital costs start at $3.5 million. The largest percentage of new system installations, 90% or
more, will continue to fall into the 5,000 gpd to 500,000 gpd range (most of those, 60% or so, will have capacities of less than 25,000
gpd). About 5% or fewer will be larger than 1 mgd.
Currency conversions are normalized in so far as possible. Much of the historic information is from BCC data.
INFORMATION SOURCES
The INFORMATION SOURCES for this study include online research, patent literature, technical journals, and interviews with
principals in the industry. In evaluating the global market for membrane bioreactors, information was obtained from the U.S.
Department of Commerce; U.S. Department of State; Aquastat, the United Nations' global water information system; and publications
from the American Water Works Association, the Water Environment Federation, the European Commission, the Water Resources
Institute, and various academic institutions. Projections for each market are made in terms of constant dollars. Historical values are
for the year given.
ANALYST CREDENTIALS
During the past 14 years, Susan Hanft has authored more than 30 market research reports for BCC Research in the fields of
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membrane technology, water and wastewater treatment, and separations used in food and beverage manufacture, medicine, and
biotechnology.
Table of Content
CHAPTER ONE: INTRODUCTION 1
STUDY GOAL AND OBJECTIVES 1
REASONS FOR DOING THE STUDY 1
INTENDED AUDIENCE 1
SCOPE OF REPORT 2
METHODOLOGY 2
INFORMATION SOURCES 3
ANALYST CREDENTIALS 3
RELATED BCC REPORTS 3
BCC ONLINE SERVICES 3
DISCLAIMER 4
CHAPTER TWO: EXECUTIVE SUMMARY 5
EXECUTIVE SUMMARY 5
EXECUTIVE SUMMARY (CONTINUED) 6
SUMMARY TABLE MEMBRANE BIOREACTOR MARKET, THROUGH
2015 ($ MILLIONS) 7
SUMMARY FIGURE MEMBRANE BIOREACTOR MARKET, 1990-2015
($ MILLIONS) 7
CHAPTER THREE: OVERVIEW 8
HISTORY 8
AMOUNTS OF WATER TO BE TREATED 8
GLOBAL WATER RESOURCES, WITHDRAWALS 9
FIGURE 1 GLOBAL FRESH WATER STRESS, 1995 AND FORECAST
FOR 2025 10
US WATER RESOURCES, WITHDRAWALS 10
US Water Resources, Withdrawals (Continued) 11
MBRS IN BRIEF 12
MICROORGANISMS 13
AEROBIC, ANAEROBIC 14
TABLE 1 COMPARISON OF AEROBIC, ANAEROBIC MBRS 15
TABLE 2 GLOBAL VALUE OF MBRS, BY TYPE OF MICROBIAL
PROCESS, THROUGH 2015 ($ MILLIONS) 16
FIGURE 2 GLOBAL VALUE OF MBRS, BY TYPE OF MICROBIAL
PROCESS, 1990-2015 ($ MILLIONS) 16
MEMBRANES 17
MATERIALS, MANUFACTURING METHODS, MODULES 17
FLUX 18
FOULING 18
SELECTING MEMBRANES FOR MBRS 19
SYSTEM CONFIGURATION: SUBMERGED, EXTERNAL 19
FIGURE 3 SCHEMATIC OF SUBMERGED MEMBRANE BIOREACTOR 20
FIGURE 4 SCHEMATIC OF EXTERNAL MEMBRANE BIOREACTOR 21
TABLE 3 VALUE OF MBRS, BY CONFIGURATION, THROUGH 2015 ($
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MILLIONS) 22
FIGURE 5 VALUE OF MBRS, BY CONFIGURATION, 1990-2015 ($
MILLIONS) 22
TABLE 4 ADVANTAGES AND DISADVANTAGES OF MBR
CONFIGURATIONS 23
TABLE 5 MAJOR MANUFACTURERS OF MBRS AND THEIR
