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Using pectin to separate talc and molybdenite through the surface modification with Cu^(2+):Applications and mechanism 被引量:2
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作者 Changtao Wang Qilin Zhai +4 位作者 runqing liu Meirong Wu Wei Sun Nianwen Jing Feifei Xie 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第3期363-377,共15页
Organic depressants have low selectivity in separating molybdenite and talc because their metal sites lack activity for organics chemisorption.In this study,surface modification by copper sulfate was used to induce th... Organic depressants have low selectivity in separating molybdenite and talc because their metal sites lack activity for organics chemisorption.In this study,surface modification by copper sulfate was used to induce the differential adsorption of pectin onto molybdenite and talc surfaces for enhanced flotation separation.Contact-angle experiments,scanning electron microscopy,adsorption measurements,timeof-flight secondary-ion mass spectrometry,and X-ray photoelectron spectroscopy analyses were conducted to reveal the interaction mechanism.Results illustrated that molybdenite and talc could not be separated using pectin alone,while molybdenite was selectively depressed after surface modification by copper sulfate and this effect was strengthened under alkaline conditions.Metal sites(Mg,Si and Mo)of talc and molybdenite themselves were unable to react with pectin,whereas Cu+would deposit and further function as active site for pectin chemisorption after surface modification.However,the quantity of deposited Cu sites dropped on talc surface and increased on molybdenite surface with increased pH,and the Mo atoms of molybdenite crystal were activated to take part in pectin chemisorption.Therefore,more pectin was adhered on molybdenite surface,which imparted molybdenite stronger wettability.Herein,surface-modification through metal ions can enable the differential adsorption of organic depressants and enhance the flotation separation of minerals. 展开更多
关键词 MOLYBDENITE TALC Surface modification Induced adsorption
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Effect of Mineral Processing Wastewater on Electrochemistry of Galena
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作者 Jing Xu runqing liu +2 位作者 Wei Sun Yuehua Hu Jingping Dai 《Journal of Environmental Science and Engineering(A)》 2012年第3期279-285,共7页
关键词 电化学技术 选矿废水 方铅矿 凡口铅锌矿 废水样品 化学成分 尾矿废水 选矿厂
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Purification of starch and phosphorus wastewater using core-shell magnetic seeds prepared by sulfated roasting 被引量:4
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作者 Chunjie Du Jinsheng Yu +9 位作者 Wei Sun Haisheng Han Yuehua Hu Pan Chen Panpan Hou runqing liu Li Wang Yue Yang Ruohua liu Lei Sun 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第7期4-16,共13页
Core-shell magnetic seeds with certain adsorption capacity that were prepared by sulfated roasting, served as the core of a magnetic separation technology for purification of starch wastewater. XRD and SEM results ind... Core-shell magnetic seeds with certain adsorption capacity that were prepared by sulfated roasting, served as the core of a magnetic separation technology for purification of starch wastewater. XRD and SEM results indicate that magnetite's surface transformed to be porous α-Fe_2O_3 structure. Compared with magnetite particles, the specific surface area was significantly improved to be 8.361 from 2.591 m^2/g, with little decrease in specific susceptibility. Zeta potential, FT-IR and XPS experiments indicate that both phosphate and starch adsorbed on the surface of the core-shell magnetic seeds by chemical adsorption, which fits well with the Langmuir adsorption model. The porous surface structure of magnetic seeds significantly contributes to the adsorption of phosphate and starch species, which can be efficiently removed to be 1.51 mg/L(phosphate) and 9.51 mg/L(starch) using magnetic separation. 展开更多
关键词 CORE-SHELL magnetic seeds SULFATED ROASTING Phosphate STARCH PURIFICATION
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