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使用磷改性碳纤维毡电极增强次氯酸的电解生产:消毒剂合成研究。

Enhanced electrolytic production of hypochlorous acid using phosphorus-modified carbon felt electrodes: A study in disinfectant synthesis.

机构信息

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, 150090, PR China.

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, 150090, PR China.

出版信息

Chemosphere. 2024 Oct;365:143367. doi: 10.1016/j.chemosphere.2024.143367. Epub 2024 Sep 19.

Abstract

In this study, we fabricated phosphorus-modified carbon felt electrode anodes for chloride oxidation in saline solutions to produce HClO via electrocatalysis, forming a compound fungicide saline applicable for debridement and disinfection. A low-cost phosphorus-modified carbon felt electrode (P@CF) with high chlorine evolution reaction activity was synthesized to address the reduced efficiency of CER and the solution's pH increase. Heteroatoms P and O were introduced into the carbon felt by phosphoric acid activation followed by heat treatment. The maximum active chlorine concentration on the P@CF electrode could reach 616.8 mg/L in 60 min under the optimal synthesis conditions of a phosphoric acid mass fraction of 30%, a phosphoric acid impregnation time of 3 h, and a heat treatment temperature of 300 °C. The active chlorine concentration was 1.8 times higher on the P@CF electrode compared to the original carbon felt electrode. The optimal reaction conditions for the generation of active chlorine were as follows: salt concentration of 9 g/L, voltage of 7 V, and electrode spacing of 2 cm as verified by response surfaces. This electrolysis reaction follows one-stage reaction kinetics. Subsequently, the disinfection efficacy of the produced disinfectants was examined. The prepared disinfectant was also compared to a commercially available hypochlorite disinfectant, showing similar disinfection effects on E. coli for both.

摘要

在这项研究中,我们制备了磷改性碳毡电极阳极,用于在盐溶液中电催化氧化氯离子生成 HClO,从而形成一种可用于清创和消毒的复合盐类杀菌剂。我们合成了一种低成本的磷改性碳毡电极(P@CF),具有高的氯析出反应活性,以解决 CER 效率降低和溶液 pH 值升高的问题。通过磷酸活化和随后的热处理,将杂原子 P 和 O 引入到碳毡中。在磷酸质量分数为 30%、磷酸浸渍时间为 3 h、热处理温度为 300°C 的最佳合成条件下,P@CF 电极上的最大活性氯浓度在 60 min 内可达到 616.8 mg/L。与原始碳毡电极相比,P@CF 电极上的活性氯浓度提高了 1.8 倍。通过响应面法验证,生成活性氯的最佳反应条件为:盐浓度 9 g/L、电压 7 V、电极间距 2 cm。该电解反应遵循一级反应动力学。随后,我们考察了所制备消毒剂的消毒效果。所制备的消毒剂与市售次氯酸盐消毒剂进行了比较,发现两者对大肠杆菌的消毒效果相似。

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