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电化学氧化法处理实际染色废水中氨氮的工艺优化。

Process Optimization of Electrochemical Oxidation of Ammonia to Nitrogen for Actual Dyeing Wastewater Treatment.

机构信息

College of Biology and Environmental Engineering, Zhejiang Shuren University, Hangzhou 310015, China.

College of Environment, Zhejiang University of Technology, Hangzhou 310014, China.

出版信息

Int J Environ Res Public Health. 2019 Aug 15;16(16):2931. doi: 10.3390/ijerph16162931.

Abstract

To mitigate the potential environmental risks caused by nitrogen compounds from industrial wastewater, residual ammonia after conventional wastewater treatment should be further eliminated. In this work, an electrochemical oxidation process for converting ammonia to nitrogen in actual dyeing wastewater was investigated. The effects of the main operating parameters, including initial pH value, applied current density, NaCl concentration, and flow, were investigated on ammonia removal and products distribution. Experimental results indicated that, under optimal conditions of an initial pH value of 8.3, applied current density of 20 mA cm, NaCl concentration of 1.0 g L, and flow of 300 mL min, the ammonia could be completely removed with N selectivity of 88.3% in 60 min electrolysis. A kinetics investigation using a pseudo-first-order model provided a precise description of ammonia removal during the electro-oxidation process. Experimental functions for describing the relationships between kinetic constants of ammonia removal and main operating parameters were also discussed. Additionally, the mechanisms and economic evaluation of ammonia oxidation were conducted. All these results clearly proved that this electro-oxidation process could efficiently remove ammonia and achieve high N selectivity.

摘要

为了减轻工业废水中含氮化合物可能带来的环境风险,应进一步去除常规废水处理后的残余氨。在这项工作中,研究了一种电化学氧化工艺,用于将实际染色废水中的氨转化为氮。考察了主要操作参数,包括初始 pH 值、施加电流密度、NaCl 浓度和流量,对氨去除和产物分布的影响。实验结果表明,在初始 pH 值为 8.3、施加电流密度为 20 mA cm、NaCl 浓度为 1.0 g L 和流量为 300 mL min 的最佳条件下,氨可在 60 min 电解中完全去除,N 选择性为 88.3%。采用准一级动力学模型进行的动力学研究,对电氧化过程中氨去除的动力学进行了精确描述。还讨论了描述氨去除动力学常数与主要操作参数之间关系的实验函数。此外,还进行了氨氧化的机理和经济评价。所有这些结果清楚地证明,该电氧化工艺可以有效地去除氨并实现高 N 选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b713/6720899/fce969dab4aa/ijerph-16-02931-g001.jpg

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