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Effect of Wheat Straw Biochar on Thermophysical Properties of Loessial Soil

机译:小麦秸秆生物炭对背离土壤热物理性质的影响

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Soil thermophysical properties are the key factors affecting the internal heat balance of soil. In this paper, biochars (BC300, BC500 and BC700) were produced with wheat straw at the temperatures of 300, 500 and 700°, respectively. The effects of biochar amendment at the rates of 0%, 1%, 3%, and 5% on the thermophysical properties (thermal conductivity, heat capacity, and thermal diffusivity) of a loessial soil were investigated with and without water content respectively. Although the bulk density of soil significantly decreased with biochar amendment, due to enhancing soil porosity and organic matter content, the thermophysical properties of soil did not change largely with biochar amendment rate and pyrolysis temperature. Water content exhibited significant effects on the thermophysical properties of soils added with biochars, where the thermal conductivity and heat capacity of soil were linearly proportional to water content, the thermal diffusivity initially increased and then decreased with the increase of water content. In the meanwhile, there was no significant correlation between the biochar amendment rate or pyrolysis temperature and thermophysical properties. The results show that water content should be mainly concerned as a factor when the internal heat balance of loess soil is evaluated, even though the soil is amended with biochar.
机译:土壤热物理属性是影响土壤内部热平衡的关键因素。本文分别在300,500和700°的温度下用小麦秸秆生产Biochars(BC300,BC500和BC700)。在含水含量和没有水含量的情况下,研究了生物炭修正的生物炭修正案的率为0%,1%,3%和5%的热物理性质(导热,热容量和热扩散率)。尽管通过生物炭修正,土壤的堆积密度显着降低,但由于增强了土壤孔隙率和有机物质含量,但土壤的热理性质并未在很大程度上随生物炭修正率和热解温而变化。含水量对含有生物触盘添加的土壤的热理性质表现出显着影响,其中土壤的导热性和热容量与含水量线性成比例,热扩散率最初增加,然后随着水含量的增加而降低。同时,生物炭修正率或热解温和热神族之间没有显着的相关性。结果表明,含水量应主要涉及黄土土壤的内部热平衡,即使土壤均用生物炭修改。

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