Adsorption mechanism of acyl thionocarbamate on chalcopyrite and pyrite

被引:1
|
作者
Huang X.-P. [1 ]
Yang H.-F. [1 ]
Cao X.-Y. [1 ]
Jin K. [1 ]
Zeng J.-X. [1 ]
Zhang R. [1 ]
Zhou H. [1 ]
机构
[1] School of Chemistry and Chemical Engineering, Hunan University of Science and Technology, Xiangtan
来源
Zhongguo Youse Jinshu Xuebao/Chinese Journal of Nonferrous Metals | 2023年 / 33卷 / 06期
关键词
acyl thionocarbamate; adsorption mechanism; chalcopyrite; flotation separation; pyrite;
D O I
10.11817/j.ysxb.1004.0609.2022-43258
中图分类号
学科分类号
摘要
The development of surfactants with high selectivity and strong collecting abilitiesis is of great significance for the efficient enrichment of copper sulfide minerals. Herein, we prepared a multifunctional surfactant of O-ethyl-N-benzoyl thionocarbamate (EBZTC), acting as a collector for the separation of chalcopyrite from pyrite. The flotation experimental results indicate that EBZTC is a preferable collector for separating of chalcopyrite from pyrite in comparison with IPETC. DFT calculation reveals that the introduction of acyl into the thionocarbamate molecule can improve its chelating ability and flotation selectivity for the separation of chalcopyrite and pyrite. UV spectroscopy, zeta potential and XPS analyses confirm that EBZTC is chemisorbed on the chalcopyrite surface through the chemical reactions of C= O and C= S groups to the copper species with the formation of C—O—Cu and C—S—Cu, without obvious adsorption of EBZTC on pyrite surface is observed. © 2023 Central South University of Technology. All rights reserved.
引用
收藏
页码:2004 / 2014
页数:10
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共 30 条
  • [1] WANG Xun, LIU Jie, ZHU Yi-min, Et al., Adsorption and depression mechanism of an eco-friendly depressant PCA onto chalcopyrite and pyrite for the efficiency flotation separation, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 620, (2021)
  • [2] LI Guo-dong, QIU Ting-sheng, GUO Hai-ning, Et al., Experimental research on low alkalinity flotation process of gold-bearing complex copper sulfur ore[J], Metal Mine, 533, 11, (2020)
  • [3] CHEN Chen, SUN Wei, ZHU Hai-ling, Et al., Selective depression and mechanism of polycarboxylic acid in flotation separation of scheelite from fluorite, The Chinese Journal of Nonferrous Metals, 31, 9, pp. 2551-2560, (2021)
  • [4] XIAO Jing-jing, Flotation behavior and adsorption mechanism of BOPHPDT to chalcopyrite, The Chinese Journal of Nonferrous Metals, 31, 8, pp. 2247-2257, (2021)
  • [5] LIU Guang-yi, ZHONG Hong, DAI Ta-gen, Investigation of the selectivity of ethoxylcarbonyl thionocarbametes during the flotation of copper sulfides[J], Mining, Metallurgy & Exploration, 25, (2008)
  • [6] XU Bin, WU Jin-tian, DONG Zhong-lin, Et al., Flotation performance, structure-activity relationship and adsorption mechanism of a newly-synthesized collector for copper sulfide minerals in Gacun polymetallic ore, Applied Surface Science, 551, (2021)
  • [7] CHEN Jian-hua, WANG Jin-ming, LI Yu-qiong, Et al., Effects of surface spatial structures and electronic properties of chalcopyrite and pyrite on Z-200 selectivity, Minerals Engineering, 163, (2021)
  • [8] YANG Hui-fang, HUANG Kai-hua, CAO Xiao-yu, Et al., Investigating the adsorption performances and hydrophobic mechanism of O-ethyl-N-benzoyl thionocarbamate on chalcopyrite surface, Minerals Engineering, 176, (2022)
  • [9] FRISCH M, TRUCKS G, SCHLEGEL H, Et al., Gaussian 09, Revision D.01, (2013)
  • [10] YANG Xiang-lin, HUANG Yao-guo, LIU Guang-yi, Et al., A DFT prediction on the chemical reactivity of novel azolethione derivatives as chelating agents: Implications for copper minerals flotation and copper corrosion inhibition[J], Journal of the Taiwann Institute of Chemical Engineers, 93, (2018)