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Over the past few decades, China′s uranium resource mining and metallurgy technology has undergone a development process from nothing to something, and from weak to strong. It has introduced trackless mining and "three-under" mining technologies, broken through surface heap leaching and underground heap leaching, innovated in-situ blasting leaching and bacterial heap leaching, practiced acid, alkaline and neutral in-situ leaching of uranium mining technologies, explored and improved borehole drilling, underground leaching methods and hydrometallurgical processes, built digital mines in Xinjiang and Inner Mongolia, verified the control of leaching area, the treatment and reuse of waste drilling mud, reverse osmosis treatment of waste liquids, and the groundwater remediation of decommissioned test mines, and implemented the rational mining and metallurgy of uranium-molybdenum and uranium-coal deposits, and explored the technology of extracting uranium from seawater. The new technologies and processes practiced in uranium resource mining and metallurgy have become the driving force for China′s natural uranium production. Looking to the future, China′s uranium resource mining and metallurgy industry is bound to innovate and create greater breakthroughs.
[1] 王海峰.原地浸出采铀技术发展与展望[R].北京:核工业北京化工冶金研究院,2025.
[2] 顾彦,徐曼曼.《中国核能发展报告(2025)》:全球核能发展迎来全面复兴,建议积极有序推进项目开发[Z/OL].(2025-04-27)[2025-08-01].http:∥www.xinhuanet.com/digital/20250427/23ffe7146363482e9fb851cfbb2acab9/c.html.
[3] SRIDHAR C N,THIRUMURUGAN M,SUBRAMANI T,et al.Global distribution and sources of uranium and fluoride in groundwater:A comprehensive review[J].Journal of Geochemical Exploration,2025:270.
[4] 王海峰,李建东,王清良,等.酸法地浸采铀矿山地下水修复技术应用与探讨[J].南华大学学报(自然科学版),2023,37(1):24-33.WANG Haifeng,LI Jiandong,WANG Qingliang,et al.Application and discussion on groundwater remediation technology of acid in-situ leaching uranium mine[J].Journal of University of South China:Science and Technology,2023,37(1):24-33.
[5] 中核集团.我国规模最大的天然铀产能项目成功生产出第一桶铀产品[Z/OL].(2025-07-12)[2025-08-01].http://www.xinhuanet.com/20250712/0e8dc0c019034df6b4506a48023ca932/c.html.
[6] 蔡煜琦,张金带,李子颖,等.中国铀矿成矿规律与百年勘查成果及新一轮找矿突破行动建议:《中国矿产地质志·铀矿卷》研编[J].地球学报,2025,46(1):52-68.CAI Yuqi,ZHANG Jindai,LI Ziying,et al.Metallogenic regularity,centennial exploration results of uranium deposits in China,and suggestions for a new round of prospecting:Research and compilation of “Geology of Mineral Resources of China·Uranium Deposits Volume”[J].Acta Geoscientica Sinica,2025,46(1):52-68.
[7] WANG H F,FENG F X,WANG S D.Exploitation des mines d′uranium chinoise et orientation du développement d′avenir[J].Congrès mondial sur l′exploitation de l′uranium,IAEA,Montpellier,France,1997.
[8] 中核铀业有限责任公司.地下1820米!我国在新疆塔里木盆地发现全球最深砂岩型工业铀矿化[Z].(2025-07-27).http://www.nea.gov.cn/20250727/35eb8f30ba794816a682372a3033f61e/c.html.
[9] 阙为民,王海峰,牛玉清,等.中国铀矿采冶技术发展与展望[J].中国工程科学,2008,10(3):44-53.QUE Weimin,WANG Haifeng,NIU Yuqing,et al.Development and prospect of China uranium mining and metallurgy[J].Strategic Study of CAE,2008,10(3):44-53.
[10] 孙占学,Fiaz Asghar,赵凯,等.中国铀矿采冶回顾与展望[J].有色金属(冶炼部分),2021(8):1-8.SUN Zhanxue,ASGHAR Fiaz,ZHAO Kai,et al.Review and prospect of uranium mining and metallurgy in China[J].Nonferrous Metals(Extractive Metallurgy),2021(8):1-8.
