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超声辅助碱浸铜冶炼烟灰中铜砷分离 被引量:10
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作者 姚瑛瑛 郭莉 +2 位作者 胡中求 全瞿 杜冬云 《化工学报》 EI CAS CSCD 北大核心 2018年第9期3983-3992,共10页
采用超声辅助Na_2S-NaOH浸取体系对铜冶炼烟灰进行研究,在NaOH、Na_2S与烟灰质量比0.4:1,液固比20:1,反应温度75℃,反应时间5 min,超声功率80 W,搅拌速率400 r·min^(-1)条件下,As浸出率为88.81%,Cu浸出率为0.025%,实现了Cu和As的... 采用超声辅助Na_2S-NaOH浸取体系对铜冶炼烟灰进行研究,在NaOH、Na_2S与烟灰质量比0.4:1,液固比20:1,反应温度75℃,反应时间5 min,超声功率80 W,搅拌速率400 r·min^(-1)条件下,As浸出率为88.81%,Cu浸出率为0.025%,实现了Cu和As的有效分离。采用该方法处理后,与单独碱浸相比,As浸出率提高9.21%,烟灰中As含量由0.85%降至0.58%,Cu含量由2.21%增至2.30%,且As浸出毒性浓度由12.66 mg·L^(-1)降至2.84mg·L^(-1),为烟灰的资源化利用创造了条件。超声辅助碱浸除砷动力学满足收缩核混合反应控制模型,表观活化能0.114 kJ·mol^(-1)。XRD、XPS和重金属形态分析结果表明,超声空化作用可使As(Ⅲ)氧化为As(Ⅴ),有利于As浸出,故超声过程强化有利于Cu和As在碱浸体系中的选择性分离。 展开更多
关键词 铜冶炼烟灰 超声波 选择性浸出 分离 动力学 界面 氧化
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Electro-reductive carboxylation of acyclic C(sp^(3))–C(sp^(3))bonds in aromatic hydrocarbons with CO_(2)
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作者 Chuan-Kun Ran quan qu +4 位作者 Yang-Yi Tao Yi-Fei Chen Li-Li Liao Jian-Heng Ye Da-Gang Yu 《Science China Chemistry》 SCIE EI CAS CSCD 2024年第10期3366-3372,共7页
Despite the recent advances in the selective functionalization of C–C bonds in specific substrates,cleavage and functionalization of C–C bonds in acyclic substrates,such as ethane derivatives,remains challenging.In ... Despite the recent advances in the selective functionalization of C–C bonds in specific substrates,cleavage and functionalization of C–C bonds in acyclic substrates,such as ethane derivatives,remains challenging.In contrast to the well-developed functionalization of one carbon fragment after C–C bond cleavage,herein,we report a novel electro-reductive carboxylation of C(sp^(3))–C(sp^(3))bond in multi-aryl ethanes with carbon dioxide(CO_(2))by utilizing both carbon fragments.Thus,this reaction exhibits an atom-,step-economic approach for the synthesis of carboxylic acids,fulfilling principal aspirations of organic synthesis.Moreover,this method features mild reaction conditions,broad substrate scope,and good functional group tolerance.Symmetric and asymmetric substrates bearing primary,secondary,or tertiary C(sp^(3))–C(sp^(3))bonds are all amenable to this strategy,enabling one or two structurally different carboxylic acids to be facilely constructed at the same time.Mechanistic investigations indicate that carbanions might be the key intermediates in this reaction,which could be captured by CO_(2)efficiently. 展开更多
关键词 carbon dioxide electrochemistry C(sp^(3))–C(sp^(3))bonds cleavage reductive carboxylation
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