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Effect of Fe_3O_4 NPs application on fluoride (F) accumulation efficiency of Prosopis juliflora

机译:Fe_3O_4 NPs施用对胡桃皮中氟(F)积累效率的影响

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摘要

Fluoride (F) pollution is a major worldwide problem affecting approximately 200 million people. Hyperaccumulator plant Prosopis juliflora has been used for the removal of F from contaminated soils; however it's low F accumulation efficiency and low biomass limits the phytoremediation efficiency. Present study deals with enhancement of F uptake efficiency of plant P. juliflora through iron oxide nanoparticles (Fe3O4 NPs) application for remediation of agricultural soils. For the study, Fe3O4 NPs were synthesized through green route using waste jojoba leaves. The application of Fe3O4 NPs significantly increased the shoot and root length of plant P. julifiora. Fe3O4 NPs treatment also promoted the F accumulation in shoot and root tissues upto 28.43 and 34.64 mg kg(-1), respectively. Microscopic (FESEM and light microscopic) and EDX spectrum analysis of plant tissues confirmed the accumulation and translocation of Fe3O4 NPs and F in plant tissues This nano-phyto-remediation approach could be a better option for F remediation for agricultural and commercial purpose.
机译:氟化物(F)污染是影响全球约2亿人口的主要全球性问题。超级蓄积植物朱s(Prosopis juliflora)已被用于从受污染的土壤中去除氟。但是,其低的F积累效率和低的生物量限制了植物的修复效率。目前的研究涉及通过应用氧化铁纳米颗粒(Fe3O4 NPs)修复农业土壤来提高植物桔梗F吸收效率。为了进行研究,使用废弃的霍霍巴叶通过绿色途径合成了Fe3O4 NP。 Fe3O4 NPs的施用显着增加了植物假单胞菌的芽和根长。 Fe3O4 NPs处理还促进了芽和根组织中的F积累,分别达到28.43和34.64 mg kg(-1)。植物组织的显微镜(FESEM和光学显微镜)和EDX光谱分析证实了Fe3O4 NP和F在植物组织中的积累和转运这种纳米植物修复方法可能是农业和商业用途F修复的更好选择。

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