欢迎登录材料期刊网

材料期刊网

高级检索

涡电流分选自20世纪70年代以来,共经历了5个发展阶段,目前已广泛应用于退役汽车破碎料等固体废弃物中有色金属的回收与再利用.目前,国内外对涡电流分选开展了深入研究,主要研究内容包括分选力模型、分选效率、细粒物料分选及计算机控制等4个方面.简述了报废汽车回收利用现状、破碎料分选流程及涡电流分选的重要作用,并对涡电流分选在上述4个方面的国内外研究进展及应用现状进行了总结;同时展望了涡电流分选的前景和未来发展的趋势.

参考文献

[1] 左志;方韦玮 .我国报废汽车未来十年将以年均20%速度增长[EB/OL].http://auto.gasgoo.com/News/2014/05/300747-15471560299206810.shtml,2014-05-30.
[2] 陈思.报废汽车的回收、拆解与再利用[J].汽车工艺与材料,2007(07):6-9.
[3] 吴兆仁,周自强,戴国洪.报废汽车车身破碎分选技术的发展现状[J].常熟理工学院学报,2012(10):15-17,22.
[4] W.L. Dalmijn;T.P.R. De Jong .The Development of Vehicle Recycling in Europe: Sorting, Shredding, and Separation[J].JOM,2007(11):52-56.
[5] 王春,江帆,区嘉洁.选矿技术在报废汽车回收中的应用[J].矿山机械,2008(18):5-9.
[6] Klempner D;Frisch K C;Pokorski B.Characterization of various ASR streams[A].Detroit,1999
[7] Seo Y C;Joung H T;Hong J H.Management of endof-life vehicles and characterization of automobile shredder residue in Korea[A].Detroit,2005
[8] 李明德.稀土永磁辊式涡电流分选机的研制[J].矿冶工程,1997(01):38.
[9] Rem P C;Leest P A;Van den Akker A J .A model for eddy current separation[J].Int J Mineral Processing,1997,49(3):193.
[10] Rem P.C.;Beunder E.M. .Simulation of eddy-current separators[J].IEEE Transactions on Magnetics,1998(4):2280-2286.
[11] Wilson R J;VeaseyTJ;Squires D M.选矿技术应用于回收消费遗弃废料中的金属[J].国外金属矿山,1994(11):975.
[12] Zhang S;Forssberg E;Arvidson B .The current status of eddy current separation[J].Erxmetall,1998,51(12):829.
[13] Settimo F;Bevilacqua P;Rem P .Eddy current separation of fine non-ferrous particles from bulk streams[J].Phys Separation Sci Eng,2004,13(1):15.
[14] Md. Abdur Rahman;M.C.M. Bakker .Sensor-based control in eddy current separation of incinerator bottom ash[J].Waste Management,2013(6):1418-1424.
[15] R. Meier-Staude;Z. Schlett;M. Lungu .A new possibility in Eddy-Current separation[J].Minerals Engineering,2002(4):287-291.
[16] M·卢古.永磁立鼓式旋涡电流分选机[J].国外金属矿选矿,2002(07):37-40.
[17] 魏以和 .涡流分选方法及其应用[J].化工矿物与加工,1994,23(4):53.
[18] 李兰生.永磁交变磁场涡流分选机用于二次资源回收[J].北京矿冶研究总院学报,1992(1):115.
[19] Zhang S;Forssberg E.Physical approaches to metals recycling from electronic scrap-part V (eddy current separationoverview,fundamentals and applications)[A].Lulea,Sweden:Lulea University of Technology,1997
[20] Zhang S;Forssberg E;Arvidson B et al.Separation mechanisms and criteria of a rotating eddy-current separator operation[J].Resources,Conservation Recycling,1999,25(3):215.
[21] Zhang S;Rem P C;Forssberg E .Particle trajectory simulation of two-drum eddy current separators[J].Resources,Conservation Recycling,1999,26(2):71.
[22] Rem P C.Eddy current separation[M].Delft:Eburon,1999
[23] Fraunholcz N;Rem P C;Haeser P .Dry magnus separation[J].Minerals Engineering,2002,15(1):45.
[24] Zhang S;Forssberg E;Arvidson B et al.An investigation of the parameters of rotating drum type eddy current separators[J].Scandinavian J Metall,1998,27(6):253.