[11] 朱家华,欧阳建功.铀矿床“三下”开采试验采场地压和岩层移动观测研究[J].铀矿冶,1989,8(4):1-11.ZHU Jiahua,OUYANG Jiangong.Observation of ground pressure and rock movement in uranium mine under river and buildings[J].Uranium Mining and Metallurgy,1989,8(4):1-11.
[12] 谢国森,罗春梧,宋丽霞,等.棉花坑矿床破碎矿体深孔连续采矿工艺研究[J].铀矿冶,2022,41(4):394-400.XIE Guosen,LUO Chunwu,SONG Lixia,et al.Study on deep hole continuous mining technology of broken ore body in Mianhuakeng deposit[J].Uranium Mining and Metallurgy,2022,41(4):394-400.
[13] 秦旭忠,宋丽霞,李祖荣,等.棉花坑矿井采掘设备配置优化方案探讨[J].铀矿冶,2023,42(3):57-62.QIN Xuzhong,SONG Lixia,LI Zurong,et al.Discussion on optimization scheme of mining equipment allocation in Mianhuakeng mine[J].Uranium Mining and Metallurgy,2023,42(3):57-62.
[14] 李开文.我国铀矿露天开采的技术状况及发展方向[J].铀矿冶,1986,5(1):1-6.LI Kaiwen.Discussion on technical status and development direction of uranium open-pit mining in China[J].Uranium Mining and Metallurgy,1986,5(1):1-6.
[15] 乔允芝.浅谈中小型露天铀矿的生产建设[J].铀矿冶,1995,14(2):79-83.QIAO Yunzhi.About construction and production of middle and small uranium open-pit mines[J].Uranium Mining and Metallurgy,1995,14(2):79-83.
[16] 刘智勇,邵长亮,李宗瑾,等.460铀钼矿开采方案探讨[J].现代矿业,2015,31(7):25-27.LIU Zhiyong,SHAO Changliang,LI Zongjin,et al.Discussion on mining scheme of 460 uranium-molybdenum deposit[J].Modern Mining,2015,31(7):25-27.
[17] 雷明信,张群,冯张生.某露天开采铀矿床注浆帷幕防治水效果分析[J].铀矿冶,2021,40(4):294-299.LEI Mingxin,ZHANG Qun,FENG Zhangsheng.Analysis of the effect of water control on the curtain of a open-pit mining bed[J].Uranium Mining and Metallurgy,2021,40(4):294-299.
[18] 王海峰,易卫平,李羽,等.原地破碎浸出爆破粒度模拟系统的研制[J].金属矿山,1998,27(1):4-7.WANG Haifeng,YI Weiping,LI Yu,et al.Development of fragmentation simulation system used for crushing and leaching in site[J].Metal Mine,1998,27(1):4-7.
[19] 钟永明,谢国森,李凌波,等.我国原地爆破浸出采铀工艺技术研究与应用[J].中国矿业,2004,13(6):63-65.ZHONG Yongming,XIE Guosen,LI Lingbo,et al.The researching and applying state of stope leaching of uranium in China[J].China Mining Magazine,2004,13(6):63-65.
[20] 王海峰.原地浸出采铀技术与实践[M].北京:原子能出版社,1998:3-5.
[21] 王海峰,易卫平,余云珍,等.铀矿床地浸评价专家系统ESILU的研制[J].铀矿冶,1996,15(3):145-151.WANG Haifeng,YI Weiping,YU Yunzhen,et al.Development of expert system ESILU for evaluation of in-situ leaching uranium deposit[J].Uranium Mining and Metallurgy,1996,15(3):145-151.
[22] 王海峰,李建东,刘正邦,等.中国地浸采铀钻孔施工与成井技术研究进展[J].铀矿冶,2022,41(3):195-201.WANG Haifeng,LI Jiandong,LIU Zhengbang,et al.Research progress on drilling and well completion technology of in-situ leaching uranium in China[J].Uranium Mining and Metallurgy,2022,41(3):195-201.
[23] 张勇,黄群英,肖作学,等.填砾工艺在地浸钻孔施工中的应用[J].铀矿冶,2009,28(3):113-116.ZHANG Yong,HUANG Qunying,XIAO Zuoxue,et al.Application of gravel filling to completion of hole drilling for in-situ leaching[J].Uranium Mining and Metallurgy,2009,28(3):113-116.
