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The pH and available phosphorus as primary drivers of compost-induced CO2 emissions from malaysian tropical soil: empirical relationships

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Zenodo2026-05-30 更新2026-06-05 收录
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Confronting the global need for climate-smart agriculture, this study investigated the major factors controlling CO2 emissions from a Malaysian tropical soil amended with four composts. Multiple regression analyses identified soil available phosphorus (AP) and pH as the key interactive drivers of CO2 emissions, in the following order: chicken dung compost (CDCS) > sludge compost (SLS) > goat manure-leaf compost (GLCS) > food waste compost (FWCS).The significantly higher emissions from CDCS were primarily due to its pronounced elevation of soil pH, likely stimulating microbial activity. The positive correlation with AP indicated that enhanced phosphorus availability further promoted microbial carbon mineralization. The findings demonstrate that compost is not a carbon-neutral amendment; its net climate impact depends on the specific physic-chemical changes it induces in the soil. This provides a scientific basis for optimizing compost selection to reconcile soil fertility improvement with greenhouse gas mitigation in tropical agroecosystems.

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Zenodo
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2026-05-30
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