ISSN 1000-3665 CN 11-2202/P

    生物炭添加对煤矸石基质的水分特性影响研究

    Effect of biochar addition on water properties of coal gangue matrix

    • 摘要: 高寒矿区大范围的煤炭开采导致地表植被、冻土层、水资源等的严重破坏,而矿区生态修复缺少必要的土壤资源。利用矿区煤矸石固废资源作为重构煤矸石基质主体材料,通过功能材料添加优化重构煤矸石基质的水力特性对于高寒矿区水源涵养与植被恢复具有重要意义。以生物炭为研究对象,分别在4个水平(0%、1%、2%、3%质量百分比)下进行土柱模拟入渗、蒸发试验,研究生物炭添加对煤矸石基质的水分特性影响。研究结果表明:不同生物炭添加水平下重构煤矸石基质的累计入渗量、湿润锋运移深度与时间均呈显著的幂函数关系;随生物炭添加量的增加,累计入渗量呈先增加后减小的趋势,2%生物炭添加处理的累计入渗量最高;湿润锋到达底部的时间、累计蒸发量均呈递减趋势,且累计蒸发量与时间的拟合曲线与Rose蒸发模型拟合度高;蒸发结束后剖面含水量表现为2%>1%>3%>0%,实验组比对照组的平均含水量分别高47%、55%、25%。研究表明生物炭添加2%水平的重构土壤具有良好的入渗、蒸发性能。结果可为高寒矿区以煤矸石为重构主体材料的土壤重构研究提供理论依据与技术支撑。

       

      Abstract: Large-scale coal mining in alpine mining regions has caused severe degradation of surface vegetation, permafrost layers and water resources, while ecological restoration efforts face critical shortages of natural soil materials. Utilizing coal gangue solid waste from mining areas as the primary substrate material for reconstructed coal gangue matrices with biochar amendments to optimize hydraulic properties is of great significance for water conservation and vegetation recovery in alpine mining regions. In this study, we investigated the effects of biochar addition at four levels (0%, 1%, 2%, and 3% by mass) on the moisture dynamics of coal gangue-based reconstructed soil through controlled soil column infiltration and evaporation experiments. The results demonstrated that cumulative infiltration and wetting front migration depth exhibited significant power-function relationships with time under all biochar treatments. With the increase of biochar addition, the cumulative infiltration increased first and then decreased, and the cumulative infiltration of 2% treatment was the highest. Both the time when the wetting front reached the bottom and cumulative evaporation decreased progressively with higher biochar content, and the evaporation dynamics were well described by the Rose model. After evaporation, the soil moisture content of each treatment was shown as 2%>1%>3%>0%, with the treatment groups retaining 47%, 55%, and 25% higher average water content, respectively, compared to the control. These findings indicate that the reconstructed soil with 2% biochar addition has good infiltration and evaporation performance. The results can provide theoretical basis and technical support for the soil reconstruction research with coal gangue-based soil reconstruction in alpine mining area.

       

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