SlideShare uma empresa Scribd logo
1 de 1
ABSTRACT
The slow disappearance of riparian habitat which once flourished
throughout has been recognized to negatively impact surface water
quality. Restoring riparian habitat can lead to improvements in water
quality. This project investigated the ability of native riparian vegetation
specifically, Rio Grande Cottonwood (Populus fremontii), and zeolite to
improve water quality in nearby streams and drains. It was
hypothesized that the use of low water consuming established native
riparian vegetation along with zeolite mixed into the soil, will improve
water in nearby urban drains through filtration and phytoremediation of
contaminants. Findings from this research project contribute to the field
of riparian zone restoration by quantifying the ability of native riparian
vegetation to improve water quality.
Re-Inventing the Nation’s Urban Water Infrastructure
Using Native Cottonwood to Improve Water Quality in Urban Streams
Dr. Salim Bawazir1, Jabari Lee2 and Juan Solis1
1New Mexico State University, 2Florida Gulf Coast University
SUNLAND PARK URBAN TEST BED
RESEARCH OBJECTIVES
Future steps include initiating irrigation test, collecting and testing
leachate samples. As the irrigation testing continues further monitoring
and analysis of the soil and plants within each plots will be conducted.
including water quality, plant health, and nutrients will continue to be
monitored as the project progresses.
Map of the Sunland Park Urban Test-Bed
Finished Tower for Climate StationPouring ZeoliteBorehole excavation
• Grow native riparian cottonwood trees and study their ability to
improve water quality along urban rivers and streams.
• Grow the cottonwood trees in two soil treatments: in-situ riparian sandy
soil and in-situ riparian sandy soil amended with a layer of clinoptilolite
zeolite.
• Collect soil samples to determine the soil type, sodium adsorption ratio,
and other soil chemical properties in each test plot
• Install drainage pipes to collect leachate samples from irrigation test
• Measure depth to groundwater
• Conduct health assessment of cottonwood trees in the experimental
plots on a weekly basis to determine growth and survivability
• Measure water quality of irrigation and the leachate in the drainage
pipes
Cottonwood Test Plot Configuration
1) Maintenance on the cottonwood test plots was conducted. Maintenance
involved removing weeds within plots and constructing fences around
the plants to protect them from beavers.
2) Conducted weekly plant health assessments during which qualitative
and quantitative data was collected for each plant in every plot.
3) Surface soil samples were collected from every plot for the summer
season to be tested to determine its chemical and hydraulic properties.
4) Leachate collection pipes were installed roughly 8 to 10 inches below
the soil surface in each plot. Care was taken to ensure that the pipes
would not collect ground water.
 The data collected served as baseline data for conditions of the soil
and plants within the test plots prior to the irrigation test.
 A sieve analysis of the soil type in each plot classified the soil as sand.
This information was used to help design the drainage pipes for
leachate collection and which test to perform on the soil to identify its
hydraulic properties.
 Data from plant assessments showed 100% survival rate of
cottonwoods in all plots. Damage caused by beavers resulted in a
negative average overall change in plant height for plots 3 through 5.
Despite this, the average total growth of cottonwoods per plot were
similar.
 The cation exchange capacity (CEC) of soil saturated paste (soil:
distilled water slurry of 1:1) ranged from 10.4 to 14.8 cmol/kg which is
typical for sandy and silt loam soils. The sodium adsorption ratio (SAR)
for the plots ranged from 3.19 to 8.68. The sodium adsorption ratio
(SAR) for the plots were below 13. At a SAR of 13 or above plants can
be negatively affected.
5) A weather station was installed onsite. The weather station has sensor
s to record the amount of precipitation, solar radiation, humidity, wind
speed and direction, and temperature.
6) Soil samples were tested to determine the particle size distribution, pH,
nutrients, salinity, conductivity, cation exchange capacity (CEC),
organic matter content, and sodium adsorption ratio (SAR).
7) Leaf samples were taken from plants in each plot and sent to Harris
AgSource Lab to have the nutrient content determined.
8) Depth to groundwater was measured at 4 wells throughout the site on a
weekly basis throughout the months of June and July.
RESULTS
APPROACH SUMMARY
RECOMMENDATIONS
• 6 cottonwood test plots, with 9 cottonwoods each
• Even number plots contain zeolite soil mixture
• Odd number plots contain native soil
• 2 control plots without plants, 1 with zeolite soil mixture the other without
• Cottonwoods in all plots were on average a year old
We would like to thank all of the faculty and staff at National Science Foundation, New Mexico Stat
e University, and ReNUWIt for making this research possible.
ACKNOWLEDGEMENTS
Cottonwood test plot with leachate collection system
Installation of leachate collection
pipes in test plots
Addition of drainage layer for leachat
e collection system in test plots
Installation of weather
station at Sunland Park

