Umar Ehtisham, Ikram Muhammad, Haider Junaid, Nabgan Walid, Imran Muhammad, Nazir Ghazanfar
Solar Cell Applications Research Lab Department of Physics Government College University Lahore Lahore 54000 Pakistan.
Tianjin Institute of Industrial Biotechnology Chinese Academy of Sciences Tianjin 300308 China.
Glob Chall. 2023 Apr 27;7(6):2300001. doi: 10.1002/gch2.202300001. eCollection 2023 Jun.
A wide range of hard contaminants in wastewater is generated from different industries as byproducts of the organic compound. In this review, various metal oxide-based nanomaterials are employed for the photocatalytic removal of malachite green (MG) dye from wastewater. Some cost-effective and appropriate testing conditions are used for degrading these hard dyes to get higher removal efficiency. The effects of specific parameters are considered such as how the catalyst is made, how much dye is in the solution at first, how much nanocatalyst is needed to break down the dye, the initial pH of the dye solution, the type of light source used, the year of publications, and how long the dye has to be exposed to light to be removed. This study suggests that Scopus-based core collected data employ bibliometric methods to provide an objective analysis of global MG dye from 2011 to 2022 (12 years). The Scopus database collects all the information (articles, authors, keywords, and publications). For bibliometric analysis, 658 publications are retrieved corresponding to MG dye photodegradation, and the number of publications increases annually. A bibliometric study reveals a state-of-art review of metal oxide-based nanomaterials' effects on photocatalytic degradation of MG dyes (12 years).
废水中各种各样的难处理污染物是不同行业作为有机化合物副产品产生的。在本综述中,各种基于金属氧化物的纳米材料被用于光催化去除废水中的孔雀石绿(MG)染料。使用了一些具有成本效益且合适的测试条件来降解这些难处理的染料,以获得更高的去除效率。考虑了特定参数的影响,例如催化剂的制备方式、溶液中初始染料的含量、分解染料所需的纳米催化剂的量、染料溶液的初始pH值、所使用光源的类型、发表年份以及染料需要暴露在光下多长时间才能被去除。本研究表明,基于Scopus的核心收集数据采用文献计量方法,对2011年至2022年(12年)全球MG染料进行客观分析。Scopus数据库收集了所有信息(文章、作者、关键词和出版物)。对于文献计量分析,检索到658篇与MG染料光降解相关的出版物,且出版物数量逐年增加。一项文献计量研究揭示了基于金属氧化物的纳米材料对MG染料光催化降解影响的最新综述(12年)。