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Degradation of propyl paraben by activated persulfate using iron-containing magnetic carbon xerogels: investigation of water matrix and process synergy effects

机译:用含铁磁性碳氧化物通过活化过硫酸盐降解丙酯:水基质的研究和过程协同效应

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摘要

An advanced oxidation process comprising an iron-containing magnetic carbon xerogel (CX/Fe) and persulfate was tested for the degradation of propyl paraben (PP), a contaminant of emerging concern, in various water matrices. Moreover, the effect of 20?kHz ultrasound or light irradiation on process performance was evaluated. The pseudo-first order degradation rate of PP was found to increase with increasing SPS concentration (25–500?mg/L) and decreasing PP concentration (1690–420?μg/L) and solution pH (9–3). Furthermore, the effect of water matrix on kinetics was detrimental depending on the complexity (i.e., wastewater, river water, bottled water) and the concentration of matrix constituents (i.e., humic acid, chloride, bicarbonate). The simultaneous use of CX/Fe and ultrasound as persulfate activators resulted in a synergistic effect, with the level of synergy (between 35 and 50%) depending on the water matrix. Conversely, coupling CX/Fe with simulated solar or UVA irradiation resulted in a cumulative effect in experiments performed in ultrapure water.
机译:在各种水基质中测试了一种高级氧化方法,用于丙基帕塞(PP)的丙基(PP)的污染物,在各种水基质中进行丙基丙酯(PP)的降解。此外,评估了20 kHz超声波或光照射对工艺性能的影响。发现PP的伪一级降解率随着SPS浓度(25-500〜Mg / L)的增加而增加,并降低PP浓度(1690-420 ~g / L)和溶液pH(9-3)。此外,根据复杂性(即废水,河水,瓶装水)和基质成分(即腐殖酸,氯化物,碳酸氢盐)的浓度,水基质对动力学的影响是有害的。同时使用Cx / Fe和超声作为过硫酸盐活化剂导致协同效应,同时具有协同效应水平(35至50%),取决于水基质。相反,通过模拟的太阳能或UVA辐射耦合CX / FE导致在超纯水中进行的实验中的累积效果。

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