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采用区域熔炼法对高纯锌的制备进行了研究.估算了锌中主要杂质在锌熔点附近的平衡分配系数,分别为k(0,Fe)=474,K(0,Cu)=1.12,K(0,Cd)=0.15,K(0,Pb)=1.17×10(-2).通过参考Spim数学模型,分析了在区熔提纯中熔区长度对区熔提纯效率的影响,获得每次通过时的最优熔区长度,并考察了区熔次数、熔区长度对提纯效率的影响.通过辉光放电质谱仪对杂质进行分析,结果表明:在高纯氩气流动保护下,控制熔区移动速率为3 cm·h(-1),熔区长度为50 mm,区熔20次后,杂质总量从1.006μg·g(-1)降低到0.303μg·g(-1),纯度达到6N7(99.99997%).采用第1~6次为70~80mm,第7~10次为50~60mm,第11~20次为30~40mm的变化熔区长度,杂质总量可降低到0.216 μg·g(-1),即采用变化熔区比不变熔区的提纯效果好,产品锌的纯度为6N8(99.99998%),满足了半导体和光电材料的应用要求.

参考文献

[1] 黄根生;张小平 .CdZnTe晶片中的Zn组分的研究[J].红外与毫米波学报,1999,18(06):460.
[2] 介万奇.Ⅱ-Ⅵ族化合物晶体生长理论与技术[J].中国基础科学,2001(05):15-19.
[3] 徐鑫坤;王先黔;万倩 .用电解精炼法制取高纯锌的研究[J].有色金属(冶炼部分),1992,4:15.
[4] 王瑞恒,王子谦.高纯锌的生产[J].有色金属(冶炼部分),2001(02):39-41,44.
[5] Schumacher E E .Ultra-pure metals produced by zone-melting techique[J].Journal of Metals,1953,5(11):1428.
[6] 周智华,莫红兵,曾冬铭.电解精炼-区域熔炼法制备高纯铟的研究[J].稀有金属,2004(04):807-810.
[7] 郎书玲,张力,陈松,王力军.高纯钴制备工艺研究[J].稀有金属,2010(06):911-918.
[8] Pfann W G.Zone Melting[M].New York:John Wiley and Sons,Inc,1964:35.
[9] Pfann W G .Principles of zone-melting[J].Transactions of the AIME,1952,194:747.
[10] Prasad DS;Munirathnam NR;Rao JV;Prakash TL .Determination of effective distribution coefficient of impurities during zone refining of tellurium[J].International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics,2008(16):2583-2588.
[11] Zaiour A;Zahraman K;Roumie M;Charara J;Fawaz A;Lmai F;Hage-Ali M .Purification of tellurium to nearly 7N purity[J].Materials Science & Engineering, B. Solid-State Materials for Advanced Technology,2006(1/3):54-61.
[12] Davies L W .The efficiency of zone-refining processes[J].Transactions of the AIME,1959,215:672.
[13] Chii-Dong Ho;Ho-Ming Yeh;Tzuoo-Lun Yeh .Optimal zone lengths in multi-pass zone-refining processes[J].Scp Technol,1996,6:227.
[14] Chii-Dong Ho;Ho-Ming Yeh;Tzuoo-Lun Yeh .Numerical analysis on optimal zone lengths for each pass in multipass zone-refining process[J].Canadian Journal of Chemical Engineering,1998,76:113.
[15] Yeh H M;Yeh W H .The improving of separation in zone refining processes with zone length varied along the ingot[J].Separation Science and Technology,1979,14:795.
[16] Spim jr J A;Bernadou M J S;Garcia A .Numerical modeling and optimization of zone refining[J].Journal of Alloys and Compounds,2000,298:299.
[17] 王优,罗远辉,尹延西,江洪林,李文良,王力军.高纯锌制备技术[J].矿冶,2008(04):40-46.
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