Mais conteúdo relacionado

Mais procurados

Modeling of Predictive interaction of Water Parameters in Groundwater
Modeling of Predictive interaction of Water Parameters in GroundwaterModeling of Predictive interaction of Water Parameters in Groundwater
Modeling of Predictive interaction of Water Parameters in Groundwaterijtsrd
 
Farms, Floods And Fluvial Geomorphology: Making The Most of Our Natural Resou...
Farms, Floods And Fluvial Geomorphology: Making The Most of Our Natural Resou...Farms, Floods And Fluvial Geomorphology: Making The Most of Our Natural Resou...
Farms, Floods And Fluvial Geomorphology: Making The Most of Our Natural Resou...National Institute of Food and Agriculture
 
Ecological Society of America 2015
Ecological Society of America 2015Ecological Society of America 2015
Ecological Society of America 2015Reuben Hilliard
 
Impacts of On-site Wastewater Treatment Systems on Water Quality and Quantity...
Impacts of On-site Wastewater Treatment Systems on Water Quality and Quantity...Impacts of On-site Wastewater Treatment Systems on Water Quality and Quantity...
Impacts of On-site Wastewater Treatment Systems on Water Quality and Quantity...National Institute of Food and Agriculture
 
Agricultural sensitivity to climate change and water resources interactions i...
Agricultural sensitivityto climate change and water resources interactions i...Agricultural sensitivityto climate change and water resources interactions i...
Agricultural sensitivity to climate change and water resources interactions i...National Institute of Food and Agriculture
 
CARE Report_May 2015_Allegheny College
CARE Report_May 2015_Allegheny CollegeCARE Report_May 2015_Allegheny College
CARE Report_May 2015_Allegheny CollegeJoseph Phelps
 
Source reduction for urban stormwater
Source reduction for urban stormwaterSource reduction for urban stormwater
Source reduction for urban stormwaterLarryBaker
 
Impact of Agricultural Stream Restoration on Riparian Hydrology and Biogeoche...
Impact of Agricultural Stream Restoration on Riparian Hydrology and Biogeoche...Impact of Agricultural Stream Restoration on Riparian Hydrology and Biogeoche...
Impact of Agricultural Stream Restoration on Riparian Hydrology and Biogeoche...National Institute of Food and Agriculture
 
An Integrative Decision Support System for Managing Water Resources under Inc...
An Integrative Decision Support System for Managing Water Resources under Inc...An Integrative Decision Support System for Managing Water Resources under Inc...
An Integrative Decision Support System for Managing Water Resources under Inc...National Institute of Food and Agriculture
 
Evaluation Of Downstream And Ecosystem Water Quality And Quantity Through Tar...
Evaluation Of Downstream And Ecosystem Water Quality And Quantity Through Tar...Evaluation Of Downstream And Ecosystem Water Quality And Quantity Through Tar...
Evaluation Of Downstream And Ecosystem Water Quality And Quantity Through Tar...National Institute of Food and Agriculture
 
Denitrification within Saturated Riparian Buffers Re-designed to Remove Nitra...
Denitrification within Saturated Riparian Buffers Re-designed to Remove Nitra...Denitrification within Saturated Riparian Buffers Re-designed to Remove Nitra...
Denitrification within Saturated Riparian Buffers Re-designed to Remove Nitra...National Institute of Food and Agriculture
 
Integrated Plan for Drought Preparedness and Mitigation, and Water Conservati...
Integrated Plan for Drought Preparedness and Mitigation, and Water Conservati...Integrated Plan for Drought Preparedness and Mitigation, and Water Conservati...
Integrated Plan for Drought Preparedness and Mitigation, and Water Conservati...National Institute of Food and Agriculture
 
Implementation of In-Stream, Streambank and Riparian Practices in Conjunction...
Implementation of In-Stream, Streambank and Riparian Practices in Conjunction...Implementation of In-Stream, Streambank and Riparian Practices in Conjunction...
Implementation of In-Stream, Streambank and Riparian Practices in Conjunction...National Institute of Food and Agriculture
 
