Al-Juboori Raed A, Al-Shaeli Muayad, Aani Saif Al, Johnson Daniel, Hilal Nidal
NYUAD Water Research Centre, New York University, Abu Dhabi Campus, Abu Dhabi P.O. Box 129188, United Arab Emirates.
Department of Engineering, University of Luxembourg, 2, Avenue de l'Université, L-4365 Esch-sur-Alzette, Luxembourg.
Membranes (Basel). 2022 Dec 22;13(1):15. doi: 10.3390/membranes13010015.
The concerns regarding the reactive nitrogen levels exceeding the planetary limits are well documented in the literature. A large portion of anthropogenic nitrogen ends in wastewater. Nitrogen removal in typical wastewater treatment processes consumes a considerable amount of energy. Nitrogen recovery can help in saving energy and meeting the regulatory discharge limits. This has motivated researchers and industry professionals alike to devise effective nitrogen recovery systems. Membrane technologies form a fundamental part of these systems. This work presents a thorough overview of the subject using scientometric analysis and presents an evaluation of membrane technologies guided by literature findings. The focus of nitrogen recovery research has shifted over time from nutrient concentration to the production of marketable products using improved membrane materials and designs. A practical approach for selecting hybrid systems based on the recovery goals has been proposed. A comparison between membrane technologies in terms of energy requirements, recovery efficiency, and process scale showed that gas permeable membrane (GPM) and its combination with other technologies are the most promising recovery techniques and they merit further industry attention and investment. Recommendations for potential future search trends based on industry and end users' needs have also been proposed.
关于活性氮水平超过地球极限的担忧在文献中有充分记载。大部分人为产生的氮最终进入废水。典型废水处理过程中的脱氮消耗大量能源。氮回收有助于节约能源并满足排放监管限制。这促使研究人员和行业专业人士设计有效的氮回收系统。膜技术是这些系统的基本组成部分。这项工作通过科学计量分析对该主题进行了全面概述,并根据文献研究结果对膜技术进行了评估。氮回收研究的重点随着时间的推移已从养分浓缩转向使用改进的膜材料和设计生产可销售产品。提出了一种基于回收目标选择混合系统的实用方法。在能源需求、回收效率和工艺规模方面对膜技术进行的比较表明,气体渗透膜(GPM)及其与其他技术的组合是最有前景的回收技术,值得行业进一步关注和投资。还基于行业和终端用户需求提出了未来潜在研究趋势的建议。