UniSA STEM, University of South Australia, Mawson Lakes, SA, 5095, Australia.
Environ Sci Pollut Res Int. 2024 Mar;31(14):20792-20813. doi: 10.1007/s11356-024-32560-2. Epub 2024 Feb 24.
This paper presents a structured bibliometric analysis and review of the research publications recorded in the Web of Science database from 2000 to 2023 to methodically examine the landscape and development of the 'wastewater to energy' research field in relation to global trends, potential hotspots, and future research directions. The study highlights three main research themes in 'wastewater to energy', which are biogas production through anaerobic digestion of sewage sludge, methane generation from microbial wastewater treatment, and hydrogen production from biomass. The analysis reveals activated sludge, biochar, biomethane, biogas upgrading, hydrogen, and circular economy as key topics increasingly gaining momentum in recent research publications as well as representing potential future research directions. The findings also signify transformation to SDGs and circular economy practices, through the integration of on-site renewables and biogas upgrading for energy self-sufficiency, optimising energy recovery from wastewater treatment systems, and fostering research and innovation in 'wastewater to energy' supported by policy incentives. By shedding light on emerging trends, cross-cutting themes, and potential policy implications, this study contributes to informing both knowledge and practices of the 'wastewater to energy' research community.
本文对 2000 年至 2023 年期间在 Web of Science 数据库中记录的研究出版物进行了结构化的文献计量分析和综述,旨在系统地研究与全球趋势、潜在热点和未来研究方向相关的“废水到能源”研究领域的现状和发展。研究强调了“废水到能源”领域的三个主要研究主题,即通过污水污泥的厌氧消化生产沼气、微生物废水处理产生甲烷和生物质制氢。分析显示,活性污泥、生物炭、生物甲烷、沼气升级、氢气和循环经济作为关键主题,在最近的研究出版物中越来越受到关注,也代表了潜在的未来研究方向。研究结果还表明,通过整合现场可再生能源和沼气升级以实现能源自给自足、优化废水处理系统的能源回收以及通过政策激励支持“废水到能源”领域的研究和创新,正在向可持续发展目标和循环经济实践转型。本研究通过揭示新兴趋势、跨领域主题和潜在的政策影响,为“废水到能源”研究界提供了知识和实践方面的信息。