Author:
Huang Hui,Ma Rui,Ren Hongqiang
Abstract
AbstractThe “dual-carbon” strategy promotes the development of the wastewater treatment sector and is an important tool for leading science and technology innovations. Based on the global climate change and the new policies introduced by China, this paper described the new needs for the development of wastewater treatment science and technology. It offered a retrospective analysis of the historical trajectory of scientific and technological advancements in this field. Utilizing bibliometrics, it delineated the research hotspots within wastewater treatment, notably highlighting materials genomics, artificial intelligence, and synthetic biology. Furthermore, it posited that, in the future, the field of wastewater treatment should follow the paths of technological innovations with multi-dimensional needs, such as carbon reduction, pollution reduction, health, standardisation, and intellectualisation. The purpose of this paper was to provide references and suggestions for scientific and technological innovations in the field of wastewater treatment, and to contribute to the common endeavor of moving toward a Pollution-Free Planet.
Publisher
Springer Science and Business Media LLC
Reference12 articles.
1. Al Sharabati M, Abokwiek R, Al-Othman A, Tawalbeh M, Karaman C, Orooji Y, Karimi F (2021). Biodegradable polymers and their nano-composites for the removal of endocrine-disrupting chemicals (EDCs) from wastewater: a review. Environmental Research, 202: 111694
2. Fan F, Wu G, Yang Y, Liu F, Qian Y, Yu Q, Ren H, Geng J (2023). A graph neural network model with a transparent decision-making process defines the applicability domain for environmental estrogen screening. Environmental Science & Technology, 57(46): 18236–18245
3. Hu Y, Liang M, Zhang Y, Wang K (2021). Study on operation efficiency and carbon emission characteristics of A2/O + MBR process. China Environmental Science, 41(9): 4439–4446 (in Chinese)
4. Jin L, Sun X, Ren H, Huang H (2023). Hotspots and trends of biological water treatment based on bibliometric review and patents analysis. Journal of Environmental Sciences (China), 125: 774–785
5. Kang D, Zhao X, Wang N, Suo Y, Yuan J, Peng Y (2023). Redirecting carbon to recover VFA to facilitate biological short-cut nitrogen removal in wastewater treatment: a critical review. Water Research, 238: 120015
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献