[1] 宋兴诚.锡冶金[M].北京:冶金工业出版社, 2011:1.?
[2]Song X C.Tin metallurgy[M]. Metallurgical industry press, 2011:1.
[3]黄位森.锡 [M].北京:冶金工业出版社, 2001:1?
[4]Huang W S.Tin[M]. BeiJing: Metallurgical industry press, 2001:1.?
[5]王伟.来冶锡系统中砷的行为和分布的研究[J].大众科技, 2012, -(1):146-148
[6]Wang W.Study on the Behavior and Distribution of Arsenic in Tin Smelting Process in Laibin Smeltery[J]. Popular Science & Technology, 2012(1):146-148[J].Popular Science & Technology, 2012, -(1):146-148
[7] 郭学益, 田庆华.高纯金属材料[M].北京:冶金工业出版社, 2010: 1-5.
[8]Guo X Y, Tian Q H.High-purity metal materials[M]. BeiJing: Metallurgical industry press, 2010: 1-5.
[9] 罗祥海.真空炉在锡精炼应用的探索[J].大众科技.2012, -(1):107-108[J].大众科技, 2012, -(1):107-108
[10]Luo X H.Application of Vacuum Furnace in Tin Refining process[J]. Popular Science & Technology, 2012, (1):107~108.[J].Popular Science & Technology, 2012, -(1):107-108
[11]森维,徐宝强,杨斌.真空碳热还原法制备碳化钛粉末[J].中国有色金属学报, 2011, 21(1):185-190
[12]Sen W, Xu B Q, Yang B.Preparation of TiC Powders by Carbothermal Reduction Method in Vacuum[J].Transactions of Nonferrous Metals Society of China, 2011, 21(1):185-190
[13]Yuan H B, Yang B, Xu B Q.Aluminum Production by Carbothermo-chlorination Reduction of Alumina in Vacuum[J].Transactions of Nonferrous Metals Society of China, 2010, 20(8):1505-1510
[14]李亮,刘大春,杨斌,等.真空蒸馏铅阳极泥制备粗锑的研究[J].真空科学与技术学报, 2012, 32(4):301-305
[15]Li L, Liu D C, Yang B, et al.Extracting of Crude Antimony from Lead Anode Slime by Vacuum Distillation[J].Journal of Vacuum Science and Technology, 2012, 32(4):301-305
[16]李一夫, 王安祥, 杨斌等.粗锡真空蒸馏精炼的研究真空科学与技术学报[J].真空科学与技术学报, 2015, 35(3):334-337
[17]Li Y F, Wang A X, Yang B, et al.Refinement of Crude Tin by Vacuum Distillation on Industrial ScaleChinese Journal of Vacuum Science and Technology,2015,(3): 334-337[J].Chinese Journal of Vacuum Science and Technology, 2015, 35(3):334-337
[18]丘克强, 李晓勇, 戴永年.高砷焊锡真空蒸馏脱铅砷[J].中国有色金属学报, 1993, 3(4):30-33
[19]Qiu K Q, Li X Y, Dai Y N.Removal of Arsenic from High-Arsenic solder by Vacuum Distillation[J].Chinese Journal of nonferrous metals, 1993, 3(4):30-33
[20]杨斌、戴永年, 等.真空蒸馏分离锡锑合金的研究[J].昆明理工大学学报, 1998, 23(3):104-107
[21]Yang B, Dai Y N, et al.Study on separation of Tin-antimony alloy by vacuum distillation[J].Journal of Kunming University of Science and Technology, 1998, 23(3):104-107
[22] 张于轩.多响应问题的稳健性设计优化研究[D]. 天津.天津大学.硕士论文, 2004: 21-23.
[23]Zhang Y X.A Study on Robust Design Optimization for Multiple Response Problems[D].TianJin. Master Thesis of Tianjin University, 2004: 21-23.
[24]Bourquin J.Schmidli H,Hoogevest P. Leuenberger H. Comparison of artificial neural networks (ANN) with classical modelling techniques using different experimental designs and data from a galenical study on a solid dosage form[J].European Journal of Pharmaceutical Sciences, 1998(7): 287-300.[J].European Journal of Pharmaceutical Sciences, 1998, 6(4):287-300
[25]Kandimalla K.K.,Kanikkannan N,Singh MOptimization of a vehicle mixture for the transdermal delivery of melatonin using artificial neural networks and response surface method[J].Journal of Controlled Release, 1999, 61(1-2):71-82
[26] 杨静.玉米秸秆纤维素酶水解研究及响应曲面法优化[D].天津.天津大学硕士论文, 2007: 24-25.
[27]Yang J.Study on cellulase hydrolysis of corn stalk and optimization by Response Surface Methodology[D].TianJin. Master Thesis of Tianjin University, 2007: 24-25.
[28]Kima M.S.,Kima JS,You YH.Park HJ.,Lee S.,Park JS. Development and optimization of a novel oral controlled delivery system for tamsulosin hydrochloride using response surface methodology[J].International Journal of Pharmaceutics, 2007, 341(1-2):97-104
[29]张佼, 孙宝德, 饶群力, 陈刚, 葛爱景.高纯铝定向凝固中晶粒的生特性[J].上海交通大学学报, 2005, 39(11):1787-1791
[30]Zhang J, Sun B D, Rao Q L, Chen G, Ge A J.The Growth of High Purity Aluminum Grains during Directional Solidification[J].JOURNAL OF SHANGHAI JIAOTONG UNIVERSITY, 2005, 39(11):1787-1791
[31] Kubaschewski O, Aicock C B.冶金热化学[M].北京:冶金工业出版社, 1985:486- 505.
[32]Kubaschewski O, Aicock C B.Metallurgical thermochemistry[M]. BeiJing: Metallurgical industry press, 1985:486- 505.
[33] Lai Y B, Guo Z C, Huang H, Wang S, Zhang H Y.Lai Y, Guo Z, Huang H, et al. Synthesis of high tap density spherical micro-size silver particles by liquid-phase reduction using response surface methodology[J]. Journal of Materials Science Materials in Electronics, 2014, 25(4):1893-1900.[J].Journal of Materials Science Materials in Electronics, 2014, 25(4):1893-1900
[34] Rasoul K N, Fereshteh R.Using design of experiments in synthesis of ultra-fine copper particles by electrolysis[J]. Powder Technology, 2013, 237:165-171.[J].Powder Technology, 2013, 237(3):165-171
[35] Oktay C, Nevzat A, ?brahim A, G?khan T.Optimization of some parameters of stirred mill for ultra-fine grinding of refractory Au/Ag ores [J]. Powder Technology, 2011, 208:121-127.[J].Powder Technology, 2011, 208(1):121-127
[36] Ghadiri M, Vatanara A, Doroud D.Paromomycin loaded solid liquid nanoparticles: characterization of production parameters [J]. Biotechnology and Bioprocess Engineering, 2011, 16: 617-623.[J].Biotechnology and Bioprocess Engineering, 2011, 16(6):617-623
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