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Photoreaction of gold ions from potassium gold cyanide wastewater using solution-combusted ZnO nanopowders

机译:溶液燃烧的ZnO纳米粉对氰化钾金废水中金离子的光反应

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摘要

Photoreduction of gold ions from potassium gold cyanide wastewater was tried using the ZnO nanopowder which was synthesized by a unique solution combustion method (SCM). The SCM produced instantaneous high pressure and high temperature (1500-1800 deg C) conditions which are desirable to obtain high quality ZnO nanopowders, even though it was not intentionally heated at higher than 100 deg C during the synthesis reaction. The high crystalline quality of the ZnO nanopowder seemed to result in high efficiency of gold recovery compared to other commercial photocatalysts such as P-25 TiO_2 nanopowder (Degussa). The wastewater contains many kinds of ions such as K, P, Au, Na, Ni, Cu and Zn ions. Only the gold ions were selectively recovered out of these ions. The gold recovery efficiency of the SCM ZnO nanopowder was about 8.6 folds higher than that of the P-25 TiO_2 nanopowder. The very high selectivity of Au~(3+) ions could be explained by the reduction potential which is placed near the edge of valence band.
机译:尝试使用通过独特的溶液燃烧方法(SCM)合成的ZnO纳米粉对氰化钾金氰化物废水中的金离子进行光还原。 SCM产生了瞬时高压和高温(1500-1800℃)条件,这是获得高质量ZnO纳米粉所希望的条件,即使在合成反应过程中并非故意将其加热到高于100℃。与其他商业光催化剂(例如P-25 TiO_2纳米粉(德固赛公司))相比,ZnO纳米粉的高结晶质量似乎导致金的回收效率很高。废水中包含多种离子,例如K,P,Au,Na,Ni,Cu和Zn离子。从这些离子中仅选择性地回收了金离子。 SCM ZnO纳米粉的金回收效率比P-25 TiO_2纳米粉的金回收效率高约8.6倍。 Au〜(3+)离子具有很高的选择性,可以用价带边缘附近的还原电位来解释。

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