参考文献
[1]陈达平.贵金属回收工艺学.北京:中国金融出版社,1991:156-164.
[2]谭庆麟,阙震寰.铂族金属性质冶金材料应用.北京:冶金工业出版,1990:193-196,264-315.
[3]吴瑞林.盐酸-过氧化氢封管分解法在贵金属及其合金与金属锆分析中的应用.分析试验室,1985,4(12):20.
[4]吴瑞林.电化溶解法在贵金属分析中的应用.贵金属,1986,7(1):50.
[5]余建民.关于铑铱的分离.贵金属,1993,14(2):59.
[6]刘时杰.铂族金属矿冶学.北京:冶金工业出版社,2001:290-300.
[7]陈家镛,杨守志,柯家骏.湿法冶金手册.北京:冶金工业出版社,2005:1351-1376.
[8]黎鼎鑫,王永录.贵金属提取与精炼.长沙:中南大学出版社,2003:569-603.
[9]王贵平,张令平,等,贵金属精炼工.金昌:金川集团有限公司精炼厂,2000:17-22.
[10]王永录,刘正华.金银及铂族金属再生回收.长沙:中南大学出版社,2005:445-450.
[11]杨天足.贵金属冶金及产品深加工.长沙:中南大学出版社,2005:394-401.
[12]陈景.铂族金属化学冶金理论与实践.昆明:云南科技出版社,1995:75-105.
[13]陈达平.贵金属回收工艺学.北京:中国金融出版社,1991:429-433.
[14]卢宜源,宾万达,等.贵金属冶金学.长沙:中南工业大学出版社,2003:299-302.
[15]余建民.贵金属萃取化学.第2版.北京:化学工业出版社,2010:397-426.
[16]Edwards R I Refining of the Platinum-group metals.J Metals,1976,28 (8):4-9.
[17]John E Barnes.Solvent Extraction Technology in the Acton Refinery.Chemistry and Industry,1982, 3:151-155.
[18]Flett D S.Solvent Extraction in Precious Metals Refining.Samping,Assaying and Refining of Precious Metals,IPMI,London,1982,10:13-16.
[19]Demopoulos G P.Solvent Extraction in Precious Metals Refining.J.Metals.1986,38 (6):13-17.
[20]Demopoulos G P.The Refining of Platinium Group Metals.CIM Bulletin.1989:82,923,165-171.
[21]Harris G B.A Review of Precious Metals Refining,17 th IPMI,USA,1993:6,12-16.
[22]Sudhir C.Dhara.The Application of Ion Exchangers in the Precious Metals Technology,17 th IPMI, USA,1993:6,12-16.
[23]浅野聪,平郡伸一,真锅善昭,等.CN 160924lA.2005-4-27.
[24]余建民,贺小塘,李奇伟,等.贵金属富集与精炼工艺中铜的分离方法.贵金属,2001,22(4):60.
[25]马荣骏.离子交换在湿法冶金中的应用.北京:冶金工业出版社.1991:196-276.
[26]张方宇,李庸华,张邦安,等.从废催化剂中回收铂族金属的方法.CN 1123843A.1996-6-5.
[27]张方宇,王海翔,姜东,等.从废重整催化剂中回收铂、铼、铝等金属的方法.CN 13427779A.2002-4-3.
[28]张方宇,曲志平,黄燕飞,等.从汽车尾气废催化剂中回收铂、钯、铑的方法.CN 1385545A.2002-12-18.
[29]陈小华,江群杰.固相萃取技术与应用.北京:科学工业出版社,2009.
[30]胡秋芬,杨项军,韦群燕.从碱性氰化液中固相萃取金的方法.CN 101255499A.2008-9-3.
[31]杨项军,陈景,韦群燕.用大孔树脂从碱性氰化液中固相萃取金的方法.CN 101603123A,2009-12-16.
[32]胡秋芬,徐炜然,范鹏.一种从碱性氰化液中萃取金的方法.CN 101538656A,2009-9-23.
[33]黄章杰,陈景,韦群燕.固相萃取钯的方法.CN 101020964A.2007-8-22.
