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首页> 外文期刊>Water, Air, and Soil Pollution >Degradation of Phenol in Water Using a Novel Gas-Liquid Two-Phase Dielectric Barrier Discharge Plasma Reactor
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Degradation of Phenol in Water Using a Novel Gas-Liquid Two-Phase Dielectric Barrier Discharge Plasma Reactor

机译:新型气液两相介质阻挡放电等离子体反应器降解水中的苯酚

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摘要

Phenol is toxic to human and persistent in the environment. Traditional treatment methods have the disadvantages of long treatment time, large amount of agents, and secondary pollution. In this study, a novel gas-liquid two-phase dielectric barrier discharge reactor was designed to remove phenol in aqueous solution. The effects of operating conditions (applied voltage, discharge spacing, pH, and conductivity), different water matrix (deionized water, groundwater, surface water, tap water), and inorganic ions were investigated. Moreover, the reaction mechanisms and the possible degradation pathway were proposed. The removal efficiency of phenol achieved 95.5% under the optimal operating conditions (discharge voltage of 17.6 kV, discharge gap of 1 mm, air flow rate of 60 mL min(-1)) coupling with H2O2 at 10 mM. The presence of different concentrations of inorganic ions (0.1, 1, 10, and 20 mM) could inhibit the phenol removal efficiencies. Specially, Cl- had different effects on phenol removal efficiency. The inhibition of Cl- on phenol removal was weakened when Cl- concentration was greater than 1 mM, which allows the technology that has certain advantages in treating high-salt wastewater containing high chloride concentration. In addition, (OH)-O-center dot was verified as the main active species in phenol removal. The possible degradation pathway was proposed according to theoretical calculation and GC-MS measurement.
机译:苯酚对人有毒并在环境中持久存在。传统的处理方法具有处理时间长,药剂量大和二次污染的缺点。在这项研究中,设计了一种新型的气液两相介质阻挡放电反应器,以去除水溶液中的苯酚。研究了操作条件(施加电压,放电间隔,pH和电导率),不同水基质(去离子水,地下水,地表水,自来水)和无机离子的影响。此外,提出了反应机理和可能的降解途径。在最佳运行条件下(放电电压为17.6 kV,放电间隙为1 mm,空气流速为60 mL min(-1))与10 mM的H2O2结合,苯酚的去除效率达到了95.5%。不同浓度的无机离子(0.1、1、10和20 mM)的存在会抑制苯酚的去除效率。特别地,Cl-对苯酚去除效率的影响不同。当Cl-浓度大于1 mM时,Cl-对苯酚去除的抑制作用减弱,这使得该技术在处理高氯化物浓度的高盐废水中具有一定优势。此外,已证实(OH)-O-中心点是去除苯酚的主要活性物质。根据理论计算和GC-MS测定,提出了可能的降解途径。

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