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壳聚糖处理废水研究的文献计量分析:综述。

Bibliometric analysis of chitosan research for wastewater treatment: a review.

机构信息

Department of Physics, Hasanuddin University, Makassar, 90245, Indonesia.

出版信息

Environ Monit Assess. 2023 Mar 16;195(4):474. doi: 10.1007/s10661-023-11094-z.

Abstract

Wastewater has negative impacts on the environment, such as destroying aquatic ecosystems and creating a shortage of clean water sources for consumption. In this paper, we provide a comprehensive bibliometric analysis of chitosan to better understand the evolution in degrading various pollutants as a wastewater treatment research limited only by photocatalyst system published in 2001-2021. The number of publications analyzed a total of 456 documents, which was conducted from the Scopus database. All data in this paper was visualized by using open-source software, VOSviewer and Tableau, to perform bibliometric analysis and scientific mapping. The reason for choosing chitosan is its ability to degrade various pollutants with high adsorption performance (from various sources: degradation Congo red 98.4%, methylene blue 99.36%, rhodamine B 95%, and Cd(II) 94%), non-toxicity, biodegradability, and abundantly available sources in nature. The analysis results show that the highest number of publications in 2016 was 66, and the highest number of citations was 2258. The network of keywords and innovations for wastewater treatment is USA and China as the most productive countries with many cooperative relations. This paper helps scholars understand the evolution of composite chitosan-based photocatalyst systems as research on wastewater treatment from a bibliometric point of view and inspires them to develop new efficient methods in synthesizing chitosan from fish by-products (waste) with high adsorption efficiency for various type of waste.

摘要

污水对环境有负面影响,例如破坏水生生态系统和造成清洁水源短缺,无法供人类消费。在本文中,我们对壳聚糖进行了全面的文献计量分析,以更好地了解 2001 年至 2021 年期间作为光催化剂系统限制的仅用于降解各种污染物的研究中壳聚糖的演变。分析的出版物总数为 456 篇,这些出版物均来自 Scopus 数据库。本文中的所有数据均使用开源软件 VOSviewer 和 Tableau 进行可视化,以执行文献计量分析和科学图谱绘制。选择壳聚糖的原因是其具有高吸附性能(来自各种来源:降解刚果红 98.4%、亚甲蓝 99.36%、罗丹明 B 95%和 Cd(II)94%)、无毒、可生物降解以及在自然界中丰富的来源,能够降解各种污染物。分析结果表明,2016 年发表的论文数量最多,为 66 篇,被引频次最高,为 2258 次。水处理领域的研究热点和创新网络以美国和中国为最具生产力的国家,两国之间存在着许多合作关系。本文帮助学者从文献计量学的角度了解基于壳聚糖的复合光催化剂系统作为废水处理研究的演变,并激励他们开发新的高效方法,从鱼类副产物(废物)中合成壳聚糖,以提高对各种类型废物的吸附效率。

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