[25] Zhang S;Forssberg E;Arvidson B et al.Aluminum recovery from electronic scrap by High-Force(R) eddy-current separators[J].Resources,Conservation Recycling,1998,23(4):225.
[26] Heinrich Schubert .On the separation criterion of eddy-current separation[J].AT: Aufbereitungs-Technik,2001(9):411-419.
[27] Roy S;Ari V;Konar J et al.Metal enrichment of finely ground electronic waste using eddy current separation[J].Separation Sci Techn,2012,47(12):1777.
[28] R. Kohnlechner;Z. Schlett;M. Lungu;C. Caizer .A new wet Eddy-current separator[J].Resources, Conservation and Recycling,2002(1):55-60.
[29] Schlett Z;Claici F;Mihalca I et al.A new static separator for metallic particles from metal-plastic mixtures,using eddy currents[J].Minerals Engineering,2002,15(1):111.
[30] Schlett Z;Lungu M .Eddy-current separator with inclined magnetic disc[J].Minerals Engineering,2002,15(5):365.
[31] Mihai Lungu;Peter Rem .Separation of small nonferrous particles using an inclined drum eddy-current separator with permanent magnets[J].IEEE Transactions on Magnetics,2002(3):1534-1538.
[32] M. Lungu .Separation of small nonferrous particles using an angular rotary drum eddy-current separator with permanent magnets[J].International Journal of Mineral Processing,2005(1):22-30.
[33] Mihai Lungu .Separation of small nonferrous particles using a two successive steps eddy-current separator with permanent magnets[J].International Journal of Mineral Processing,2009(2):172-178.
[34] Rem P C;Beunder E M;Kuilman W .Grade and recovery prediction for eddy current separation processes[J].Phys Separation Sci Eng,1998,9(2):83.
[35] Giuseppe Bonifazi;Andrea D'Addetta;Paolo Massacci .Classification by Neural Net of a Particle Stream in an Eddy Current Drum Separator[J].Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems,2002(2):96-102.
[36] 阮菊俊 .破碎废弃硒鼓、废旧冰箱箱体的涡流分选及工程应用[D].上海交通大学,2012.
[37] 张云雪.有色金属涡流分选机的特点与应用[J].再生资源与循环经济,2011(03):43-44.
[38] 孙云丽,段晨龙,左蔚然,刘昆仑,宋树磊.涡电流分选机理及应用[J].江苏环境科技,2007(02):40-42.
[39] 刘承帅,王晓明,刘方明.涡流分选原理及皮带式分选机的研制[J].有色设备,2009(01):4-7.
[40] 高凤芬.影响涡流分选机分选效果的几个因素[J].资源再生,2013(06):66-67.
[41] 陈建生,杨钢.涡流式非铁金属选别机[J].矿山机械,2006(01):74-75.
[42] 张洪建,王全强,宋振玲.废弃PCB中铝的涡电流分选研究[J].河北建筑科技学院学报,2005(04):12-15.
[43] 王全强,段晨龙,张洪建.涡电流操作参数对铝分选影响的研究[J].中国资源综合利用,2005(12):22-25.
[44] 周勇.PLC控制的ECS100型有色金属涡流分离专机系统[J].汽车零部件,2009(02):79-82.
[45] D. E. Walsh;J. A. Wernham;D. A. Norrgran .Eddy-current separator technology as a novel approach to Alaskan placer gold recovery[J].Minerals & Metallurgical Processing,2004(4):189-192.
[46] H·哈贝克,张兴仁,李长根.利用传感器拣选法分选含铝废料[J].国外金属矿选矿,2007(05):41-44.
[47] M.B. Mesina;T.P.R. de Jong;W.L. Dalmijn .Automatic sorting of scrap metals with a combined electromagnetic and dual energy X-ray transmission sensor[J].International Journal of Mineral Processing,2007(4):222-232.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%