Suppr超能文献

从环境基质中全面批判性评价基于植物的除氟。

Comprehensive and critical appraisal of plant-based defluoridation from environmental matrices.

机构信息

Department of Botany, Central University of Jammu, Samba, Jammu and Kashmir, India.

Department of Environmental Sciences, University of Jammu, Jammu, Jammu and Kashmir, India.

出版信息

Chemosphere. 2021 Oct;281:130892. doi: 10.1016/j.chemosphere.2021.130892. Epub 2021 May 16.

Abstract

Fluoride is recognized as one of the global environmental threats because of its non-biodegradable nature and long-term persistence in the environment. This has created the dire need to explore various defluoridation techniques (membrane process, adsorption, precipitation, reverse osmosis, ion exchange, and electrocoagulation). Owing to their cost ineffectiveness and high operational costs, these technologies failed to find any practical utility in fluoride remediation. Comparatively, defluoridation techniques involving the use of low-cost plant-derived adsorbents and fluoride phytoremediators are considered better alternatives. Through this review, an attempt has been made to critically synthesize information about various plant-based bioadsorbents and hyperaccumulators from existing literature. Moreover, mechanisms underlying the fluoride adsorption and accumulation by plants have been thoroughly discussed that will invigorate the researchers to develop novel ideas about process/product modifications to further enhance the removal potential of the adsorbents and plants. Literature survey unravels that various low-cost plant-derived adsorbents have shown their efficacy in defluoridation, yet there is an urgent need to explore their pragmatic application on a commercial scale.

摘要

氟化物因其不可生物降解的性质和在环境中的长期持久性而被认为是全球环境威胁之一。这就迫切需要探索各种除氟技术(膜过程、吸附、沉淀、反渗透、离子交换和电凝聚)。由于这些技术的成本效益和运营成本高,它们在除氟方面没有找到任何实际用途。相比之下,涉及使用低成本植物衍生吸附剂和氟化物植物修复剂的除氟技术被认为是更好的选择。通过本次综述,我们试图批判性地综合现有文献中关于各种基于植物的生物吸附剂和超积累植物的信息。此外,还彻底讨论了植物吸附和积累氟化物的机制,这将激发研究人员开发关于工艺/产品改进的新想法,以进一步提高吸附剂和植物的去除潜力。文献调查表明,各种低成本的植物衍生吸附剂在除氟方面表现出了有效性,但迫切需要探索它们在商业规模上的实际应用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验