首页|高浓度锌离子对酸性体系中闪锌矿可浮性的影响

高浓度锌离子对酸性体系中闪锌矿可浮性的影响

Influence of high concentration Zn2+ on floatability of sphalerite in acidic system

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通过浮选实验、zeta电位测试、接触角测量和X射线光电子能谱研究高浓度Zn2+对闪锌矿在酸性体系中可浮性的影响.结果表明,Zn2+吸附于闪锌矿表面,且当pH=4和Zn2+浓度为4×10-2 mol/L时,在闪锌矿表面形成Zn-羟基络合物.zeta电位增加且接触角从84.80°减小到36.48°,从而极大地抑制闪锌矿的可浮性.当单独以S2-或Cu2+作为活化剂时,无法活化吸附Zn2+后的闪锌矿,其接触角也无明显变化;而采用S2-与Cu2+组合活化剂时,吸附Zn2+后的闪锌矿可被活化而浮选.这归因于S2-可先将闪锌矿表面的Zn-羟基络合物消除,Cu2+即可吸附在闪锌矿表面上并形成Cu2S∙S0疏水膜.
The influence of high concentration Zn2+ on the floatability of sphalerite in an acidic system was investigated via flotation experiments, zeta potential measurements, contact angle measurements, and X-ray photoelectron spectroscopy. The results indicated that Zn2+ was adsorbed on the sphalerite surface and a Zn-hydroxyl complex was formed at a pH of 4 and a Zn2+ concentration of 4×10-2 mol/L. The zeta potential increased and the contact angle decreased from 84.80° to 36.48°, strongly inhibiting the floatability of sphalerite. When S2- or Cu2+ activator was used alone, sphalerite was not activated after Zn2+ was adsorbed, and its contact angle did not change significantly. However, by using a combination of S2- and Cu2+ activators, its floatability was realized after Zn2+ adsorption. This result was attributed to the removal of the Zn-hydroxyl complex on the surface of sphalerite by S2-. After this removal, Cu2+ was adsorbed on the sphalerite surface to form a Cu2S∙S0 hydrophobic film.

acidic systemhigh concentration Zn2+sphaleriteflotation

邱廷省、李国栋、李晓波、严华山、刘晨

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江西理工大学 资源与环境工程学院,赣州 341000

西北矿冶研究院,白银 730900

酸性体系 高浓度锌离子 闪锌矿 浮选

2018YFC09034042018YFC19034005197413820202BABL214022jxxjbs17032jxxjbs19019

2021

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCDCSCDSCI
影响因子:1.183
ISSN:1003-6326
年,卷(期):2021.31(7)
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