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首页> 外文期刊>European Journal of Soil Science >An incubation study on the stability and biological effects of pyrogenic and hydrothermal biochar in two soils.
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An incubation study on the stability and biological effects of pyrogenic and hydrothermal biochar in two soils.

机译:在两种土壤中热解和热液生物炭的稳定性和生物学效应的孵化研究。

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摘要

The success and feasibility of CO2-sequestration through incorporation of biochar into soils depends strongly on the long-term biochar stability and on the improvements of physical and microbial soil properties. In this study, the stability of two maize-derived biochars (from pyrolysis and hydrothermal carbonization) and of a compost-biochar mixture and their effects on microbial biomass and enzyme activity were determined in two soils during a 57-day incubation. Soil samples amended with biochar increased soil organic carbon (SOC) content by 20 or 40%. Samples amended with hydrothermal biochar showed the largest respiration rates and the largest increase in microbial and enzymatic activity compared with the untreated controls. Carbon and 13C mass balances showed that between 13 and 16% of the added hydrochar was mineralized within 8 weeks. In the arable soil, hydrochar additions greatly stimulated the degradation of SOC, thus inducing positive priming effects. The mineralization of pyrogenic biochar (pyrochar and a pyrochar-compost mixture) was significantly less (1.4-3%) and comparable to the SOC mineralization in the control soils.
机译:通过将生物炭掺入土壤中来隔离CO 2 的成功和可行性,在很大程度上取决于生物炭的长期稳定性以及土壤物理和微生物特性的改善。在这项研究中,在57天的孵育过程中,确定了两种土壤中两种玉米衍生的生物炭(热解和水热碳化)的稳定性以及堆肥生物炭混合物的稳定性及其对微生物生物量和酶活性的影响。用生物炭修正的土壤样品使土壤有机碳(SOC)含量增加了20%或40%。与未经处理的对照相比,用热液生物炭修正的样品显示最大的呼吸速率以及最大的微生物和酶活性增加。碳和 13 C的质量平衡表明,添加的碳氢化合物中有13%至16%在8周内矿化了。在耕地土壤中,添加水炭极大地促进了SOC的降解,从而产生了积极的引发作用。热生生物炭(焦炭和焦炭-堆肥混合物)的矿化作用明显减少(1.4-3%),与对照土壤中的SOC矿化作用相当。

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