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A new, cost-effective solar photoactive system N-ZnO@polyester fabric for degradation of recalcitrant compound in a continuous flow reactor

机译:一种新型,经济有效的太阳能光敏体系N-ZnO @聚酯织物,用于降解连续流反应器中的顽固性化合物

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摘要

A novel solar photoactive system, consisting of N-ZnO particles coated on a polyester fabric (PF), is prepared using a simple heat attachment method. The photocatalytic activity of the photoactive system (N-ZnO@PF) for amaranth (AM) degradation is studied in a circulation thin-film fixed-bed reactor (TFFBR) under solar light. The presence of N-ZnO particles evenly coated on the PF surface is verified by XRD, ATR-FTIR, and SEM analyses. On the basis of DRS analysis, N-ZnO@PF is shown to have remarkable visible-NIR absorbance. N doping, which is confirmed by XPS and NEXAFS analyses, is responsible for a remarkable spectral response. As initial AM concentration, flow rate, reactor inclination, and salinity increases, the AM degradation decreases. AM degradation reaches to 99.2% at 10 mg/L concentration. The IUPAC figures-of-merit are comparable to those of some existing photoactive systems with advantages of simple construction, easy maintenance, and low costs of investment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用简单的热附接方法制备了一种新型的太阳光活性体系,该体系由涂覆在聚酯织物(PF)上的N-ZnO颗粒组成。在太阳光下的循环薄膜固定床反应器(TFFBR)中研究了光活性体系(N-ZnO @ PF)对for菜(AM)降解的光催化活性。通过XRD,ATR-FTIR和SEM分析验证了均匀涂在PF表面的N-ZnO颗粒的存在。在DRS分析的基础上,N-ZnO @ PF具有明显的可见-NIR吸收率。 XPS和NEXAFS分析证实,N掺杂可引起显着的光谱响应。随着初始AM浓度,流速,反应器倾斜度和盐度的增加,AM降解降低。在10 mg / L的浓度下,AM降解达到99.2%。 IUPAC的品质因数可与一些现有的光敏系统相媲美,具有结构简单,易于维护,投资成本低的优点。 (C)2016 Elsevier Ltd.保留所有权利。

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