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Selective recovery of Au(III) and Pd(II) from waste PCBs using ethylenediamine modified persimmon tannin adsorbent

机译:使用乙二胺改性柿子单宁吸附剂的废PCB选择性恢复Au(iii)和Pd(II)

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The adsorption characteristics of gold and palladium from hydrochloric acidic solutions onto the ethylenediamine-modified persimmon tannin adsorbent (EPPFR) have been investigated. Amine groups was successfully introduced into persimmon tannin resin to prepared this bifuctional adsorbent. Effects of HCl concentration, contact time, metal ions concentration, temperature were studied in detail. The adsorption capacity was strongly affected by HCl concentration. The complete adsorption equilibrium of Au(III) and Pd(II) was reached within 360 and 60 min, respectively. The adsorption isotherms were described by the typical monolayer type of Langmuir model, and the maximum uptake capacity was evaluated as 1550.4 and 112.6 mg g~(-1), respectively. The analysis of thermodynamic parameters revealed that the nature of adsorption was feasible, spontaneous and endothermic process. The applicability of adsorptive recovery of Au(III) and Pd(II) was investigated by treating waste printed circuit boards (PCBs) liquor leached with aqua regia, EPPFR can effectively adsorb precious metals but exhibited no affinity towards base metal ions. Characterized by FTIR, XRD, SEM, the adsorption of mechanisms were proposed to be redox and chelation, respectively. The present results suggested this tannin-based adsorbent EPPFR can serve as a potential adsorbent for the recovery of Au(III) and Pd(II) from waste PCBs liquor in hydrochloric acid solutions.
机译:金和选自盐酸酸性溶液钯吸附特性到乙二胺改性的柿单宁吸附剂(EPPFR)进行了研究。胺基被成功导入柿单宁树脂来制备本bifuctional吸附剂。了详细的研究的HCl浓度,接触时间,金属离子浓度,温度的影响。吸附能力是强烈的HCl浓度的影响。金(III)和Pd(II)的完全吸附平衡分别在360和60分钟达到。吸附等温线是由典型的单层型Langmuir模型的描述,并且分别是最大吸收能力的评价为1550.4和112.6毫克克〜(-1)。热力学参数的分析表明吸附的性质是可行的,自发的吸热过程。金(III)和Pd的吸附回收(II)的适用性,通过处理用王水,EPPFR能有效地吸附贵金属浸出浪费印刷电路板(PCB)酒调查,但显示出对基体的金属离子没有亲和力。通过FTIR,XRD,SEM其特征在于,机制的吸附提出是氧化还原和螯合,分别。本结果表明这种基于鞣质吸附剂EPPFR可以作为金(III)和Pd(II)的从废物多氯联苯液在盐酸溶液中回收的电位吸附剂。

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