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固定化微藻系统的数据驱动分析:微藻废水处理的新升级趋势

Data-driven analysis on immobilized microalgae system: New upgrading trends for microalgal wastewater treatment.

作者信息

Han Meina, Zhang Chaofan, Li Fanghua, Ho Shih-Hsin

机构信息

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, PR China.

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, PR China.

出版信息

Sci Total Environ. 2022 Dec 15;852:158514. doi: 10.1016/j.scitotenv.2022.158514. Epub 2022 Sep 3.

Abstract

Microalgal immobilization is receiving increasing attention as one of the most viable alternatives for upgrading conventional wastewater treatment. However, an in-depth discussion of the state-of-the-art and limitations of available technologies is currently lacking. More importantly, the reason for the hesitant development of immobilized microalgae for wastewater treatment remains unclear, which hinders its practical application. Thus, comprehensively understanding and evaluating details on immobilized microalgae is urgently needed, especially for the current advances of immobilization of microalgae in wastewater treatment over the last few decades. In this review, scientometric approach is used to explore research hotspots and visualize emerging trends. Data-driven analysis is used to scientifically and methodically determine hotspots in the current research on immobilized microalgal wastewater treatment, along with that the implicit inner connection underlying the frequent co-occurring terms was explored in depth. Four hotspots focusing on immobilized microalgae for wastewater treatment were identified, mainly demonstrating: (1) main factors including light, temperature and immobilization methods would majorly affect the treatment performance of immobilized microalgae; (2) immobilized microalgae membrane bioreactor, immobilized microalgae-based microbial fuel cell and immobilized microalgae-based bed reactor are three dominant treatment systems; (3) immobilized microalgae have a higher robustness and tolerance for treating various types of wastewater; and (4) a complete sustainable circle from wastewater treatment to resource conversion via the immobilized microalgae can be achieved. Finally, several new directions and new perspectives that expose the necessity for fulfilling further research and fundamental gaps are pointed out. Taken together, this review provides helpful information to facilitate the development of innovative and feasible immobilized microalgal technologies thus increasing their viability and sustainability.

摘要

作为传统废水处理升级的最可行替代方案之一,微藻固定化正受到越来越多的关注。然而,目前缺乏对现有技术的最新进展和局限性的深入讨论。更重要的是,固定化微藻用于废水处理发展缓慢的原因仍不明确,这阻碍了其实际应用。因此,迫切需要全面了解和评估固定化微藻的细节,特别是过去几十年来微藻固定化在废水处理方面的最新进展。在本综述中,采用科学计量学方法来探索研究热点并可视化新兴趋势。利用数据驱动分析科学、系统地确定当前固定化微藻废水处理研究中的热点,并深入探讨频繁共现术语背后的隐含内在联系。确定了四个聚焦于固定化微藻用于废水处理的热点,主要表明:(1)光照、温度和固定化方法等主要因素将对固定化微藻的处理性能产生重大影响;(2)固定化微藻膜生物反应器、基于固定化微藻的微生物燃料电池和基于固定化微藻的床式反应器是三种主要的处理系统;(3)固定化微藻在处理各类废水方面具有更高的稳健性和耐受性;(4)通过固定化微藻可实现从废水处理到资源转化的完整可持续循环。最后,指出了几个新方向和新观点,揭示了填补进一步研究和基础空白的必要性。综上所述,本综述提供了有益信息,以促进创新且可行的固定化微藻技术的发展,从而提高其可行性和可持续性。

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