[24] 胡柏石,刘国福,易卫平,等.矿层部位局部扩径是地浸井场提高钻孔涌水量的根本途径[J].铀矿冶,2000,19(4):222-227.HU Baishi,LIU Guofu,YI Weiping,et al.Local reaming at ore-bearing horizon is the fundamental way to increase water yield of drill holes in in-situ leaching well field[J].Uranium Mining and Metallurgy,2000,19(4):222-227.
[25] 王晓斌,王旨儒.采用裸孔切割技术提高地浸注液井注液能力:以某矿床23#采区为例[J].铀矿冶,2022,41(S1):15-18.WANG Xiaobin,WANG Zhiru.Improve injection capacity of injection well for in-situ leaching by bare hole cutting technology:A case study of 23# mining area of a deposit[J].Uranium Mining and Metallurgy,2022,41(S1):15-18.
[26] 张万亮,张勇,闫纪帆,等.可更换过滤器式地浸采铀钻孔施工技术[J].铀矿冶,2022,41(1):36-42.ZHANG Wanliang,ZHANG Yong,YAN Jifan,et al.Drilling technology of replaceable filter for in-situ leaching uranium mine[J].Uranium Mining and Metallurgy,2022,41(1):36-42.
[27] 李坡,周根茂,李召坤,等.地浸采铀水平井过滤器建造技术研究[J].铀矿冶,2022,41(3):215-223.LI Po,ZHOU Genmao,LI Zhaokun,et al.Filter construction technology of horizontal well for in-situ leaching of uranium[J].Uranium Mining and Metallurgy,2022,41(3):215-223.
[28] 易志刚,路乾乾,熊威,等.新疆某铀矿床钻井内置过滤器技术研究[J].铀矿冶,2020,39(1):6-10.YI Zhigang,LU Qianqian,XIONG Wei,et al.Research on built-in filter technology in a uranium deposit in Xinjiang [J].Uranium Mining and Metallurgy,2020,39(1):6-10.
[29] 王旨儒,陈梅芳,王春霞,等.地浸钻孔逆向注水泥浆试验研究[C]//中国核学会.中国核科学技术进展报告(第四卷):中国核学会2015年学术年会论文集:第1册.绵阳:[出版者不详],2015:55-64.
[30] 李召坤,胡柏石,李建华,等.逆向注浆工艺在超深地浸钻孔中的应用研究[J].铀矿冶,2020,39(3):179-190.LI Zhaokun,HU Baishi,LI Jianhua,et al.Application of reverse grouting technology in the deep well drilling on the ISL mine[J].Uranium Mining and Metallurgy,2020,39(3):179-190.
[31] 王西文.地浸采铀概述[J].铀矿开采,1996(1):1-12.WANG Xiwen.Overview of in-situ leaching uranium mining[J].Uranium Mining,1996(1):1-12.
[32] 李熙琪,史文革,孙贵胜,等.东北某铀矿床原地爆破松动浸出采铀[J].铀矿冶,2006,25(1):47-49.LI Xiqi,SHI Wenge,SUN Guisheng,et al.Leaching of uranium after in-place blasting out at a uranium deposit of northeast China[J].Uranium Mining and Metallurgy,2006,25(1):47-49.
[33] 张友澎,赵利信,王亚奴,等.高能气体致裂技术在低渗砂岩型铀矿地浸开采中的应用[J].铀矿冶,2024,43(3):1-8.ZHANG Youpeng,ZHAO Lixin,WANG Yanu,et al.Application of high energy gas fracturing technology in in-situ leaching of low-permeability sandstone uranium deposits[J].Uranium Mining and Metallurgy,2024,43(3):1-8.
[34] 王海峰,谭亚辉,杜运斌,等.原地浸出采铀井场工艺[M].北京:冶金工业出版社,2002.
[35] 王海峰.地浸采铀洗井工艺最新进展[R].北京:核工业北京化工冶金研究院,2024.
