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使用弱酸性树脂从硫酸溶液中同步吸附镍、铜、镉和锌的优化

Optimization of simultaneous adsorption of nickel, copper, cadmium and zinc from sulfuric solutions using weakly acidic resins.

作者信息

Kolbadinejad Somayeh, Ghaemi Ahad

机构信息

School of Chemical, Petroleum and Gas Engineering, Iran University of Science and Technology, Tehran, Iran.

出版信息

Sci Rep. 2024 Mar 29;14(1):7506. doi: 10.1038/s41598-024-58366-3.

Abstract

In this research, the adsorption of nickel (Ni), copper (Cu), cadmium (Cd), and zinc (Zn) from real sulfuric leaching solution with weakly acidic resins has been studied using response surface methodology (RSM). The adsorption process on two weakly acidic resins has been investigated as a function of pH, time, temperature, and resin dosage. The experimental results indicate that the amino phosphoric acid resin removed Ni, Cu, Cd, and Zn from an acidic solution very efficiently. Based on the central composite design (CCD) on the RSM, the statistical criteria of correlation coefficient (R) values of Ni, Cu, Cd, and Zn are 0.9418, 0.9753, 0.9657, and 0.9189, respectively. The adsorption process followed the pseudo-second-order kinetic model and the thermodynamic calculations indicated the chemical interaction between the resin surface and the metal ions. Enthalpy values greater than zero indicate that the adsorption reaction of the metals is endothermic. The optimal adsorption process was carried out at time of 20 min, temperature of 30 C, pH of 5, and resin dosage of 4 g/L. In these conditions, the adsorption capacity of nickel, copper, cadmium, and zinc were obtained 13.408, 7.087, 4.357, and 15.040 mg/g, respectively.

摘要

在本研究中,采用响应面法(RSM)研究了弱酸性树脂对实际硫酸浸出液中镍(Ni)、铜(Cu)、镉(Cd)和锌(Zn)的吸附。研究了两种弱酸性树脂上的吸附过程与pH值、时间、温度和树脂用量的关系。实验结果表明,氨基磷酸树脂能非常有效地从酸性溶液中去除Ni、Cu、Cd和Zn。基于RSM的中心复合设计(CCD),Ni、Cu、Cd和Zn的相关系数(R)值的统计标准分别为0.9418、0.9753、0.9657和0.9189。吸附过程遵循准二级动力学模型,热力学计算表明树脂表面与金属离子之间存在化学相互作用。焓值大于零表明金属的吸附反应是吸热的。最佳吸附过程在时间为20分钟、温度为30℃、pH值为5和树脂用量为4 g/L条件下进行。在这些条件下,镍、铜、镉和锌的吸附容量分别为13.408、7.087、4.357和15.040 mg/g。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/071a/10980808/9de2f01570bc/41598_2024_58366_Fig1_HTML.jpg

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