UMR 7618 BIOEMCO, UMR CNRS-Université Paris VI et XII-IRD AgroParisTech, Paris et Thiverval-Grignon, France; Institute of Environmental Technology, VAST, Hanoi, Viet Nam.
Bioresour Technol. 2013 Nov;148:401-7. doi: 10.1016/j.biortech.2013.08.098. Epub 2013 Aug 28.
This study characterized the carbon and phosphorus composition of buffalo manure, its compost and vermicompost and investigated if presence of bamboo biochar has an effect on their chemical and biological reactivity. The four substrates were characterized for chemical and biochemical composition and P forms. The biological stability of the four substrates and their mixtures were determined during an incubation experiment. Their chemical reactivity was analyzed after acid dichromate oxidation. Biological reactivity of these substrates was related to their soluble organic matter content, which decreased in the order buffalo manure>compost>vermicompost. Phosphorus was labile in all organic substrates and composting transformed organic P into plant available P. The presence of biochar led to a protection of organic matter against chemical oxidation and changed their susceptibility to biological degradation, suggesting that biochar could increase the carbon sequestration potential of compost, vermicompost and manure, when applied in mixture.
本研究对水牛粪、堆肥和蚯蚓粪的碳磷组成进行了描述,并探讨了竹子生物炭的存在是否会影响它们的化学和生物反应性。对四种基质的化学和生化组成以及磷形态进行了表征。在孵育实验中,确定了四种基质及其混合物的生物稳定性。在酸重铬酸钾氧化后,分析了它们的化学反应性。这些基质的生物反应性与其可溶性有机物含量有关,其顺序为水牛粪>堆肥>蚯蚓粪。所有有机基质中的磷都是不稳定的,堆肥将有机磷转化为植物可用磷。生物炭的存在导致有机物质对化学氧化的保护,并改变了它们对生物降解的敏感性,这表明生物炭在混合施用时可以增加堆肥、蚯蚓粪和粪肥的碳固存潜力。