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Electrolysis-assisted UV/sulfite oxidation for water treatment with automatic adjustments of solution pH and dissolved oxygen

机译:用于水处理的电解辅助UV /亚硫酸盐氧化,自动调节溶液pH和溶解氧溶解氧气

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Sulfite as a precursor to generate sulfate radical (SO4 center dot-) for water treatment has gained attention. Here we report a metal-free and highly efficient electro/UV/sulfite process to produce SO4 center dot- for water treatment. UV/sulfite reaction induces sulfite radical (SO3 center dot-), which is transformed into SO4 center dot- by the presence of oxygen due to water electrolysis. Electro/UV/sulfite process generates a steady-state SO4 center dot- concentration of 0.2 to 1.1 x 10(-12) M in our tests. Solution pH affects sulfite species distribution, and higher pH mediates improved yield of steady-state SO4 center dot- concentration. Effect of sulfite concentration exhibits a bell-shaped pattern toward SO4 center dot- production due to self-scavenging. The oxidation capability of electro/UV/sulfite process is manifested by removing representative micropollutants (i.e., ibuprofen, salicylic acid, and bisphenol A) and Escherichia coli model pathogen, in both synthetic and natural water matrices. This novel electro/UV/sulfite process has obvious advantages, since it avoids metal ion catalysts, supplies reaction with electrolytically generated nascent oxygen, and overcomes the acidic pH requirement, that are challenging to traditional metal/sulfite processes. Considering the features of environmental friendliness and low cost, the proposed electro/UV/sulfite process should lead to successful applications in the future.
机译:亚硫酸盐作为水处理中生成硫酸根(SO4中心点-)的前体已引起人们的关注。在这里,我们报告了一种无金属、高效的电/紫外/亚硫酸盐工艺,用于生产水处理用SO4中心点。UV/亚硫酸盐反应诱导亚硫酸盐自由基(SO3中心点-),由于水电解的存在,亚硫酸盐自由基被转化为SO4中心点-。在我们的测试中,电/紫外/亚硫酸盐工艺产生的SO4中心点浓度为0.2至1.1 x 10(-12)M。溶液pH值影响亚硫酸盐物种分布,较高pH值可提高稳态SO4中心点浓度的产率。亚硫酸盐浓度对SO4中心点生成的影响呈钟形,这是由于亚硫酸盐的自清除作用。通过去除合成水和天然水基质中的代表性微污染物(即布洛芬、水杨酸和双酚A)和大肠杆菌模型病原体,证明了电/紫外线/亚硫酸盐法的氧化能力。这种新型的电解/紫外/亚硫酸盐工艺具有明显的优势,因为它避免了金属离子催化剂,提供了电解生成的新生氧气,并克服了传统金属/亚硫酸盐工艺所面临的酸性pH要求。考虑到环境友好和低成本的特点,建议的电/紫外/亚硫酸盐工艺将在未来获得成功的应用。

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