Adsorption mechanism of a biodegradable plant polyphenol depressant for selective separation of chalcopyrite from talc
Jiaozhong Cai
1, 2
,
Shi-mei Li
3
,
Jiushuai Deng
1, 2
,
Bozeng Wu
1, 2, 4
,
Hongxiang Xu
1, 2
,
Lei Yang
1, 2
,
Mingzhen Wu
1, 2
,
Hongxin Qiu
1, 2
,
Naikai Chen
1, 2
,
Mingzhen Hu
4
4
Liuzhou China-Tin Nonferrous Design and Research Institute Co. Ltd, CHINA TIN GROUP, Liuzhou 545006, China
|
Publication type: Journal Article
Publication date: 2023-12-01
scimago Q1
wos Q2
SJR: 0.826
CiteScore: 9.0
Impact factor: 4.2
ISSN: 09218831, 15685527
General Chemical Engineering
Mechanics of Materials
Abstract
In this paper, the effect of Tannic acid (TA), a green, biodegradable plant polyphenol, as a talc depressant on the separation behavior of talc and chalcopyrite was investigated. The results of micro-flotation studies revealed that at a TA dosage of 20 mg/L at pH 7, talc recovery was barely 10 % whereas chalcopyrite recovery remained above 90 %, indicating that TA can selectively depress talc flotation. The results of the artificial mixed minerals test further confirmed the depressive effect of TA. The adsorption results showed that the adsorption density of TA on talc was greater than that on chalcopyrite surface. Similar conclusions were observed in zeta potential tests. It is noteworthy that the zeta potential of the chalcopyrite treated with TA and butyl xanthate sodium continued to shift negatively in comparison to the zeta potential of chalcopyrite treated with TA alone, suggesting that butyl xanthate sodium can continue to adsorb on the surface of chalcopyrite following TA treatment. Besides, X-ray photoelectron spectroscopy and Fourier-transform infrared spectroscopy tests concluded that TA adsorbs on talc surface by physical (hydrophobic) interaction. Differences in the crystal structures of chalcopyrite and talc, as well as the large number of phenolic hydroxyl structures contained in TA, are the main driving forces for the selective adsorption of TA on the talc surface. This work provides an insight to the selection of inhibitors for the separation of chalcopyrite and talc, particularly from the perspective of the hydrophobic effect of the talc layered structure.
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Cai J. et al. Adsorption mechanism of a biodegradable plant polyphenol depressant for selective separation of chalcopyrite from talc // Advanced Powder Technology. 2023. Vol. 34. No. 12. p. 104275.
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Cai J., Li S., Deng J., Wu B., Xu H., Yang L., Wu M., Qiu H., Chen N., Hu M. Adsorption mechanism of a biodegradable plant polyphenol depressant for selective separation of chalcopyrite from talc // Advanced Powder Technology. 2023. Vol. 34. No. 12. p. 104275.
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TY - JOUR
DO - 10.1016/j.apt.2023.104275
UR - https://doi.org/10.1016/j.apt.2023.104275
TI - Adsorption mechanism of a biodegradable plant polyphenol depressant for selective separation of chalcopyrite from talc
T2 - Advanced Powder Technology
AU - Cai, Jiaozhong
AU - Li, Shi-mei
AU - Deng, Jiushuai
AU - Wu, Bozeng
AU - Xu, Hongxiang
AU - Yang, Lei
AU - Wu, Mingzhen
AU - Qiu, Hongxin
AU - Chen, Naikai
AU - Hu, Mingzhen
PY - 2023
DA - 2023/12/01
PB - Elsevier
SP - 104275
IS - 12
VL - 34
SN - 0921-8831
SN - 1568-5527
ER -
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BibTex (up to 50 authors)
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@article{2023_Cai,
author = {Jiaozhong Cai and Shi-mei Li and Jiushuai Deng and Bozeng Wu and Hongxiang Xu and Lei Yang and Mingzhen Wu and Hongxin Qiu and Naikai Chen and Mingzhen Hu},
title = {Adsorption mechanism of a biodegradable plant polyphenol depressant for selective separation of chalcopyrite from talc},
journal = {Advanced Powder Technology},
year = {2023},
volume = {34},
publisher = {Elsevier},
month = {dec},
url = {https://doi.org/10.1016/j.apt.2023.104275},
number = {12},
pages = {104275},
doi = {10.1016/j.apt.2023.104275}
}
Cite this
MLA
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Cai, Jiaozhong, et al. “Adsorption mechanism of a biodegradable plant polyphenol depressant for selective separation of chalcopyrite from talc.” Advanced Powder Technology, vol. 34, no. 12, Dec. 2023, p. 104275. https://doi.org/10.1016/j.apt.2023.104275.