Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission

Nitrogen-rich materials such as poultry litter (PL) contributes to substantial N and C loss in the form of ammonia (NH3) and carbon dioxide (CO2) during composting. Biochar can act as a sorbent of ammonia (NH3) and CO2 emission released during co-composting. Thus, co-composting poultry litter with r...

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Main Authors: Ahmed Alarefee, Hamed, Ishak, Che Fauziah, Othman, Radziah, Karam, Daljit Singh
Format: Article
Language:English
Published: Elsevier 2023
Online Access:http://psasir.upm.edu.my/id/eprint/107467/1/Effectiveness%20of%20mixing%20poultry%20litter%20compost%20with%20rice%20husk%20biochar%20in%20mitigating%20ammonia%20volatilization%20and%20carbon%20dioxide%20emission.pdf
http://psasir.upm.edu.my/id/eprint/107467/
https://www.sciencedirect.com/science/article/pii/S030147972202624X?via%3Dihub
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spelling my.upm.eprints.1074672024-10-17T07:37:42Z http://psasir.upm.edu.my/id/eprint/107467/ Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission Ahmed Alarefee, Hamed Ishak, Che Fauziah Othman, Radziah Karam, Daljit Singh Nitrogen-rich materials such as poultry litter (PL) contributes to substantial N and C loss in the form of ammonia (NH3) and carbon dioxide (CO2) during composting. Biochar can act as a sorbent of ammonia (NH3) and CO2 emission released during co-composting. Thus, co-composting poultry litter with rice husk biochar as a bulking agent is a good technique to mitigate NH3 volatilization and CO2 emission. A study was conducted to evaluate the effects of composting the mixtures of poultry litter with rice husk biochar at different ratios on NH3 and CO2 emissions. Four mixtures of poultry litter and rice husk biochar at different rate were composted at 0:1, 0.5:1, 1.3:1 and 2.3:1 ratio of rice husk biochar (RHB): poultry litter (PL) on a dry weight basis to achieve a suitable C/N ratio of 15, 20, 25, and 30, respectively. The results show that composting poultry litter with rice husk biochar can accelerate the breakdown of organic matter, thereby shortening the thermophilic phase compared to composting using poultry litter alone. There was a significant reduction in the cumulative NH3 emissions, which accounted for 78.38%, 94.60%, and 97.30%, for each C/N ratio of 20, 25, and 30. The total nitrogen (TN) retained relative was 75.96%, 85.61%, 90.24%, and 87.89% for each C/N ratio of 15, 20, 25, and 30 at the completion of composting. Total carbon dioxide lost was 5.64%, 6.62%, 8.91%, and 14.54%, for each C/N ratio of 15, 20, 21, and 30. In addition, the total carbon (TC) retained were 66.60%, 72.56%, 77.39%, and 85.29% for 15, 20, 25, and 30 C/N ratios and shows significant difference as compared with the initial reading of TC of the compost mixtures. In conclusion, mixing and composting rice husk biochar in poultry litter with C/N ratio of 25 helps in reducing the NH3 volatilization and CO2 emissions, while reducing the overall operational costs of waste disposal by shortening the composting time alongside nitrogen conservation and carbon sequestration. In formulating the compost mixture with rice husk biochar, the contribution of C and N from the biochar can be neglected in the determination of C/N ratio to predict the rate of mineralization in the compost because biochar has characteristic of being quite inert and recalcitrant in nature. Elsevier 2023-03-01 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/107467/1/Effectiveness%20of%20mixing%20poultry%20litter%20compost%20with%20rice%20husk%20biochar%20in%20mitigating%20ammonia%20volatilization%20and%20carbon%20dioxide%20emission.pdf Ahmed Alarefee, Hamed and Ishak, Che Fauziah and Othman, Radziah and Karam, Daljit Singh (2023) Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission. Journal of Environmental Management, 329. art. no. 117051. pp. 1-14. ISSN 0301-4797 https://www.sciencedirect.com/science/article/pii/S030147972202624X?via%3Dihub 10.1016/j.jenvman.2022.117051
institution Universiti Putra Malaysia
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country Malaysia
content_provider Universiti Putra Malaysia
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language English
description Nitrogen-rich materials such as poultry litter (PL) contributes to substantial N and C loss in the form of ammonia (NH3) and carbon dioxide (CO2) during composting. Biochar can act as a sorbent of ammonia (NH3) and CO2 emission released during co-composting. Thus, co-composting poultry litter with rice husk biochar as a bulking agent is a good technique to mitigate NH3 volatilization and CO2 emission. A study was conducted to evaluate the effects of composting the mixtures of poultry litter with rice husk biochar at different ratios on NH3 and CO2 emissions. Four mixtures of poultry litter and rice husk biochar at different rate were composted at 0:1, 0.5:1, 1.3:1 and 2.3:1 ratio of rice husk biochar (RHB): poultry litter (PL) on a dry weight basis to achieve a suitable C/N ratio of 15, 20, 25, and 30, respectively. The results show that composting poultry litter with rice husk biochar can accelerate the breakdown of organic matter, thereby shortening the thermophilic phase compared to composting using poultry litter alone. There was a significant reduction in the cumulative NH3 emissions, which accounted for 78.38%, 94.60%, and 97.30%, for each C/N ratio of 20, 25, and 30. The total nitrogen (TN) retained relative was 75.96%, 85.61%, 90.24%, and 87.89% for each C/N ratio of 15, 20, 25, and 30 at the completion of composting. Total carbon dioxide lost was 5.64%, 6.62%, 8.91%, and 14.54%, for each C/N ratio of 15, 20, 21, and 30. In addition, the total carbon (TC) retained were 66.60%, 72.56%, 77.39%, and 85.29% for 15, 20, 25, and 30 C/N ratios and shows significant difference as compared with the initial reading of TC of the compost mixtures. In conclusion, mixing and composting rice husk biochar in poultry litter with C/N ratio of 25 helps in reducing the NH3 volatilization and CO2 emissions, while reducing the overall operational costs of waste disposal by shortening the composting time alongside nitrogen conservation and carbon sequestration. In formulating the compost mixture with rice husk biochar, the contribution of C and N from the biochar can be neglected in the determination of C/N ratio to predict the rate of mineralization in the compost because biochar has characteristic of being quite inert and recalcitrant in nature.
format Article
author Ahmed Alarefee, Hamed
Ishak, Che Fauziah
Othman, Radziah
Karam, Daljit Singh
spellingShingle Ahmed Alarefee, Hamed
Ishak, Che Fauziah
Othman, Radziah
Karam, Daljit Singh
Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission
author_facet Ahmed Alarefee, Hamed
Ishak, Che Fauziah
Othman, Radziah
Karam, Daljit Singh
author_sort Ahmed Alarefee, Hamed
title Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission
title_short Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission
title_full Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission
title_fullStr Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission
title_full_unstemmed Effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission
title_sort effectiveness of mixing poultry litter compost with rice husk biochar in mitigating ammonia volatilization and carbon dioxide emission
publisher Elsevier
publishDate 2023
url http://psasir.upm.edu.my/id/eprint/107467/1/Effectiveness%20of%20mixing%20poultry%20litter%20compost%20with%20rice%20husk%20biochar%20in%20mitigating%20ammonia%20volatilization%20and%20carbon%20dioxide%20emission.pdf
http://psasir.upm.edu.my/id/eprint/107467/
https://www.sciencedirect.com/science/article/pii/S030147972202624X?via%3Dihub
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