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Nichole M. Embertson, Ph.D.
Whatcom Conservation District
FromWaste toWorth Conference
Denver, CO
April 4, 2013
Communities
Shellfish
Livestock
Dairy
Salmon
Resource
Concerns
Puget
Sound
Feed
Crops
Specialty
Crops
 Diverse Agriculture:
Livestock and Crops
 Impacted Resources:
Surface and Ground
Water
Shellfish
Salmon
Whatcom County, Washington
 125 Dairies; 56,000 milk cows
 70% North America raspberry
production
 80,000 acres of crop land
 Impacted resources
 40-8o” annual precip
Natural
Resources
Crop -
Berry
Livestock -
Dairy
 Pollutant availability
 Variable uptake and/or conversion (N, P, FC,…)
 Improper manure application/grazing
practices
 Timing, method, rates
 Weather events
 Precipitation, flooding, high water table, wind
 Poor field conditions
 Soil type, slope, surface cover, saturated soils
 Application Risk Management System
 Real-time Manure Spreading Advisory
 Dynamic Manure Application Setbacks
 Guidance and educational support
 EPAWatershed grant: 2010-2014
 Four Overlapping Phases:
 Phase 1 - Assessment
 Phase 2 - Development
 Phase 3 - Implementation and
Monitoring
 Phase 4 - Evaluation, Adaptation, and
Outreach
 System to address surface runoff, groundwater
leaching, and air emissions in one tool
 Minimize pollution risk from manure application
with effective management tools and education
 Address risk on a spatial and temporal scale
 Accountability –Take responsibility for actions
 Flexibility – Better options when to apply
 Assist with application during high risk times
 Integrate ARM into nutrient planning process
 Individual field level risk assessment for runoff
and leaching
 Soil risk rating based on 15+ factors and visual
field assessment
 Example Risk Levels - Runoff:
 High – Bare ground, adjacent water, high water table, flooding
 Med-High – Minimal cover, high water table, ponding
 Medium – Adjacent water, ponding, good infiltration, low slope
 Low-Med – Dense cover, low water table, minimal slope
 Low – Grass, no adjacent water, good infiltration, good AWC
www.WhatcomCD.org/ARM
 Gives RiskWarning
and Rating & Links
 Fill out Criteria
 Information
 Look at forecast
 Water table depth
 Soil Moisture
 Assess individual field
condition
 Continued….
 Continued…
 Vegetation cover
 Application equipment
 Protective measures in
place
 WorksheetOutput
 Overall risk
 Max application rate
 Send to Planner
 Check and alert producer
if analysis is incorrect
 Optimizing for web
and mobile
 Evaluating worksheet parameters
 Field testing system and worksheet
 Monitoring, assessment, and validation
 Soil, manure, forage, surface water,
groundwater, soil water, air, meteorological
 Evaluating worksheet parameters
 Field testing system and worksheet
 Monitoring, assessment, and validation
 Soil, manure, forage, surface
water, groundwater, soil
water, air, meteorological
 Adapt worksheet criteria to specific areas
 Optimizing manure application
strategies and guidance
 Good collaboration between soil, soil water,
and groundwater results
 ARM - Limited fall application tends to
reduce fall and spring nitrate leaching
 ARM – No increased leaching with early
season app + reduced runoff probability
 Good collaboration between soil, soil water, and
groundwater results
 ARM - Limited fall application tends to reduce
fall and spring nitrate leaching
 ARM – No increased leaching with early season
app + reduced runoff probability
 Increased first cutting forage yield 30% with
early season application
 Tools bringing dynamic nature to planning
 Still work to be done!
 First line of defense
in runoff prevention
 “If risk is
high, don’t apply”
 Updated daily from
NOAA forecast
 Current guidance
and setbacks
 Optimizing for
mobile use
 Use correlates with
precipitation
patterns and
farming activity
 Over 100 page
views per month
 Use in lieu of filter strips
where appropriate
 Based on scientific
evaluation and local
considerations
 Dynamic distance/date
in shoulder seasons
 Apply to both liquid and
solid manure application
Questions?
Nichole M. Embertson, Ph.D.
Whatcom Conservation District
O: (360) 354-2035 x 126
W: www.WhatcomCD.org
E: NEmbertson@WhatcomCD.org
Disclaimer: The reproduction or use of any of the images or content within
this document is not allowed without prior approval from the creator.

