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磷改性矸石基生物炭制备条件优化及其吸附性能表征

Optimization of preparation conditions for phosphorus-modified gangue-based biochar and characterization of its adsorption properties

  • 摘要: 伴随煤炭开采产生大量煤矸石固体废物,其高附加值利用是矿区大量固废处置与资源化的重要途径。微生物菌剂广泛用于矿区土壤改良,高效的微生物菌剂负载技术可显著提升其改良效果。为了开发基于煤矸石的微生物菌剂负载材料,采用微波活化脱碳-磷改性热解法制备了矸石基生物炭,通过碳损失率、比表面积(BET)、X射线光电子能谱(XPS)、Zeta电位等表征手段筛选并优化制备条件,以微生物菌剂负载量评估矸石基生物炭的吸附性能。结果表明:当热解温度为500 ℃、热解时间为4 h时,生物炭具有最大的比表面积和总孔体积,以及最小的平均孔径,性能最佳;添加沸石可使矸石基生物炭中秸秆碳损失率降低15.40%,Ca(H2PO4)2改性措施也显著降低了矸石基生物炭的碳损失率;以最佳热解条件制备的矸石基生物炭,对微生物的宏观吸附率为78.74%,PLFA生物标志物含量为388.622 nmol/g。利用微波活化脱碳-磷改性热解的方法制备的矸石基生物炭具有良好的吸附性能,在开发微生物负载材料、矿区土壤修复方面具有较大的应用潜力。

     

    Abstract: The high-value utilization of bulk coal gangue solid waste generated from coal mining is an important approach for the disposal and resource utilization of bulk solid waste in mining areas. Microbial agents are widely used for soil improvement in mining areas, and efficient microbial agent loading technology can significantly enhance their improvement effects. To develop coal gangue-based materials for microbial agent loading, this study prepared gangue-based biochar using microwave-activated decarbonization and phosphorus-modified pyrolysis. The preparation conditions were optimized by characterization methods including carbon fixation rate, BET specific surface area, XPS, and Zeta potential, and the adsorption performance of the gangue-based biochar was evaluated based on the microbial agent loading capacity. The results showed that at a pyrolysis temperature of 500 ℃ and a pyrolysis time of 4 h, the biochar achieved the maximum specific surface area and total pore volume, as well as the minimum average pore diameter, indicating optimal performance. Adding zeolite reduced the carbon loss rate of straw in the gangue-based biochar by 15.40%, and modification with Ca(H2PO4)2 also significantly decreased the carbon loss rate. The gangue-based biochar prepared under the optimal pyrolysis conditions exhibited a macroscopic adsorption rate of 78.74% for microorganisms and a PLFA biomarker content of 388.622 nmol/g. Therefore, the gangue-based biochar prepared by the microwave-activated decarbonization and phosphorus-modified pyrolysis method possesses good adsorption performance and holds relatively great application potential in the development of microbial loading materials and soil remediation in mining areas.

     

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