Basic theory and key technology of multi-source coal-based solid waste for green backfilling

被引:0
|
作者
Yang K. [1 ,2 ]
Zhao X. [1 ]
He X. [1 ]
Wei Z. [1 ]
机构
[1] State Key Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mine, Anhui University of Science and Technology, Huainan
[2] Institute of Energy, Hefei Comprehensive National Science Center, Anhui Provincial Energy Laboratory, Hefei
来源
关键词
coal power base; coal-based solid waste; collaborative utilization; green backfilling mining; industrial linkage;
D O I
10.13225/j.cnki.jccs.2022.0899
中图分类号
学科分类号
摘要
The large stock, large increment and low utilization rate of coal-based solid waste generated in coal mining, power generation, coal chemical industry and other industries have become a bottleneck restricting the green, low-carbon and high-quality development of the Ningdong base. Underground green backfilling is an effective way for harmless, resourceful and large-scale disposal and utilization of multi-source coal-based solid waste. Taking the Ningdong base as the pilot area, this paper analyzes the pollution risk, physicochemical properties and multiple attributes of multi-source coal-based solid waste, and systematically expounds the basic theory and technical system of coal-based solid waste for underground backfilling. The research shows that: ① The pollution and physicochemical properties of coal gangue, fly ash, desulfurization gypsum, etc. conform to the landfill standard (GB 18599—2020), and the content of some heavy metals in gasification slag, furnace bottom slag exceeds the screening value, and the potential pollution risk can be reduced by taking some technical measures. Multi-source coal-based solid wastes can be used for underground green backfilling. ② The basic theory of coal-based solid waste for underground backfilling includes the feasibility evaluation of green backfilling, the characteristics of backfilling materials from coal-based solid waste, the multi-field coupling mechanism between backfilling materials and the environment, and the multilayer three-dimensional backfilling mode. ③ The green backfilling technology system of multi-source coal-based solid waste mainly includes precise mining technology of coal gangue source reduction, integrating underground mining-separating-backfilling coordination technology, heavy metal adsorption and complex passivation technology for coal-based solid wastes, preparation technology of backfilling materials from multi-source coal-based solid waste, long-distance pipeline transportation technology of backfilling materials, intelligent monitoring technology of whole backfilling process, etc. ④ Finally, according to the geological conditions of the Renjiazhuang Mine in the Ningdong base, advanced borehole backfilling and low-level backfilling are proposed and implemented. The new multi-industry chain collaborative utilization mode of coal-based solid waste is prospected, which integrates the preparation of active powder, the research and development of high-value building materials, ecological restoration and treatment, and underground green backfilling. © 2022 China Coal Society. All rights reserved.
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页码:4201 / 4216
页数:15
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  • [1] WANG Zhihong, LIU Qiang, WANG Chong, Regional efficiency evaluation and development strategy of coal industry chain, Journal of China Coal Society, 37, 4, pp. 705-710, (2012)
  • [2] YANG Haorui, NING Shuzheng, DING Lian, Et al., Chinese coal industry status quo in new period and countermeasures study, Coal Geology of China, 33, pp. 44-48, (2021)
  • [3] ZHOU Keqing, GONG Kaili, ZHOU Qianqian, Et al., Estimating the feasibility of using industrial solid wastes as raw material for polyurethane composites with low fire hazards, Journal of Cleaner Production, 257, (2020)
  • [4] DHAL B, THATOI H N, DAS N N, Et al., Chemical and microbial remediation of hexavalent chromium from contaminated soil and mining/metallurgical solid waste: A review, Journal of Hazardous Materials, 250, pp. 272-291, (2013)
  • [5] GU Xiaowei, ZHANG Yannian, ZHANG Weifeng, Et al., Research status and prospect of high value building materials utilization of bulk industrial solid waste, Metal Mine, 51, 1, pp. 2-13, (2022)
  • [6] GUNNING Peter J, HILLS Colin D, CAREY Paula J., Production of lightweight aggregate from industrial waste and carbon dioxide, Waste Management, 10, 29, pp. 2722-2728, (2009)
  • [7] SUVOROVA O V, MANAKOVA N K, MAKAROV D V., Use of bulk industrial wastes in the production of glass foam materials, Glass Ceram, 77, pp. 384-389, (2021)
  • [8] LIU Jiangong, LI Xinwang, HE Tuan, Application status and prospect of backfill mining in Chinese coal mines, Journal of China Coal Society, 45, 1, pp. 141-150, (2020)
  • [9] YANG Ke, ZHAO Xinyuan, WEI Zhen, Et al., Development overview of paste backfill technology in China’s coal mines: A review, Environmental Science and Pollution Research, 28, 48, pp. 67957-67969, (2021)
  • [10] QIAN Minggao, XU Jialin, MIAO Xiexing, Green technique in coal mining, Journal of China University of Mining & Technolgy, 32, 4, pp. 5-10, (2003)