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Characterization of Engineered Biochar for Soil Management

机译:描述工程生物炭的土壤管理

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摘要

Pyrolysis is an energy conversion technology which by heating organic materials in the absence of oxygen, produces liquid, gaseous, and solid fuel products. Biochar, the solid product, can also be used as a soil amendment and, simultaneously, enables us to sequester carbon in the soil. By controlling the pyrolysis process, it is possible to engineer biochar suitable for the remediation of specific soil management problems. This research uses a characterization method more suited to producing biochar for soil amendment purposes than the existing biochar fuel characterization standards. This is the first research to use wastewater irrigated willow as a pyrolysis feedstock. The extensive characterization of biochar produced over a range of temperatures (410-810° C) yielded data on key properties relevant to soil under management: low surface area (1.4 to 5.4 m~2/g), low bulk density (0.15-0.18 g/cm~3), high pH values (7.8-9-4) and high water-holding capacity (1.8 to 43 cm~3/g). Extraction experiments demonstrated low bioavailability of char nutrients (N, P, K, Ca, and Mg). This research also studied this artificial nitrogen cycle of pyrolysis: nitrogen accumulated in the wood from the wastewater and high levels of nitrogen remained in the biochar in a stable form not directly available to plants.
机译:热解是一种能量转换技术通过加热有机材料的缺失氧气,产生的液体、气体和固体燃料产品。用作土壤改良剂,同时使我们在土壤固碳。控制热解过程中,它是可能的工程师生物炭适合修复特定的土壤管理问题。研究使用了一个描述方法适合生产生物炭对土壤改良剂比现有的生物炭燃料的目的描述的标准。研究使用废水灌溉柳树作为裂解原料。表征生物炭的生产范围温度(410 - 810°C)取得了关键的数据有关土壤属性管理:低面积(1.4到5.4 m ~ 2 / g),较低的体积密度(0.15 - -0.18克/厘米~ 3),高(7.8蓝鸟队)和pH值高持水(1.8 - 43厘米~ 3 / g)。提取实验表明低生物利用度的char养分(氮、磷、钾、钙、和Mg)。人工热解氮循环:氮从废水和积累在树林里高水平的氮仍在生物炭在一个稳定的形成没有直接可用植物。

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