煤炭工程 ›› 2026, Vol. 58 ›› Issue (1): 43-48.doi: 10.11799/ce202601006

• 设计技术 • 上一篇    下一篇

含煤废水油-浊协同处理及资源化工艺优化

包 宇,李一龙,才振刚   

  1. 1. 中煤科工集团北京华宇工程有限公司,北京 100120

    2. 中工环境科技有限公司,北京 100080

  • 收稿日期:2025-03-07 修回日期:2025-05-07 出版日期:2026-01-12 发布日期:2026-03-04
  • 通讯作者: 包宇 E-mail:241746979@qq.com

Optimization of oil-turbidity co-treatment and resource recovery process for coal-bearing wastewater

  • Received:2025-03-07 Revised:2025-05-07 Online:2026-01-12 Published:2026-03-04

摘要:

针对含煤废水传统处理工艺中存在的固液分离效率低、化学药剂依赖性高及再生水回用率不足等问题,以选煤厂废水为研究对象,创新构建碳化硅陶瓷膜分离系统,通过表面改性及动态过滤方式强化陶瓷膜界面吸附-筛分协同作用机制,优化关键参数及工艺流程,耦合在线气水脉冲反冲技术,实现高效短流程废水资源化。工程实践表明:在进水COD、浊度、油类物质含量较大波动的工况下,系统稳定实现主要污染物SS、石油类、COD去除率大于97.5%,再生水回用率提升至97.6%,吨水运行成本降低61.8%。研究针对废水特点,提出基于陶瓷膜技术的高效短流程处理工艺,为废水资源化及工业近零排放提供新的技术路径。

关键词: 含煤废水, 陶瓷膜, 高浊含油废水, 再生水回用, 近零排放

Abstract:

At present, the traditional treatment process of coal-containing wastewater in mining areas is faced with technical bottlenecks such as low solid-liquid separation efficiency, high dependence on chemical agents, and insufficient reuse rate of regenerated water. This paper takes a typical coal preparation plant in a high-altitude mining area in Inner Mongolia as the research object, innovatively constructs a silicon carbide ceramic membrane separation system, and enhances the interface adsorption and sieving synergy mechanism of the ceramic membrane through surface modification and dynamic filtration. By optimizing key parameters and process flows and coupling online gas-water pulse backflushing technology, it achieves efficient and short-process wastewater resource utilization. Engineering practice shows that under the working conditions with large fluctuations in the content of COD, turbidity, and oil substances in the influent, the system stably realizes the removal rates of main pollutants SS, petroleum, and COD greater than 97.5%, and the reuse rate of regenerated water is increased to 97.6%, with the operation cost per ton of water reduced by 61.8%. This study, in response to the characteristics of wastewater in high-altitude mining areas, proposes an efficient and short-process treatment technology based on ceramic membrane technology, providing a new technical path for wastewater resource utilization and industrial near-zero discharge.

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