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人工湿地耦合微生物燃料电池的进化趋势与发展:十年发展历程

Evolutionary trends and development of constructed wetland coupled microbial fuel cell: A decade of development.

作者信息

Miwornunyuie Nicholas, Ugochukwu Gift, Hunter James

机构信息

Department of Civil Engineering, Morgan State University, 1700 E Cold Spring Ln, Baltimore, MD, 21251, USA.

出版信息

J Environ Manage. 2025 Jan;373:123574. doi: 10.1016/j.jenvman.2024.123574. Epub 2024 Dec 9.

Abstract

Constructed wetland coupled microbial fuel cells (CW-MFC) have gained considerable attention as an innovative sustainable technology for simultaneous wastewater treatment and bio-electricity generation since its inception in 2012. This study, which employed bibliometrics of research articles and patent analysis, is a comprehensive investigation into the evolutionary trend and development status of CW-MFC. We analyzed 85 patents and 247 research articles using structured and unstructured data. By using the logistic model and econometric analysis, we predicted the technological life cycle and investigated the factors driving the development of CW-MFC. In addition, this study discusses the innovative hotspots, research and innovative trends, and key contributors at the forefront of this green infrastructure. The study results show that CW-MFC technology has gained greater interest under the influence of national and international policies, market demand, economic growth, and national R&D expenditure, highlighting its global impact. The study also showed that CW-MFC was predominantly distributed in Asia, with China at the forefront. The technology evolution path from both patents and papers showed the transition of research and development from the performance evaluation of CW-MFC with conventional-based technology to the current study focused on system optimization by exploring designs and component factors to enhance efficiency. Furthermore, the technological maturity (TMR) of CW-MFC was determined using the logistic model to be 50.5%, with significant potential for further development (R = 0.98). Overall, this study provides a comprehensive understanding of the current trends of CW-MFC development and provides forecasting and direction for future developments.

摘要

自2012年构建湿地耦合微生物燃料电池(CW-MFC)问世以来,作为一种用于同步废水处理和生物发电的创新型可持续技术,它已受到广泛关注。本研究采用研究论文的文献计量学和专利分析,对CW-MFC的发展趋势和现状进行了全面调查。我们使用结构化和非结构化数据对85项专利和247篇研究论文进行了分析。通过使用逻辑模型和计量经济学分析,我们预测了该技术的生命周期,并研究了推动CW-MFC发展的因素。此外,本研究还讨论了这一绿色基础设施领域的创新热点、研究与创新趋势以及主要贡献者。研究结果表明,在国家和国际政策、市场需求、经济增长以及国家研发支出的影响下,CW-MFC技术受到了更多关注,凸显了其全球影响力。研究还表明,CW-MFC主要分布在亚洲,中国处于领先地位。从专利和论文来看,技术演进路径显示出研究与开发从基于传统技术的CW-MFC性能评估,转变为当前通过探索设计和组件因素以提高效率来专注于系统优化的研究。此外,使用逻辑模型确定CW-MFC的技术成熟度(TMR)为50.5%,具有进一步发展的巨大潜力(R = 0.98)。总体而言,本研究全面了解了CW-MFC的当前发展趋势,并为未来发展提供了预测和方向。

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