Improved bacterial elimination in wastewater through electrocoagulation: hydrogen generation, adsorption of colloidal bacteria-flocks, and electric field bactericidal action

Nouara Boudjemaa, Mohamed Kherat, N. Mameri
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Abstract

Electrocoagulation (EC) has emerged as a promising method for wastewater treatment, offering efficient removal of various contaminants, including bacteria. This study investigates the mechanisms underlying bacterial removal in EC processes, mainly the hydrogen-mediated foam, the effect of operational parameters, including initial pH, current density, and reaction time, and evaluates the associated energy consumption. The EC reactor employed aluminum electrodes and operated at a current intensity of 3.0 A. It demonstrated a notable bacterial removal efficiency, with 120.102 UFC ml−1 of mesophyll floral aerobic bacteria removed through colloid bacteria-flocs precipitation, 440.102 UFC ml−1 via bacterial-bulls flotation from foam, and 117.102 UFC ml−1 through attraction at the electrodes’ plate surface. We found that the EC process leads to the formation of aluminum hydroxide and ferrous hydroxide precipitates, which adsorb bacteria and facilitate their removal from the wastewater via electrostatic forces with an energy consumption of 45 kWh/m3. Overall, this research provides valuable insights into the mechanisms governing bacterial removal in EC and highlights the importance of energy consumption analysis for optimizing wastewater treatment processes.
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通过电凝改善废水中的细菌消除效果:氢气生成、胶体菌群吸附和电场杀菌作用
电凝聚(EC)是一种很有前途的废水处理方法,能有效去除包括细菌在内的各种污染物。本研究探讨了电凝过程中细菌去除的基本机制(主要是氢介导泡沫)、运行参数(包括初始 pH 值、电流密度和反应时间)的影响,并评估了相关能耗。电解反应器采用铝电极,在 3.0 A 的电流强度下运行。该反应器具有显著的细菌去除效率,通过胶体细菌-絮凝物沉淀去除 120.102 UFC ml-1 的中生花生好氧菌,通过泡沫中的细菌-菌球浮选去除 440.102 UFC ml-1,通过电极板表面的吸引去除 117.102 UFC ml-1。我们发现,电解过程会形成氢氧化铝和氢氧化亚铁沉淀物,这些沉淀物会吸附细菌,并通过静电力将细菌从废水中去除,能耗为 45 kWh/m3。总之,这项研究为了解 EC 中的细菌去除机制提供了宝贵的见解,并强调了能耗分析对于优化废水处理工艺的重要性。
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