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新型可重复使用水凝胶吸附剂用于贵金属回收。

Novel reusable hydrogel adsorbents for precious metal recycle.

机构信息

Institute of Environmental Engineering, National Sun Yat-Sen University, Kaohsiung, 80432, Taiwan.

出版信息

Sci Rep. 2021 Oct 1;11(1):19577. doi: 10.1038/s41598-021-99021-5.

Abstract

A novel polyethylene glycol diacrylate-allylthiourea (ATU-PEGDA) hydrogel was simply synthesized through photo-reaction. Modified thiourea simultaneously employed chelation and electrostatic force to selectively recycle Ag(I) and Pd(II) from electrolytic wastewater. Sorption efficiency was nearly 100% for Ag(I) and Pd(II), which occurred at initial pH of 1 within 300 min. The adsorption characteristics of ATU-PEGDA followed Langmuir isotherm model and the maximum adsorption capacity of Ag(I) and Pd(II) achieved 83.33 and 152.81 mg g sorbent, respectively where Pseudo-first order model demonstrate the adsorption kinetics. In the presence of other heavy metals, ATU-PEGDA performed high selectivity, 0.89 and 1.31 towards Ag(I) and Pd(II). ATU-PEGDA can be completely regenerated within 120 min using 0.5 M thiourea-0.001 M HNO and 1 M thiourea-4 M HCl after the adsorption of Ag(I) and Pd(II), respectively. Thiourea-branched structure was created after regeneration, improving the adsorption capacity. Compared to initial hydrogel, the adsorption capacity of Ag(I) and Pd(II) increased 31.83 ± 3.08% and 75.12 ± 11.02%, respectively. Over 10 consecutive adsorption-desorption cycles, ATU-PEGDA performed 111.34 and 263.79 mg g sorbent in adsorption capacity of Ag(I) and Pd(II). Chromism of ATU-PEGDA hydrogel was a benefit to determine adsorption saturation and completely desorption of Ag(I) and Pd(II). Potentially, ATU-PEGDA can be extended to industrial applications.

摘要

一种新型的聚乙二醇二丙烯酸酯-烯丙基硫脲(ATU-PEGDA)水凝胶通过光反应简单合成。修饰后的硫脲同时利用螯合和静电力从电镀废水中选择性回收 Ag(I) 和 Pd(II)。Ag(I) 和 Pd(II) 的吸附效率接近 100%,在 300 min 内初始 pH 值为 1。ATU-PEGDA 的吸附特性符合 Langmuir 等温线模型,Ag(I) 和 Pd(II) 的最大吸附容量分别达到 83.33 和 152.81 mg g 吸附剂,其中伪一级动力学模型证明了吸附动力学。在存在其他重金属的情况下,ATU-PEGDA 对 Ag(I) 和 Pd(II) 表现出高选择性,分别为 0.89 和 1.31。吸附 Ag(I) 和 Pd(II) 后,分别使用 0.5 M 硫脲-0.001 M HNO 和 1 M 硫脲-4 M HCl 可在 120 min 内完全再生 ATU-PEGDA。再生后形成了硫脲支化结构,提高了吸附容量。与初始水凝胶相比,Ag(I) 和 Pd(II) 的吸附容量分别增加了 31.83±3.08%和 75.12±11.02%。在 10 次连续的吸附-解吸循环中,ATU-PEGDA 在吸附 Ag(I) 和 Pd(II) 方面的吸附容量分别为 111.34 和 263.79 mg g 吸附剂。ATU-PEGDA 水凝胶的变色是确定吸附饱和和完全解吸 Ag(I) 和 Pd(II) 的一个优势。潜在地,ATU-PEGDA 可以扩展到工业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e8f/8486833/8140cb2db26b/41598_2021_99021_Fig1_HTML.jpg

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