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…8. 工程科学学报,第40卷,第1期 (7):653 (彭玉林.永平铜矿硫精矿烧渣制备铁精矿的工艺与实践. 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Research on compre鄄 hensive utilization of low grade pyrite cinder in South Sichuan. Non鄄Metallic Mines, 2014, 37(6): 52 (黄阳, 王凡非, 王维清, 等. 川南低品位硫铁矿烧渣的综合 利用研究. 非金属矿, 2014, 37(6): 52) [29] Zhang G W, Xu Z, Li Y. Experimental study on the production of iron concentrate from arsenic鄄bearing pyrite cinder. Min Res Develop, 2013, 33(1): 34 (张广伟, 徐政, 李岩. 利用含砷硫酸渣生产铁精矿的实验 研究. 矿业研究与开发, 2013, 33(1): 34) [30] Li G B, Li Y J, Su Y. Experimental study of using pyrite slag as resource. Appl Chem Ind, 2013, 42(11): 2027 (李国斌, 李亚军, 苏毅. 硫铁矿焙烧渣资源化实验研究. 应 用化工, 2013, 42(11): 2027) [31] Dong F Z. Progress on research of utilizing pyrite cinder as raw materials for iron鄄making. Ind Miner Process, 2012(8): 41 (董风芝. 硫铁矿烧渣用作炼铁原料研究进展. 化工矿物与 加工, 2012(8): 41) [32] Tian X K, He B B, Yang C, et al. A Method of Selecting Iron from Low Grade of Pyrite Cinder: Chinese Patent, CN201010104577. 9. 2010鄄鄄06鄄鄄16 (田熙科, 何宾宾, 杨超, 等. 一种低品位硫酸渣选铁的方 法: 中国专利, CN201010104577. 9. 2010鄄鄄06鄄鄄16) [33] Yang B D, Jin W J, Liu D H. 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Bioleaching mechanism of Zn, Pb, In, Ag, Cd and As from Pb / Zn smelting slag by autotrophic bacteria. J Environ Manage, 2015, 159: 11 ·8·
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