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石墨烯纳米片上的 NiCr 层状双氢氧化物纳米结构用于声光电催化降解难处理抗生素。

Nanoarchitecture of graphene nanosheets decorated with NiCr layered double hydroxide for sonophotocatalytic degradation of refractory antibiotics.

机构信息

Department of Environmental Engineering, Gebze Technical University, 41400, Gebze, Turkey.

Department of Environmental Engineering, Gebze Technical University, 41400, Gebze, Turkey; Research Laboratory of Advanced Water and Wastewater Treatment Processes, Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz, 51666-16471 Tabriz, Iran.

出版信息

Environ Res. 2022 Nov;214(Pt 1):113788. doi: 10.1016/j.envres.2022.113788. Epub 2022 Jul 3.

Abstract

Highly efficient and durable catalysts for wastewater treatment are urgently required to tackle critical environmental issues. In this regard, NiCr LDH (NC), NiCr LDH-GO (NC-GO), and NiCr LDH-rGO (NC-rGO) nanocomposites were synthesized. The results of XRD, EDX, and FTIR analyses not only explored the crystallographic and chemical structures of catalysts but also confirmed the successful synthesis. Further morphological, physical, chemical, and optical characteristics of the catalysts were evaluated more by SEM, HRTEM, BET, DRS, and XPS techniques. The as-synthesized catalysts were used for the efficient mineralization of rifadin under 50 W LED visible light irradiation and the ultrasonic power of 150 W. Amongst, 0.75 g L of NC-rGO demonstrated high sonophotocatalytic efficiency (88%) in natural pH (pH = 8) of 15 mg L of rifadin. The introduced system is also powerful for the decontamination of pharmaceutical-containing wastewater as well as other refractory antibiotics. Moreover, the radical trapping experiments demonstrated that the main reactive species involved in the degradation of rifadin are OH, h, and O. The possible intermediates were thoroughly investigated using GCMS analysis. Also, NC-rGO demonstrated superior antibacterial activity in comparison with NC, NC-GO samples.

摘要

为了解决重大环境问题,急需开发高效、耐用的废水处理催化剂。在这方面,我们合成了 NiCr LDH(NC)、NiCr LDH-GO(NC-GO)和 NiCr LDH-rGO(NC-rGO)纳米复合材料。XRD、EDX 和 FTIR 分析的结果不仅探讨了催化剂的晶体和化学结构,还证实了成功的合成。进一步通过 SEM、HRTEM、BET、DRS 和 XPS 技术评估了催化剂的形态、物理、化学和光学特性。将合成的催化剂用于在 50 W LED 可见光照射和 150 W 超声功率下高效矿化 rifadin。在自然 pH(pH = 8)下,0.75 g/L 的 NC-rGO 对 15 mg/L 的 rifadin 表现出高的超声光催化效率(88%)。该体系还可用于处理含药物废水和其他难降解抗生素。此外,自由基捕获实验表明,rifadin 降解过程中的主要活性物质是 OH、h 和 O。通过 GCMS 分析彻底研究了可能的中间体。与 NC、NC-GO 样品相比,NC-rGO 表现出更好的抗菌活性。

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