Regional-Scale Assessment of N2O Emissions within the US Corn Belt: The Impac...
Regional-Scale Assessment of N2O Emissions within the US Corn Belt: The Impac...Regional-Scale Assessment of N2O Emissions within the US Corn Belt: The Impac...
Regional-Scale Assessment of N2O Emissions within the US Corn Belt: The Impac...National Institute of Food and Agriculture
 
Improving Life-Cycle Nitrogen Use Efficiency And Environmental Performance Of...
Improving Life-Cycle Nitrogen Use Efficiency And Environmental Performance Of...Improving Life-Cycle Nitrogen Use Efficiency And Environmental Performance Of...
Improving Life-Cycle Nitrogen Use Efficiency And Environmental Performance Of...National Institute of Food and Agriculture
 

Mais procurados (20)

Modeling of Predictive interaction of Water Parameters in Groundwater
Modeling of Predictive interaction of Water Parameters in GroundwaterModeling of Predictive interaction of Water Parameters in Groundwater
Modeling of Predictive interaction of Water Parameters in Groundwater
 
Farms, Floods And Fluvial Geomorphology: Making The Most of Our Natural Resou...
Farms, Floods And Fluvial Geomorphology: Making The Most of Our Natural Resou...Farms, Floods And Fluvial Geomorphology: Making The Most of Our Natural Resou...
Farms, Floods And Fluvial Geomorphology: Making The Most of Our Natural Resou...
 
Ecological Society of America 2015
Ecological Society of America 2015Ecological Society of America 2015
Ecological Society of America 2015
 
Impacts of On-site Wastewater Treatment Systems on Water Quality and Quantity...
Impacts of On-site Wastewater Treatment Systems on Water Quality and Quantity...Impacts of On-site Wastewater Treatment Systems on Water Quality and Quantity...
Impacts of On-site Wastewater Treatment Systems on Water Quality and Quantity...
 
Agricultural sensitivity to climate change and water resources interactions i...
Agricultural sensitivityto climate change and water resources interactions i...Agricultural sensitivityto climate change and water resources interactions i...
Agricultural sensitivity to climate change and water resources interactions i...
 
Best management practices verification
Best management practices verificationBest management practices verification
Best management practices verification
 
CARE Report_May 2015_Allegheny College
CARE Report_May 2015_Allegheny CollegeCARE Report_May 2015_Allegheny College
CARE Report_May 2015_Allegheny College
 
Source reduction for urban stormwater
Source reduction for urban stormwaterSource reduction for urban stormwater
Source reduction for urban stormwater
 
Impact of Agricultural Stream Restoration on Riparian Hydrology and Biogeoche...
Impact of Agricultural Stream Restoration on Riparian Hydrology and Biogeoche...Impact of Agricultural Stream Restoration on Riparian Hydrology and Biogeoche...
Impact of Agricultural Stream Restoration on Riparian Hydrology and Biogeoche...
 
An Integrative Decision Support System for Managing Water Resources under Inc...
An Integrative Decision Support System for Managing Water Resources under Inc...An Integrative Decision Support System for Managing Water Resources under Inc...
An Integrative Decision Support System for Managing Water Resources under Inc...
 
Measured effects of conservation watershed scale
Measured effects of conservation watershed scaleMeasured effects of conservation watershed scale
Measured effects of conservation watershed scale
 
Evaluation Of Downstream And Ecosystem Water Quality And Quantity Through Tar...
Evaluation Of Downstream And Ecosystem Water Quality And Quantity Through Tar...Evaluation Of Downstream And Ecosystem Water Quality And Quantity Through Tar...
Evaluation Of Downstream And Ecosystem Water Quality And Quantity Through Tar...
 
A Water Quality Valuation Approach To Strategic Planning
A Water Quality Valuation Approach To Strategic PlanningA Water Quality Valuation Approach To Strategic Planning
A Water Quality Valuation Approach To Strategic Planning
 
Denitrification within Saturated Riparian Buffers Re-designed to Remove Nitra...
Denitrification within Saturated Riparian Buffers Re-designed to Remove Nitra...Denitrification within Saturated Riparian Buffers Re-designed to Remove Nitra...
Denitrification within Saturated Riparian Buffers Re-designed to Remove Nitra...
 
Integrated Plan for Drought Preparedness and Mitigation, and Water Conservati...
Integrated Plan for Drought Preparedness and Mitigation, and Water Conservati...Integrated Plan for Drought Preparedness and Mitigation, and Water Conservati...
Integrated Plan for Drought Preparedness and Mitigation, and Water Conservati...
 