[36] 易志刚,李勇,哈杰提,等.超声波洗井在地浸采铀生产过程中的解堵应用研究[J].世界核地质科学,2022,39(1):139-147.YI Zhigang,LI Yong,HA Jieti,et al.Study on the application of ultrasonic well washing in the process of in-situ leaching uranium production[J].World Nuclear Geoscience,2022,39(1):139-147.
[37] 木拉德江,吉宏斌,阳晓宇.蒙其古尔矿床化学洗孔工艺优化及影响因素分析[C]//中国核学会.中国核科学技术进展报告(第六卷):中国核学会2019年学术年会论文集第2册.包头:[出版者不详],2019,165-180.
[38] 刘晓奎,张渤,闫纪帆,等.负压洗井工艺在地浸采铀矿山的应用[J].铀矿冶,2023,42(3):46-49.LIU Xiaokui,ZHANG Bo,YAN Jifan,et al.Application of negative pressure well washing technology at in-situ leaching uranium mines[J].Uranium Mining and Metallurgy,2023,42(3):46-49.
[39] 李熙琪,张勇,王海峰,等.新疆某矿床16号线矿体地浸钻孔洗井工艺[J].铀矿冶,2003,22(1):10-14.LI Xiqi,ZHANG Yong,WANG Haifeng,et al.Technology of drill hole and well cleaning for in-situ leaching on the 16th section line ore body[J].Uranium Mining and Metallurgy,2003,22(1):10-14.
[40] 江国平,霍建党,王海峰,等.内蒙古铀矿基地纳岭沟铀矿床地浸技术研究[R].北京:核工业北京化工冶金研究院,2014.
[41] 陈伟山,杨彦虎,曹永凯,等.“叠压供水”技术在地浸采铀设计中的应用研究[J].铀矿冶,2022,41(4):406-411.CHEN Weishan,YANG Yanhu,CAO Yongkai,et al.The application research of “additive pressure water supply” in design of in-situ leaching uranium[J].Uranium Mining and Metallurgy,2022,41(4):406-411.
[42] 彭方麒,宋建,李阳.地浸井场可移动模块化集控室的研制[J].铀矿冶,2018,37(4):268-272.PENG Fangqi,SONG Jian,LI Yang.Development of removable modular centralized control room at in-situ leaching mine [J].Uranium Mining and Metallurgy,2018,37(4):268-272.
[43] 成弘,刘乃忠.地浸铀矿山的“二次开发”:以通辽钱Ⅱ块铀矿床C1采区为例[C]//中国核学会.中国核科学技术进展报告(第四卷):中国核学会2015年学术年会论文集:第1册.绵阳:[出版者不详],2015:455-461.
[44] 桂增杰,赵瑾,韩杨琴.创新实干助力中核内蒙古矿业苏尼特左旗分公司提升天然铀生产效能[Z].呼和浩特:中核内蒙古矿业有限公司,2024.
[45] 郝以泽,徐丽文,赵涛.探采结合技术在蒙其古尔铀矿床P0线以西的应用[J].铀矿冶,2024,43(4):20-24.HAO Yize,XU Liwen,ZHAO Tao.Application on combination of exploration with mining in west of Mengqiguer uranium P0 prospecting line[J].Uranium Mining and Metallurgy,2024,43(4):20-24.
[46] 王海峰,叶善东.原地浸出采铀工程技术[M].北京:中国原子能出版传媒有限公司,2011:84-98
[47] 廖文胜,王立民,谭亚辉,等.酸法地浸中氧气作氧化剂的研究[R].北京:核工业北京化工冶金研究院,2007.
[48] 陈箭光,沈红伟,陈立,等.新疆某酸法地浸采铀矿山氧气氧化效果研究[J].铀矿冶,2022,41(S1):19-24.CHEN Jianguang,SHEN Hongwei,CHEN Li,et al.Study on oxygen oxidant in an acid in-situ leaching uranium mine in Xinjiang[J].Uranium Mining and Metallurgy,2022,41(S1):19-24.
[49] 胡凯光,王清良,刘迎九,等.381矿床地浸中细菌代替双氧水试验研究[J].铀矿开采,1998,22(3):12-23.HU Kaiguang,WANG Qingliang,LIU Yingjiu,et al.Experimental study on bacteria replacing hydrogen peroxide in in-situ leaching of 381 deposit[J].Uranium Mining,1998,22(3):12-23.
