小球藻微藻在废水可持续处理和生物生产中的研究进展

IF 5.5 Q1 ENGINEERING, CHEMICAL
Yazan Abuhasheesh , Aya Ghazal , Doris Ying Ying Tang , Fawzi Banat , Shadi W. Hasan , Pau Loke Show
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引用次数: 0

摘要

对有效和可持续的废水处理策略的需求不断增长,引发了人们对微藻处理废水的兴趣,特别是小球藻。植物修复已被证实是一种高效去除工业、城市、家庭和农业废水中多种污染物的有效方法。本文综述了小球藻在废水处理和生物生产中的双重作用,重点介绍了2019年至2024年的研究进展。它强调不同物种有效修复各种污染物的能力,并将其生物量转化为各种有价值的产品,为循环生物经济做出贡献。此外,本文还强调了将人工智能(AI)纳入优化各种条件和参数以增强藻修复和生产过程以实现更高成本效益的关键作用。正在进行的研究旨在通过合成生物学改善微藻的特性,将它们与其他微生物联系起来,并结合尖端技术。这些举措旨在加速微藻用于废水生物修复和生物生产的商业化,从而为更可持续的未来作出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Advances in Chlorella microalgae for sustainable wastewater treatment and bioproduction

Advances in Chlorella microalgae for sustainable wastewater treatment and bioproduction
The rising demand for effective and sustainable wastewater treatment strategies initiated a growing interest in treating wastewater with microalgal-based processes, especially Chlorella microalgae. Phycoremediation has been confirmed to be a highly effective method to efficiently remove numerous pollutants from wastewater, including industrial, municipal, household, and agricultural wastewater. This review discusses the dual role of Chlorella in both wastewater treatment and bioproduction, focusing on recent studies between 2019 and 2024. It emphasizes the ability of its different species to efficiently remediate various pollutants and the conversion of their biomass into a variety of valuable products, contributing to the circular bioeconomy. Furthermore, this review highlights the crucial role of incorporating artificial intelligence (AI) in optimizing various conditions and parameters to enhance the phycoremediation and production processes to achieve greater cost-effectiveness. Ongoing research efforts aim to improve microalgae properties through synthetic biology, link them with other microorganisms, and incorporate cutting-edge technologies. These initiatives seek to accelerate the commercialization of microalgae for wastewater bioremediation and bioproduction, thereby contributing to a more sustainable future.
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来源期刊
Chemical Engineering Journal Advances
Chemical Engineering Journal Advances Engineering-Industrial and Manufacturing Engineering
CiteScore
8.30
自引率
0.00%
发文量
213
审稿时长
26 days
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