生物炭对黄河中游采动地裂缝发育区土壤特性的修复试验研究
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作者单位:

1.中国电建集团西北勘测设计研究院有限公司, 陕西 西安 710065 ; 2.西安科技大学 地质与环境学院, 陕西 西安 710054

作者简介:

薛珺华(1983—),女,陕西宝鸡人,高级工程师,主要从事国土空间生态修复研究工作。

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中图分类号:

TD88

基金项目:

中国电建集团西北勘测设计研究院有限公司一般科技项目(XBY-YBKJ-2023-20)


Experimental Study on the Remediation of Soil Characteristics by Biochar in the Mining Ground Fissure Development Area in the Middle Reaches of the Yellow River
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Affiliation:

1.Power China Northwest Engineering Corporation Limit,Xi’an 710065 ,China ;2.College of Geology and Environment,Xi’an University of Science and Technology, Xi’an 710054 ,China

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    摘要:

    采动地裂缝损害周围土壤特性的修复是实现黄河中游采煤沉陷区生态修复和水土保持的重要内容和关键抓手。以陕北煤炭基地采动地裂缝发育区土壤为研究对象,通过野外采样、室内土培试验、对比分析等方法,研究并揭示了添加外源生物炭对采动地裂缝发育区土壤物理、化学、微生物特性的修复作用。研究结果表明:添加外源生物炭可以对采动地裂缝周围土壤物理、化学、微生物特性产生修复效应,其中生物炭对土壤微生物特性的改善最为显著,较修复前的最大改善幅度为84%;添加外源生物炭对采动地裂缝两侧水平距离20cm土壤物理、化学、微生物特性的修复作用最为明显;3%的外源生物炭添加量是修复改善采动地裂缝发育区土壤物理、化学、微生物特性的最佳添加量。

    Abstract:

    The restoration of soil characteristics around mining induced ground fissures is an important content and key to realize ecological restoration and soil and water conservation in coal mining subsidence areas in the middle reaches of the Yellow River. Taking the soil in the mining induced ground fissure development area of the coal base in northern Shaanxi as the research object, through field sampling, indoor soil culture test, comparative analysis and other methods, the remediation effect of adding exogenous biochar on the physical, chemical and microbial properties of the soil in the mining induced ground fissure development area was studied and revealed. The results show that the addition of exogenous biochar could repair the physical, chemical and microbial properties of the soil around the mining ground fissures, and the improvement of soil microbial properties is the most significant, with the maximum improvement of 84% compared with that before repair. The addition of exogenous biochar has the most obvious repair effect on the physical, chemical and microbial properties of the soil at a horizontal distance of 20cm on both sides of the mining ground fissure. The addition of 3% exogenous biochar is the best addition amount to repair and improve the physical, chemical and microbial properties of the soil in the mining induced ground fissure development area.

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薛珺华,宋世杰,李权,等.生物炭对黄河中游采动地裂缝发育区土壤特性的修复试验研究[J]. 绿色矿冶,2025,41(4):23-29,42.

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  • 在线发布日期: 2025-11-13
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