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铁碳微电解预处理有机过氧化物生产废水的效果及机理。

Effect and mechanism of iron-carbon micro-electrolysis pretreatment of organic peroxide production wastewater.

机构信息

School of Environmental and Municipal Engineering, Lanzhou Jiaotong University, Lanzhou, 730070, China.

Key Laboratory of Yellow River Water Environment of Gansu Province, Lanzhou, 730070, China.

出版信息

Environ Sci Pollut Res Int. 2024 Feb;31(8):11886-11897. doi: 10.1007/s11356-023-31057-8. Epub 2024 Jan 16.

Abstract

The wastewater from organic peroxide production has high chemical oxygen demand (COD) concentration and poor biodegradability, so it is necessary to find a cost-effective treatment method. The iron-carbon microelectrolysis (IC-ME) technology was used to pretreat the organic peroxide production wastewater, and the influence of reaction conditions on the removal effect of pollutants and the degradation mechanism were studied. The effects of initial pH, iron filings, iron-carbon ratio, and reaction time on the wastewater treatment were investigated by single-factor and response surface optimization experiments, and the degradation mechanism was analyzed by three-dimensional fluorescence spectroscopy, UV-Vis, and gas chromatography mass spectrometry (GC-MS). The experimental results showed that the COD removal efficiency was 35.67% and the biodegradability of wastewater was increased from 0.113 to 0.173 under the conditions of initial pH of 3.1, the dosage of iron filings of 30.5 g/L, the ratio of iron-carbon of 1.01, and the reaction time of 122.8 min, and the process of IC-ME for degrading COD of wastewater from the production of organic peroxide was consistent with the secondary reaction. The IC-ME process could decompose macromolecular organic compounds such as tyrosine proteins and aromatic proteins, and improve the biodegradability of wastewater. It provides a theoretical reference for the practical application of IC-ME to treat this type of wastewater.

摘要

有机过氧化物生产废水化学需氧量(COD)浓度高,可生化性差,因此需要寻找一种经济有效的处理方法。采用铁碳微电解(IC-ME)技术对有机过氧化物生产废水进行预处理,研究了反应条件对污染物去除效果和降解机制的影响。通过单因素和响应面优化实验考察了初始 pH 值、铁屑、铁碳比和反应时间对废水处理的影响,并通过三维荧光光谱、UV-Vis 和气相色谱质谱联用(GC-MS)分析了降解机制。实验结果表明,在初始 pH 值为 3.1、铁屑用量为 30.5 g/L、铁碳比为 1.01、反应时间为 122.8 min 的条件下,COD 去除率为 35.67%,废水的可生化性从 0.113 提高到 0.173,IC-ME 降解有机过氧化物生产废水中 COD 的过程符合二级反应。IC-ME 工艺可以分解酪氨酸蛋白和芳香族蛋白等大分子有机化合物,提高废水的可生化性。为 IC-ME 工艺实际应用于处理此类废水提供了理论参考。

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