Enhancing Climate Resiliency and Agriculture on American Indian Land
Enhancing Climate Resiliency and Agriculture on American Indian LandEnhancing Climate Resiliency and Agriculture on American Indian Land
Enhancing Climate Resiliency and Agriculture on American Indian Land
 
Implementation of In-Stream, Streambank and Riparian Practices in Conjunction...
Implementation of In-Stream, Streambank and Riparian Practices in Conjunction...Implementation of In-Stream, Streambank and Riparian Practices in Conjunction...
Implementation of In-Stream, Streambank and Riparian Practices in Conjunction...
 
Regional-Scale Assessment of N2O Emissions within the US Corn Belt: The Impac...
Regional-Scale Assessment of N2O Emissions within the US Corn Belt: The Impac...Regional-Scale Assessment of N2O Emissions within the US Corn Belt: The Impac...
Regional-Scale Assessment of N2O Emissions within the US Corn Belt: The Impac...
 
Moving Forward on Agricultural Water Conservation in the Colorado River Basin
Moving Forward on Agricultural Water Conservation in the Colorado River BasinMoving Forward on Agricultural Water Conservation in the Colorado River Basin
Moving Forward on Agricultural Water Conservation in the Colorado River Basin
 
Improving Life-Cycle Nitrogen Use Efficiency And Environmental Performance Of...
Improving Life-Cycle Nitrogen Use Efficiency And Environmental Performance Of...Improving Life-Cycle Nitrogen Use Efficiency And Environmental Performance Of...
Improving Life-Cycle Nitrogen Use Efficiency And Environmental Performance Of...
 

Semelhante a Restoring Riparian Habitat to Improve Water Quality

Ppt of wazid dissertation 2019 aug
Ppt of wazid dissertation 2019 augPpt of wazid dissertation 2019 aug
Ppt of wazid dissertation 2019 augWarish Khan
 
Suitability Assessment of Shallow Groundwater of a Typical Coastal Aquifers f...
Suitability Assessment of Shallow Groundwater of a Typical Coastal Aquifers f...Suitability Assessment of Shallow Groundwater of a Typical Coastal Aquifers f...
Suitability Assessment of Shallow Groundwater of a Typical Coastal Aquifers f...iosrjce
 
The Response of Chickpea to Irrigation with Treated journal paper
The Response of Chickpea to Irrigation with Treated journal paperThe Response of Chickpea to Irrigation with Treated journal paper
The Response of Chickpea to Irrigation with Treated journal paperMarwan Haddad
 
Persentation
PersentationPersentation
Persentationzezo2011
 
"Enhancing Soil Nutrient Status and Water Productivity through Sustainable Re...
"Enhancing Soil Nutrient Status and Water Productivity through Sustainable Re..."Enhancing Soil Nutrient Status and Water Productivity through Sustainable Re...
"Enhancing Soil Nutrient Status and Water Productivity through Sustainable Re...Jenkins Macedo
 
Identification of possible migration of contaminants in groundwater at a land...
Identification of possible migration of contaminants in groundwater at a land...Identification of possible migration of contaminants in groundwater at a land...
Identification of possible migration of contaminants in groundwater at a land...Alexander Decker
 
Geospatial and Statistical Assessment of Groundwater Contamination Due to Lan...
Geospatial and Statistical Assessment of Groundwater Contamination Due to Lan...Geospatial and Statistical Assessment of Groundwater Contamination Due to Lan...
Geospatial and Statistical Assessment of Groundwater Contamination Due to Lan...Kavya Prabhakar
 
Wetland construction seminar REPORT
Wetland construction seminar REPORTWetland construction seminar REPORT
Wetland construction seminar REPORTSabik Np
 
Treatment Performance of Domestic Wastewater in a Tropical Constructed Wetlan...
Treatment Performance of Domestic Wastewater in a Tropical Constructed Wetlan...Treatment Performance of Domestic Wastewater in a Tropical Constructed Wetlan...
Treatment Performance of Domestic Wastewater in a Tropical Constructed Wetlan...Oswar Mungkasa
 
Coastal marine ecosystem scientific paper
Coastal marine ecosystem scientific paper Coastal marine ecosystem scientific paper
Coastal marine ecosystem scientific paper swissmitchick
 
Filtration of Greywater by Natural Process
Filtration of Greywater by Natural ProcessFiltration of Greywater by Natural Process
Filtration of Greywater by Natural ProcessRohan Gajbhiye
 