[50] 王清良,胡鄂明,李锦鹏,等.地浸采铀细菌浸出试验研究[J].矿冶工程,2010,30(4):5-8.WANG Qingliang,HU Eming,LI Jinpeng,et al.Experimental research on bacterial leaching in in-situ leaching mining of uranium[J].Mining and Metallurgical Engineering,2010,30(4):5-8.
[51] 蒋小辉,叶善东,陈国贞,等.新疆某高酸耗矿床碱法地浸生物采铀试验研究[J].中国矿业,2012,21(S1):301-305.JIANG Xiaohui,YE Shandong,CHEN Guozhen,et al.Alikaline in-situ leaching test of a high-acid-consumption uranium mineral deposit in Xinjiang[J].China Mining Magazine,2012,21(S1):301-305.
[52] 魏小辉,王清良,雷治武,等.细菌快速氧化新疆地浸采铀吸附尾液中Fe2+现场扩大试验研究[J].矿产保护与利用,2020,40(4):9-16.WEI Xiaohui,WANG Qingliang,LEI Zhiwu,et al.Expansion experimental study for rapid oxidation of Fe2+ in adsorption tail solution of in-situ uranium leaching by a bacteria in field in Xinjiang[J].Conservation and Utilization of Mineral Resources,2020,40(4):9-16.
[53] 蔡皛磊.打造中国方案第三代地浸采铀技术助力世界核能发展[N].中国核工业报,2017.
[54] 丁武,曾繁钢.国内首个地浸铀矿山远程管控中心在呼和浩特建成并投运[R].呼和浩特:中核内蒙古矿业有限公司,2021.
[55] 刘会武,刘永涛,师留印,等.混凝-絮凝改性过滤技术在沽源铀钼矿浸出矿浆中的应用研究[J].铀矿冶,2014,33(2):94-98.LIU Huiwu,LIU Yongtao,SHI Liuyin,et al.Application research on modified filtration of Guyuan uranmolybdatite leaching slurry by coagulation-flocculation technology[J].Uranium Mining and Metallurgy,2014,33(2):94-98.
[56] 李世俊,朱国明,桂增杰,等.淋萃流程在内蒙某地浸矿山的应用研究[J].铀矿冶,2019,38(4):273-278.LI Shijun,ZHU Guoming,GUI Zengjie,et al.Research on the application of Eluex process in a uranium mine in Inner Mongolia[J].Uranium Mining and Metallurgy,2019,38(4):273-278.
[57] 阙为民,陈祥标.地浸硝酸盐吸附淋洗试验研究[J].铀矿开采,1997,21(4):29-35.QUE Weimin,CHEN Xiangbiao.Experimental study on adsorption and elution of nitrate in in-situ leaching[J].Uranium Mining,1997,21(4):29-35.
[58] 刘乃忠,李喜龙,王坚朴,等.分布式原地浸出采铀工艺技术与关键设备[J].铀矿冶,2015,34(2):61-67.LIU Naizhong,LI Xilong,WANG Jianpu,et al.The distributed ISL mining uranium and its key equipment[J].Uranium Mining and Metallurgy,2015,34(2):61-67.
[59] 陈梅芳,阳奕汉,肖作学,等.CO2+O2地浸采铀饱和树脂酸化技术与应用[J].原子能科学技术,2019,53(4):618-623.CHEN Meifang,YANG Yihan,XIAO Zuoxue,et al.Technology and application of acidified saturated resin in CO2+O2 in-situ leach uranium mine[J].Atomic Energy Science and Technology,2019,53(4):618-623.
[60] 王前裕.浅谈509煤型铀矿床的开采特点[J].铀矿冶,1997,16(2):78-83.WANG Qianyu.Characteristics of mining uranium-bearing coal deposit in mine No.509[J].Uranium Mining and Metallurgy,1997,16(2):78-83.
[61] 欧阳建功.含铀煤的开采[J].铀矿冶,1982(3):1-6.OUYANG Jiangong.Mining of uranium-bearing coal[J].Uranium Mining and Metallurgy,1982(3):1-6.
