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首页> 外文期刊>Journal of Environmental Engineering >Comparative Evaluation of Biosynthesized Nanoscale Zerovalent Iron and Iron-Oxide Nanoparticles in Mercury Adsorption
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Comparative Evaluation of Biosynthesized Nanoscale Zerovalent Iron and Iron-Oxide Nanoparticles in Mercury Adsorption

机译:生物合成纳米级氮价铁和氧化铁纳米粒子在汞吸附中的比较评价

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摘要

An environmentally friendly approach was adopted in the synthesis of nanoscale zerovalent iron (NZVI) and iron oxide nanoparticles (Fe2O3). Plant extracts from aloe vera and myrtle were used as reducing agents for the synthesis of NZVI. Physical and chemical properties of the biosynthesized nanoparticles were characterized. The adsorption properties of the biosynthesized nanoparticles were evaluated by batch adsorption at varying conditions of pH, initial concentration, contact time, agitation speed, and adsorbent dosage. NZVI (81.9%) demonstrated the highest removal efficiency at pH 7 compared to Fe2O3 (77.5%). The experimental results fit the Langmuir model with a correlation efficiency of 0.973 and 0.992 for NZVI and Fe2O3, respectively. NZVI showed higher maximum adsorption capacity compared to Fe2O3. The results obtained for both adsorbents also fit to pseudo-second-order kinetics, suggesting that the adsorption of mercury to both adsorbents is a physical, monolayer, and homogeneous process.
机译:在合成纳米级零铁(NZVI)和氧化铁纳米粒子(Fe2O3)中采用环保方法。来自芦荟和髓鞘的植物提取物用于合成NZVI的还原剂。表征生物合成纳米颗粒的物理和化学性质。通过在不同的pH,初始浓度,接触时间,搅拌速度和吸附剂量的不同条件下通过批量吸附来评价生物合成纳米颗粒的吸附性能。与Fe2O3相比,NZVI(81.9%)在pH7中显示出最高的去除效率(77.5%)。实验结果分别适用于NZVI和Fe2O3的相关效率为0.973和0.992的相关效率。与FE2O3相比,NZVI显示出更高的最大吸附容量。对于两种吸附剂获得的结果也适用于伪二阶动力学,表明对两个吸附剂的汞吸附是物理,单层和均匀过程。

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