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Facile Synthesis of Thiol-FunctionalizedMagnetic Activated Carbon and Application for the Removal of Mercury(II)from Aqueous Solution

机译:巯基官能化的轻松合成磁活性炭及其在除汞中的应用(II)来自水溶液

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摘要

To improve the adsorption capacity, reduce the disposal cost, and enhance the separation efficiency of common activated carbon as an adsorbent in wastewater treatment, a novel thiol-modified magnetic activated carbon adsorbent of NiFe2O4-PAC-SH was successfully synthesized with a facile and safe hydrothermal method without any toxic and harmful reaction media. The as-prepared NiFe2O4-PAC-SH can effectively remove mercury(II) ions from aqueous solution. The maximal adsorption capacities from the experiment and Langmuir fitting achieve 298.8 and 366.3 mg/g at pH 7, respectively, exceeding most of adsorptive materials. The as-prepared NiFe2O4-PAC-SH has an outstanding regeneration performance, remarkable hydrothermal stability, and efficient separation efficiency. The data of kinetics, isotherms, and thermodynamics show that the adsorption of mercury(II) ions is spontaneous and exothermic. Ion exchange and electrostatic attraction are the main adsorption factors. The experimental results exhibit that the NiFe2O4-PAC-SH can be a prominent substitute for conventional activated carbon as an adsorbent.
机译:为提高吸附能力,降低处理成本,提高废水处理中常用活性炭的分离效率,成功地合成了一种新型的巯基改性的NiFe2O4-PAC-SH磁性活性炭吸附剂,简便,安全。水热法,无任何有毒有害反应介质。所制备的NiFe2O4-PAC-SH可以有效去除水溶液中的汞离子。实验和Langmuir拟合的最大吸附容量在pH 7时分别达到298.8和366.3 mg / g,超过了大多数吸附材料。所制备的NiFe 2 O 4 -PAC-SH具有优异的再生性能,显着的水热稳定性和有效的分离效率。动力学,等温线和热力学的数据表明,汞(II)离子的吸附是自发的且放热的。离子交换和静电吸引是主要的吸附因素。实验结果表明,NiFe2O4-PAC-SH可以替代传统的活性炭作为吸附剂。

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