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电氧化法对工业屠宰场废水的高效降解:尺寸稳定阳极(DSA)阳极材料对氧化及运行成本的影响

Efficient degradation of industrial slaughterhouse wastewater by electrooxidation process: impact of DSA anode materials on oxidation and operating costs.

作者信息

Akhtar Nawid Ahmad, Kobya Mehmet

机构信息

Department of Environmental Engineering, Kyrgyz-Turkish Manas University Bishkek, Kyrgyzstan.

Department of Environmental Engineering, Gebze Technical University Gebze, Türkiye.

出版信息

Environ Technol. 2025 Aug;46(20):3997-4009. doi: 10.1080/09593330.2025.2482975. Epub 2025 Mar 27.

DOI:10.1080/09593330.2025.2482975
PMID:40146728
Abstract

This research investigates the effect of the electrooxidation (EO) process on the treatment efficiency, discharge criteria, and water reuse or irrigation standards of industrial slaughterhouse wastewater (ISWW). The study was carried out on different anode materials such as (Ti/Pt-IrO, Ti/RuO-IrO, Ti/RuO, and Ti/IrO-TaO), current densities (50-150 A/m), and reaction time (0-540 min). COD, TOC, and turbidity removal efficiency under optimum conditions (anode = Ti/Pt-IrO, j = 150 A/m, and t = 360 min) were calculated as 99.6, 96.1, and 99.9%, respectively. The energy consumption and total operating cost were calculated as 68.3 kWh/m (15.4 and 50.6 kWh/kg COD or TOC) and 2.40 $/m (0.62 and 2.02 $/kg COD or TOC), respectively. Furthermore, the results are compared together with existing published/reported discharge criteria for adequate environmental release in different jurisdictions worldwide. Additionally, a relationship has been established between the World Bank Group/United States Environmental Protection Agency (WBG/US EPA) water reuse or irrigation standards. At the end of the study, the biodegradability of ISWW after EO was assessed using the carbon oxidation state (COS) and average oxidation state (AOS) parameters, and kinetic modeling with heterogeneous kinetics was comprehensively evaluated. The findings of the study show that the EO process using the Ti/Pt-IrO anode is an efficient method for the ISWW treatment.

摘要

本研究调查了电氧化(EO)工艺对工业屠宰场废水(ISWW)处理效率、排放标准以及水回用或灌溉标准的影响。该研究针对不同的阳极材料(如Ti/Pt-IrO、Ti/RuO-IrO、Ti/RuO和Ti/IrO-TaO)、电流密度(50 - 150 A/m²)和反应时间(0 - 540分钟)展开。在最佳条件下(阳极 = Ti/Pt-IrO,j = 150 A/m²,t = 360分钟),化学需氧量(COD)、总有机碳(TOC)和浊度的去除效率分别计算为99.6%、96.1%和99.9%。能耗和总运营成本分别计算为68.3 kWh/m³(15.4和50.6 kWh/kg COD或TOC)以及2.40美元/m³(0.62和2.02美元/kg COD或TOC)。此外,还将结果与全球不同司法管辖区已发布/报告的用于适当环境排放的现有排放标准进行了比较。此外,还建立了世界银行集团/美国环境保护局(WBG/US EPA)水回用或灌溉标准之间的关系。在研究结束时,使用碳氧化态(COS)和平均氧化态(AOS)参数评估了电氧化后工业屠宰场废水的生物降解性,并对非均相动力学的动力学模型进行了全面评估。研究结果表明,使用Ti/Pt-IrO阳极的电氧化工艺是处理工业屠宰场废水的有效方法。

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