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A Novel biorefinery: biorecovery of precious metals from spent automotive catalyst leachates into new catalysts effective in metal reduction and in the hydrogenation of 2-pentyne

机译:一种新的生物遗料:从花费汽车催化剂的贵金属生物渗透渗滤成有效的金属减少和氢化的新型催化剂和2-Pentyne的氢化

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Aiming to recover precious metals (PMs) from spent automotive catalyst leachates into new catalysts, cells of E. coli first reduced Pd(ll) or Pt(IV) physiologically to nanoparticulate cell-bound Pd(0) and Pt(0). Metallised cells were then used as chemical catalysts for the reductive recovery of precious metals from model solutions and from aqua regiq leachates of crushed spent automotive catalyst. Metal removal, slower from real leachate due to interference by other contaminants, was complete after 60 h. Biofabricated PM catalyst from waste reduced 0.5 mM Cr(VI) to a similar extent to commercial 5% Pd catalyst but at ~ half the rate. The hydrogenation of 2-pentyne was examined using commercial Pd on Al_2O_3 catalyst and biofabricated Pd/Pt catalyst, the latter showing more than 3-fold enhanced selctivity towards the desired cis-pentene product. Hence, biorefined PMs offer a clean route to waste treatment and effective catalyst biomanufacture.
机译:旨在将贵金属(PMS)从花费汽车催化剂中渗出到新的催化剂中,将大肠杆菌的细胞生理地生理到纳米颗粒细胞结合Pd(0)和Pt(0)。然后将金属化细胞用作化学催化剂,用于从模型解决方案中还原贵金属的贵金属,以及从压碎的花费汽车催化剂的Aqua Regiq渗滤液中还原。除了其他污染物的干扰导致的真实渗滤液中的金属去除速度较慢,在60小时后完成。从废物中的生物缺烤PM催化剂将0.5mM Cr(VI)降低至相似的程度,对商业5%Pd催化剂但速率为〜速率。使用商业Pd在Al_2O_3催化剂和生物酸的Pd / Pt催化剂上检查2-Pentyne的氢化,后者显示出朝向所需的顺式戊烯产物增强3倍的增强率。因此,生物化的PMS提供了一种干净的处理和有效催化剂生物制造的途径。

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