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Effect of in-situ aged and fresh biochar on soil hydraulic conditions and microbial C use under drought conditions

机译:原位老化和新鲜生物炭对干旱条件下土壤水力条件和微生物碳利用的影响

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摘要

Biochar (BC) amendments may be suitable to increase the ecosystems resistance to drought due to their positive effects on soil water retention and availability. We investigated the effect of BC in situ ageing on water availability and microbial parameters of a grassland soil. We used soil containing 13C labeled BC and determined its water holding capacity, microbial biomass and activity during a 3 months incubation under optimum and drought conditions. Our incubation experiment comprised three treatments: soil without BC (Control), soil containing aged BC (BCaged) and soil containing fresh BC (BCfresh), under optimum soil water (pF 1.8) and drought conditions (pF 3.5). Under optimum water as well as drought conditions, soils containing BC showed higher soil organic carbon (SOC) mineralization as compared to control soil. Moreover, BC effects on the soil water regime increase upon in situ aging. Native SOC mineralization increased most for soils containing BCaged. The BCaged led to improved C use under drought as compared to the other treatments. We conclude that BC addition to soils can ameliorate their water regime, especially under drought conditions. This beneficial effect of BC increases upon its aging, which also improved native substrate availability.
机译:生物炭(BC)修正案可能会对土壤水分保持和利用率产生积极影响,因此可能适合提高生态系统对干旱的抵抗力。我们调查了BC原位老化对草地土壤水分有效性和微生物参数的影响。我们使用含有 13 C标记的BC的土壤,并在最佳和干旱条件下孵育3个月后测定其持水量,微生物生物量和活性。我们的孵化实验包括三种处理:在最佳土壤水(pF 1.8)和干旱条件下(pF 3.5),不添加BC的土壤(对照),包含老化BC的土壤(BCaged)和包含新鲜BC的土壤(BCfresh)。在最佳水和干旱条件下,与对照土壤相比,含BC的土壤显示出更高的土壤有机碳(SOC)矿化度。此外,原位老化后,BC对土壤水分状况的影响增加。含有BCaged的土壤的原生SOC矿化增加最多。与其他处理相比,BCaged导致干旱条件下碳的使用得到改善。我们得出的结论是,向土壤中添加BC可以改善其水分状况,尤其是在干旱条件下。 BC的这种有益作用随其老化而增加,这也提高了天然底物的利用率。

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