[62] 夏子通,王玮,邹兆庄,等.铀、煤共生资源有序开采研究[J].铀矿地质,2019,35(3):187-192.XIA Zitong,WANG Wei,ZOU Zhaozhuang,et al.Technical study on mining sequence of uranium and coal resources[J].Uranium Geology,2019,35(3):187-192.
[63] 沈光银.460铀钼矿床综合回收初步研究[J].地质找矿论丛,2010,25(1):76-81.SHEN Guangyin.The initiative research on comprehensive recovery of uranium molybdenum deposit 460[J].Contributions to Geology and Mineral Resources Research,2010,25(1):76-81.
[64] 刘海洋,闫志国,户方远,等.某铀钼露天矿预裂爆破合理参数试验研究[J].铀矿冶,2019,38(4):244-247.LIU Haiyang,YAN Zhiguo,HU Fangyuan,et al.Study on the experiment for reasonable parameters of pre-splitting blasting in a uranium molybdenum open-pit mine[J].Uranium Mining and Metallurgy,2019,38(4):244-247.
[65] 闫志国.某铀钼露天矿分期开采技术研究[J].中国矿业,2012,21(S1):351-353.YAN Zhiguo.A uranium molybdenum open pit mining technology research stage[J].China Mining Magazine,2012,21(S1):351-353.
[66] 刘国生,王速,王家和,等.毛洋头铀矿床淋浸液萃取分离铀钼工艺技术研究[J].铀矿冶,2000,19(3):205-208.LIU Guosheng,WANG Su,WANG Jiahe,et al.Separating uranium from molybdenum in trickle leaching solution of Maoyangtou uranium deposit[J].Uranium Mining and Metallurgy,2000,19(3):205-208.
[67] 郭冀峰,薛建新,刘佳祥,等.多孔海水提铀吸附材料的应用研究与进展[J].化学工程,2025,53(6):39-45.GUO Jifeng,XUE Jianxin,LIU Jiaxiang,et al.Application research and progress of porous adsorbents for uranium extraction from seawater[J].Chemical Engineering,2025,53(6):39-45.
[68] 李璐琰,文君,胡胜,等.抗生物污损型海水提铀材料研究进展[J].核化学与放射化学,2022,44(3):299-312.LI Luyan,WEN Jun,HU Sheng,et al.Research progress of anti-biofouling materials for uranium extraction from seawater[J].Journal of Nuclear and Radiochemistry,2022,44(3):299-312.
[69] 宋艳,牛玉清,宿延涛,等.未来海水提铀的前景规划与展望[J].核化学与放射化学,2022,44(3):229-232.SONG Yan,NIU Yuqing,SU Yantao,et al.Future plan and prospect for uranium extraction from seawater[J].Journal of Nuclear and Radiochemistry,2022,44(3):229-232.
[70] 敖浚轩,徐晓,李玉娜,等.海水提铀研究进展[J].辐射研究与辐射工艺学报,2019,37(2):3-28.AO Junxuan,XU Xiao,LI Yuna,et al.Research progress of uranium extraction from seawater[J].Journal of Radiation Research and Radiation Processing,2019,37(2):3-28.
[71] 何宁宁,卢喜瑞,文君.超支化抗菌型海水提铀材料[J].核化学与放射化学,2022,44(1):90-99.HE Ningning,LU Xirui,WEN Jun.Hyperbranched modified antibacterial adsorbent for uranium extraction from seawater[J].Journal of Nuclear and Radiochemistry,2022,44(1):90-99.
[72] 白震媛,许恒斌,王君,等.海水提铀的最新进展[J].黑龙江大学自然科学学报,2020,37(1):61-70.BAI Zhenyuan,XU Hengbin,WANG Jun,et al.New development of uranium extraction from sea water[J].Journal of Natural Science of Heilongjiang University,2020,37(1):61-70.
[73] 严国泽,左彬,刘少卿,等.电容去离子海水提铀的机遇与挑战[J].物理化学学报,2025,41(4):28-45.YAN Guoze,ZUO Bin,LIU Shaoqing,et al.Opportunities and challenges of capacitive deionization for uranium extraction from seawater[J].Acta Physico-Chimica Sinica,2025,41(4):28-45.
