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含氰化物钢铁工业废水的比较特性研究。

Comparative characterization of cyanide-containing steel industrial wastewater.

机构信息

Chemical Lab, Scientific Services, Tata Steel Ltd, Jamshedpur, India E-mail:

Environment research group, Research & Development, Tata Steel Ltd, Jamshedpur, India.

出版信息

Water Sci Technol. 2021 Jan;83(2):322-330. doi: 10.2166/wst.2020.563.

Abstract

In the steel industry, cyanide in the wastewater is a major environmental concern. There are several chemical, physical, and biological treatment processes available for the removal of cyanide from industrial wastewater. But the efficacy of every treatment process depends on the complex elemental matrix of wastewater and the interference associated with them. Thus, water characterization plays a vital part in finding a suitable cyanide treatment process for any wastewater. Characterization data can give a clear overview of the complexity of cyanide in the wastewater, which ultimately helps in selecting the right remediation process. The present work includes comparative characterization of coke plant and blast furnace wastewater collected from an integrated steel plant. Three months of data for physico-chemical properties of the two different sources were analysed and compared. Pearson's correlation analysis of physico-chemical properties with free cyanide was also studied. The different forms of cyanide in coke plant and blast furnace water were also characterised, along with interference associated with them. It was observed that the water matrix of coke plant and blast furnace effluents are totally different. It was also evident that free cyanide concentration is much more affected in coke plant wastewater than in blast furnace water.

摘要

在钢铁行业,废水中的氰化物是一个主要的环境问题。有几种化学、物理和生物处理工艺可用于去除工业废水中的氰化物。但是,每种处理工艺的效果都取决于废水复杂的元素基质及其干扰因素。因此,水质特征在为任何废水寻找合适的氰化物处理工艺方面起着至关重要的作用。特征数据可以清楚地了解废水中氰化物的复杂性,这最终有助于选择正确的修复工艺。本工作包括对从一家综合钢厂收集的焦炉和高炉废水进行的比较特征描述。对两种不同来源的理化性质进行了为期三个月的数据分析和比较。还研究了理化性质与游离氰化物的 Pearson 相关分析。对焦炉和高炉水中的不同形式的氰化物及其干扰因素也进行了特征描述。结果表明,焦炉和高炉废水的水质完全不同。也明显看出,焦炉废水的游离氰化物浓度比高炉水更受影响。

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