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BIOTECHNOLOGY FOR SUSTAINABLE HYDROMETALLURGY

机译:可持续水合冶金的生物技术

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High rate bacterial catalyzed processes can serve to improve hydrometallurgical operations. These solutions are not only economical but also environmental sustainable. With references around the globe, the value of this new approach is recognized by industry worldwide. For instance, metals can safely and economically be separated from process and waste streams using biotechnologically produced sulfide, recovering a valuable metal sulfide product instead of a waste gypsum stream for disposal. Both the natural biological sulfur and nitrogen cycles offer bioconversions that are applied on industrial scale. The shared advantage of these processes is that waste compounds are converted in either a reusable raw material or in a harmless product. This way, natural product cycles can be closed. Applications based upon bioconversions are for example: Sulfur based: Bioleaching, reduction of oxidized sulfur compounds to elemental sulfur, metal recovery with biogenic produced H_2S, SO_2 removal from gas streams, etc. Nitrogen based: Ammonia removal using the anammox-process, biological removal of NOx from gas streams, nitrate removal from water streams, etc. Metals: Bacterial processes for the reduction of metals such as uranium, selenium and manganese have proven to offer great potential for clean-up of groundwater streams. This paper contains a description of the above applications. Further, a short introduction on engineered high rate bioreactor systems and a description of industrial biotechnological applications will be provided.
机译:高速率细菌催化过程可用于改善湿法冶金操作。这些解决方案不仅经济而且环境可持续。在全球范围内的参考文献中,这种新方法的价值已为全球行业所认可。例如,可以使用生物技术生产的硫化物安全,经济地将金属与工艺和废物流分离,从而回收有价值的金属硫化物产品,而不是废石膏流进行处置。天然的生物硫和氮循环都提供了可用于工业规模的生物转化。这些过程的共同优势是,废料可以转化为可重复使用的原材料或无害产品。这样,自然产品周期可以关闭。基于生物转化的应用例如:基于硫的生物浸出,将氧化的硫化合物还原为元素硫,通过生物生成的H_2S进行金属回收,从气流中脱除SO_2等。基于氮的方式:使用厌氧氨氧化工艺去除氨,生物去除金属:用于还原金属(例如铀,硒和锰)的细菌工艺已被证明具有净化地下水的巨大潜力。本文包含以上应用程序的描述。此外,将提供对工程化高速率生物反应器系统的简短介绍以及对工业生物技术应用的描述。

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