[34]黄章杰,谢明进,陈景.2-乙基己基辛基硫醚树脂固相萃取钯的研究.无机化学学报,2009,25(9):1519-1525.
[35]黄锋,黄章杰.二苄基硫醚树脂对钯的固相萃取吸附性能研究.分析实验室,2010,29(1):119-122.
[36]罗勤慧.大环化学——主-客体化合物和超分子.北京:科学出版社,2009.
[37]Bradshaw J S,Kradowlak K E,Izatt R M,et al Chem,1990,27:347-349
[38]Bradshaw J S,Bruening R L,Kradowlak K E,et al Chem Commun,1988:812-814.
[39]Bruening M L,Mitchel D M,Bradshaw J S,et al.Chem,1991,63:21-24.
[40]Bruening R L,Tarbet B J.Anal Chem,1991,63:1014-1017.
[41]Craig Wright,Ronald L Bruening.The new superligTMresins:report on the first commercial precious metals refinery application,Precious metals recovery and refining,proceedings of a seminar of IP-MI,Scottsdale,Arizon,1989.
[42]Ronald L Bruening,Steven R Izatt,Griffin L David.Separation of Rh and/or Ir from concentrated precious and base metal matrices using superligTM1,Precious metals 1990,proceedings of the 14 th IPMI conforence and exhibition,San Diego,California.
[43]Bruening R L,Dale J B,Izatt N E,Young W.The application ofmolecular recognition technology (MRT) for the recovery gold and cyanide at primarymining operation,Hidden wealth,Johannesburg,South African Institute ofmining and metallurgy,1996:143-149.
[44]Bruening R L,Dale J B,et al.Selective extraction and recovery of gold,copper,and other base metals frommine leach cyanide solutions usingmolecular recognition technology (MRT),2004.
[45]Ezawa N,Izatt S R,et al,Extraction and recovery of precious metals from plating solutions usingmolecular recognition technology.Trans IMF,2000:238-242.
[46]Harmany Bateman.Micro PGM refinery for Harmonymines,2004.
[47]Izatt S R,Bruening R L,Dale J B.Precious Metals Refining Using Molecular Recognition Technology (MRT), 27th IPMI,2003,14-17th June Dorado,Puerto Rico.
[48]Black WH,Izatt S R,Dale J B,et al.The Application of Molecular Recognition Technology (MRT) in the Palladium Refining Process at Impala and Other Selected Commercial Application.30th IPMI, 10~13th June 2006,Las Vegas,Vevada,USA.
[49]Izatt R S,Bruening R L,et al.Commercial separation in the copper industry usingmolecular recognition technology (MRT),COM 2003,Vancouver,British Columbia,Canada,2003.
[50]余建民.贵金属萃取化学.第2版.北京:化学工业出版社,2010:426-436.
[51]Izatt S R,John Dale,Bruening R L.The Application of Molecular Recognition Technology (MRT) to Refining of Platinum and Ruthenium,31th IPMI,9-12th June 2007,Miami,Florida.
[52]Ichiishi S,Izatt S R,Bruening R L,et al.A Commercial MRT Process for Recovery and Purification of Rhodium from a Refinery Feed Stream Containing Platinum Group Metals (PGMs) and Base Metal Contaminants,24th IPMI,2000,Willianmsburg,Virginia.
[53]Steven R Izatt,Neil E Izatt,Ronald L Bruening,et al.A Commercial Molecular Recognition Technology (MRT) process for the recovery and purification of rhodium from a complex refinery feed stream. International Precious Metals Institute 33rd Annual Meeting,Orlando,Florida,U.S.A.13-16 June,2009.
[54]李卫民译.LS日光铜业公司精炼厂MRT工业脱铋车间.中国有色冶金,2008(1):1-5.
[55]谭春梅译.分子识别技术(MRT)在铜精炼中的应用-从铜电解液中除铋.中国有色冶金,2012,(5):1-7.
[56]李卫民译.分子识别技术在铋的脱除和回收中的新应用.中国有色冶金,2008(2):1-5,10.
[57]Izatt R S,Bruening,et al.Separation,Extraction and refining of cobalt and nickel from base metal feed streams usingmolecular recognition technology (MRT),Alta 2003,Nickel/cobalt-9,Conference,Perth,West Australia,2003.