Kazemi and Hill 2015
Kazemi and Hill 2015Kazemi and Hill 2015
Kazemi and Hill 2015Kelly Hill
 

Semelhante a Restoring Riparian Habitat to Improve Water Quality (20)

Ppt of wazid dissertation 2019 aug
Ppt of wazid dissertation 2019 augPpt of wazid dissertation 2019 aug
Ppt of wazid dissertation 2019 aug
 
4 impact on groundwater
4 impact on groundwater4 impact on groundwater
4 impact on groundwater
 
4 Impact On Groundwater
4 Impact On Groundwater4 Impact On Groundwater
4 Impact On Groundwater
 
Constructed Wetland
Constructed WetlandConstructed Wetland
Constructed Wetland
 
Suitability Assessment of Shallow Groundwater of a Typical Coastal Aquifers f...
Suitability Assessment of Shallow Groundwater of a Typical Coastal Aquifers f...Suitability Assessment of Shallow Groundwater of a Typical Coastal Aquifers f...
Suitability Assessment of Shallow Groundwater of a Typical Coastal Aquifers f...
 
H012615560
H012615560H012615560
H012615560
 
The Response of Chickpea to Irrigation with Treated journal paper
The Response of Chickpea to Irrigation with Treated journal paperThe Response of Chickpea to Irrigation with Treated journal paper
The Response of Chickpea to Irrigation with Treated journal paper
 
Persentation
PersentationPersentation
Persentation
 
"Enhancing Soil Nutrient Status and Water Productivity through Sustainable Re...
"Enhancing Soil Nutrient Status and Water Productivity through Sustainable Re..."Enhancing Soil Nutrient Status and Water Productivity through Sustainable Re...
"Enhancing Soil Nutrient Status and Water Productivity through Sustainable Re...
 
482-489FINALL
482-489FINALL482-489FINALL
482-489FINALL
 
Clay Pot Sub-Surface Irrigation as Water-Saving Technology
Clay Pot Sub-Surface Irrigation as Water-Saving TechnologyClay Pot Sub-Surface Irrigation as Water-Saving Technology
Clay Pot Sub-Surface Irrigation as Water-Saving Technology
 
Identification of possible migration of contaminants in groundwater at a land...
Identification of possible migration of contaminants in groundwater at a land...Identification of possible migration of contaminants in groundwater at a land...
Identification of possible migration of contaminants in groundwater at a land...
 
Geospatial and Statistical Assessment of Groundwater Contamination Due to Lan...
Geospatial and Statistical Assessment of Groundwater Contamination Due to Lan...Geospatial and Statistical Assessment of Groundwater Contamination Due to Lan...
Geospatial and Statistical Assessment of Groundwater Contamination Due to Lan...
 
Wetland construction seminar REPORT
Wetland construction seminar REPORTWetland construction seminar REPORT
Wetland construction seminar REPORT
 
Design and Evaluation of Gravity-Fed Perforated Tube Drip Irrigation for Dry...
Design and Evaluation of Gravity-Fed Perforated Tube Drip  Irrigation for Dry...Design and Evaluation of Gravity-Fed Perforated Tube Drip  Irrigation for Dry...
Design and Evaluation of Gravity-Fed Perforated Tube Drip Irrigation for Dry...
 
Treatment Performance of Domestic Wastewater in a Tropical Constructed Wetlan...
Treatment Performance of Domestic Wastewater in a Tropical Constructed Wetlan...Treatment Performance of Domestic Wastewater in a Tropical Constructed Wetlan...
Treatment Performance of Domestic Wastewater in a Tropical Constructed Wetlan...
 
Mike Stoever_Ecology IRP
Mike Stoever_Ecology IRPMike Stoever_Ecology IRP
Mike Stoever_Ecology IRP
 
Coastal marine ecosystem scientific paper
Coastal marine ecosystem scientific paper Coastal marine ecosystem scientific paper
Coastal marine ecosystem scientific paper
 
Filtration of Greywater by Natural Process
Filtration of Greywater by Natural ProcessFiltration of Greywater by Natural Process
Filtration of Greywater by Natural Process
 
Kazemi and Hill 2015
Kazemi and Hill 2015Kazemi and Hill 2015
Kazemi and Hill 2015
 

