Visible light photocatalytic degradation of water-soluble organic pollutants in aqueous solution by thulium copper oxide nanostructures: sonochemical synthesis, characterization, optimization of conditions, and mechanisms

IF 5.7 3区 环境科学与生态学 Q1 WATER RESOURCES
Fatemeh Yousefzadeh, Masoud Salavati-Niasari, Mojgan Ghanbari
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引用次数: 0

Abstract

The problem of water contamination has grown significantly in recent years, and the development of novel materials capable of effectively removing these toxins is imperative. The Tm2Cu2O5 nanophotocatalyst for the decolorization of various organic pollutants that are soluble in water is presented in the current study. A quick and easy sonochemical process was used to create Tm2Cu2O5 nanostructures, which had an appropriate bandgap of 1.6 eV according to DRS spectroscopy. The BET result indicated type III isotherm with H3 hysteresis and the specific surface area of 5.9788 m2 g−1. To get the maximum effectiveness, a number of variables were carefully examined, including the pH of the medium, the concentrations of organic pollutants, the types of organic contaminants, and the doses of Tm2Cu2O5. The outcomes demonstrated that Tm2Cu2O5 was very successful in eliminating various organic pollutants from water. For instance, 100% of the erythrosine was destroyed when 50 mg of Tm2Cu2O5 and 10 ppm dye were utilized under visible irradiation for 35 min. Subsequent analysis utilizing Tm2Cu2O5 as a photocatalyst showed that hydroxyl radicals were the main cause of pollutant photodegradation. The recyclability test showed that Tm2Cu2O5 is very stable and after five cycles, the degradation performance reduced by 7.8% from the first cycle (100.0%) to about 92.2%. According to this research, Tm2Cu2O5 is a promising choice for creating novel materials that efficiently eliminate water pollutants.

可见光催化氧化铜纳米结构降解水溶液中水溶性有机污染物:声化学合成、表征、条件优化和机理
近年来,水污染问题日益严重,开发能够有效去除这些毒素的新型材料势在必行。本文研究了Tm2Cu2O5纳米光催化剂对各种水溶性有机污染物的脱色作用。采用快速、简便的声化学方法制备了Tm2Cu2O5纳米结构,根据DRS光谱结果,Tm2Cu2O5纳米结构的禁带宽度为1.6 eV。BET结果为ⅲ型等温线,具有H3滞后,比表面积为5.9788 m2 g−1。为了获得最大的效果,我们仔细检查了许多变量,包括培养基的pH值、有机污染物的浓度、有机污染物的类型和Tm2Cu2O5的剂量。结果表明,Tm2Cu2O5对水中多种有机污染物具有较好的去除效果。例如,当50mg Tm2Cu2O5和10ppm染料在可见光照射下35min时,100%的红氨酸被破坏。随后利用Tm2Cu2O5作为光催化剂的分析表明,羟基自由基是污染物光降解的主要原因。可回收性测试表明,Tm2Cu2O5非常稳定,经过5次循环后,降解性能从第一次循环的100.0%下降到92.2%左右,下降了7.8%。根据这项研究,Tm2Cu2O5是一种很有前途的选择,可以用来制造有效消除水污染物的新型材料。
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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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