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植物、微藻和微生物中的硒挥发

Selenium volatilization in plants, microalgae, and microorganisms.

作者信息

Wang Feng, Zhang Jie, Xu Ling, Ma Anzhou, Zhuang Guoqiang, Huo Shuhao, Zou Bin, Qian Jingya, Cui Yi

机构信息

School of Food and Biological Engineering, Jiangsu University, Zhenjiang, 212013, China.

Institute of Agricultural Products Processing Engineering, Jiangsu University, Zhenjiang, 212013, China.

出版信息

Heliyon. 2024 Feb 11;10(4):e26023. doi: 10.1016/j.heliyon.2024.e26023. eCollection 2024 Feb 29.

Abstract

The augmented prevalence of Se (Se) pollution can be attributed to various human activities, such as mining, coal combustion, oil extraction and refining, and agricultural irrigation. Although Se is vital for animals, humans, and microorganisms, excessive concentrations of this element can give rise to potential hazards. Consequently, numerous approaches have been devised to mitigate Se pollution, encompassing physicochemical techniques and bioremediation. The recognition of Se volatilization as a potential strategy for mitigating Se pollution in contaminated environments is underscored in this review. This study delves into the volatilization mechanisms in various organisms, including plants, microalgae, and microorganisms. By assessing the efficacy of Se removal and identifying the rate-limiting steps associated with volatilization, this paper provides insightful recommendations for Se mitigation. Constructed wetlands are a cost-effective and environmentally friendly alternative in the treatment of Se volatilization. The fate, behavior, bioavailability, and toxicity of Se within complex environmental systems are comprehensively reviewed. This knowledge forms the basis for developing management plans that aimed at mitigating Se contamination in wetlands and protecting the associated ecosystems.

摘要

硒(Se)污染日益普遍可归因于各种人类活动,如采矿、煤炭燃烧、石油开采与精炼以及农业灌溉。尽管硒对动物、人类和微生物至关重要,但该元素的过量浓度会带来潜在危害。因此,已设计出多种方法来减轻硒污染,包括物理化学技术和生物修复。本综述强调了认识到硒挥发作为减轻污染环境中硒污染的潜在策略。本研究深入探讨了包括植物、微藻和微生物在内的各种生物体中的挥发机制。通过评估硒去除效果并确定与挥发相关的限速步骤,本文为减轻硒污染提供了有见地的建议。人工湿地是处理硒挥发的一种经济高效且环保的选择。本文全面综述了复杂环境系统中硒的归宿、行为、生物有效性和毒性。这些知识构成了制定旨在减轻湿地硒污染并保护相关生态系统的管理计划的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28b7/10881343/4f03e21beed9/gr1.jpg

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