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Influences of feedstock and pyrolysis temperature on the nitrate adsorption of biochar

机译:原料和热解温度对生物炭硝酸盐吸附的影响

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摘要

Biochar (BC), charcoal produced through the pyrolysis of biomass, is reported to adsorb dissolved nitrate-nitrogen (NO3-N). The NO3-N adsorption properties of BC differ depending on the feedstock and the pyrolysis conditions, and the influences have not been systematically clarified. Therefore, we evaluated the dependence of feedstock and pyrolysis temperature on the NO3-N adsorption properties of BC. Wood chips [Japanese cedar [Cryptomeria japonica] (CE) and Japanese cypress [Chamaecyparis obtusa] (CY)], moso bamboo [Phyllostachys edulis] chips (MB), rice [Oryza sativa] husks (RH), sugarcane [Saccharum officinarum] bagasse (SB), poultry manure (PM) and domestic wastewater sludge (WS) were air-dried and heated in a batch-type carbonization furnace at pyrolysis temperatures of 400, 600 and 800 degrees C, with a hold time of 2h. Among the BC produced from each feedstock, the one produced at 800 degrees C had the greatest NO3-N adsorption. The NO3-N adsorption by BC produced from wood-based biomass at 800 degrees C was significantly higher than that of the BC produced from non-wood-based biomass at 800 degrees C. Therefore, BC made from wood-based biomass at higher temperature can be adequate as soil amendment material for adsorption of NO3-N.
机译:据报道,通过生物质热解而产生的木炭生物炭(BC)吸收溶解的硝酸盐氮(NO3-N)。 BC的NO3-N吸附特性随原料和热解条件的不同而不同,其影响尚未系统地阐明。因此,我们评估了原料和热解温度对BC的NO3-N吸附特性的依赖性。木片[日本柳杉[Cryptomeria japonica](CE)和日本柏[Chamaecyparis obtusa](CY)],毛竹[Phyllostachys edulis]片(MB),稻米[Oryza sativa]稻壳(RH),甘蔗[Saccharum officinarum]将甘蔗渣(SB),家禽粪便(PM)和生活废水污泥(WS)空气干燥,并在间歇式碳化炉中在400、600和800摄氏度的热解温度下加热,保持时间为2小时。在每种原料生产的BC中,在800摄氏度下生产的BC具有最大的NO3-N吸附。 800摄氏度时,木质生物质产生的BC对NO3-N的吸附明显高于800摄氏度时非木质生物质产生的BC对NO3-N的吸附。因此,高温下木质生物质产生的BC可以用作吸附NO3-N的土壤改良剂。

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