煤矸石粒径及配比对沙化土壤改良效果研究

Study on the effect of coal gangue particle size and ratio on desertified soil improvement

  • 摘要: 煤矸石是煤炭开采过程中产生的废物,同时也可以作为沙化土壤改良的原料。从入渗、蒸发等水分特征探讨了不同粒径(<2 mm、<1 mm、<0.5 mm)和矸土比例(1∶1、2∶1、1∶2)的煤矸石对沙化土壤改良的影响,旨在确定优质煤矸石粒径和矸土配比。结果表明,煤矸石的加入使混合土壤的质地由砂土变为砂质壤土。当煤矸石粒径减小时,水分入渗速率降低,而总孔隙度、饱和含水率、田间持水量和累计蒸发量增大;但当煤矸石粒径一定时,随着煤矸石含量的增加,入渗速率增加,累计蒸发量减少。Kostiakov入渗模型更适合作为混合土壤的入渗模型。双因素分析结果显示,在总孔隙度、饱和含水率和田间持水量等水分特征值方面,煤矸石粒径的影响更为显著,而在水分入渗蒸发方面,煤矸石矸土比例较粒径影响更为显著。研究为黄河流域中游沿岸沙化土壤的改良提供理论支持,有望降低改良成本、提高修复效果,为煤矸石的合理利用提供参考。

     

    Abstract: Coal gangue is a waste material produced during the coal mining process and can also serve as a raw material for the improvement of desertified soil. We investigated the impact of coal gangue with different particle sizes (<2 mm, <1 mm, <0.5 mm) and proportions (1∶1, 2∶1, 1∶2) on the amelioration of desertified soil by examining water characteristics such as infiltration and evaporation, aiming at determining the particle size and blending ratio of high-quality coal gangue. The results showed that the addition of coal gangue changed the texture of the mixed soil from sandy to sandy loam. As the particle size of coal gangue decreased, the water infiltration rate decreased, while the total porosity, saturated water content, field capacity, and cumulative evaporation volume increased. However, when the particle size of coal gangue was constant, the infiltration rate increased and the cumulative evaporation decreased with the increase of coal gangue content. The Kostiakov infiltration model was found to be more suitable as the infiltration model for the mixed soil. The results of the two-factor analysis indicated that the particle size of coal gangue had a more significant impact on water characteristic values such as total porosity, saturated water content, and field capacity, while the coal gangue-soil ratio had a more significant influence on water infiltration and evaporation than particle size. This study provides substantial theoretical support for the improvement of desertified soil along the middle reaches of the Yellow River Basin, and provides a reference for the rational utilization of coal gangue, which is expected to reduce the improvement cost and improve the restoration effect.

     

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