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Biosynthesis of zinc sulfide quantum dots using waste off-gas from a metal bioremediation process

机译:金属生物修复过程中产生的废气可生物合成硫化锌量子点

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摘要

Dissimilatory reduction of sulfate, mediated by various species of sulfate-reducing bacteria (SRB) and a few characterized species of archaea, can be used to remediate acid mine drainage (AMD). Hydrogen sulfide (H2S/HS?) generated by SRB removes toxic metals from AMD as sulfide biominerals. For this, SRB are usually housed in separate reactor vessels to those where metal sulfides are generated; H2S is delivered to AMD-containing vessels in solution or as a gas, allowing controlled separation of metal precipitation and facilitating enhanced process control. Industries such as optoelectronics use quantum dots (QDs) in various applications, e.g. as light emitting diodes and in solar photovoltaics. QDs are nanocrystals with semiconductor bands that allow them to absorb light and re-emit it at specific wavelength couples, shifting electrons to a higher energy and then emitting light during the relaxation phase. Traditional QD production is costly and/or complex. We report the use of waste H2S gas from an AMD remediation process to synthesize zinc sulfide QDs which are indistinguishable from chemically prepared counterparts with respect to their physical and optical properties, and highlight the potential for a empirical process to convert a gaseous “waste” into a high value product.
机译:由硫酸盐还原细菌(SRB)的各种物种和古细菌的一些特征物种介导的硫酸盐异化还原可用于补救酸性矿山排水(AMD)。 SRB产生的硫化氢(H 2 S / HS )从AMD去除有毒金属,作为硫化物生物矿物。为此,通常将SRB与产生金属硫化物的反应堆放在不同的反应堆容器中。 H 2 S以溶液或气体形式输送到含AMD的容器中,从而可控制地分离金属沉淀物并促进增强的工艺控制。诸如光电子学之类的工业在各种应用中使用量子点(QD),例如, 用作发光二极管和太阳能光伏。量子点是具有半导体带的纳米晶体,可以使它们吸收光并以特定的波长对重新发射,从而将电子转移到更高的能量,然后在弛豫阶段发光。传统的QD生产成本高昂和/或复杂。我们报告了使用AMD修复工艺中的H 2 S废气来合成硫化锌QD,就其物理和光学特性而言,它们与化学制备的QD难以区分,并强调经验性过程将气态“废物”转化为高价值产品的潜力。

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