亚氨基二乙酸功能化氧化石墨烯纳米捕收剂离子浮选法从废电解质中选择性回收铅(II

Luping Chang, W. Peng, Yijun Cao, Yihe Miao, Guixia Fan, Yukun Huang, Xiangyu Song, Xianggen Chen
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引用次数: 3

摘要

在这项工作中,制备了亚氨基二乙酸功能化氧化石墨烯(IDA@GO),并将其用作纳米捕收剂,通过离子浮选从强酸性废电解质中增强和选择性回收Pb(II)。IDA@GO通过傅里叶变换红外光谱,zeta电位测量和原子力显微镜进行了表征。系统考察了pH、反应时间、十六烷基三甲基溴化铵(CTAB)投加量和曝气率对残液中Pb(II)浓度和浊度的影响。实验结果表明,在pH为2时,IDA@GO对Pb(II)的吸附量可达91.21 mg/g。泡沫浮选后,在最佳CTAB投加量和曝气率下,处理液的浊度降至0.55 NTU。此外,与氧化石墨烯相比,IDA@GO对Co(II)、Ni(II)、Zn(II)和Cd(II)的相对选择性系数分别高达1.304、1.471、1.807和1.509,表现出更好的选择性。此外,IDA@GO可以作为纳米捕收剂在离子浮选中重复使用,并具有理想的再生性能。另外,发现Pb(II)的回收机理是通过静电吸引、离子交换和表面络合作用将Pb(II)吸附在IDA@GO上,CTAB的加入提高了Pb(II)负载IDA@GO絮凝体的疏水性,从而实现泡沫浮选Pb(II)的回收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selective recovery of Pb(II) from a waste electrolyte via ion flotation with iminodiacetic acid-functionalized graphene oxide as a nanocollector
In this work, iminodiacetic acid-functionalized graphene oxide (IDA@GO) is prepared and used as a nanocollector for enhancing and selectively recovering Pb(II) from a strongly acidic waste electrolyte via ion flotation. IDA@GO is characterized by Fourier transform infrared spectroscopy, zeta potential measurements and atomic force microscopy. The effects of pH, reaction time, cetyl trimethyl ammonium bromide (CTAB) dosage and aeration rate on the Pb(II) concentration and turbidity of the residual solution are examined systematically. The experimental results show that the adsorption capacity of Pb(II) on IDA@GO can reach 91.21 mg/g at pH 2. After froth flotation, the turbidity of the treated solution decreased to 0.55 NTU under the optimal CTAB dosage and aeration rate. In addition, as compared with GO, the relative selectivity coefficients of IDA@GO are up to 1.304, 1.471, 1.807 and 1.509 for Co(II), Ni(II), Zn(II) and Cd(II), respectively, thereby exhibiting better selectivity performance. Moreover, IDA@GO can be reused as a nanocollector in ion flotation and exhibits ideal regeneration performance. In addition, the recovery mechanism is found to proceed through Pb(II) adsorbing on IDA@GO by electrostatic attraction, ion exchange and surface complexation, with the addition of CTAB improving the hydrophobicity of Pb(II)-loaded IDA@GO flocs, thus achieving the recovery of Pb(II) via froth flotation.
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