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实验室制备的黑碳(生物炭)的非生物和微生物氧化。

Abiotic and microbial oxidation of laboratory-produced black carbon (biochar).

机构信息

Department of Geological Sciences, University of Florida, Gainesville, Florida 32611-2120, USA.

出版信息

Environ Sci Technol. 2010 Feb 15;44(4):1295-301. doi: 10.1021/es903140c.

Abstract

Pyrogenic or "black" carbon is a soil and sediment component that may control pollutant migration. Biochar, black carbon made intentionally by biomass pyrolysis, is increasingly discussed as a possible soil amendment to increase fertility and sequester carbon. Though thought to be extremely refractory, it must degrade at some rate. Better understanding of the rates and factors controlling its remineralization in the environment is needed. Release of CO(2) was measured over 1 year from microbial and sterile incubations of biochars made from a range of biomass types and combustion conditions. Carbon release from abiotic incubations was 50-90% that of microbially inoculated incubations, and both generally decreased with increasing charring temperature. All biochars displayed log-linearly decreasing mineralization rates that, when modeled, were used to calculate 100 year C losses of 3-26% and biochar C half-lives on orders ranging from 10(2) to 10(7) years. Because biochar lability was found to be strongly controlled by the relative amount of a more aliphatic and volatile component, measurements of volatile weight content may be a convenient predictor of biochar C longevity. These results are of practical value to those considering biochar as a tool for soil remediation, amelioration, or atmospheric C sequestration.

摘要

热解或“黑”碳是土壤和沉积物的一个组成部分,可能控制污染物的迁移。生物炭是生物质热解有意产生的黑碳,作为一种可能的土壤改良剂,越来越多地被讨论用于增加肥力和固碳。虽然被认为是极其难降解的,但它必须以一定的速率降解。需要更好地了解其在环境中的再矿化的速率和控制因素。通过对微生物和无菌培养物的培养,测量了来自一系列生物质类型和燃烧条件下制成的生物炭的 CO(2)在 1 年内的释放情况。无生命培养物的碳释放量是微生物接种培养物的 50-90%,并且通常随着炭化温度的升高而降低。所有生物炭都表现出对数线性减少的矿化率,对其进行建模后,用于计算 100 年 C 损失率为 3-26%,生物炭 C 半衰期在 10(2)到 10(7)年之间。由于生物炭的可利用性被发现受到更具脂肪族和挥发性成分的相对含量的强烈控制,因此挥发性重量含量的测量可能是生物炭 C 耐久性的一个方便预测指标。这些结果对那些考虑将生物炭作为土壤修复、改良或大气 C 固存工具的人具有实际价值。

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