Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil

Problem statement: Fertilizer N use efficiency is reduced by ammonia volatilization. Under low soil CEC and high pH, N from soil solution is released to the atmosphere. Ammonia loss due to low worldwide N use efficiency (33%) has been implicated in global warming. Thus, the objectives of this labora...

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Main Authors: Kasim, Susilawati, Ahmed, Osumanu Haruna, Nik Ab. Majid, Nik Muhamad, Yusop, Mohd Khanif, Jalloh, Mohamadu Boyie
Format: Article
Language:English
Published: Science Publications 2009
Online Access:http://psasir.upm.edu.my/id/eprint/19002/1/ajabssp.2009.18.23.pdf
http://psasir.upm.edu.my/id/eprint/19002/
http://thescipub.com/abstract/10.3844/ajabssp.2009.18.23
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spelling my.upm.eprints.190022017-11-21T02:12:04Z http://psasir.upm.edu.my/id/eprint/19002/ Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil Kasim, Susilawati Ahmed, Osumanu Haruna Nik Ab. Majid, Nik Muhamad Yusop, Mohd Khanif Jalloh, Mohamadu Boyie Problem statement: Fertilizer N use efficiency is reduced by ammonia volatilization. Under low soil CEC and high pH, N from soil solution is released to the atmosphere. Ammonia loss due to low worldwide N use efficiency (33%) has been implicated in global warming. Thus, the objectives of this laboratory study were to evaluate the effectiveness of liquid humic and fulvic acids, isolated from tropical peat soils in reducing N loss from urea fertilizer as well as to investigate the ability of these acids to retain NH4+ and NO3- or reduce soil pH. Approach: Formulated liquid N fertilizers consisting of urea and different types of humic molecules (HA or FA or mixture of both), solid and liquid urea were surface applied to 250 g of soil. A closed dynamic air flow system was used to trap NH3 loss in boric acid after which samples were titrated with 0.01 M HCl to estimate NH3 loss. After 30 days of incubation, the soil was air dried and analysed for pH, exchangeable NH4+, available NO3- and exchangeable cations. The results were analysed using SAS and treatments means were compared using Duncan’s New Multiple Range Test (DNMRT). Results: The use of humic molecules reduced NH3 loss and increased exchangeable NH4+. The high CEC of Humic Acids (HA) made the LHA treatment the best in reducing N loss after surface application. The presence of HA and Fulvic Acids (FA) increased NH4+ recovery. Even though, the soil pH of all the treatments were high, significant reduction of N loss was observed for humic molecules treatments. Conclusion: The use of liquid organic N fertilizer has the ability to reduce NH3 volatilization in acid soil. The use of both humic and fulvic acids could be effective in promoting NH4+ retention. Thus, it can be concluding that, humic substances, in general, have great ability in controlling NH3 loss and retaining NH4+ in acid soils. It could be a cheapest, practical and easiest way to control N loss. Science Publications 2009 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/19002/1/ajabssp.2009.18.23.pdf Kasim, Susilawati and Ahmed, Osumanu Haruna and Nik Ab. Majid, Nik Muhamad and Yusop, Mohd Khanif and Jalloh, Mohamadu Boyie (2009) Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil. American Journal of Agricultural and Biological Sciences, 4 (1). pp. 18-23. ISSN 1557-4989; ESSN: 1557-4997 http://thescipub.com/abstract/10.3844/ajabssp.2009.18.23 10.3844/ajabssp.2009.18.23
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Problem statement: Fertilizer N use efficiency is reduced by ammonia volatilization. Under low soil CEC and high pH, N from soil solution is released to the atmosphere. Ammonia loss due to low worldwide N use efficiency (33%) has been implicated in global warming. Thus, the objectives of this laboratory study were to evaluate the effectiveness of liquid humic and fulvic acids, isolated from tropical peat soils in reducing N loss from urea fertilizer as well as to investigate the ability of these acids to retain NH4+ and NO3- or reduce soil pH. Approach: Formulated liquid N fertilizers consisting of urea and different types of humic molecules (HA or FA or mixture of both), solid and liquid urea were surface applied to 250 g of soil. A closed dynamic air flow system was used to trap NH3 loss in boric acid after which samples were titrated with 0.01 M HCl to estimate NH3 loss. After 30 days of incubation, the soil was air dried and analysed for pH, exchangeable NH4+, available NO3- and exchangeable cations. The results were analysed using SAS and treatments means were compared using Duncan’s New Multiple Range Test (DNMRT). Results: The use of humic molecules reduced NH3 loss and increased exchangeable NH4+. The high CEC of Humic Acids (HA) made the LHA treatment the best in reducing N loss after surface application. The presence of HA and Fulvic Acids (FA) increased NH4+ recovery. Even though, the soil pH of all the treatments were high, significant reduction of N loss was observed for humic molecules treatments. Conclusion: The use of liquid organic N fertilizer has the ability to reduce NH3 volatilization in acid soil. The use of both humic and fulvic acids could be effective in promoting NH4+ retention. Thus, it can be concluding that, humic substances, in general, have great ability in controlling NH3 loss and retaining NH4+ in acid soils. It could be a cheapest, practical and easiest way to control N loss.
format Article
author Kasim, Susilawati
Ahmed, Osumanu Haruna
Nik Ab. Majid, Nik Muhamad
Yusop, Mohd Khanif
Jalloh, Mohamadu Boyie
spellingShingle Kasim, Susilawati
Ahmed, Osumanu Haruna
Nik Ab. Majid, Nik Muhamad
Yusop, Mohd Khanif
Jalloh, Mohamadu Boyie
Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil
author_facet Kasim, Susilawati
Ahmed, Osumanu Haruna
Nik Ab. Majid, Nik Muhamad
Yusop, Mohd Khanif
Jalloh, Mohamadu Boyie
author_sort Kasim, Susilawati
title Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil
title_short Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil
title_full Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil
title_fullStr Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil
title_full_unstemmed Reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil
title_sort reduction of ammonia loss by mixing urea with liquid humic and fulvic acids isolated from tropical peat soil
publisher Science Publications
publishDate 2009
url http://psasir.upm.edu.my/id/eprint/19002/1/ajabssp.2009.18.23.pdf
http://psasir.upm.edu.my/id/eprint/19002/
http://thescipub.com/abstract/10.3844/ajabssp.2009.18.23
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score 13.160551