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高校冶金工程实验室安全环保现状调查及管理对策 被引量:1
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作者 尚兴付 程功林 +1 位作者 陈建铭 尤静林 《实验室科学》 2022年第6期210-213,216,共5页
采用网络问卷调查的形式,调研了国内高校冶金工程实验室安全环保现状。提出了加强高校冶金工程实验室安全环保工作的对策。通过健全冶金工程相关实验室安全环保制度网、实行实验室安全风险分级管理、实施分层次的实验室安全教育、加强... 采用网络问卷调查的形式,调研了国内高校冶金工程实验室安全环保现状。提出了加强高校冶金工程实验室安全环保工作的对策。通过健全冶金工程相关实验室安全环保制度网、实行实验室安全风险分级管理、实施分层次的实验室安全教育、加强实验室的各级安全检查、完善安全环保设施和实验室安全文化建设、科学处置实验室产生的“三废”等一系列对策,为高校冶金工程实验室安全环保运行提供有力的保障。 展开更多
关键词 冶金工程 安全环保 管理对策
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Interfacial reactions of chalcopyrite in ammonia–ammonium chloride solution 被引量:4
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作者 Xiao-ming HUA Yong-fei ZHENG +5 位作者 Qian XU Xiong-gang LU Hong-wei CHENG Xing-li ZOU Qiu-shi SONG Zhi-qiang NING 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第3期556-566,共11页
The interfacial reactions of chalcopyrite in ammonia–ammonium chloride solution were investigated.The chalcopyrite surface was examined by scanning electron microscopy and X-ray photoelectron spectroscopy(XPS)techniq... The interfacial reactions of chalcopyrite in ammonia–ammonium chloride solution were investigated.The chalcopyrite surface was examined by scanning electron microscopy and X-ray photoelectron spectroscopy(XPS)techniques.It was found that interfacial passivation layers of chalcopyrite were formed from an iron oxide layer on top of a copper sulfide layer overlaying the bulk chalcopyrite,whereas CuFe1-xS2 or copper sulfides were formed via the preferential dissolution of Fe.The copper sulfide layer formed a new passivation layer,whereas the iron oxide layer peeled off spontaneously and partially from the chalcopyrite surface.The state of the copper sulfide layer was discussed after being deduced from the appearance of S2-,S22-,Sn2-,S0 and SO42-.A mechanism for the oxidation and passivation of chalcopyrite under different pH values and redox potentials was proposed.Accordingly,a model of the interfacial reaction on the chalcopyrite surface was constructed using a three-step reaction pathway,which demonstrated the formation and transformation of passivation layers under the present experimental conditions. 展开更多
关键词 CHALCOPYRITE interfacial reaction AMMONIA passivation layer oxidation mechanisms
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