[74] 付裕杰,于涛,叶剑华.赋能动力学色谱法快速海水提铀研究[J].核技术,2024,47(2):123-138.FU Yujie,YU Tao,YE Jianhua.Energy-endowed kinetic chromatographic columns for rapid uranium extraction from seawater[J].Nuclear Techniques,2024,47(2):123-138.
[75] 郭帅帅,陈锦路,金梁程龙,等.基于海水提铀的多孔芳香框架材料研究进展[J].化工进展,2023,42(3):1426-1436.GUO Shuaishuai,CHEN Jinlu,JIN Liangchenglong,et al.Research progress of porous aromatic frameworks based on uranium extraction from seawater[J].Chemical Industry and Engineering Progress,2023,42(3):1426-1436.
[76] 张越,刘佳鑫,马敬,等.金属有机骨架膜应用于海水提铀研究进展[J].化工学报,2025,76(5):2087-2100.ZHANG Yue,LIU Jiaxin,MA Jing,et al.Recent progress on metal-organic framework membranes towards uranium separation from seawater[J].CIESC Journal,2025,76(5):2087-2100.
[77] 郭冀峰,薛建新,刘佳祥,等.多孔海水提铀吸附材料的应用研究与进展[J].化学工程,2025,53(6):39-45.GUO Jifeng,XUE Jianxin,LIU Jiaxiang,et al.Application research and progress of porous adsorbents for uranium extraction from seawater[J].Chemical Engineering,2025,53(6):39-45.
[78] 李兆龙.海水提铀吸附剂的最近进展[J].海洋通报,1985,4(4):61-65.LI Zhaolong.Recent advances in adsorbents for uranium extraction from seawater[J].Marine Science Bulletin,1985,4(4):61-65.
[79] 李昊,文君,汪小琳.中国海水提铀研究进展[J].科学通报,2018,63(Z1):481-494.LI Hao,WEN Jun,WANG Xiaolin.Research advances on extracting uranium from seawater in China[J].Chinese Science Bulletin,2018,63(Z1):481-494.
[80] 冯健,何桂强,魏艳霞,等.海水提铀吸附材料研究进展[J].化工新型材料,2022,50(3):1-7.FENG Jian,HE Guiqiang,WEI Yanxia,et al.Research progress on adsorption material for U extraction from seawater[J].New Chemical Materials,2022,50(3):1-7.
[81] 蓝芳芳,李贤辉,杨阳.海水提铀技术研究进展与挑战[J].广东工业大学学报,2023,40(6):139-146.LAN Fangfang,LI Xianhui,YANG Yang.Research progress and challenges of uranium extraction technology from seawater[J].Journal of Guangdong University of Technology,2023,40(6):139-146.
[82] 李璐琰,文君,胡胜,等.抗生物污损型海水提铀材料研究进展[J].核化学与放射化学,2022,41(3):299-312.LI Luyan,WEN Jun,HU Sheng,et al.Research progress of anti-biofouling materials for uranium extraction from seawater[J].Journal of Nuclear and Radiochemistry,2022,41(3):299-312.
[83] 张克非,李怀展,汪云甲,等.太空采矿发展现状、机遇和挑战[J].中国矿业大学学报,2020,49(6):1025-1034.ZHANG Kefei,LI Huaizhan,WANG Yunjia,et al.Current status,opportunities and challenges of space mining[J].Journal of China University of Mining & Technology,2020,49(6):1025-1034.
[84] 欧阳自远,邹永廖,李春来,等.月球某些资源的开发利用前景[J].地球科学(中国地质大学学报),2002,27(5):498-503.OUYANG Ziyuan,ZOU Yongliao,LI Chunlai,et al.Prospect of exploration and utilization of some lunar resources[J].Earth Science(Journal of China University of Geosciences),2002,27(5):498-503.
[85] 徐乐昌,张钊,张国甫,等.广西某铀矿山露天采场及废石场的退役治理[J].铀矿冶,2012,31(3):158-161.XU Lechang,ZHANG Zhao,ZHANG Guofu,et al.Close-out of open pit and waste rock piles of a uranium mine in Guangxi of China[J].Uranium Mining and Metallurgy,2012,31(3):158-161.
