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Non-hydroxyl radical mediated photochemical processes for dye degradation

机译:非羟基自由基介导的光化学降解方法

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Using solar energy for the decontamination of wastewater is a promising solution to the water-energy nexus. Current advanced oxidation processes have an unsatisfactory efficiency in the treatment of dye wastewater due to the non-selectivity of hydroxyl radicals. More efficient photochemical approaches for dye degradation are highly needed. Three diketones, biacetyl, acetylacetone, and acetonylacetone, were proven to be potent activators for the photodecoloration of azo, triarylmethane and anthraquinone dyes. The photodegradation kinetics of Acid Orange 7 in the UV/diketone processes was much faster than that in the UV/H2O2 system. Photo-induced energy and electron transfer were possible mechanisms for dye degradation in the diketone systems. Adducts of dye and acetylacetone were identified, indicating a unique dye degradation route through adduct formation and decomposition. Unlike acting only as the target substrate of OH in advanced oxidation processes, the dyes played vital roles in the UV/diketone processes. The findings here provide new insights for designing more efficient technologies for environmental remediation, based on diketone photochemistry.
机译:使用太阳能净化废水是解决水能关系的一种有前途的解决方案。由于羟基自由基的非选择性,当前先进的氧化方法在处理染料废水方面的效率不令人满意。迫切需要更有效的光化学方法来降解染料。事实证明,三种二酮(联乙酰基,乙酰丙酮和丙酮基丙酮)是偶氮,三芳基甲烷和蒽醌染料光脱色的有效活化剂。酸性橙7在UV /二酮过程中的光降解动力学比在UV / H2O2系统中快得多。光诱导的能量和电子转移是染料在二酮体系中降解的可能机制。鉴定出染料和乙酰丙酮的加合物,表明通过加合物形成和分解的独特的染料降解途径。与仅在高级氧化过程中仅充当OH的目标底物不同,染料在UV /二酮过程中起着至关重要的作用。本文的发现为基于二酮光化学设计更有效的环境修复技术提供了新的见识。

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