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Protecting Puget Sound Watersheds from Agricultural Pollution Using a Progressive Manure Application Risk Management (ARM) System

  • 1. Nichole M. Embertson, Ph.D. Whatcom Conservation District FromWaste toWorth Conference Denver, CO April 4, 2013
  • 3. Shellfish Salmon Whatcom County, Washington  125 Dairies; 56,000 milk cows  70% North America raspberry production  80,000 acres of crop land  Impacted resources  40-8o” annual precip Natural Resources Crop - Berry Livestock - Dairy
  • 4.  Pollutant availability  Variable uptake and/or conversion (N, P, FC,…)  Improper manure application/grazing practices  Timing, method, rates  Weather events  Precipitation, flooding, high water table, wind  Poor field conditions  Soil type, slope, surface cover, saturated soils
  • 5.  Application Risk Management System  Real-time Manure Spreading Advisory  Dynamic Manure Application Setbacks  Guidance and educational support
  • 6.
  • 7.  EPAWatershed grant: 2010-2014  Four Overlapping Phases:  Phase 1 - Assessment  Phase 2 - Development  Phase 3 - Implementation and Monitoring  Phase 4 - Evaluation, Adaptation, and Outreach
  • 8.  System to address surface runoff, groundwater leaching, and air emissions in one tool  Minimize pollution risk from manure application with effective management tools and education  Address risk on a spatial and temporal scale  Accountability –Take responsibility for actions  Flexibility – Better options when to apply  Assist with application during high risk times  Integrate ARM into nutrient planning process
  • 9.  Individual field level risk assessment for runoff and leaching  Soil risk rating based on 15+ factors and visual field assessment  Example Risk Levels - Runoff:  High – Bare ground, adjacent water, high water table, flooding  Med-High – Minimal cover, high water table, ponding  Medium – Adjacent water, ponding, good infiltration, low slope  Low-Med – Dense cover, low water table, minimal slope  Low – Grass, no adjacent water, good infiltration, good AWC
  • 10.
  • 11. www.WhatcomCD.org/ARM  Gives RiskWarning and Rating & Links  Fill out Criteria  Information  Look at forecast  Water table depth  Soil Moisture  Assess individual field condition  Continued….
  • 12.  Continued…  Vegetation cover  Application equipment  Protective measures in place  WorksheetOutput  Overall risk  Max application rate  Send to Planner  Check and alert producer if analysis is incorrect  Optimizing for web and mobile
  • 13.  Evaluating worksheet parameters  Field testing system and worksheet  Monitoring, assessment, and validation  Soil, manure, forage, surface water, groundwater, soil water, air, meteorological
  • 14.
  • 15.  Evaluating worksheet parameters  Field testing system and worksheet  Monitoring, assessment, and validation  Soil, manure, forage, surface water, groundwater, soil water, air, meteorological  Adapt worksheet criteria to specific areas  Optimizing manure application strategies and guidance
  • 16.  Good collaboration between soil, soil water, and groundwater results  ARM - Limited fall application tends to reduce fall and spring nitrate leaching  ARM – No increased leaching with early season app + reduced runoff probability
  • 17.
  • 18.
  • 19.  Good collaboration between soil, soil water, and groundwater results  ARM - Limited fall application tends to reduce fall and spring nitrate leaching  ARM – No increased leaching with early season app + reduced runoff probability  Increased first cutting forage yield 30% with early season application  Tools bringing dynamic nature to planning  Still work to be done!
  • 20.
  • 21.  First line of defense in runoff prevention  “If risk is high, don’t apply”  Updated daily from NOAA forecast  Current guidance and setbacks  Optimizing for mobile use
  • 22.  Use correlates with precipitation patterns and farming activity  Over 100 page views per month
  • 23.
  • 24.  Use in lieu of filter strips where appropriate  Based on scientific evaluation and local considerations  Dynamic distance/date in shoulder seasons  Apply to both liquid and solid manure application
  • 25. Questions? Nichole M. Embertson, Ph.D. Whatcom Conservation District O: (360) 354-2035 x 126 W: www.WhatcomCD.org E: NEmbertson@WhatcomCD.org Disclaimer: The reproduction or use of any of the images or content within this document is not allowed without prior approval from the creator.