[86] 施祖远.我国铀矿开采技术成就与发展对策[J].铀矿冶,2011,30(40):175-179.SHI Zuyuan.Achievements in uranium mining technique of China and its development countermeasures[J].Uranium Mining and Metallurgy,2011,30(40):175-179.
[87] 阮志龙,李喜龙,杨少武.反渗透工艺技术在CO2+O2地浸矿山的应用[C]//中国核学会.中国核科学技术进展报告(第三卷):中国核学会2013年学术年会论文集:第2册.哈尔滨:[出版者不详],2013:204-208.
[88] 徐乐昌,王红英,刘乃忠,等.CO2+O2地浸采铀工艺的废水处理方法[J].铀矿冶,2012,31(2):96-99.XU Lechang,WANG Hongying,LIU Naizhong,et al.Waste water treatment of CO2+O2 in-situ leaching uranium[J].Uranium Mining and Metallurgy,2012,31(2):96-99.
[89] 高险峰,李喜龙,张勇.地浸采铀废弃钻井液无害化处理工艺研究[J].铀矿冶,2017,36(4):273-278.GAO Xianfeng,LI Xilong,ZHANG Yong.Research on waste drilling fluid harmless disposal in ISL mining uranium[J].Uranium Mining and Metallurgy,2017,36(4):273-278.
[90] 梁其深,胡柏石,秦昊.地浸钻孔废旧泥浆净化处理工艺方法[J].铀矿冶,2016,35(1):16-20.LIANG Qishen,HU Baishi,QIN Hao.The process technology for purification treatment of waste mud from bore drilling in situ leaching[J].Uranium Mining and Metallurgy,2016,35(1):16-20.
[91] 崔裕禄,段柏山,费子琼.净化钻井液在地浸钻孔中应用[J].铀矿冶,2017,36(4):267-272.CUI Yulu,DUAN Baishan,FEI Ziqiong.Application of the purified drilling fluid in in-situ leaching drill hole[J].Uranium Mining and Metallurgy,2017,36(4):267-272.
[92] 毛鑫磊.地浸采铀矿山洗井废水除砂装置的研制与应用[J].铀矿冶,2024,43(2):80-83.MAO Xinlei.Development and application of a sand removal device for well washing wastewater in in-situ leaching uranium mine[J].Uranium Mining and Metallurgy,2024,43(2):80-83.
[93] 李喜龙,王海珍,蔚龙凤,等.地浸矿山风能增效蒸发装置的研究与应用[J].铀矿冶,2019,38(2):128-132.LI Xilong,WANG Haizhen,WEI Longfeng,et al.Research and application of wind energy for synergistic evaporator at in-situ leaching mine[J].Uranium Mining and Metallurgy,2019,38(2):128-132.
[94] 生态环境部,国家市场监督管理总局.铀矿冶辐射防护和辐射环境保护规定:GB 23727—2020[S].北京:中国环境科学出版社,2020.
[95] 王海峰.地浸采铀技术在我国应用中存在的问题[J].铀矿冶,2008,27(3):113-118.WANG Haifeng.The existing problems on in-situ leaching of uranium in China[J].Uranium Mining and Metallurgy,2008,27(3):113-118.
[96] 阙为民,王海峰,田时丰,等.我国地浸采铀研究现状与发展[J].铀矿冶,2005,24(3):113-117.QUE Weimin,WANG Haifeng,TIAN Shifeng,et al.Research status and development of in-situ leaching uranium techniques in China[J].Uranium Mining and Metallurgy,2005,24(3):113-117.
[97] 我国铀矿重大突破:开启新能源时代的新篇章[Z].地球天地,2025.
[98] 我国在新疆塔里木盆地发现全球最深砂岩型工业铀矿化!这究竟是什么?[Z].中国之声,2025.
[99] 中核集团.我国规模最大的天然铀产能项目成功生产出第一桶铀产品[Z].新华社新闻,2025.
Basic Information:
DOI:10.13426/j.cnki.yky.2025.08.02
China Classification Code:TD868
Citation Information:
[1]WANG Haifeng.Current Situation and Prospect of Uranium Resources Mining and Metallurgy Technology in China[J].Uranium Mining and Metallurgy,2026,45(01):10-22.DOI:10.13426/j.cnki.yky.2025.08.02.