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Exploring anaerobic environments for cyanide and cyano-derivatives microbial degradation

机译:探索用于氰化物和氰基衍生物微生物降解的厌氧环境

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摘要

Cyanide is one of the most toxic chemicals for living organisms described so far. Its toxicity is mainly based on the high affinity that cyanide presents toward metals, provoking inhibition of essential metalloenzymes. Cyanide and its cyano-derivatives are produced in a large scale by many industrial activities related to recovering of precious metals in mining and jewelry, coke production, steel hardening, synthesis of organic chemicals, and food processing industries. As consequence, cyanide-containing wastes are accumulated in the environment becoming a risk to human health and ecosystems. Cyanide and related compounds, like nitriles and thiocyanate, are degraded aerobically by numerous bacteria, and therefore, biodegradation has been offered as a clean and cheap strategy to deal with these industrial wastes. Anaerobic biological treatments are often preferred options for wastewater biodegradation. However, at present very little is known about anaerobic degradation of these hazardous compounds. This review is focused on microbial degradation of cyanide and related compounds under anaerobiosis, exploring their potential application in bioremediation of industrial cyanide-containing wastes.
机译:迄今为止,氰化物是对生物体最具毒性的化学物质之一。它的毒性主要基于氰化物对金属的高亲和力,从而抑制了必需的金属酶。氰化物及其氰基衍生物是通过许多与采矿和珠宝业中的贵金属的回收,焦炭生产,钢的硬化,有机化学的合成以及食品加工工业有关的工业活动而大规模生产的。结果,含氰化物的废物在环境中积累,成为对人类健康和生态系统的风险。氰化物和相关化合物(如腈和硫氰酸盐)会被许多细菌好氧降解,因此,生物降解已被视为一种清洁,廉价的处理这些工业废物的策略。厌氧生物处理通常是废水生物降解的首选方案。但是,目前对这些有害化合物的厌氧降解了解甚少。这项审查的重点是厌氧作用下氰化物和相关化合物的微生物降解,探索它们在工业修复含氰化物废物中的潜在应用。

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