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Enhanced Gold(III) adsorption using glutaraldehyde-crosslinked chitosan beads: Effect of crosslinking degree on adsorption selectivity, capacity, and mechanism

机译:增强的黄金(III)使用戊二醛交联的壳聚糖珠子吸附:交联程度对吸附选择性,容量和机理的影响

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摘要

Recovery of gold from electronic waste (e-waste) has received significant attention due to its high economic value. This study reports glutaraldehyde-crosslinked chitosan (GCC) beads as highly efficient bioadsorbents for the separation of auric ions (Au(III)) from acidic e-waste leaching solutions. With increasing extent of glutaraldehyde-crosslinking, the GCC beads showed enhanced adsorption selectivity and capacity toward Au(III). The Au(III) adsorption capacity, however, was saturated with a further increase in the crosslinking time due to increasing self-oligomerization of glutaraldehyde. High adsorption selectivity was also observed for other precious metals such as Pd(II), Pt(IV), Ir(III), Os(IV), and Ag(I), but negligible adsorption was found for most other metals. The high Au(III) adsorption capacity and selectivity of GCC beads was attributed to multiple mechanisms such as electrostatic attraction, chelation, and reduction of Au(III), based on a range of spectroscopic evidence (FTIR, XRD, XPS, SEM, and TEM) and Au(III) adsorption behavior. The adsorbed Au(III) was reduced to Au(I) and then to Au(0), forming Au-nanoparticles as the main Au species with increasing adsorption time. The GCC beads showed a good reusability in repeated Au(III) adsorption-desorption cycle tests and were used to successfully separate high purity gold (96.7%) from an acidic e-waste leaching solution.
机译:由于其高经济价值,从电子废物(电子废物)中回收黄金已得到重大关注。本研究向戊二醛交联的壳聚糖(GCC)珠子作为高效的生物吸水剂,用于分离酸性E-废物浸出溶液的Auric离子(Au(iii))。随着戊二醛交联的增加,GCC珠子显示出增强的吸附选择性和对Au(III)的能力。然而,由于戊二醛的自寡聚化的增加,Au(III)吸附能力在交联时间进一步增加。对于其他贵金属,例如Pd(II),Pt(IV),IR(III),OS(IV)和Ag(I),也可以观察到高吸附选择性,但为大多数其他金属发现可忽略不计的吸附。 GCC珠粒的高AU(III)吸附能力和选择性归因于多种机制,例如静电吸引,螯合和Au(III)的减少,基于一系列光谱证据(FTIR,XRD,XPS,SEM和TEM)和Au(iii)吸附行为。将吸附的Au(III)(III)还原为Au(i),然后达到Au(0),形成Au-nanim颗粒作为主要AU种类,随着吸附时间的增加。 GCC珠粒在重复的Au(III)吸附 - 解吸循环试验中显示出良好的可重用性,并且用于成功地将高纯度金(96.7%)与酸性E-废物浸出溶液分离。

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