长沙理工大学学报(自然科学版)
煤矸石路基填料中污染物的释放-迁移-抑制特性研究
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(长沙理工大学 交通运输工程学院,湖南 长沙 410114)

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通讯作者:

顾凡(1987—)(ORCID:0000-0002-3992-3545),男,教授,主要从事交通岩土方面的研究。 E-mail:fan.gu@csust.edu.cn

中图分类号:

U416.214

基金项目:

国家自然科学基金青年项目(52108400);长沙理工大学专业学位研究生“实践创新与创业能力提升计划”项目(CLSJCX22025)


Release-migration-solidification characteristics of pollutants in coal gangue as subgrade fill material
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(School of Traffic & Transportation Engineering, Changsha University of Science & Technology, Changsha 410114, China)

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    摘要:

    【目的】以煤矸石路基填料为研究对象,探究自然降雨作用下路基填料中重金属污染物的释放-迁移-抑制特性。【方法】通过室内试验确定了煤矸石填料的基本性能、煤矸石填料中重金属污染物种类和在自然降雨中重金属污染物的释放-迁移特性;基于多孔介质溶质迁移理论,建立了煤矸石路基填料污染物扩散数值模型,以预测污染物在长期降雨作用下对水土环境的影响;根据地聚物在不同掺量(质量分数)与不同养护龄期下对煤矸石填料中污染物的固化效果,探究地聚物对重金属污染物螯合作用的有效性,并与传统水泥的固化效果进行比较,综合评价了地聚物对煤矸石路基填料的抑制特性。【结果】煤矸石中的Pb、As重金属元素浸出浓度(质量浓度)均超出环境限值,分别是《地下水质量标准》中规定的Ⅲ类地下水限值的9.1倍和9.8倍;在降雨前期,煤矸石填料中各重金属污染物释放速率大且淋出量大;随后,释放速率缓慢减小直至稳定,累积释放量持续增大;随时间推移,重金属污染物向路基底部迁移;在掺入地聚物后,各重金属浸出浓度均低于环境标准限值。【结论】煤矸石路基填料中的重金属污染物对环境的影响具有持续性和长期性特点;随着地聚物掺量及养护龄期的增加,浸出液中重金属浓度(质量浓度)下降,直至远低于Ⅲ类水限值。地聚物的固化效果比水泥的更好,且在地聚物掺量为8%,养护龄期为14 d时,地聚物对污染物螯合效果为最佳。

    Abstract:

    [Purposes] This study uses coal gangue as subgrade fill material and explores the release-migration-solidification characteristics of heavy metal pollutants under the influence of natural rainfall. [Methods] Laboratory experiments were conducted to determine the basic properties of coal gangue fill material, identify the types of heavy metal pollutants, and investigate the release-migration characteristics of heavy metal pollutants during natural rainfall. Based on porous media solute transport theory, a numerical model was established to predict the impact of pollutants on the soil-water environment under extended rainfall. The solidification effects of geopolymers on pollutants in coal gangue fill material were examined at different mass fraction levels and curing ages. The effectiveness of geopolymers in chelating heavy metal pollutants in coal gangue fill material was explored. The solidification characteristics of geopolymer-solidified coal gangue fill material were comprehensively evaluated by comparing them against the cement solidification method. [Findings] The leaching mass concentrations of Pb and As heavy metal pollutants in coal gangue exceeded environmental limits, which were 9.1 times and 9.8 times greater than the Class Ⅲ groundwater limit in Standard for Groundwater Quality, respectively. In the early stages of rainfall, various heavy metal pollutants in coal gangue fill material exhibited rapid release rates and substantial leaching, followed by a gradual decrease in release rate until reaching a plateau, with cumulative release amount continuously increasing. Heavy metal pollutants migrated towards the bottom of the subgrade over time. After adding geopolymers, the leaching concentrations of all heavy metals were much lower than the required limit in the environmental standards. [Conclusions] Heavy metal pollutants in coal gangue as subgrade fill material exhibited persistent and long-term environmental impact. With increasing geopolymer content and curing age, the mass concentrations of heavy metals in the leachate significantly reduced and were much lower than the Class Ⅲ water limits. Compared to cement solidification, geopolymers demonstrated a superior solidification effect. The optimal solidification treatment of pollutants was recommended as the addition of 8% geopolymer with 14 curing days.

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蒋晨煜,杜倩卉,张军辉,等.煤矸石路基填料中污染物的释放-迁移-抑制特性研究[J].长沙理工大学学报(自然科学版),2024,21(6):66-76.
JIANG Chenyu, DU Qianhui, ZHANG Junhui, et al. Release-migration-solidification characteristics of pollutants in coal gangue as subgrade fill material[J]. Journal of Changsha University of Science & Technology (Natural Science),2024,21(6):66-76.

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  • 收稿日期:2023-11-27
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  • 在线发布日期: 2025-01-15
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