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新型纳米复合材料可见光驱动灭活蓝绿藻的最新进展:机制、效率和制备方法。

Recent advances in visible light driven inactivation of bloom forming blue-green algae using novel nano-composites: Mechanism, efficiency and fabrication approaches.

机构信息

Department of Environmental Sciences, Faculty of Biological Sciences, Quaid-i-Azam University, Islamabad, 45320, Pakistan.

Department of Environmental Sciences, Faculty of Biological Sciences, Quaid-i-Azam University, Islamabad, 45320, Pakistan; BNU-HKUST Laboratory for Green Innovation, Advanced Institute of Natural Sciences, Beijing Normal University at Zhuhai, Zhuhai, 519087, China.

出版信息

Environ Res. 2024 May 1;248:118251. doi: 10.1016/j.envres.2024.118251. Epub 2024 Jan 24.

Abstract

Over the years, algae have proved to be a water pollutant due to global warming, climate change, and the unregulated addition of organic compounds in water bodies from diffused resources. Harmful algal blooms (HABs) are severely affecting the health of humans and aquatic ecosystems. Among available anti-blooming technologies, semiconductor photocatalysis has come forth as an effective alternative. In the recent past, literature has been modified extensively with a decisive knowledge regarding algal invasion, desired preparation of nanomaterials with enhanced visible light absorption capacity and mechanisms for algal cell denaturation. The motivation behind this review article was to gather algal inactivation data in a systematic way based on various research studies, including the construction of nanoparticles and purposely to test their anti-algal activities under visible irradiation. Additionally, this article mentions variety of starting materials employed for preparation of various nano-powders with focus on their synthesis routes, analytical techniques as well as proposed mechanisms for lost cellular integrity in context of reduced chlorophyll' a' level, cell rapture, cell leakage and damages to other physiological constituents; credited to oxidative damage initiated by reactive oxidation species (ROS). Various floating and recyclable composited catalysts AgCO-N: GO, Ag/AgCl@ZIF-8, AgCrO-g-CN-TiO/mEP proved to be game-changers owing to their enhanced VL absorption, adsorption, stability, separation and reusability. An outlook for the generalized limitations of published reports, cost estimations for practical implementation, issues and challenges faced by nano-photocatalysts and possible opportunities for future studies are also proposed. This review will be able to provide vast insights for coherent fabrication of catalysts, breakthroughs in experimental methodologies and help in elaboration of damage mechanisms.

摘要

多年来,由于全球变暖、气候变化以及从扩散资源向水体中不加控制地添加有机化合物,藻类已被证明是一种水污染物。有害藻类大量繁殖(HABs)正在严重影响人类和水生生态系统的健康。在现有的防 bloom 技术中,半导体光催化已成为一种有效的替代方法。在最近的过去,文献已经被广泛修改,对于藻类入侵、期望用增强的可见光吸收能力制备纳米材料以及藻类细胞变性的机制有了明确的认识。撰写这篇综述文章的动机是根据各种研究,系统地收集藻类失活数据,包括纳米粒子的构建,并专门在可见光照射下测试它们的抗藻活性。此外,本文还提到了各种起始材料用于制备各种纳米粉末,重点介绍了它们的合成路线、分析技术以及在降低叶绿素' a'水平、细胞破裂、细胞泄漏和对其他生理成分的损伤方面提出的细胞完整性丧失的机制;这归因于由活性氧化物种(ROS)引发的氧化损伤。各种可浮和可回收的复合催化剂 AgCO-N:GO、Ag/AgCl@ZIF-8、AgCrO-g-CN-TiO/mEP 由于其增强的 VL 吸收、吸附、稳定性、分离和可重复使用性,被证明是改变游戏规则的因素。还对已发表报告的普遍局限性、实际实施的成本估算、纳米光催化剂面临的问题和挑战以及未来研究的可能机会进行了展望。本综述将为催化剂的一致制备、实验方法的突破以及损伤机制的阐述提供广泛的见解。

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