[1] 武强, 申建军, 王洋. “煤-水”双资源型矿井开采技术方法与工程应用[J]. 煤炭学报, 2017, 42(1): 8-16.
[2] 刘建功. 煤矿低温热源利用技术研究与应用[J]. 煤炭科学技术, 2013, 41(4): 124-128.
[3] 罗景辉, 韩子辰, 熊楚超, 等. 赵固煤矿低温余热利用系统优化设计[J]. 煤炭工程, 2022, 54(2): 31-36.
[4] 刘小明, 张杰文, 刘怀江, 等. 基于热泵技术的煤矿清洁采暖及井下冷源配送技术在梅花井煤矿的应用[J]. 工矿自动化, 2021, 47(S1): 131-134.
[5] LUISA F, CABEZA, ARAN SOLE, et al. Review on sorption materials and technologies for heat pumps and thermal energy storage[J]. Renewable Energy, 2017, 110: 3-39. doi: 10.1016/j.renene.2016.09.059
[6] BAO T, LIU Z, MELDRUM J, et al. Field tests and multiphysics analysis of a flooded shaft for geothermal applications with mine water[J/OL][J]. Energy Conversion and Management, 2018, 169: 174-185. doi: 10.1016/j.enconman.2018.05.065
[7] ALAN M. JESSOP, JACK K. MACDONALD, HOWARD SPENCE. Clean Energy from Abandoned Mine at Springhill, Nova Scotia[J]. Energy Sources, Taylor& Francis, 1995, 17(1): 93-106.
[8] BANKS D, ATHRESH A, AL-HABAIBEH A, et al. Water from abandoned mines as a heat source: practical experiences of open- and closed-loop strategies, United Kingdom[J]. Sustainable Water Resources Management, 2019, 5(1): 29-50. doi: 10.1007/s40899-017-0094-7
[9] ANDRES C, ORDONEZ A, ÁLVAREZ R. Hydraulic and Thermal Modelling of an Underground Mining Reservoir[J/OL][J]. Mine Water and the Environment, 2017, 36(1): 24-33. doi: 10.1007/s10230-015-0365-1
[10] BURNSIDE N M, BANKS D, BOYCE A J, et al. Hydrochemistry and stable isotopes as tools for understanding the sustainability of minewater geothermal energy production from a ‘standing column’ heat pump system: Markham Colliery, Bolsover, Derbyshire, UK[J/OL][J]. International Journal of Coal Geology, 2016, 165: 223-230. doi: 10.1016/j.coal.2016.08.021
[11] 孙亚军, 徐智敏等. 我国煤矿区矿井水污染问题及防控技术体系构建[J]. 煤田地质与勘探, 2021, 49(5): 1-16.
[12] 孙亚军, 陈歌, 徐智敏等. 我国煤矿区水环境现状及矿井水处理利用研究进展[J]. 煤炭学报, 2020, 45(1): 304-316.
[13] 潘俊, 宋佳蓉, 叶梦星. 地下水源热泵铁锰化学堵塞试验[J]. 沈阳建筑大学学报(自然科学版), 2017, 33(5): 953-960.
[14] PAVELIC P, VANDERZALM J, DILLON P, et al. Assessment of the potential for well clogging associated with salt water interception and deep injection at chowila, SA(R). Final report to department of water, Land: Biodiversity and Conservation, 2007.
[15] 李璐, 卢文喜, 杜新强等. 人工回灌过程中含水层堵塞试验研究[J]. 人民黄河, 2010, 32(6): 77-78.
[16] 毕海洋, 端木琳, 朱颖心. 直流式水源利用中要解决的关键问题和研究进展[J]. 暖通空调, 2007, 200(7): 27-30.
[17] 吴涛. 我国废弃煤矿矿井水的分布及开发利用方向探讨[J]. 煤炭与化工, 2020, 43(1): 49-53.
[18] 李福勤, 高珊珊, 薛甜丽等. 煤矿酸性矿井水处理技术研究进展[C]//. 2021年全国能源环境保护技术论坛论文集. 2021: 51-56.
[19] HULL, E J. ZODROW, K. R. Acid rock drainage treatment using membrane distillation: impacts of chemical-free pretreatment on scale formation, pore wetting, and product water quality[J]. Environmental Science and Technology, 2017, 51: 20,11928-11934.
[20] PRASAD B, KUMAR H. Treatment of acid mine drainage using a fly ash zeolite column[J/OL][J]. Mine Water and the Environment, 2016, 35(4): 553-557. doi: 10.1007/s10230-015-0373-1
[21] 冯启言, 周来. 废弃矿井地下水污染风险评价与控制[M]. 北京: 中国环境出版社, 2015.
[22] 范泽文, 和丽萍, 徐西蒙等. 煤矿酸性矿井水中Fe~(2+)处理试验研究[J]. 洁净煤术, 2014, 20(4): 103-105.
[23] 郑彭生, 杨建超, 郭中权等. 酸性矿井水中和-絮凝沉淀除铁试验研究[J]. 能源环境保护, 2019, 33(5): 36-38.
[24] LI X Y, LOGAN B E. Permeability of fractal aggregates[J]. Water Research, 2001, 35(14): 3373-3380. doi: 10.1016/S0043-1354(01)00061-6