构建多种Sr2V2O7碳纳米复合材料以增强有机污染物的光降解潜力:声化学合成、表征、条件和机制优化

IF 5.7 3区 环境科学与生态学 Q1 WATER RESOURCES
Hajar Jafari, Rozita Monsef, Elmuez A. Dawi, Forat H. Alsultany, Rouhollah Mirzaei, Masoud Salavati-Niasari
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引用次数: 0

摘要

本研究采用声化学合成Sr2V2O7 (SVO)纳米粒子,利用碳包覆的冲击作用,在可见光辐射下破坏被罗丹明B (RhB)、亚甲基蓝(MB)、甲基橙(MO)等有害污染物污染的溶液。利用不同的胺模板,在超声反应中具有沉淀/封盖剂的双重功能,鉴定技术在teta存在下获得了形貌理想的三斜状SVO样品,其平均表面积为72.08 nm,比表面积为14.621 m2/g。为了最大限度地减少电荷复合,增加表面积/光活性位点,并向更大的波长窗口转移,研究人员在SVO表面上掺入不同的碳结构。特别是,详细的光降解研究遵循MO <; MB <; RhB的顺序,与其他获得的SVO基化合物相比,二元SVO/g-C3N4纳米复合材料的效率最高。起始RhB浓度和催化剂用量的光操作变量表明,在120 min的可见光照射下,降解率可达89.39%,可得到50 mg的SVO/g-C3N4纳米复合材料和10 ppm的染料。合成的SVO/g-C3N4纳米复合材料具有较高的光耐久性,5次再生过程中活性仅降低14.39%。希望基于SVO纳米颗粒和g-C3N4纳米片的光催化异质结构设计能够有效地调节界面电荷转移途径,从而实现环境净化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Architecting diverse carbonous nanocomposites of Sr2V2O7 for enhanced photodegradation potential of organic pollutants: sonochemical synthesis, characterization, optimization of conditions and mechanisms

The present study equips sonochemical synthesis of Sr2V2O7 (SVO) nanoparticles with carbon coating’s impact to destroy the solutions polluted with hazardous contaminants including rhodamine B (RhB), methylene blue (MB), and methyl orange (MO) under visible-light radiation. Using diverse amine templates with dual functionality of precipitation/capping agent in sono-reaction, identification techniques exhibited morphologically desirable and triclinic SVO sample in the presence of teta, which had a mean of 72.08 nm and specific surface area of 14.621 m2/g. To minimize charge recombination, increase in surface area/photoactive sites, and shift toward a larger wavelength window, the incorporation of different carbon structures on the SVO surface was perused. Particularly, detailed photodegradation investigations followed the order of MO < MB < RhB with maximum efficiency for binary SVO/g-C3N4 nanocomposites as compared with other as-obtained SVO-based compounds. Photo-operational variables in starting RhB concentration and catalyst dosage offered that 89.39% degradation could result in 50 mg of SVO/g-C3N4 nanocomposites and 10 ppm dye within 120 min of visible irradiation. High photo-durability of resultant SVO/g-C3N4 nanocomposites showed five time regeneration process with only 14.39% reduction in activity. It is hoped that the effectiveness of the photocatalytic heterostructure’s design based on SVO nanoparticles and g-C3N4 nanosheets could be contributed in regulating the interface charge transfer pathway for environmental clean-up.

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来源期刊
Applied Water Science
Applied Water Science WATER RESOURCES-
CiteScore
9.90
自引率
3.60%
发文量
268
审稿时长
13 weeks
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