| [1]郭 雷,张 硌,胡婵娟,等.我国矿井水管理现状分析及对策[J].煤炭学报, 2014, 39(12):484-489GUO Lei,ZHANG Luo,HU Chanjuan,et al.Status analysis and measures taken for mine water management in China[J].Journal of China Coal Society, 2014, 39(12):484-489[3]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[4]WU Qiang,SHEN Jianjun,WANG Yang.Mining techniques and engineering application for “Coal-Water”dual-resources mine[J].Journal of China Coal Society, 2017, 42(1):8-16[5]何绪文, 张晓航, 李福勤, 等.煤矿矿井水资源化综合利用体系与技术创新[J].煤炭科学技术, 2018, 46(09):4-11[6]HE Xuwen,ZHANG Xiaohang,LI Fuqin,et al.Comprehensive utilization system and technical innovation of coal mine water resources[J].Coal Science and Technology, 2018, 46(9):4-11[7]顾大钊, 李井峰, 曹志国, 等.我国煤矿矿井水保护利用发展战略与工程科技[J].煤炭学报, 2021, 46(10):3079-3089[8]GU D Z, LI J F, CAO Z G, et al.Technology and engineering development strategy of water protection and utilization of coal mine in China[J].Journal of China Coal Society, 2021, 46(10):3079-3089[9]马怡斋, 王海燕, 武亚凤, 等.黄河流域煤矿矿井水综合利用问题分析及管控建议[J].环境科学研究, 2024, 37(01):122-130[10]MA Zhaiji,WANG Haiyan,WU Yafen,et al.Status Analysis and Control Suggestions on Comprehensive Utilization of Mine Water in the Yellow River Basin[J].Research of Environmental Sciences, 2024, 37(01):122-130[11]张 雷,徐智敏,袁慧卿,等.深部开采高盐矿井水减排治理技术体系构建与实现[J].煤炭科学技术, 2023, 51(12):208-219[12]ZHANG Lei,XU Zhimin,YUAN Huiqing,et al.Construction and implementation of emission reduction and treatment technology system in deep mining of high salt mine water[J].Coal Science and Technology, 2023, 51(12):208-219[13]侯嫔,段书乐,范业承,等..矿井水井下-地面分级分质高效利用与智能调配技术[J].煤矿安全, 2021, 52(5):96-103[15]HOU Pin, DUAN Shule, FAN Yecheng, et al.Efficient utilization and intelligent allocation technology of mine water based on underground-surface and classification and quality[J].Safety in Coal Mines, 2021, 52(5):96-103[16]孟祥龙.基于井下水复用系统在煤矿应用的实例分析[J].煤炭科学技术, 2017, 45(S2):34-37[17]Meng Kongxiang.Case study on the application of underground water reuse system in coal mines[J].Coal Science and Technology, 2017, 45(S2):34-37[18]张春晖, 赵桂峰, 苏佩东, 等.基于“深地-井下-地面” 联动的煤矿矿井水处理利用模式初探[J].矿业科学学报, 2024, 9(1):1-12[19]ZHANG Chuihui, ZHAO Guifeng, SU Peidong, et al.Treatment and utilization of coal mine water based on “deep ground-underground-surface ground” linkage system[J].Journal of Mining Science and Technology, 2024, 9(1):1-12[20]李福勤, 王丛, 郑煚州, 等.煤矿矿井水处理技术现状与展望[J].工业水处理, 2024, 44(09):1-8[21]LI Fuqing,WANG Cun,ZHENG Jizhou, et al.Current situation and prospect of coal mine water treatment technology[J].Industrial Water Treatmen, 2024, 44(09):1-8[22]李福勤,豆硕超,高珊珊,等.多重混凝沉淀处理高悬浮物矿井水试验及应用[J].煤炭工程, 2023, 55(4):102-106[23]LI Fuqin1,DOU Shuochao1,GAO Shanshan,et al.Experiment and application of multiple coagulation and sedimentation treatment of mine water with high suspended solids[J].Coal Engineering, 2023, 55(4):102-106[24]杨建,王皓,王强民,等.蒙陕接壤区矿井水中典型污染组分特征及来源[J].