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Characterization of an enriched biochar

机译:富生物炭的表征

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Carbonized materials are responsible for maintaining a high level of fertility and soil organic matter in soils such as the Amazonian Dark Earths, also known as Terra Preta. It is hypothesized that an enriched biochar, which will have long term stability similar to Terra Preta, can be synthesized by mixing biochars with manures, minerals and clays and heating the mixture at low temperatures. This treatment will promote bonding between the mineral and the organic phases, which may occur naturally after several years of aging in soil. This paper describes the characterization of an enriched biochar by a range of analytical methods. Examination of the enriched biochar showed that it has high concentrations of exchangeable cations, available phosphorus and high acid neutralizing capacity. Structural analysis of the enriched biochar reveals a microstructure that suggests that bonding has indeed occurred between the biochar and mineral phases. Using natural C-13 abundance and a two-pool exponential model, the half-life of enriched biochar-C was estimated to be 104 years in a clayey soil. (C) 2014 Elsevier B.V. All rights reserved.
机译:碳化材料负责在诸如亚马逊黑土(也称为Terra Preta)等土壤中维持高水平的肥力和土壤有机质。假设可以通过将生物炭与肥料,矿物质和粘土混合并在低温下加热混合物来合成具有类似于Terra Preta的长期稳定性的浓缩生物炭。这种处理将促进矿物相和有机相之间的结合,这在土壤中老化数年后可能自然发生。本文通过多种分析方法描述了富生物炭的表征。对浓缩生物炭的检查表明,它具有高浓度的可交换阳离子,有效磷和高酸中和能力。富集生物炭的结构分析显示出微观结构,表明生物炭和矿物相之间确实发生了键合。使用自然的C-13丰度和两池指数模型,估计在黏土中生物炭-C的半衰期为104年。 (C)2014 Elsevier B.V.保留所有权利。

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