PRODUCTS 24
TABLE 5 (CONTINUED) 25
TECHNOLOGY DEVELOPMENT 25
PERFORMANCE 26
PARTICLE REMOVAL AND DISINFECTION 26
REMOVAL OF ORGANIC MATTER 26
NUTRIENT REMOVAL 26
TRACE ORGANIC COMPOUNDS 27
COMPETING WASTEWATER TREATMENT TECHNOLOGIES 27
TABLE 6 TECHNOLOGIES USED IN WASTEWATER TREATMENT 28
CAPITAL AND OPERATING COSTS 28
TABLE 7 CAPITAL COST COMPARISONS OF NEW CAS PLANT AND
NEW MBR PLANT, 1,000 PE 29
TABLE 8 REDUCTIONS IN AERATION ENERGY CONSUMPTION,
1998-2006 (SCFM/FT2) 30
FIGURE 6 REDUCTIONS IN AERATION ENERGY CONSUMPTION,
1998-2006 (SCFM/FT2) 30
TABLE 9 DECREASES IN MEMBRANE REPLACEMENT COSTS, 1998-
2006 ($/FT2) 31
FIGURE 7 DECREASES IN MEMBRANE REPLACEMENT COSTS
($/FT2) 31
TREND TO LARGE PLANTS 31
TABLE 10 WORLD'S 20 LARGEST MBR PLANTS, (AS OF JUNE 2010) 32
CHAPTER FOUR: APPLICATIONS FOR MBR TECHNOLOGY 33
TABLE 11 APPLICATION SHARE FOR MBR TECHNOLOGY, BY
WASTEWATER TYPE, 2010 (PERCENT OF INSTALLED CAPACITY) 33
FIGURE 8 APPLICATION SHARE FOR MBR TECHNOLOGY, BY
WASTEWATER TYPE, 2010 (PERCENT OF INSTALLED CAPACITY) 34
APPLICATIONS FOR MBR ' (CONTINUED) 35
APPLICATIONS FOR MBR ' (CONTINUED) 36
TABLE 12 MARKET VALUE BY APPLICATION, THROUGH 2015 ($
MILLIONS) 37
FIGURE 9 MARKET VALUE BY APPLICATION, 1990-2015 ($
MILLIONS) 37
DOMESTIC, MUNICIPAL WASTEWATER 37
TABLE 13 TYPICAL CONTAMINANTS IN UNTREATED MUNICIPAL
WASTEWATER 38
DOMESTIC, MUNICIPAL WASTEWATER TREATMENT 39
INDUSTRIAL WASTEWATER 40
TABLE 14 POTENTIAL WASTEWATER COMPONENTS BY INDUSTRY 41
HEAVY METALS 42
ORGANIC COMPOUNDS 42
OILY WASTEWATERS 42
INDUSTRIAL WASTEWATER TREATMENT 43
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LANDFILL LEACHATE 44
IN-BUILDING WATER RECYCLING 44
OTHER WASTEWATER 45
SHIPBOARD WASTEWATER 45
Cruise Lines 46
World Navies 46
AGRICULTURAL WASTEWATER 46
WATER RECLAMATION AND REUSE 47
REUSE IN THE US 48
REUSE OUTSIDE OF THE US 48
US REGULATORY EFFORTS 49
FEDERAL ASSISTANCE FOR WASTEWATER PLANT
CONSTRUCTION 50
INTERNATIONAL REGULATORY EFFORTS 50
EU REGULATIONS 51
REGULATIONS IN OTHER WORLD REGIONS 51
TRENDS AND TECHNICAL DEVELOPMENTS 51
TRENDS AND TECHNICAL DEVELOPMENTS
(CONTINUED) 52
CHAPTER FIVE: PATENT SURVEY 53
BY COMPANY 53
BY COMPANY (CONTINUED) 54
TABLE 15 PATENT SURVEY, BY COMPANY, 1991-2010 (NUMBER/%) 55
FIGURE 10 PATENT SURVEY, BY COMPANY, 1991-2010 (%) 55
BY APPLICATION 56
TABLE 16 PATENT SURVEY, BY APPLICATION, 1991-2010
(NUMBER/%) 57
FIGURE 11 PATENT SURVEY, BY APPLICATION, 1001-2010 (%) 57
CHAPTER SIX: THE NORTH AMERICAN MARKET FOR MBR
TECHNOLOGY 58
THE NORTH AMERICAN MARKET FOR MBR TECHNOLOGY 58
THE NORTH AMERICAN MARKET FOR '(CONTINUED) 59
TABLE 17 VALUE OF THE NORTH AMERICAN MARKET FOR MBRS,
THROUGH 2015 ($ MILLIONS) 60
FIGURE 12 VALUE OF THE NORTH AMERICAN MARKET FOR
MBRS, 1990-2015 ($ MILLIONS) 61
US 61
ECONOMIC TRENDS 61
WATER NEEDS 62
CANADA 63
ECONOMIC TRENDS 63
WATER NEEDS 64
NORTH AMERICAN MBR EXPERIENCE 64
TABLE 18 MARKET SHARE FOR MBR MANUFACTURERS IN NORTH
AMERICA, 2010 (%) 65
FIGURE 13 MARKET SHARE FOR MBR MANUFACTURERS IN
