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碳酸盐体系中砷酸复盐选择性沉砷研究
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作者 田佳 王宇峰 +7 位作者 彭竣 张荥斐 孙伟 刘勇 韩海生 胡文吉豪 沈吉峰 李光梅 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第1期1-12,共12页
针对碳酸盐体系下常规金属砷酸盐沉淀法无法高效选择性除砷这一难题,提出通过砷酸复盐选择性沉淀实现砷酸盐与碳酸盐选择性分离的方案。基于25℃时Mg^(2+)-NH_(4)^(+)-AsO_(4)^(3-)-CO_(3)^(2-)-OH^(-)-H_(2)O体系的热力学平衡图,研究... 针对碳酸盐体系下常规金属砷酸盐沉淀法无法高效选择性除砷这一难题,提出通过砷酸复盐选择性沉淀实现砷酸盐与碳酸盐选择性分离的方案。基于25℃时Mg^(2+)-NH_(4)^(+)-AsO_(4)^(3-)-CO_(3)^(2-)-OH^(-)-H_(2)O体系的热力学平衡图,研究通过砷酸复盐(MgNH_(4)AsO_(4))沉淀实现砷酸盐和碳酸盐选择性分离的理论基础,并结合具体砷酸复盐沉砷实验,分析体系中CO_(3)^(2-),Mg^(2+)和NH_(4)^(+)初始质量浓度对最终除砷效率及砷渣品位的影响。研究结果表明:增大CO_(3)^(2-)质量浓度会降低砷酸复盐除砷率和砷渣品位,增加Mg^(2+)初始质量浓度虽可提高除砷率,但会增加砷渣中MgCO_(3)的摩尔分数,进而降低砷渣品位;增大NH_(4)^(+)初始质量浓度不仅能够提高除砷率,而且还会增加沉淀中MgNH_(4)AsO_(4)的摩尔分数,从而提高砷渣品位。在Na_(2)CO_(3)质量浓度为150 g/L的含砷溶液中,控制Mg^(2+)与As(Ⅴ)物质的量比为1.2:1.0,NH_(4)^(+)与As(Ⅴ)物质的量比为4.0:1.0,砷酸复盐矿化沉淀的除砷率和砷渣品位分别达到90.83%和29.75%。 展开更多
关键词 含砷废水 高碱盐 热力学 砷酸复 分离
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Interaction mechanism of ferrate(Ⅵ) with arsenopyrite surface and its effect on flotation separation of chalcopyrite from arsenopyrite 被引量:1
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作者 Run-peng LIAO Pan-jin HU +4 位作者 Shu-ming WEN Yong-xing ZHENG Xian-hui QIU Jin-fang LÜ Jian LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第11期3731-3743,共13页
Potassium ferrate(K_(2)FeO_(4)) was used as a novel environmental-friendly depressant,and its inhibition effect on flotation performance of arsenopyrite and chalcopyrite using potassium ethyl xanthate(PEX)as a collect... Potassium ferrate(K_(2)FeO_(4)) was used as a novel environmental-friendly depressant,and its inhibition effect on flotation performance of arsenopyrite and chalcopyrite using potassium ethyl xanthate(PEX)as a collector was investigated by flotation experiments,contact angle measurements,adsorption measurements,localized electrochemical impedance spectroscopy(LEIS)measurements,and X-ray photoelectron spectroscopy(XPS)analyses.The results showed that K_(2)FeO_(4)strongly depressed arsenopyrite in a pH range of 4−11,and the flotation separation of chalcopyrite from arsenopyrite could be realized in the presence of 5×10^(−4)mol/L K_(2)FeO_(4)and 5×10^(−5)mol/L PEX at pH 8 or 10.In the presence of K_(2)FeO_(4) and PEX,the contact angle and the xanthate adsorption capacity of arsenopyrite decreased significantly.LEIS measurements showed that the addition of ferrate could significantly increase the impedance of the arsenopyrite surface.XPS analyses further confirmed that ferrate accelerated the oxidation of arsenopyrite surface. 展开更多
关键词 ferrate(Ⅵ) ARSENOPYRITE CHALCOPYRITE low-alkalinity flotation separation
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