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芬顿工艺处理皮革染色工业污染废水能力分析。

Analysis of the Capacity of the Fenton Process for the Treatment of Polluted Wastewater from the Leather Dyeing Industry.

机构信息

Laboratorio de Materiales y Procesos Reactivos (LM&PR), Grupo de Investigación en Procesos Reactivos Intensificados y Materiales Avanzados (PRISMA), Departamento de Ingeniería Química, Facultad de Ingeniería y Arquitectura, Universidad Nacional de Colombia, Sede Manizales, Campus La Nubia, Apartado Aéreo 127, Manizales, Caldas, Colombia.

Laboratorio de Materiales y Procesos Reactivos (LM&PR), Grupo de Investigación en Procesos Reactivos Intensificados y Materiales Avanzados (PRISMA), Departamento de Física y Química, Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Colombia, Sede Manizales, Campus La Nubia, Apartado Aéreo 127, Manizales, Caldas, Colombia.

出版信息

ScientificWorldJournal. 2023 Apr 6;2023:4724606. doi: 10.1155/2023/4724606. eCollection 2023.

Abstract

In this work, the capacity of the Fenton oxidation process for the degradation of color and organic matter contained in the wastewater generated in the leather dyeing stage (WWDS) of an industrial tannery was evaluated. The wastewater characteristics included, among others, high toxicity (lethal concentration for , 24 h test, 50% of population = 93.71 ppm), high dye concentration (36 mg/L, yellow color), high chromium concentration (3.34 mg/L), and low biodegradability index (BOD/COD ratio = 0.083). From an experimental design, the response surface methodology, and the multiobjective optimization analysis, the following optimal operating conditions were established: initial pH = 3.15, [Fe] = 0.981 mM, and [HO] = 5.38 mM. After 10 min of oxidation (determined from kinetic studies), it reached approximately 97% decolorization, COD reduction of approximately 82%, and TOC mineralization of approximately 92%. A synergistic effect of Fenton's reagents for TOC removal (  = 0.8) and decolorization (  = 0.28) of the WWDS under study was confirmed experimentally. An increase in the biodegradability index, to a value of approximately 0.3, was confirmed. The cost of the treatment was estimated at 0.0112 USD/m. Thus, the Fenton oxidation process allowed compliance with current Colombian environmental regulations and considerably improved the biodegradability and toxicity characteristics of the studied industrial effluent. It can be considered as an efficient alternative, easy to carry out on an industrial batch scale, and economically viable for the treatment of wastewater from the leather dyeing stage of an industrial tannery.

摘要

本工作评估了芬顿氧化工艺对制革工业鞣制阶段废水(WWDS)中所含颜色和有机物的降解能力。废水特性包括高毒性(对鱼类的 24 小时测试半数致死浓度, = 93.71ppm)、高染料浓度(36mg/L,黄色)、高铬浓度(3.34mg/L)和低生物降解性指数(BOD/COD 比 = 0.083)。通过实验设计、响应面法和多目标优化分析,确定了以下最佳操作条件:初始 pH = 3.15、[Fe] = 0.981mM 和 [HO] = 5.38mM。经过 10 分钟的氧化(由动力学研究确定),其达到了约 97%的脱色率、约 82%的 COD 去除率和约 92%的 TOC 矿化率。实验证实了 Fenton 试剂对研究中 WWDS 的 TOC 去除( = 0.8)和脱色( = 0.28)具有协同作用。还证实了生物降解性指数增加到约 0.3。处理成本估计为 0.0112 美元/m。因此,芬顿氧化工艺符合当前哥伦比亚环境法规,并大大改善了研究中工业废水的生物降解性和毒性特征。它可以被认为是一种有效的替代方法,易于在工业批量规模上进行,并且在经济上可行,可用于处理工业鞣制阶段的废水。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44b5/10101747/8140d73187a8/TSWJ2023-4724606.001.jpg

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