NORTH AMERICA, 2010 (%) 66
NORTH AMERICAN DEVELOPMENT PROGRAMS FOR
MBRS 66
Desalination and Water Purification Technology
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Roadmap 66
Water Environment Research Foundation 67
WateReuse Foundation 68
MWH 68
CHAPTER SEVEN: GLOBAL MARKETS FOR MBR TECHNOLOGY 69
FOREIGN DIRECT INVESTMENT IN WATER/WASTEWATER
PROGRAMS 69
THE ROLE OF INTERNATIONAL ORGANIZATIONS IN
WATER/WASTEWATER MANAGEMENT 70
WATER CHALLENGES IN THE 21ST CENTURY 71
MILLENNIUM GOALS 72
BELLAGIO FRAMEWORK 72
BELLAGIO FRAMEWORK (CONTINUED) 73
TABLE 19 EVALUATION OF MBRS FOR DEVELOPING COUNTRIES 74
MARKET VALUE MBR SYSTEMS BY GLOBAL REGION 75
TABLE 20 VALUE OF MBR SYSTEMS BY GLOBAL REGION,
THROUGH 2015 ($ MILLIONS) 75
FIGURE 14 VALUE OF MBR SYSTEMS BY GLOBAL REGION, 1990-
2015 ($ MILLIONS) 76
EUROPE 76
GENERAL ECONOMIC TRENDS 76
WATER ISSUES 77
EUROPEAN MBR EXPERIENCE 77
Sewage Treatment Plants 77
Industrial Wastewater Treatment Plants 78
EU MBR DEVELOPMENT PROGRAMS 78
AMEDEUS 79
EUROMBRA 79
MBR-TRAIN 80
PURATREAT 80
Outcomes of EU MBR Development Programs 80
THE EUROPEAN MARKET FOR MBRS 81
THE EUROPEAN MARKET FOR MBRS (CONTINUED) 82
THE EUROPEAN MARKET FOR MBRS (CONTINUED) 83
THE EUROPEAN MARKET FOR MBRS (CONTINUED) 84
TABLE 21 VALUE OF THE EUROPEAN MARKET FOR MBRS,
THROUGH 2015 ($ MILLIONS) 85
FIGURE 15 VALUE OF THE EUROPEAN MARKET FOR MBRS, 1990-
2015 ($ MILLIONS) 85
OVERVIEW OF THE EUROPEAN MBR EXPERIENCE 85
TABLE 22 NUMBER OF INSTALLED MBRS IN THE EU, BY
COUNTRY, 2005-2010 86
FIGURE 16 NUMBER OF INSTALLED MBRS IN THE EU, BY
COUNTRY, 2010 87
TABLE 23 END-USE APPLICATIONS FOR INDUSTRIAL MBRS IN
EUROPE, BY INDUSTRY, 2010 87
TABLE 23 (CONTINUED) 88
FIGURE 17 END-USE APPLICATIONS FOR INDUSTRIAL MBRS IN
EUROPE, BY INDUSTRY, 2010 88
COUNTRY ANALYSIS 89
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BELGIUM 89
Current Economic Trends 89
Water Needs 90
MBR Experience 91
FRANCE 91
Current Economic Trends 91
Water Needs 91
MBR Experience 92
GERMANY 92
Current Economic Trends 92
Water Needs 93
MBR Experience 94
ITALY 95
Current Economic Trends 95
Water Needs 96
MBR Experience 96
SPAIN 96
Current Economic Trends 96
Water Needs 97
MBR Experience 98
THE NETHERLANDS 98
Current Economic Trends 98
Water Needs 99
MBR Experience 99
UNITED KINGDOM 99
Current Economic Trends 100
Water Needs 100
MBR Experience 101
EASTERN EUROPE 101
Poland 101
Current Economic Trends 101
Water Needs 102
MBR Experience 103
Turkey 103
Economic Trends 103
Water Needs 104
MBR Experience 104
THE ASIA-PACIFIC MARKET FOR MBRS 104
The Asia-Pacific Market for MBRS (Continued) 105
TABLE 24 VALUE OF THE ASIAN/PACIFIC MARKET FOR MBRS,
1990-2015 ($ MILLIONS) 106
FIGURE 18 VALUE OF THE ASIAN/PACIFIC MARKET FOR MBRS,
1990-2015 ($ MILLIONS) 106
AUSTRALIA 107
Current Economic Trends 107
Water Needs 108
MBR Experience 108
CHINA 109
Current Economic Trends 109
Water Needs 110
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MBR Experience 111
