Bioprocess Engineering Laboratory, Department of Biotechnology, Central University of Haryana, Mahendergarh, 123031, Haryana, India.
Department of Water Supply, Sanitation and Environmental Engineering, IHE Delft Institute for Water Education, Westvest 7, 2611AX, Delft, the Netherlands.
Environ Res. 2022 Nov;214(Pt 2):113957. doi: 10.1016/j.envres.2022.113957. Epub 2022 Aug 3.
In recent years, due to rapid globalization and urbanization, the demand for fuels, energy, water and nutrients has been continuously increasing. To meet the future need of the society, wastewater is a prominent and emerging source for resource recovery. It provides an opportunity to recover valuable resources in the form of energy, fertilizers, electricity, nutrients and other products. The aim of this review is to elaborate the scientific literature on the valorization of wastewater using wide range of treatment technologies and reduce the existing knowledge gap in the field of resource recovery and water reuse. Several versatile, resilient environmental techniques/technologies such as ion exchange, bioelectrochemical, adsorption, electrodialysis, solvent extraction, etc. are employed for the extraction of value-added products from waste matrices. Since the last two decades, valuable resources such as polyhydroxyalkanoate (PHA), matrix or polymers, cellulosic fibers, syngas, biodiesel, electricity, nitrogen, phosphorus, sulfur, enzymes and a wide range of platform chemicals have been recovered from wastewater. In this review, the aspects related to the persisting global water issues, the technologies used for the recovery of different products and/or by-products, economic sustainability of the technologies and the challenges encountered during the valorization of wastewater are discussed comprehensively.
近年来,由于全球化和城市化进程的加速,对燃料、能源、水和营养物质的需求不断增加。为了满足未来社会的需求,废水是一种突出的新兴资源回收来源。它为以能源、肥料、电力、营养物质和其他产品的形式回收有价值的资源提供了机会。本综述的目的是详细阐述利用广泛的处理技术对废水进行增值利用的科学文献,并减少资源回收和水再利用领域现有的知识差距。离子交换、生物电化学、吸附、电渗析、溶剂萃取等多种多功能、弹性的环境技术/技术被用于从废基质中提取高附加值产品。在过去的二十年中,已经从废水中回收了有价值的资源,如聚羟基烷酸酯(PHA)、基质或聚合物、纤维素纤维、合成气、生物柴油、电力、氮、磷、硫、酶和广泛的平台化学品。在这篇综述中,全面讨论了与持续存在的全球水问题相关的方面、用于回收不同产品和/或副产品的技术、技术的经济可持续性以及在废水增值过程中遇到的挑战。