Restoring Riparian Habitat to Improve Water Quality

  • 1. ABSTRACT The slow disappearance of riparian habitat which once flourished throughout has been recognized to negatively impact surface water quality. Restoring riparian habitat can lead to improvements in water quality. This project investigated the ability of native riparian vegetation specifically, Rio Grande Cottonwood (Populus fremontii), and zeolite to improve water quality in nearby streams and drains. It was hypothesized that the use of low water consuming established native riparian vegetation along with zeolite mixed into the soil, will improve water in nearby urban drains through filtration and phytoremediation of contaminants. Findings from this research project contribute to the field of riparian zone restoration by quantifying the ability of native riparian vegetation to improve water quality. Re-Inventing the Nation’s Urban Water Infrastructure Using Native Cottonwood to Improve Water Quality in Urban Streams Dr. Salim Bawazir1, Jabari Lee2 and Juan Solis1 1New Mexico State University, 2Florida Gulf Coast University SUNLAND PARK URBAN TEST BED RESEARCH OBJECTIVES Future steps include initiating irrigation test, collecting and testing leachate samples. As the irrigation testing continues further monitoring and analysis of the soil and plants within each plots will be conducted. including water quality, plant health, and nutrients will continue to be monitored as the project progresses. Map of the Sunland Park Urban Test-Bed Finished Tower for Climate StationPouring ZeoliteBorehole excavation • Grow native riparian cottonwood trees and study their ability to improve water quality along urban rivers and streams. • Grow the cottonwood trees in two soil treatments: in-situ riparian sandy soil and in-situ riparian sandy soil amended with a layer of clinoptilolite zeolite. • Collect soil samples to determine the soil type, sodium adsorption ratio, and other soil chemical properties in each test plot • Install drainage pipes to collect leachate samples from irrigation test • Measure depth to groundwater • Conduct health assessment of cottonwood trees in the experimental plots on a weekly basis to determine growth and survivability • Measure water quality of irrigation and the leachate in the drainage pipes Cottonwood Test Plot Configuration 1) Maintenance on the cottonwood test plots was conducted. Maintenance involved removing weeds within plots and constructing fences around the plants to protect them from beavers. 2) Conducted weekly plant health assessments during which qualitative and quantitative data was collected for each plant in every plot. 3) Surface soil samples were collected from every plot for the summer season to be tested to determine its chemical and hydraulic properties. 4) Leachate collection pipes were installed roughly 8 to 10 inches below the soil surface in each plot. Care was taken to ensure that the pipes would not collect ground water.  The data collected served as baseline data for conditions of the soil and plants within the test plots prior to the irrigation test.  A sieve analysis of the soil type in each plot classified the soil as sand. This information was used to help design the drainage pipes for leachate collection and which test to perform on the soil to identify its hydraulic properties.  Data from plant assessments showed 100% survival rate of cottonwoods in all plots. Damage caused by beavers resulted in a negative average overall change in plant height for plots 3 through 5. Despite this, the average total growth of cottonwoods per plot were similar.  The cation exchange capacity (CEC) of soil saturated paste (soil: distilled water slurry of 1:1) ranged from 10.4 to 14.8 cmol/kg which is typical for sandy and silt loam soils. The sodium adsorption ratio (SAR) for the plots ranged from 3.19 to 8.68. The sodium adsorption ratio (SAR) for the plots were below 13. At a SAR of 13 or above plants can be negatively affected. 5) A weather station was installed onsite. The weather station has sensor s to record the amount of precipitation, solar radiation, humidity, wind speed and direction, and temperature. 6) Soil samples were tested to determine the particle size distribution, pH, nutrients, salinity, conductivity, cation exchange capacity (CEC), organic matter content, and sodium adsorption ratio (SAR). 7) Leaf samples were taken from plants in each plot and sent to Harris AgSource Lab to have the nutrient content determined. 8) Depth to groundwater was measured at 4 wells throughout the site on a weekly basis throughout the months of June and July. RESULTS APPROACH SUMMARY RECOMMENDATIONS • 6 cottonwood test plots, with 9 cottonwoods each • Even number plots contain zeolite soil mixture • Odd number plots contain native soil • 2 control plots without plants, 1 with zeolite soil mixture the other without • Cottonwoods in all plots were on average a year old We would like to thank all of the faculty and staff at National Science Foundation, New Mexico Stat e University, and ReNUWIt for making this research possible. ACKNOWLEDGEMENTS Cottonwood test plot with leachate collection system Installation of leachate collection pipes in test plots Addition of drainage layer for leachat e collection system in test plots Installation of weather station at Sunland Park