Mitigation N₂O emission through beef cattle waste fertilisation application in corn field


Citation

Sri Arnita Abu Tani, . and Fachroerrozi Hoesni, . and Ali Purnomo, . and Saitul, . and Anuraga Jayanegara, . (2024) Mitigation N₂O emission through beef cattle waste fertilisation application in corn field. Journal of Sustainability Science and Management (Malaysia), 19 (10). pp. 151-160. ISSN 2672-7226

Abstract

This study is aimed at explaining the pattern of N₂O emission from the use of Cattle Manure Fertiliser (bio-slurry, bio-urine, and Trichocompost) on sweet corn (Zea mays L. Saccharata). This study used a Randomised Block Design (RBD) with four treatment groups and four replications. Each test consisted of 16 experimental units. The treatments consisted of combinations of Chemical Fertiliser (SP36, KCl, urea) and Organic Fertiliser (bio-urine and bio-slurry, Trichocompost), i.e., 100% Chemical Fertiliser (C₁₀₀), 75% Chemical Fertiliser + 25% Organic Fertiliser (C₇₅O₂₅), 50% Chemical Fertiliser + 50% Organic Fertiliser (C₅₀O₅₅), and 25% Chemical Fertiliser + 75% Organic Fertiliser (C₂₅O₇₅). The observed variables were the pattern of N2O flux after the first and second fertilisation and the emission of N₂O. The results showed that the highest N₂O flux in the first fertilisation resulted from C₇₅O₂₅ treatment while in the second fertilisation, the highest N₂O flux was emitted from C100 and the lowest was emitted from C₂₅O₇₅. The lowest N₂O emission was from C₂₅O₇₅ treatment. In conclusion, using beef cattle waste fertiliser could decrease N₂O flux and emissions by 75% in sweet corn cropping.


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Abstract

This study is aimed at explaining the pattern of N₂O emission from the use of Cattle Manure Fertiliser (bio-slurry, bio-urine, and Trichocompost) on sweet corn (Zea mays L. Saccharata). This study used a Randomised Block Design (RBD) with four treatment groups and four replications. Each test consisted of 16 experimental units. The treatments consisted of combinations of Chemical Fertiliser (SP36, KCl, urea) and Organic Fertiliser (bio-urine and bio-slurry, Trichocompost), i.e., 100% Chemical Fertiliser (C₁₀₀), 75% Chemical Fertiliser + 25% Organic Fertiliser (C₇₅O₂₅), 50% Chemical Fertiliser + 50% Organic Fertiliser (C₅₀O₅₅), and 25% Chemical Fertiliser + 75% Organic Fertiliser (C₂₅O₇₅). The observed variables were the pattern of N2O flux after the first and second fertilisation and the emission of N₂O. The results showed that the highest N₂O flux in the first fertilisation resulted from C₇₅O₂₅ treatment while in the second fertilisation, the highest N₂O flux was emitted from C100 and the lowest was emitted from C₂₅O₇₅. The lowest N₂O emission was from C₂₅O₇₅ treatment. In conclusion, using beef cattle waste fertiliser could decrease N₂O flux and emissions by 75% in sweet corn cropping.

Additional Metadata

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Item Type: Article
AGROVOC Term: cornea
AGROVOC Term: waste management
AGROVOC Term: beef cattle
AGROVOC Term: greenhouse gas emissions
AGROVOC Term: soil fertility
AGROVOC Term: climate change mitigation
Geographical Term: Indonesia
Depositing User: Mr. Khoirul Asrimi Md Nor
Date Deposited: 14 Jul 2026 07:25
Last Modified: 16 Jul 2026 14:46
URI: http://webagris.upm.edu.my/id/eprint/4783

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