[58]李卫民译.分子识别技术在铜工业应用中的最新进展.中国有色冶金,2007(4):1-6.
[59]李耀威,杨明珠,王芝元.分子识别技术在金属分离回收中的应用研究进展.安全与环境学报,2013,13(3):93-95.
[60]刘冬青.离子识别型杯芳烃的合成及性能研究[D].天津:天津大学,2006.
[61]赵冰.杂环修饰的杯[4]芳烃衍生物的合成及离子萃取性能的研究[D].天津:天津大学,2007.
[62]胡玲.基于硫杂杯芳的大环冠醚和非环多醚受体的合成及性质研究[D].济南:山东师范大学,2009.
[63]王艳华.带支链的氮、硫杂杯[4]芳烃衍生物的合成与性能[D].福州:福建师范大学,2010.
[64]李亮.杯芳烃的结构修饰及其在离子识别中的应用[D].扬州大学,2010.
[65]李春斌,岳玉莲,刘宝全,等.硫代杯-8-芳烃衍生物的合成及其对金属离子的选择性识别研究.有机化学,2011,30(6):819-823.
[66]李春斌,岳玉莲,王剑锋,等.硫代杯-6-芳烃衍生物从汽车尾气净化催化剂残渣中选择性识别贵金属离子的研究.化学学报,2011,69(22):2751-2754.
[67]李春斌,岳玉莲,刘宝全,等.硫代杯[8]芳烃二乙基乙酰胺及其合成方法和用途.CN 102140089 B.2013-5-12.
[68]肖成梁.硅基超分子识别材料制备、表征及其吸附发热元素铯和锶的基础特性研究[D],浙江大学,2011.
[69]张安运.一种降低硅基冠醚吸附剂溶解度的方法.CN 101075583A.2007-11-21.
[70]张安运.一种同时分离发热元素Cs和Sr的吸附剂及其制备方法和应用.CN 101058065A.2007-10-24.
[71]张安运.一种从高放废物分离元素Pd的方法.CN 101690853B.2011-10-19.
[72]张安运,肖成梁,柴之芳.硅基超分子识别材料在乏燃料后处理中的研究进展.化学进展,2011,23(7):1355-1365.
[73]张安运.一种从高放废物萃取分离元素钯的方法.CN 102629494A.2012-8-8.
[74]张安运.一种从高放废物分离元素钯和次锕系元素的方法.CN 102614683A.2012-8-1.
[75]张安运,张文文,戴荧.一种分离发热元素Cs的吸附剂及其制备方法和应用.CN 102935355A.2013-2-20.
[76]Steven R Izatt,John B Dale,Ronald L Bruening.Examples of Novel Commercial Precious Metal Separations and Recovery Using Molecular Recognition Technology (MRT). Symposium on Precious Metals Processing:Advances in Primary and Secondary Operations,Sponsored by SME,TMS and IPMI,Tucson,Arizona,U.S.A.3-6 October 2007.
[77]Steven R Izatt,David M Mansur,Toni Hughes,et al. Sustainable recovery of precious andminor metals from low-grade resources.International Precious Metals Institute 34th Annual Meeting.Tucson,Arizona.2010.
[78]Steven R Izatt,Jeff Tange,Ronald L Bruening,et al. Sustainable recycling of precious metals. International Precious Metals Institute 36th Annual Conference.Las Vegas,NV,2012.
[79]贺小塘,韩守礼,吴喜龙,等.分子识别技术在铂族金属分离提纯中的应用.贵金属,2010,31(1):53-56,59.
[80]贺小塘,吴喜龙,韩守礼,等.从Pd/C废料中回收钯及制备试剂PdCl2的新工艺.贵金属,2012,33(4):9-13.
[81]吴喜龙,赵雨,贺小塘,等.四甲基氯化铵沉淀法分离提纯铂和钯.有色金属(冶炼部分),2014(1):50-52.
[82]吴喜龙,龙赵雨,贺小塘,等.一种分离提纯铑的方法.CN 103343239A.2013-10-9.