Ion-Selective Electrode Offers Accurate, Inexpensive Method for Analyzing Soil Solution Nitrate in Remote Regions

Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO 3 − -N) concentrations in soil solution reflect the impacts of farm management on N cycling. Some of the most remote regions in the world are undergoing rapid land-use change, yet there are major barriers to conducting...

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Published inCommunications in Soil Science and Plant Analysis Vol. 45; no. 14; pp. 1974 - 1980
Main Authors Tully, Katherine L., Weil, Ray
Format Journal Article
LanguageEnglish
Published Philadelphia, PA Taylor & Francis 06.08.2014
Taylor & Francis Ltd
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ISSN0010-3624
1532-2416
1532-2416
1532-4133
DOI10.1080/00103624.2014.912297

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Abstract Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO 3 − -N) concentrations in soil solution reflect the impacts of farm management on N cycling. Some of the most remote regions in the world are undergoing rapid land-use change, yet there are major barriers to conducting research in these locations. Fortunately, new tools such as ion-selective electrodes (ISEs) provide low-cost and simple methods for conducting chemical analysis in the field. Researchers compared soil solution NO 3 − -N concentrations measured using an ISE with concentrations measured on a colorimeter (cadmium reduction) and found good agreement (r 2 = 0.96, P < 0.0001) between the two methods. The ISE is also 66 times less expensive than in-country laboratory analysis or shipping and analyzing the samples in the United States. Thus, the ISE is an excellent tool for rapid analysis of N in soil solution, providing critical information on N dynamics in remote regions.
AbstractList Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO3--N) concentrations in soil solution reflect the impacts of farm management on N cycling. Some of the most remote regions in the world are undergoing rapid land-use change, yet there are major barriers to conducting research in these locations. Fortunately, new tools such as ion-selective electrodes (ISEs) provide low-cost and simple methods for conducting chemical analysis in the field. Researchers compared soil solution NO3--N concentrations measured using an ISE with concentrations measured on a colorimeter (cadmium reduction) and found good agreement (r2 = 0.96, P < 0.0001) between the two methods. The ISE is also 66 times less expensive than in-country laboratory analysis or shipping and analyzing the samples in the United States. Thus, the ISE is an excellent tool for rapid analysis of N in soil solution, providing critical information on N dynamics in remote regions. [PUBLICATION ABSTRACT]
Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO ₃⁻-N) concentrations in soil solution reflect the impacts of farm management on N cycling. Some of the most remote regions in the world are undergoing rapid land-use change, yet there are major barriers to conducting research in these locations. Fortunately, new tools such as ion-selective electrodes (ISEs) provide low-cost and simple methods for conducting chemical analysis in the field. Researchers compared soil solution NO ₃⁻-N concentrations measured using an ISE with concentrations measured on a colorimeter (cadmium reduction) and found good agreement (r ² = 0.96, P < 0.0001) between the two methods. The ISE is also 66 times less expensive than in-country laboratory analysis or shipping and analyzing the samples in the United States. Thus, the ISE is an excellent tool for rapid analysis of N in soil solution, providing critical information on N dynamics in remote regions.
Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO 3 − -N) concentrations in soil solution reflect the impacts of farm management on N cycling. Some of the most remote regions in the world are undergoing rapid land-use change, yet there are major barriers to conducting research in these locations. Fortunately, new tools such as ion-selective electrodes (ISEs) provide low-cost and simple methods for conducting chemical analysis in the field. Researchers compared soil solution NO 3 − -N concentrations measured using an ISE with concentrations measured on a colorimeter (cadmium reduction) and found good agreement (r 2 = 0.96, P < 0.0001) between the two methods. The ISE is also 66 times less expensive than in-country laboratory analysis or shipping and analyzing the samples in the United States. Thus, the ISE is an excellent tool for rapid analysis of N in soil solution, providing critical information on N dynamics in remote regions.
Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO sub(3) super(-)-N) concentrations in soil solution reflect the impacts of farm management on N cycling. Some of the most remote regions in the world are undergoing rapid land-use change, yet there are major barriers to conducting research in these locations. Fortunately, new tools such as ion-selective electrodes (ISEs) provide low-cost and simple methods for conducting chemical analysis in the field. Researchers compared soil solution NO sub(3) super(-)-N concentrations measured using an ISE with concentrations measured on a colorimeter (cadmium reduction) and found good agreement (r super(2) = 0.96, P < 0.0001) between the two methods. The ISE is also 66 times less expensive than in-country laboratory analysis or shipping and analyzing the samples in the United States. Thus, the ISE is an excellent tool for rapid analysis of N in soil solution, providing critical information on N dynamics in remote regions.
Author Weil, Ray
Tully, Katherine L.
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Keywords Ion selective electrode
Field methods
Costs
Analysis method
Ionic selectivity
ion-selective electrode
Nitrates
nitrate
Soil solution
Leaching
Field study
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Snippet Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO 3 − -N) concentrations in soil solution reflect the impacts of farm...
Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO3--N) concentrations in soil solution reflect the impacts of farm management...
Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO sub(3) super(-)-N) concentrations in soil solution reflect the impacts of...
Nitrogen (N) applied as fertilizer is subject to runoff and leaching. Nitrate (NO ₃⁻-N) concentrations in soil solution reflect the impacts of farm management...
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SubjectTerms Agronomy. Soil science and plant productions
Biological and medical sciences
Cadmium
Chemical analysis
colorimetry
Electrodes
Farm management
fertilizers
Field methods
Fundamental and applied biological sciences. Psychology
ion-selective electrode
Ion-selective electrodes
Land use
land use change
Leaching
Methods
nitrate
Nitrates
nitrogen
Physical properties
Physics, chemistry, biochemistry and biology of agricultural and forest soils
rapid methods
researchers
runoff
shipping
Soil science
Soil sciences
Soil solution
specific ion electrodes
United States
Water and solute dynamics
Title Ion-Selective Electrode Offers Accurate, Inexpensive Method for Analyzing Soil Solution Nitrate in Remote Regions
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