INDIA 112
Current Economic Trends 112
Water Needs 113
MBR Experience 114
JAPAN 114
Current Economic Trends 114
Water Needs 115
MBR Experience 116
TABLE 25 MUNICIPAL MBR INSTALLATIONS IN JAPAN 116
SOUTH KOREA 117
Current Economic Trends 117
Water Needs 117
MBR Experience 118
SINGAPORE 118
Current Economic Trends 118
Water Issues 119
MBR Experience 119
THE MIDDLE EAST/AFRICAN MARKET FOR MBRS 120
TABLE 26 VALUE OF THE MIDDLE EAST/AFRICAN MARKET FOR
MBRS, THROUGH 2015 ($ MILLIONS) 121
FIGURE 19 VALUE OF THE MIDDLE EAST/AFRICAN MARKET FOR
MBRS, 1990-2015 ($ MILLIONS) 122
MIDDLE EAST 122
MIDDLE EAST MBR EXPERIENCE 123
Bahrain 123
Current Economic Trends 123
Water Needs 124
Kuwait 125
Current Economic Trends 125
Water Needs 125
MBR Experience 126
Egypt 126
Current Economic Trends 126
Water Needs 126
Israel 127
Current Economic Trends 127
Water Needs 128
MBR Experience 128
Saudi Arabia 129
Current Economic Trends 129
Water Needs 129
MBR Experience 130
United Arab Emirates 130
Current Economic Trends 131
Water Needs 131
MBR Experience 132
AFRICA 132
MBR Experience 133
THE LATIN AMERICAN/CARIBBEAN MARKET FOR MBRS 133
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TABLE 27 VALUE OF THE LATIN AMERICAN/CARIBBEAN MARKET
FOR MBRS, THROUGH 2015 ($ MILLIONS) 134
FIGURE 20 VALUE OF THE LATIN AMERICAN/CARIBBEAN
MARKET FOR MBRS, 1990-2015 ($ MILLIONS) 135
LATIN AMERICA 136
Argentina 136
Current Economic Trends 137
Water Needs 137
MBR Experience 138
Brazil 138
Current Economic Trends 138
Water Needs 138
MBR Experience 139
Mexico 140
Current Economic Trends 140
Water Needs 140
MBR Experience 141
CARIBBEAN 142
Bahamas 142
Current Economic Trends 142
Water Needs 143
Jamaica 143
Current Economic Trends 143
Water Needs 144
Water Needs (Continued) 145
CHAPTER EIGHT: INDUSTRY STRUCTURE 146
CONGLOMERATES 146
WATER/WASTEWATER TREATMENT COMPANIES 147
SPECIALIZED PROVIDERS 147
STRATEGIES FOR REMAINING COMPETITIVE 148
MARKET SHARE 148
TABLE 28 MARKET SHARE OF TOTAL INSTALLED CAPACITY, BY
COMPANY, 2010 (%) 148
FIGURE 21 MARKET SHARE OF TOTAL INSTALLED CAPACITY, BY
COMPANY, 2010 (%) 149
COMPANY PROFILES 149
A3 WATER SOLUTIONS GMBH 150
Projects 150
TABLE 29 A3 REFERENCE PLANTS 150
TABLE 29 (CONTINUED) 151
ACWA SERVICES, LTD 151
Memtreat MBR 152
Projects 152
TABLE 30 ACWA MBR INSTALLATIONS IN THE MIDDLE EAST,
2002-2006 152
ADI SYSTEMS, INC 153
AnMBR 153
ALFA LAVAL 153
Hollow Sheet 154
AQUA-AEROBIC SYSTEMS, INC 154
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Aqua-Aerobic MBR 154
AQUATECH INTERNATIONAL 155
Aqua-EMBR 155
ASAHI KASEI 155
Microza MBR 156
TABLE 31 ASAHI REFERENCE PLANTS, 2007-2010 156
ASHBROOK SIMON HARTLEY 156
Integrated Membrane Activated Sludge (IMAS) MBR 157
BEIJING EDI 157
BEIJING ORIGIN WATER TECHNOLOGY CO 157
MBRU 158
BERGHOF FILTRATIONS UND ANLAGENTECHNIK GMBH 158
Berghof' MBRs 158
BIOBOX 158
BioBox MBRs 159
BRIGHTWATER FLI, LTD 159
Membright MBR 159
BUSSE GMBH 160
Busse-MF Small Size Sewage Treatment Plant 160
Projects 161
