Yánez Diana, Espinoza Lidia Carolina, Vargas Ignacio, Romero Julio, Aguirre María Jesús, Arce Roxana, Quijada-Maldonado Esteban, Abejon Ricardo
Laboratory of Separation Processes Intensification (SPI), Department of Chemical and Bioprocess Engineering, University of Santiago de Chile (USACH), Av. Libertador Bernardo O'Higgins 3363, Estación Central, Santiago 9170019, Chile; Grupo de Inocuidad y Valorización de Recursos para la Agroindustria (INVAGRO), Universidad Nacional de Chimborazo (UNACH), Facultad de Ingeniería, Av. Antonio José de Sucre Km 1 1/2, EC060108 Riobamba, Ecuador.
Centro de Nanotecnología Aplicada, Facultad de Ciencias, Ingeniería y Tecnología, Universidad Mayor, Camino La Pirámide 5750, Huechuraba, Santiago, Chile; Escuela de Ingeniería en Medio Ambiente y Sustentabilidad, Facultad de Ciencias, Ingeniería y Tecnología, Universidad Mayor, Granaderos 1303, Providencia, Santiago, Chile; Departamento de Ciencias Químicas, Facultad de Ciencias Exactas, Universidad Andrés Bello, Av. República 275, Santiago 8370146, Chile.
Water Sci Technol. 2024 Dec;90(11):3076-3110. doi: 10.2166/wst.2024.384. Epub 2024 Nov 27.
The current global water crisis has prompted research into technologies that can reuse different water resources to mitigate water scarcity. The use of treated greywater can be proposed to provide additional water resources. By reusing this water in different applications, this water crisis can be mitigated at the local scale. This study presents a bibliometric analysis to assess the state of the art of greywater treatment and its reuse technologies. This analysis is based on the scientific literature published until 2023 in Scopus regarding greywater treatment and 1,024 documents were found. The results showed a clear exponential increase in the accumulated number of publications in this topic, which was spurred during the mid-1990s. The most prolific country was the United States, while China, the other typical scientific superpower in most fields, occupied the sixth position in the ranking. Environmental Sciences was the knowledge subject with more documents, followed by Engineering and Chemical Engineering. The bibliometric study was complemented using SciMAT to create bibliometric networks that represent the dynamic evolution of the themes. The most important themes were identified, among which three key points stand out: greywater characterization, technologies for greywater treatment, and water management, including the reuse of treated greywater.
当前的全球水危机促使人们对能够重复利用不同水资源以缓解水资源短缺的技术展开研究。可以提议使用经过处理的中水来提供额外的水资源。通过在不同应用中重复利用这种水,能够在地方层面缓解这场水危机。本研究进行了文献计量分析,以评估中水的处理及其回用技术的发展现状。该分析基于截至2023年在Scopus上发表的关于中水回用的科学文献,共找到1024篇文献。结果显示,该主题的累积出版物数量呈明显的指数增长,这种增长在20世纪90年代中期开始加速。发文量最多的国家是美国,而在大多数领域同样作为典型科学强国的中国在排名中位居第六。环境科学是文献数量最多的知识学科,其次是工程学和化学工程。使用SciMAT对文献计量研究进行补充,以创建代表主题动态演变的文献计量网络。确定了最重要的主题,其中有三个关键点尤为突出:中水特性、中水的处理技术以及包括回用经过处理的中水在内的水管理。