电凝法处理乳制品废水的可持续方法:从饮料罐到净水

Nosa Idusuyi , Marzouq Adeyemi Adebayo , Chinenye Adaobi Igwegbe , Orhadahwe Thomas Aghogho , Anina James , Rasaq Adebayo Kazeem
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引用次数: 0

摘要

乳业废水具有高水平的生物需氧量(BOD)、化学需氧量(COD)和各种污染物,引起了重大的环境问题。本研究介绍了回收铝罐作为电凝电极的创新使用,提出了一种符合循环经济原则的环保和经济有效的废水处理方法。本研究探讨了电絮凝(EC)处理乳制品废水的效果,重点研究了处理时间、电压和pH水平对BOD、COD和浊度降低的影响。利用从饮料罐中提取的再生铝电极,采用三因素三水平正交阵列的田口设计。9项实验结果表明,较高的电压和碱性pH值显著提高了COD和BOD的去除效率。实验结果表明,在20 V和pH为9的条件下,处理时间为15分钟,COD去除率为91.67%,BOD去除率为95.36%。此外,采用田口法和TOPSIS法进行多响应优化,获得了最优的EC整体性能参数。对浊度去除效率的分析表明,电压和处理时间对浊度去除效率有显著影响。该研究为优化电絮凝工艺高效处理乳制品废水提供了有价值的见解,为环境保护和资源回收提供了可持续的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A sustainable approach to dairy wastewater treatment through electrocoagulation: From beverage cans to clean water
Dairy industry wastewater, laden with high levels of biological oxygen demand (BOD), chemical oxygen demand (COD), and various pollutants, poses significant environmental concerns. This study introduces the innovative use of recycled aluminium cans as electrodes for electrocoagulation, presenting an eco-friendly and cost-effective approach to wastewater treatment that aligns with circular economy principles. This study explores the efficacy of electrocoagulation (EC) in treating dairy wastewater, focusing on the influence of treatment duration, voltage, and pH levels on BOD, COD, and turbidity reduction. Utilizing recycled aluminium electrodes derived from beverage cans, a Taguchi design of experiments with a 3-factor, 3-level orthogonal array was employed. Results from nine experiments reveal that higher voltages and alkaline pH levels notably enhanced COD and BOD removal efficiencies. For instance, high removal rates of 91.67 % for COD and 95.36 % for BOD were achieved at 20 V and pH 9 over a 15-minute treatment duration were obtained from experiments. Furthermore, optimal overall EC performance parameters were obtained using Taguchi and Multi-response optimization using TOPSIS. Analysis of turbidity removal efficiencies demonstrates the significant impact of voltage and treatment duration. The study provides valuable insights into optimizing electrocoagulation processes for efficient treatment of dairy wastewater, offering a sustainable solution for environmental preservation and resource recovery.
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