Retention and Transport of Nitrate and Ammonium in Loamy Sand Amended with Clinoptilolite Zeolite
AbstractAgricultural soils of southern New Mexico, especially sand and sandy loams receiving numerous nitrogen (N) fertilizations, are prone to leaching large amounts of N to shallow groundwater. Adsorption and leaching experiments were conducted to investigate the use of clinoptilolite zeolite (CZ)...
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Published in | Journal of irrigation and drainage engineering Vol. 139; no. 9; pp. 755 - 765 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Reston, VA
American Society of Civil Engineers
01.09.2013
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Abstract | AbstractAgricultural soils of southern New Mexico, especially sand and sandy loams receiving numerous nitrogen (N) fertilizations, are prone to leaching large amounts of N to shallow groundwater. Adsorption and leaching experiments were conducted to investigate the use of clinoptilolite zeolite (CZ) as an amendment to sandy soils to increase N retention and reduce nitrate (NO3−) leaching. Urea-ammonium-nitrate (UAN 32) fertilizer was applied to four soil treatments to simulate crop irrigation. The treatments were composed of 100% CZ, 100% loamy sand (LS), a mixture of 80∶20% (LS:CZ), and a mixture 60∶40% (LS:CZ) by mass, respectively. Results from the experiments showed an inverse relationship between nitrate-nitrogen (NO3−-N) adsorption and the amount of CZ added to soil caused by anion exclusion and a direct relationship between ammonium-nitrogen (NH4+-N) adsorption and the amount of CZ mixed with LS due to NH4+-N entrapment by the CZ molecules. It is therefore recommended to use other types of fertilizers that do not include NO3– to LS soils amended with CZ in order to reduce the risk of leaching. Otherwise, it is suggested to apply fertilizers containing ammonium nitrate in LS soils amended with CZ at reduced rates but at higher frequencies to meet plant demands. |
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AbstractList | AbstractAgricultural soils of southern New Mexico, especially sand and sandy loams receiving numerous nitrogen (N) fertilizations, are prone to leaching large amounts of N to shallow groundwater. Adsorption and leaching experiments were conducted to investigate the use of clinoptilolite zeolite (CZ) as an amendment to sandy soils to increase N retention and reduce nitrate (NO3−) leaching. Urea-ammonium-nitrate (UAN 32) fertilizer was applied to four soil treatments to simulate crop irrigation. The treatments were composed of 100% CZ, 100% loamy sand (LS), a mixture of 80∶20% (LS:CZ), and a mixture 60∶40% (LS:CZ) by mass, respectively. Results from the experiments showed an inverse relationship between nitrate-nitrogen (NO3−-N) adsorption and the amount of CZ added to soil caused by anion exclusion and a direct relationship between ammonium-nitrogen (NH4+-N) adsorption and the amount of CZ mixed with LS due to NH4+-N entrapment by the CZ molecules. It is therefore recommended to use other types of fertilizers that do not include NO3– to LS soils amended with CZ in order to reduce the risk of leaching. Otherwise, it is suggested to apply fertilizers containing ammonium nitrate in LS soils amended with CZ at reduced rates but at higher frequencies to meet plant demands. Agricultural soils of southern New Mexico, especially sand and sandy loams receiving numerous nitrogen (N) fertilizations, are prone to leaching large amounts of N to shallow groundwater. Adsorption and leaching experiments were conducted to investigate the use of clinoptilolite zeolite (CZ) as an amendment to sandy soils to increase N retention and reduce nitrate (NO3-) leaching. Urea-ammonium-nitrate (UAN registered 32) fertilizer was applied to four soil treatments to simulate crop irrigation. The treatments were composed of 100% CZ, 100% loamy sand (LS), a mixture of 80%:20% (LS:CZ), and a mixture 60%:40% (LS:CZ) by mass, respectively. Results from the experiments showed an inverse relationship between nitrate-nitrogen (NC3--N) adsorption and the amount of CZ added to soil caused by anion exclusion, and a direct relationship between ammonium-nitrogen (NH4+-N) adsorption and the amount of CZ mixed with LS due to NH4+-N entrapment by the CZ molecules. It is therefore recommended to use other types of fertilizers that do not include NO3- to LS soils amended with CZ in order to reduce the risk of leaching. Otherwise, it is suggested to apply fertilizers containing ammonium nitrate in LS soils amended with CZ at reduced rates but at higher frequencies to meet plant demands. |
Author | Hanson, Adrian T Piñón-Villarreal, Aldo R Shukla, Manoj K Bawazir, A. Salim |
Author_xml | – sequence: 1 givenname: Aldo R surname: Piñón-Villarreal fullname: Piñón-Villarreal, Aldo R organization: New Mexico State Univ. Graduate Student, Dept. of Civil Engineering, , MSC 3CE, PO Box 30001, Las Cruces, NM 88003-0083. E-mail – sequence: 2 givenname: A. Salim surname: Bawazir fullname: Bawazir, A. Salim email: abawazir@nmsu.edu organization: New Mexico State Univ. Associate Professor, Dept. of Civil Engineering, , MSC 3CE, PO Box 30001, Las Cruces, NM 88003-0083; and member of the Engineering Research Center for Re-inventing Urban Water Infrastructure, Stanford Univ., Stanford, CA 94305 (corresponding author). E-mail – sequence: 3 givenname: Manoj K surname: Shukla fullname: Shukla, Manoj K email: shuklamk@nmsu.edu organization: New Mexico State Univ. Associate Professor, Dept. of Plant and Environmental Sciences, , MSC 3BE, PO Box 30001, Las Cruces, NM 88003-0057. E-mail – sequence: 4 givenname: Adrian T surname: Hanson fullname: Hanson, Adrian T email: athanson@nmsu.edu organization: New Mexico State Univ. Professor, Dept. of Civil Engineering, , MSC 3CE, PO Box 30001, Las Cruces, NM 88003-0083. E-mail |
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Keywords | Irrigation Ammonium Nitrate leaching Sand Retardation Soil amendment Anion exclusion Solutes Sand (soil type) Amendment Anions Urea-ammonium-nitrate (UAN 32) Clinoptilolite zeolite Soil types Agriculture Underground leaching Zeolite Nitrogen Ammonium-nitrogen Soil management Nitrate Adsorption Solute transport New Mexico Clinoptilolite Ammonium nitrate Nitrate-nitrogen Water pollution Loamy sand soil |
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Snippet | AbstractAgricultural soils of southern New Mexico, especially sand and sandy loams receiving numerous nitrogen (N) fertilizations, are prone to leaching large... Agricultural soils of southern New Mexico, especially sand and sandy loams receiving numerous nitrogen (N) fertilizations, are prone to leaching large amounts... |
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SubjectTerms | Agricultural and forest climatology and meteorology. Irrigation. Drainage Agronomy. Soil science and plant productions Biological and medical sciences Fundamental and applied biological sciences. Psychology General agronomy. Plant production Irrigation. Drainage Technical Papers |
Title | Retention and Transport of Nitrate and Ammonium in Loamy Sand Amended with Clinoptilolite Zeolite |
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