煤炭工程 ›› 2025, Vol. 57 ›› Issue (6): 180-188.doi: 10. 11799/ ce202506023

• 研究探讨 • 上一篇    下一篇

煤矸石山防渗复合材料的制备及性能研究

郭洋楠,王媛,吴豪楠,等   

  1. 1. 国能神东煤炭集团有限责任公司,陕西 神木 719315

    2. 国能神东煤炭矿业服务公司,陕西 神木 719315

    3. 中国矿业大学(北京),北京 100083

  • 收稿日期:2024-07-17 修回日期:2025-01-23 出版日期:2025-06-11 发布日期:2025-07-15
  • 通讯作者: 张凯 E-mail:zhangkai@cumtb.edu.cn

Preparation and performance of anti-seepage composite materials for waste dump

  • Received:2024-07-17 Revised:2025-01-23 Online:2025-06-11 Published:2025-07-15

摘要:

长期堆积的煤矸石在风化雨水侵蚀的作用下会形成含铅、铬等重金属的酸性煤矸石淋滤液,如果底部不做防渗处理,会严重污染矿区土壤和地下水环境。为解决此问题,以膨润土、粉煤灰、粉土为原料,添加聚丙烯酸钠制备膨润土-粉煤灰-粉土-聚丙烯酸钠复合防渗材料(BFS),并对其防渗性能进行研究。研究结果发现在膨润土-粉煤灰混合的基础上添加粉土和聚丙烯酸钠进行四因素交互实验,基于响应面Central Composite试验方法获得的膨润土、粉煤灰、粉土以及聚丙烯酸钠的掺量的质量最优配比为:65∶35∶37.5∶4,在此比例下BFS的渗透系数为1.35×10-8cm/s,阳离子交换量为54.09cmol+/g,自由膨胀系数为8.55mL/2g,满足防渗性能要求。BFS的研制充分利用粉煤灰和聚丙烯酸钠的优势,对于降低采煤沉陷区复垦的成本,增加粉煤灰和膨润土的综合利用途径和利用率具有一定的现实意义;同时为煤矸石填埋场防渗层的设计、应用和效果评价提供理论支撑。

关键词:

绿色矿山 , 矸石山 , 膨润土 , 防渗材料 , 渗透系数 , 聚丙烯酸钠

Abstract:

The long-term accumulation of coal gangue will form acidic coal gangue leachate containing heavy metals such as lead and chromium under the erosion of weathering rainwater, seriously polluting the soil and groundwater environment of the mining area. This study used bentonite, fly ash, and fly ash as raw materials, and added sodium polyacrylate to prepare bentonite fly ash fly ash sodium polyacrylate composite anti-seepage material (BFS), and investigated its anti-seepage performance.The research results found that a four factor interaction experiment was conducted by adding fly ash and sodium polyacrylate to the mixture of bentonite and fly ash. The optimal mass ratio of bentonite, fly ash, fly ash, and sodium polyacrylate obtained based on the response surface Central Composite test method was 65:35:37.5:4. At this ratio, the permeability coefficient of BFS was 1.35 × 10-8 cm/s, the cation exchange rate was 54.09 cmol+/g, and the free expansion coefficient was 8.55 mL/2g, meeting the requirements of anti-seepage performance.The development of BFS fully utilizes the advantages of fly ash and sodium polyacrylate, which has practical significance in reducing the cost of reclamation in coal mining subsidence areas, increasing the comprehensive utilization path and utilization rate of fly ash and bentonite. At the same time, it provides theoretical support for the design, application, and effectiveness evaluation of the anti-seepage layer for coal gangue landfill sites.

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