煤炭学报, 2023, 48(4):1687-1696[25]YANG Jian,WANG Hao,WANG Qiangmin,et al.Characteristics and sources of typical pollution components in mine water in the border area of Inner Mongolia and Shaanxi[J].Journal of China Coal Society, 2023, 48(4):1687-1696[26]刘遵义, 李小亮.高矿化度矿井水处理技术应用现状[J].洁净煤技术, 2023, 29(S2):436-441[27]LIU Zunyi, LI Xiaoliang.Application status of mine water treatment technology with high salinity[J].Clean Coal Technology, 2023, 29(S2):436-441[28]雷兆武, 孙京敏, 张尊举, 等.高矿化度矿井水井下循环利用水质指标研究[J].煤炭工程, 2022, 54(6):128-131[29]LEI Zhaowu, SUN Jingmin, JIN Nisha, ,et al.Treatment experiment and process for underground utilization ofhigh salinity mine water [ J][J].Coal Engineering, 2022, 54(6):128-131[30]韦文术,, 张健恺,等.煤矿井下水处理反渗透膜的污染机理研究[J].煤炭科学技术, 2021, 49(4):103-110[31]WEI Wenshu,ZHANG Jeffery,ZHANG Jiankai,et al.Study on mechanism of reverse osmosis membrane pollution of water treatment in underground coal mine[J].Coal Science and Technology, 2021, 49(4):103-110[32]张溪彧, 董书宁, 王锐, 等.含悬浮物矿井水微絮凝-多级过滤工艺研究[J].水文地质工程地质, 2023, 50(05):222-230[33]ZHANG Xiyu, DONG Shuning, WANG Rui, et al.A study of the microflocculation-multistage filtration technology of mine water containing suspended solids[J].Hydrogeology & Engineering Geology, 2023, 50(5):222-230[34]雷兆武, 孙京敏, 金泥沙, 等.高矿化度矿井水井下利用处理实验与工艺研究[J].煤炭工程, 2023, 55(08):78-83[35]LEI Zhaowu, SUN Jingmin, JIN Nisha, et al.Treatment experiment and process for underground utilization ofhigh salinity mine water[J].Coal Engineering, 2023, 55(08):78-83[36]龙涛, 王珍, 杨玮, 等.高矿化度矿井水脱盐技术应用现状及研究进展[J].水处理技术, 2023, 49(05):11-16[37]等.Research Progress of High Salinity Mine Water Desalination Technology[J].Technology of Water Treatment, 2023, 49(05):11-16[38]袁增翔,索林娜.高矿化度矿井水超滤-反渗透脱盐试验研究[J].煤化工工, 2024, 52(05):109-113[39]YUAN Zengxiang, SUO Lengna.Experimental study on ultrafiltration-reverse osmosis desalination of highly mineralized mine water[J].Coal Chemical Industry, 2024, 52(05):109-113[40]武军杰.超滤-反渗透工艺在煤矿井下水处理工程中的应用[J].给水排水, 2023, 59(09):57-62[41]WU JJ.Applicationofultrafiltration-reverseosmosistechnologyincoalmineun- derground[J].Water& WastewaterEngineering, 2023, 59(09):57-62[43]陈 哲.大海则煤矿高盐矿井水综合处理关键技术研究与应用[J].煤炭工程, 2022, 54(1):29-33[44]CHEN Zhe.Key technology for comprehensive treatment of high-salt mine water in Dahaize Coal Min[J].Coal Engineering, 2022, 54(1):29-33[45]靳德武,葛光荣,张 全,等.高矿化度矿井水节能脱盐新技术[J].煤炭科学技术, 2018, 46(9):12-18[46]JIN Dewu,GE Guangrong,ZHANG Quan,et al.New energy-saving desalination technology of highly-mineralized mine water[J].Coal Science and Technology, 2018, 46(9):12-18[47]郭中权,毛维东,肖艳,等.矿井水处理中聚丙烯酰胺残留物对反渗透膜污染的贡献[J].煤炭学报, 2020, 45(S2):986-992[49]GUO Zhongquan,MAO Weidong,XIAO Yan,et al.Impact of polyacrylamide residue on reverse osmosis membrane fouling in mine water treatment[J].Journal of China Coal Society, 2020, 45(S2):986-992[50]周如林,刘 宗,赵中梅.反渗透膜前阻垢预处理工艺研究[J].煤炭科学技术, 2023, 51(4):239-245[51]ZHOU Rulin,LIU Zong,ZHAO Zhongmei.Study on pretreatment process of scale inhibition to reverse osmosis membrane[J].Coal Science and Technology, 2023, 51(4):239-245 |