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Photo-Fenton Degradation of Pentachlorophenol: Competition between Additives and Photolysis

机译:五氯苯酚的光芬顿降解:添加剂与光解之间的竞争

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摘要

In the present work, the photo-Fenton degradation of pentachlorophenol (PCP, 1 mg/L) has been studied under simulated and natural solar irradiation; moreover, the effect on the process efficiency of urban waste-derived soluble bio-based substances (SBO), structurally comparable to humic acids, has been investigated. Experiments showed a crucial role of PCP photolysis, present in the solar pilot plant and hindered by the Pyrex® filter present in the solar simulator. Indeed, the SBO screen negatively affects PCP degradation when working under natural solar light, where the photolysis of PCP is relevant. In contrast, in the absence of PCP photolysis, a significant improvement of the photo-Fenton process was observed when added to SBO. Furthermore, SBO were able to extend the application of the photo-Fenton process at circumneutral pH values, due to their ability to complex iron, avoiding its precipitation as oxides or hydroxides. This positive effect has been observed at higher concentration of Fe(II) (4 mg/L), whereas at 1 mg/L, the degradation rates of PCP were comparable in the presence and absence of SBO.
机译:在目前的工作中,已经研究了在模拟和自然阳光照射下五氯苯酚(PCP,1 mg / L)的光芬顿降解。此外,已经研究了结构上与腐殖酸相当的城市废物衍生的可溶性生物基物质(SBO)对工艺效率的影响。实验表明,PCP光解作用至关重要,存在于太阳能中试装置中,并且受到太阳能模拟器中存在的Pyrex ®过滤器的阻碍。实际上,当在自然光下工作时,SBO屏幕会对PCP的降解产生负面影响,而PCP的光解作用是至关重要的。相反,在不存在PCP光解的情况下,当添加到SBO中时,可以观察到光芬顿过程的显着改善。此外,由于SBO能够络合铁,避免了其以氧化物或氢氧化物形式沉淀,因此SBO能够在环境pH值下扩展光芬顿法的应用。在较高浓度的Fe(II)(4 mg / L)时观察到了这种积极作用,而在1 mg / L的条件下,存在和不存在SBO时PCP的降解率均相当。

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