Centre for Nano and Material Sciences, Jain University, Jain Global Campus, Bengaluru, 562112, Karnataka, India.
Department of Chemistry, Bapatla Engineering College, Bapatla, 522 102, A.P., India.
Chemosphere. 2020 Aug;253:126657. doi: 10.1016/j.chemosphere.2020.126657. Epub 2020 Apr 6.
The polluted water sources pose a serious issue concerning the various health hazards they bring along. Due to various uncontrolled anthropogenic and industrial activities, a great number of pollutants have gained entry into the water systems. Among all the emerging contaminants, anionic species such as fluoride cause a major role in polluting the water bodies because of its high reactivity with other elements. The need for water remediation has led the research community to come up with several physicochemical and electrochemical methods to remove fluoride contamination. Among the existing methods, biosorption using bio and modified biomaterials has been extensively studied for defluoridation, as they are cheap, easily available and effectively recyclable when compared to other methods for defluoridation. Adding on, these materials are non-toxic and are safe to use compared to many other synthetic materials that are toxic and require high-cost design requirements. This review focuses on the recent developments made in the defluoridation techniques by biosorption using bio and modified biomaterials and defines the current perspectives of fluoride removal specifically using biomaterials.
受各种人为和工业活动的影响,大量污染物进入了水系,污染水源对健康造成了严重危害。在所有新兴污染物中,氟化物等阴离子物质因其与其他元素的高反应性而在水体污染中起着重要作用。对水修复的需求促使研究界提出了几种物理化学和电化学方法来去除氟污染。在现有的方法中,生物和改性生物材料的生物吸附法已被广泛研究用于除氟,因为与其他除氟方法相比,它们价格便宜、易于获得且有效可回收。此外,与许多其他有毒且需要高成本设计要求的合成材料相比,这些材料是无毒的,使用起来更安全。本综述重点介绍了生物和改性生物材料的生物吸附法在除氟技术方面的最新进展,并特别定义了使用生物材料去除氟化物的当前观点。