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Bmim[OAc]-Cu2O/g-C3N4 as a multi-function catalyst for sonophotocatalytic degradation of methylene blue

机译:BMIM [OAC] -Cu2O / G-C3N4作为异常催化剂的多功能催化剂,用于亚甲基蓝色催化降解

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摘要

In this study, ionic liquid, 1-butyl-3-methylimidazolium acetate (Bmim [OAc]) modified cuprous oxide immobilized over graphitic carbon nitride (Bmim [OAc]-Cu2O/g-C3N4) as an efficient heterogeneous catalyst was successfully prepared by depositing Bmim[OAc]-Cu2O over the surface of g-C3N4. The deposition of cuprous oxide over the surface of g-C3N4 leads to the formation of a heterojunction that promotes the charge separation. Cu2O enhances the degradation capability owing to its dual function where it acts as a photocatalyst and Fenton like catalyst. Bmim[OAc] plays a vital role in trapping the photogenerated electrons, which in turn reduce the chances of electron-hole pairs recombination. Sonophotocatalytic degradation of methylene blue (MB) was investigated using the prepared Bmim[OAc]-Cu2O/g-C3N4 at room temperature and pH = 7 in presence of ultraviolet (UV, 6 W, lambda = 254 nm) and ultrasonic (US, 20 kHz) as a dual irradiation system and H2O2 as an oxidant. Only 30 min of dual irradiation was enough for Bmim[OAc]-Cu2O/g-C3N4 (0.1 gL(-1)) to achieve a complete degradation using 10 mM H2O2 at 25 degrees C and pH = 7. The value of band gap of tested catalyst plays a vital role in boosting the degradation capability of the sonophotocatalytic system through the generated reactive radicals especially the hydroxyl radicals and superoxide radicals, which play a major role in the system. The kinetics of the reaction was investigated and the activation energy was calculated from the slope of the Arrhenius plot and found to be 19.77 kJ/mol.
机译:在该研究中,通过以有效的非均相催化剂成功地制备了在固定在石墨碳氮化物(Bmim [OAC] -Cu2O / G-C3N4)上固定的氧化亚铜的离子液体,1-丁基-3-甲基咪唑鎓(BMIM [OAC])改性氧化物在G-C3N4的表面上沉积BMIM [OAC] -CU2O。在G-C3N4的表面上沉积氧化亚铜导致形成促进电荷分离的异质结。 Cu2O由于其双重功能而增强了降解能力,其中它充当光催化剂和芬顿催化剂。 BMIM [OAC]在捕获光发射电子时起着至关重要的作用,这反过来减少了电子孔对重组的机会。在室温下在室温下使用制备的BMIM [OAC] -Cu2O / G-C3N4在紫外线(UV,6W,Lambda = 254nm)和超声(美国, 20 kHz)作为双辐射系统和H2O2作为氧化剂。 BMIM [OAC] -CU2O / G-C3N4(0.1G1(-1))仅使用30分钟的双辐射仅使用10mm H 2 O 2在25℃和pH = 7处实现完全降解。带隙的值测试催化剂在通过产生的活性自由基尤其是羟基自由基和超氧化物自由基来增强声光催化系统的降解能力,这起到了至关重要的作用。研究了反应的动力学,并从Arrhenius图的斜率计算激活能量,发现为19.77kJ / mol。

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