电絮凝法高效去除水环境中双酚A的研究:有前途的处理策略

M. Dolatabadi, Roya Malekahmadi, A. Ghorbanian, Saeid Ahmadzadeh
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引用次数: 4

摘要

引言:内分泌破坏性化合物作为水生环境中的一类有机污染物,在过去几十年中受到了广泛关注。双酚A(BPA)作为一种危险的有机化学品释放到环境中引起了人们对健康和环境的高度关注。因此,强烈建议将其从水生环境中清除。本研究涉及使用电凝聚工艺(ECP)从水性环境中去除BPA的效率。材料和方法:研究了BPA浓度(1-10mg L-1)、电流密度(3-15mA cm-2)、pH(4-10)和反应时间(5-30min)等参数对处理过程的影响。采用响应面法对ECP进行了优化。通过所获得的F值和P值来研究所开发的模型的意义。结果:当pH为8.5,BPA浓度为3.25mg L-1,电流密度为12.0mA cm-2,反应时间为23min时,BPA的最大去除率为98.2%。46.69的高F值和<0.0001的极低P值证实了该模型的重要性。此外,在最佳条件下,该工艺的电能消耗为0.308kWhm-3。结论:实验结果表明,共沉淀和静电相互作用吸附过程是控制处理过程的主要去除机制。
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Investigation of Electrocoagulation Process for Efficient Removal of Bisphenol A from the Aqueous Environment: Promising Treatment Strategy
Introduction: Endocrine disruptive compounds as a class of organic contaminants in the aquatic environment received severe attention in the last decades. The release of bisphenol A (BPA) as a hazardous organic chemical into the environment has caused high health and environmental concerns. Therefore, its removal from aquatic environments is strongly recommended. The present study deals with BPA removal efficiency from an aqueous environment using the electrocoagulation process (ECP). Materials and Methods: The effects of parameters including BPA concentration (1-10 mg L-1), current density (3-15 mA cm-2), pH (4-10), and reaction time (5-30 min) on the treatment process were investigated. Response surface methodology (RSM) was employed for optimization of the ECP. The significance of the developed model was investigated by the obtained F-value and P-value. Results: The maximum BPA removal of 98.2% was attained at pH of 8.5, BPA concentration of 3.25 mg L-1, the current density of 12.0 mA cm-2, and reaction time of 23 min. The significance of the developed model was confirmed by the high F-value of 46.69 and the very low P-value of < 0.0001. Furthermore, the electrical energy consumption of the process was found to be 0.308 kWh m-3 in the optimum condition. Conclusion: The obtained experimental results revealed that the co-precipitation and the adsorption process through the electrostatic interactions as the main removal mechanisms controlled the treatment process.
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来源期刊
Journal of Environmental Health and Sustainable Development
Journal of Environmental Health and Sustainable Development Engineering-Engineering (miscellaneous)
CiteScore
1.10
自引率
0.00%
发文量
24
审稿时长
9 weeks
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