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Cyanide In Industrial Wastewaters And Its Removal: A Review On Biotreatment

机译:工业废水中的氰化物及其去除:生物处理研究进展

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摘要

Cyanides are produced by certain bacteria, fungi, and algae, and may be found in plants and some foods, such as lima beans and almonds. Although cyanides are present in small concentrations in these plants and microorganisms, their large-scale presence in the environment is attributed to the human activities as cyanide compounds are extensively used in industries. Bulk of cyanide occurrence in environment is mainly due to metal finishing and mining industries. Although cyanide can be removed and recovered by several processes, it is still widely discussed and examined due to its potential toxicity and environmental impact. From an economic standpoint, the biological treatment method is cost-effective as compared to chemical and physical methods for cyanide removal. Several microbial species can effectively degrade cyanide into less toxic products. During metabolism, they use cyanide as a nitrogen and carbon source converting it to ammonia and carbonate, if appropriate conditions are maintained. Biological treatment of cyanide under anaerobic as well as aerobic conditions is possible. The present review describes the mechanism and advances in the use of biological treatment for the removal of cyanide compounds and its advantages over other treatment processes. It also includes various microbial pathways for their removal.
机译:氰化物是由某些细菌,真菌和藻类产生的,并且可能存在于植物和某些食物中,例如利马豆和杏仁。尽管这些植物和微生物中氰化物的浓度很小,但由于氰化物在工业中的广泛应用,它们在环境中的大规模存在归因于人类的活动。环境中大量氰化物的产生主要归因于金属精加工和采矿业。尽管氰化物可以通过几种方法去除和回收,但由于其潜在的毒性和对环境的影响,仍被广泛讨论和检查。从经济的角度来看,与化学和物理方法去除氰化物相比,生物处理方法具有成本效益。几种微生物可以有效地将氰化物降解为毒性较小的产品。在新陈代谢过程中,如果保持适当的条件,他们将氰化物用作氮和碳源,将其转化为氨和碳酸盐。可以在厌氧和好氧条件下对氰化物进行生物处理。本综述描述了生物处理中用于去除氰化物的机理和进展,以及其与其他处理方法相比的优势。它还包括各种微生物清除途径。

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