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Pristine and Magnetic Kenaf Fiber Biochar for Cd2+ Adsorption from Aqueous Solution

机译:丙氨酸和磁性KENAF纤维生物炭用于水溶液中的CD2 +吸附

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摘要

Development of strategies for removing heavy metals from aquatic environments is in high demand. Cadmium is one of the most dangerous metals in the environment, even under extremely low quantities. In this study, kenaf and magnetic biochar composite were prepared for the adsorption of Cd2+. The synthesized biochar was characterized using (a vibrating-sample magnetometer VSM), Scanning electron microscopy (SEM), X-ray powder diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), and X-ray photoelectron spectroscopy (XPS). The adsorption batch study was carried out to investigate the influence of pH, kinetics, isotherm, and thermodynamics on Cd2+ adsorption. The characterization results demonstrated that the biochar contained iron particles that help in improving the textural properties (i.e., surface area and pore volume), increasing the number of oxygen-containing groups, and forming inner-sphere complexes with oxygen-containing groups. The adsorption study results show that optimum adsorption was achieved under pH 5–6. An increase in initial ion concentration and solution temperature resulted in increased adsorption capacity. Surface modification of biochar using iron oxide for imposing magnetic property allowed for easy separation by external magnet and regeneration. The magnetic biochar composite also showed a higher affinity to Cd2+ than the pristine biochar. The adsorption data fit well with the pseudo-second-order and the Langmuir isotherm, with the maximum adsorption capacity of 47.90 mg/g.
机译:从水生环境中去除重金属的策略的发展处于高需求。镉是环境中最危险的金属之一,即使在极低的数量下也是如此。在该研究中,制备keNaf和磁性生物炭复合物用于吸附CD2 +。使用(振动样磁仪VSM),扫描电子显微镜(SEM),X射线粉末衍射(XRD),傅里叶变换红外光谱(FTIR)和X射线光电子体光谱(XPS)的合成生物炭。进行了吸附批量研究,以研究pH,动力学,等温线和热力学对CD2 +吸附的影响。表征结果表明,生物炭含有有助于改善纹理性质(即表面积和孔体积)的铁颗粒,增加含氧基团的数量,并形成含氧基团的内球复合物。吸附研究结果表明,在pH5-6下实现了最佳吸附。初始离子浓度和溶液温度的增加导致吸附容量增加。使用氧化铁施加氧化氧化铁的Biochar的表面改性允许通过外部磁铁和再生进行易于分离。磁性生物炭复合物还表现出比原始BioChON的CD2 +更高的亲和力。吸附数据与伪二阶和朗米尔等温线相适合,最大吸附容量为47.90 mg / g。

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