石墨烯量子点与甲酸协同光催化还原六价铬的优化及动力学研究

Silmina Silmina, Xi-lin Wu, Christine Rolle, Feng Chen, Hao Wang, Silva Khairunnisa, H. Husin, F. Abnisa
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摘要

石墨烯量子点(GQDs)在环境修复方面引起了极大的兴趣,特别是在将六价铬[Cr (VI)]还原为三价铬[Cr (III)]方面。研究了GQDs和甲酸(FA)在紫外-可见光下光催化降解Cr (VI)的过程。通过批量实验,观察了不同GQDs、FA和Cr (VI)浓度及不同pH水平下紫外-可见光催化降解Cr (VI)的过程。GQDs的表征包括PL、XPS、XRD和拉曼光谱。研究表明,GQDs与FA结合用于光催化还原Cr (VI)是可行的。正如预期的那样,该体系在Cr (VI)浓度较低时效果更好。当引入FA时,Cr (VI)的降解效率提高。GQDs/FA/Uv-vis体系在30 min内的降解率最高,为91.1%。结果表明,该溶液的最佳pH为5.42,GQDs可快速溶解。光催化还原反应符合一级反应动力学,速率常数(k)为0.1085 min−1,R2为0.985。GQDs/FA/Uv-vis体系降解Cr (VI)的主要自由基是CO2•−。这些发现突出了GQDs和FA作为Uv-vis光催化还原Cr (VI)的有效催化剂的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergistic Photocatalytic Reduction of Hexavalent Chromium Using Graphene Quantum Dots and Formic Acid Optimization and Kinetics
Graphene Quantum Dots (GQDs) has garnered a significant deal of interest in environmental remediation, particularly for reducing hexavalent chromium [Cr (VI)] to trivalent chromium [Cr (III)]. This study focused on the photocatalytic process of Cr (VI) degradation using GQDs and Formic Acid (FA) under Uv-vis light. Batch experiments were conducted to observe the photocatalytic process of Cr (VI) degradation under Uv-vis light irradiation at varying concentrations of GQDs, FA, and Cr (VI) and different pH levels. The characterization of GQDs includes PL, XPS, XRD, and Raman Spectroscopy. This research revealed that combining GQDs and FA for the photocatalytic process of Cr (VI) reduction is possible. As expected, this system is more effective with lower concentrations of Cr (VI). When FA was introduced, the Cr (VI) degradation efficiency ratio increased. The GQDs/FA/Uv-vis system gave the highest degradation rate at 91.1% within 30 minutes. It was also observed that the optimum pH of the solution was 5.42, where the GQDs were quickly dissoluble. The photocatalytic reduction matched first-order reaction kinetics with a rate constant (k) of 0.1085 min−1 and R2 of 0.985. The primary radical in the degradation of Cr (VI) in the GQDs/FA/Uv-vis system was CO2•−. These findings highlight the potential of GQDs and FA as efficient catalysts for the photocatalytic reduction of Cr (VI) under Uv-vis light.
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