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不同类型生物炭对蛋鸡粪便堆肥过程中甲烷和氨气减排的影响

Effects of different types of biochar on methane and ammonia mitigation during layer manure composting.

作者信息

Chen Wei, Liao Xindi, Wu Yinbao, Liang Juan Boo, Mi Jiandui, Huang Jinjie, Zhang Heng, Wu Yu, Qiao Zhifen, Li Xi, Wang Yan

机构信息

College of Animal Science, South China Agricultural University, Guangzhou, China.

College of Animal Science, South China Agricultural University, Guangzhou, China; Ministry of Agriculture Key Laboratory of Tropical Agricultural Environment, South China Agricultural University, Guangzhou, China.

出版信息

Waste Manag. 2017 Mar;61:506-515. doi: 10.1016/j.wasman.2017.01.014. Epub 2017 Jan 20.

Abstract

Biochar, because of its unique physiochemical properties and sorption capacity, may be an ideal amendment in reducing gaseous emissions during composting process but there has been little information on the potential effects of different types of biochar on undesired gaseous emissions. The objective of this study was to examine the ability and mechanism of different types of biochar, as co-substrate, in mitigating gaseous emission from composting of layer hen manure. The study was conducted in small-scale laboratory composters with the addition of 10% of one of the following biochars: cornstalk biochar, bamboo biochar, woody biochar, layer manure biochar and coir biochar. The results showed that the cumulative NH production was significantly reduced by 24.8±2.9, 9.2±1.3, 20.1±2.6, 14.2±1.6, 11.8±1.7% (corrected for initial total N) in the cornstalk biochar, bamboo biochar, woody biochar, layer manure biochar and coir biochar treatments, respectively, compared to the control. Total CH emissions was significantly reduced by 26.1±2.3, 15.5±2.1, 22.4±3.1, 17.1±2.1% (corrected for the initial total carbon) for cornstalk biochar, bamboo biochar, woody biochar and coir biochar treatments than the control. Moreover, addition of cornstalk biochar increased the temperature and NO-N concentration and decreased the pH, NH-N and organic matter content throughout the composting process. The results suggested that total volatilization of NH and CH in cornstalk biochar treatment was lower than the other treatments; which could be due to (i) decrease of pH and higher nitrification, (ii) high sorption capacity for gases and their precursors, such as ammonium nitrogen from composting mixtures, because of the higher surface area, pore volumes, total acidic functional groups and CEC of cornstalk biochar.

摘要

生物炭因其独特的物理化学性质和吸附能力,可能是减少堆肥过程中气体排放的理想改良剂,但关于不同类型生物炭对有害气体排放的潜在影响的信息却很少。本研究的目的是研究不同类型生物炭作为共底物在减轻蛋鸡粪便堆肥气体排放方面的能力和机制。该研究在小型实验室堆肥器中进行,添加了以下生物炭之一的10%:玉米秸秆生物炭、竹炭、木质生物炭、鸡粪生物炭和椰壳生物炭。结果表明,与对照相比,玉米秸秆生物炭、竹炭、木质生物炭、鸡粪生物炭和椰壳生物炭处理中NH的累积产量分别显著降低了24.8±2.9%、9.2±1.3%、20.1±2.6%、14.2±1.6%、11.8±1.7%(根据初始总氮校正)。玉米秸秆生物炭、竹炭、木质生物炭和椰壳生物炭处理的CH总排放量比对照显著降低了26.1±2.3%、15.5±2.1%、22.4±3.1%、17.1±2.1%(根据初始总碳校正)。此外,添加玉米秸秆生物炭在整个堆肥过程中提高了温度和NO-N浓度,并降低了pH值、NH-N和有机质含量。结果表明,玉米秸秆生物炭处理中NH和CH的总挥发量低于其他处理;这可能是由于(i)pH值降低和硝化作用增强,(ii)玉米秸秆生物炭具有较高的表面积、孔隙体积、总酸性官能团和阳离子交换容量,对气体及其前体(如堆肥混合物中的铵态氮)具有较高的吸附能力。

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