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Utilization of gold-bearing and iron-rich pyrite cinder via a chlorination-volatilization process
作者姓名:Jian Ding  Pei-wei Han  Cui-cui L&#  Peng Qian  Shu-feng Ye  Yun-fa Chen
作者单位:State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China
基金项目:This work financially supported by the National Natural Science Foundation of China,the National High-Tech Research and Development Program of China,the Projects in the National Science & Technology Pillar Program during the 12th Five-year Plan Period
摘    要:The chlorination-volatilization process has been adopted to make full use of gold-bearing and iron-rich pyrite cinder. However, problems of low recovery rate, pulverization of pellets, and ring formation have been encountered during the industrialization of this process. The effects of various parameters on the volatilization rates of valuable metals and on the compressive strength of roasted pellets were investigated in this paper. The parameters include the CaCl2 dosage, heating temperature, and holding time. The results show that heating temperature is the most important parameter for the recovery of target metals. More CaCl2 was needed for the recovery of zinc than for the recovery of gold, silver, and lead. CaCl2 started to react with sulfides/SO2/SiO2 at temperatures below the melting point of CaCl2 to generate Cl2/HCl. Gaseous CaCl2 was formed at higher temperatures and could react with any of the components. The compressive strength of roasted CaCl2-bearing pellets first decreased slowly with increasing temperature at temperatures lower than 873 K, which could result in the pulverization of pellets during heating. Their compressive strength increased dramatically with increasing temperature at temperatures greater than 1273 K. Certain quantities of CaCl2 and Fe(Ⅱ) could improve the compressive strength of the roasted pellets; however, the addition of excessive CaCl2 decreased the compressive strength of pellets.

关 键 词:pyrite  cinder    gold    chlorination    oxidized  pellets    compressive  strength

Utilization of gold-bearing and iron-rich pyrite cinder via a chlorination–volatilization process
Jian Ding,Pei-wei Han,Cui-cui L&#,Peng Qian,Shu-feng Ye,Yun-fa Chen.Utilization of gold-bearing and iron-rich pyrite cinder via a chlorination-volatilization process[J].International Journal of Minerals,Metallurgy and Materials,2017,24(11):1241-1250.
Authors:Jian Ding  Pei-wei Han  Cui-cui Lü  Peng Qian  Shu-feng Ye  Yun-fa Chen
Institution:1. State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China;University of Chinese Academy of Sciences, Beijing 100049, China;2. State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China
Abstract:The chlorination-volatilization process has been adopted to make full use of gold-bearing and iron-rich pyrite cinder.However,problems of low recovery rate,pulverization of pellets,and ring formation have been encountered during the industrialization of this process.The effects of various parameters on the volatilization rates of valuable metals and on the compressive strength of roasted pellets were investigated in this paper.The parameters include the CaCl2 dosage,heating temperature,and holding time.The results show that heating temperature is the most important parameter for the recovery of target metals.More CaCI2 was needed for the recovery of zinc than for the recovery of gold,silver,and lead.CaCl2 started to react with sulfides/SO2/SiO2 at temperatures below the melting point of CaCl2 to generate Cl2/HCI.Gaseous CaCl2 was formed at higher temperatures and could react with any of the components.The compressive strength of roasted CaCl2-bearing pellets first decreased slowly with increasing temperature at temperatures lower than 873 K,which could result in the pulverization of pellets during heating.Their compressive strength increased dramatically with increasing temperature at temperatures greater than 1273 K.Certain quantities of CaCl2 and Fe(Ⅱ) could improve the compressive strength of the roasted pellets;however,the addition of excessive CaCl2 decreased the compressive strength of pellets.
Keywords:pyrite cinder  gold  chlorination  oxidized pellets  compressive strength
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