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生物炭受堆肥与农家肥的影响。

Biochar affected by composting with farmyard manure.

出版信息

J Environ Qual. 2013 Jan-Feb;42(1):164-72. doi: 10.2134/jeq2012.0064.

Abstract

Biochar applications to soils can improve soil fertility by increasing the soil's cation exchange capacity (CEC) and nutrient retention. Because biochar amendment may occur with the applications of organic fertilizers, we tested to which extent composting with farmyard manure increases CEC and nutrient content of charcoal and gasification coke. Both types of biochar absorbed leachate generated during the composting process. As a result, the moisture content of gasification coke increased from 0.02 to 0.94 g g, and that of charcoal increased from 0.03 to 0.52 g g. With the leachate, the chars absorbed organic matter and nutrients, increasing contents of water-extractable organic carbon (gasification coke: from 0.09 to 7.00 g kg; charcoal: from 0.03 to 3.52 g kg), total soluble nitrogen (gasification coke: from not detected to 705.5 mg kg; charcoal: from 3.2 to 377.2 mg kg), plant-available phosphorus (gasification coke: from 351 to 635 mg kg; charcoal: from 44 to 190 mg kg), and plant-available potassium (gasification coke: from 6.0 to 15.3 g kg; charcoal: from 0.6 to 8.5 g kg). The potential CEC increased from 22.4 to 88.6 mmol kg for the gasification coke and from 20.8 to 39.0 mmol kg for the charcoal. There were little if any changes in the contents and patterns of benzene polycarboxylic acids of the biochars, suggesting that degradation of black carbon during the composting process was negligible. The surface area of the biochars declined during the composting process due to the clogging of micropores by sorbed compost-derived materials. Interactions with composting substrate thus enhance the nutrient loads but alter the surface properties of biochars.

摘要

生物炭施用于土壤可以通过增加土壤的阳离子交换能力 (CEC) 和养分保持能力来提高土壤肥力。由于生物炭改良可能与有机肥的应用同时发生,我们测试了堆肥过程中添加厩肥对生物炭的 CEC 和养分含量的影响。这两种类型的生物炭都吸收了堆肥过程中产生的渗滤液。结果,气化焦的含水量从 0.02 增加到 0.94 g/g,而木炭的含水量从 0.03 增加到 0.52 g/g。随着渗滤液的加入,炭吸收了有机物和养分,增加了水可提取有机碳的含量(气化焦:从 0.09 增加到 7.00 g/kg;木炭:从 0.03 增加到 3.52 g/kg)、总可溶性氮(气化焦:从未检出到 705.5 mg/kg;木炭:从 3.2 增加到 377.2 mg/kg)、有效磷(气化焦:从 351 增加到 635 mg/kg;木炭:从 44 增加到 190 mg/kg)和有效钾(气化焦:从 6.0 增加到 15.3 g/kg;木炭:从 0.6 增加到 8.5 g/kg)。气化焦的潜在 CEC 从 22.4 增加到 88.6 mmol/kg,木炭的潜在 CEC 从 20.8 增加到 39.0 mmol/kg。生物炭中苯多羧酸的含量和模式几乎没有变化,这表明在堆肥过程中,黑碳的降解可以忽略不计。由于被吸附的堆肥衍生材料堵塞了微孔,生物炭的表面积在堆肥过程中下降。因此,与堆肥基质的相互作用增强了养分负荷,但改变了生物炭的表面性质。

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