COLLOIDE ENGINEERING SYSTEMS 161
SubSnake MBR 161
ECOLOGIX TECHNOLOGIES, INC 162
EPCO AUSTRALIA 162
EPCO MBR 162
FILTER INNOVATIONS, INC 163
MicroClear MBR 163
Projects 163
GE WATER TECHNOLOGIES 163
ZeeWeed MBR 164
Shipboard 164
Projects 165
TABLE 32 GE REFERENCE PLANTS 165
TABLE 32 (CONTINUED) 166
HANGZHOU H FILTRATION MEMBRANE TECH & ENG
CO, LTD 166
HYDRANAUTICS 167
HYDRAsub MBR 167
HAMWORTHY 168
MK II, MK III 168
Projects 168
HANS HUBER AG 169
MembraneClearBox 169
VRM Bioreactor 169
BioMem 170
Projects 170
TABLE 33 HUBER REFERENCE PLANTS 170
HITACHI, LTD 170
Hitachi Compact MBR 171
INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE (ITRI) 171
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ITT INDUSTRIES 172
ITT Dual-Stage MBR 172
KEPPEL CORP 173
Keppel Seghers Technology Group BV 173
Unibrane Submerged MBR 174
Projects 174
TABLE 34 KEPPEL SEGHERS REFERENCE PLANTS 174
KIBARAN TERNAMA SDN BHD 175
KOCH MEMBRANE SYSTEMS 175
Puron MBR 176
Puron Plus 176
Projects 176
TABLE 35 PURON REFERENCE PLANTS 177
KOLON INDUSTRIES 177
KUBOTA CORP 178
Kubota MBR 179
Projects 179
TABLE 36 KUBOTA REFERENCE PLANTS 180
LG ELECTRONICS 180
LITREE PURIFYING TEC CO, LTD 181
MARTIN SYSTEMS AG 181
Projects 182
MEMOS MEMBRANES MODULES SYSTEMS GMBH 182
MICRODYN NADIR 182
MBR Membrane Modules 183
MITSUBISHI RAYON CO, LTD 183
Mitsubishi MBR 184
Projects 184
TABLE 37 MITSUBISHI REFERENCE PLANTS 185
TIANJIN MOTIMO MEMBRANE TECHNOLOGY, LTD 185
NORIT 186
Airlift MBR 186
Projects 187
NOVASEP GROUP 187
Novasep MBR 188
Projects 188
TABLE 38 NOVASEP REFERENCE PLANTS 188
NOVOFLOW GMBH 189
OVIVO 189
Projects 190
TABLE 39 ENVIROQUIP REFERENCE PLANTS 190
PALL CORP 190
Pall Aria MBR 191
PARKSON CORP 192
DynaLift MBR 192
POLYMEM SA 192
Immem MBR 192
POROUS FIBERS SL 193
PURE ENVITECH 193
SENUOFIL (TIANJIN) CO 194
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SFC UMWELTTECHNIK GMBH 194
SHANGHAI MEGAVISION MEMBRANE ENGINEERING &
TECHNOLOGY CO, LTD 195
SHANGHAI SINAP MEMBRANE SCIENCE & TECHNOLOGY
CO, LTD 195
SHAW GROUP 195
Shaw MBR 196
SIEMENS AG 196
Siemens MBRs 197
MemPulse MBR 197
EcoRight 198
Projects 198
TABLE 40 SIEMENS REFERENCE PLANTS 198
SMITH & LOVELESS 199
Titan MBRs 199
SUEZ ENVIRONNEMENT 199
BRM MBR 200
Projects 200
SUMITOMO ELECTRIC FINE POLYMER 201
TORAY INDUSTRIES 201
Toray MBR 202
Projects 202
TABLE 41 TORAY REFERENCE PLANTS 202
TRIQUA BV 203
Triqua MBRs 203
Projects 203
ULTRA-FLO PTE, LTD 204
Ultra-Flo MBR 204
VEOLIA ENVIRONNEMENT 204
Veolia Water Solutions & Technologies 205
Biosep MBR 205
Memrod 205
Ceramic Modules for MBRs 206
Projects 206
VINA FILTER CO, LTD 206
Modules for MBRs 207
WEHRLE WERK AG 207
Biomembrat MBR 207
Biomembrat Processes 208
Projects 208
TABLE 42 WEHRLE WERK REFERENCE PLANTS 209
WEISE WATER SYSTEMS 209
MicroClear MBR 210
WJP SOLUTIONS 210
WPJS MBR 210
ZENA MEMBRANES 211
APPENDIX I 212
TABLE 43 PATENT SURVEY, JANUARY 29, 1991-DECEMBER 18, 2007 212
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