School of Chemical Engineering, Zhengzhou University, Zhengzhou 450001, China.
Chemical Engineering Department, College of Engineering, King Saud University, P.O. Box 800, 11421 Riyadh, Saudi Arabia.
Sci Total Environ. 2023 Jun 10;876:162551. doi: 10.1016/j.scitotenv.2023.162551. Epub 2023 Mar 5.
Ultrasound as a clean, efficient, and cheap technique gains special attention in wastewater treatment. Ultrasound alone or coupled with hybrid processes have been widely studied for the treatment of pollutants in wastewater. Thus, it is essential to conduct a review about the research development and trends on this emerging technique. This work presents a bibliometric analysis of the topic associated with multiple tools such as Bibliometrix package, CiteSpace, and VOSviewer. The literature sources from 2000 to 2021 were collected from Web of Science database, and the data of 1781 documents were selected for bibliometric analysis in respect to publication trends, subject categories, journals, authors, institutions, as well as countries. Detailed analysis of keywords in respect to co-occurrence network, keyword clusters, and citation bursts was conducted to reveal the research hotspot and future directions. The development of the topic can be divided into three stages, and the rapid development begins from 2014. The leading subject category is Chemistry Multidisciplinary, followed by Environmental Sciences, Engineering Chemical, Engineering Environmental, Chemistry Physical, and Acoustics, and there exists difference in the publications of different categories. Ultrasonics Sonochemistry is the most productive journal (14.75 %). China is the leading country (30.26 %), followed by Iran (15.67 %) and India (12.35 %). The top 3 authors are Parag Gogate, Oualid Hamdaoui, and Masoud Salavati-Niasari. There exists close cooperation between countries and researchers. Analysis of highly cited papers and keywords gives a better understanding of the topic. Ultrasound can be employed to assist various processes such as Fenton-like process, electrochemical process, and photocatalysis for degradation of emerging organic pollutants for wastewater treatment. Research topics in this field evolve from typical studies on ultrasonic assisted degradation to latest studies on hybrid processes including photocatalysis for pollutants degradation. Additionally, ultrasound-assisted synthesis of nanocomposite photocatalysts receives increasing attention. The potential research directions include sonochemistry in pollutant removal, hydrodynamic cavitation, ultrasound-assisted Fenton or persulfate processes, electrochemical oxidation, and photocatalytic process.
超声作为一种清洁、高效、廉价的技术,在废水处理中受到特别关注。单独使用超声或与混合工艺相结合已广泛研究用于处理废水中的污染物。因此,对这一新兴技术的研究进展和趋势进行综述是至关重要的。本工作使用 Bibliometrix 软件包、CiteSpace 和 VOSviewer 等多种工具对与超声相关的主题进行了文献计量分析。从 2000 年到 2021 年,从 Web of Science 数据库中收集了文献源,并选择了 1781 篇文献的数据进行文献计量分析,包括出版物趋势、主题类别、期刊、作者、机构以及国家。对关键词进行详细分析,包括共现网络、关键词聚类和引文突发,以揭示研究热点和未来方向。该主题的发展可分为三个阶段,从 2014 年开始快速发展。领先的主题类别是化学多学科,其次是环境科学、工程化学、工程环境、化学物理和声学,不同类别的出版物存在差异。最具生产力的期刊是 Ultrasonics Sonochemistry(14.75%)。中国是领先的国家(30.26%),其次是伊朗(15.67%)和印度(12.35%)。排名前三的作者是 Parag Gogate、Oualid Hamdaoui 和 Masoud Salavati-Niasari。国家和研究人员之间存在密切合作。对高被引论文和关键词的分析可以更好地理解该主题。超声可用于辅助各种过程,如芬顿类反应、电化学过程和光催化,以降解废水中的新兴有机污染物。该领域的研究主题从典型的超声辅助降解研究发展到包括光催化在内的混合过程的最新研究。此外,超声辅助合成纳米复合光催化剂的研究也越来越受到关注。潜在的研究方向包括去除污染物的声化学、空化流、超声辅助芬顿或过硫酸盐过程、电化学氧化和光催化过程。
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