典型文献
Anodic process of stibnite in slurry electrolysis:The direct collision oxidation
文献摘要:
Mineral oxidation leaching in the anode area is the key step in slurry electrolysis.By adopting the slow linear potential scanning method during slurry electrolysis,this study investigated the steady-state polarization curve of a pure stibnite mineral on a graphite anode.In addition,the influence of the mineral particle size,liquid-solid ratio,stirring speed,and temperature on the collision oxidation of the mineral with the anode was studied.Based on the different oxidation reactions,the potential range can be divided into three intervals:the low-potential interval with a potential lower than 0.75 V,an intermediate-potential interval with a potential within 0.75-1.2 V,and a high-potential interval with a potential higher than 1.2 V.The collision oxidation of the mineral with the anode occurred in all three intervals.The oxi-dation of Sb(Ⅲ) also appeared in the intermediate-and high-potential intervals,and chlorine evolution occurred in the high-potential interval.Therefore,the low-potential interval was determined to be a suit-able potential interval for the slurry electrolysis process.In the low-potential interval,the particle size,liquid-solid ratio,and stirring speed had little effect on the oxidation rate of the minerals.As the temper-ature increased,the stibnite oxidation rate and exchange current density increased.Overall,the direct collision oxidation rate of stibnite was relatively low and the current densities under all the investigated conditions were lower than 0.4 mA.cm-2.This indicates that it is difficult to realize industrial production while relying solely on this process.
文献关键词:
中图分类号:
作者姓名:
Yonglu Zhang;Dingfan Qiu;Chengyan Wang;Yongqiang Chen;Zhichao Yao;Xiaowu Jie;Wei Gao;Shufeng Ruan
作者机构:
State Key Laboratory of Advanced Metallurgy,University of Science and Technology Beijing,Beijing 100083,China;School of Metallurgical and Ecological Engineering,University of Science and Technology Beijing,Beijing 100083,China;BGRIMM Technology Group,Beijing 100160,China
文献出处:
引用格式:
[1]Yonglu Zhang;Dingfan Qiu;Chengyan Wang;Yongqiang Chen;Zhichao Yao;Xiaowu Jie;Wei Gao;Shufeng Ruan-.Anodic process of stibnite in slurry electrolysis:The direct collision oxidation)[J].中国化学工程学报(英文版),2022(01):466-472
A类:
B类:
Anodic,process,stibnite,slurry,electrolysis,direct,collision,oxidation,Mineral,leaching,anode,area,key,step,By,adopting,slow,linear,potential,scanning,method,during,this,study,investigated,steady,state,polarization,curve,pure,graphite,In,addition,influence,particle,size,liquid,solid,ratio,stirring,speed,temperature,was,studied,Based,different,reactions,range,be,divided,into,three,intervals,lower,than,intermediate,within,higher,occurred,Sb,also,appeared,chlorine,evolution,Therefore,determined,suit,able,had,little,effect,rate,minerals,increased,exchange,current,density,Overall,relatively,densities,under,conditions,were,mA,This,indicates,that,difficult,realize,industrial,production,while,relying,solely
AB值:
0.432183
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