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Preparation and Characterization of Nanoporous Activated Carbon Derived from Prawn Shell and Its Application for Removal of Heavy Metal Ions

机译:衍生自虾壳的纳米多孔活性炭的制备与表征及其去除重金属离子的应用

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摘要

The aim of this study was to optimize the adsorption performance of activated carbon (AC), derived from the shell of Penaeus vannamei prawns, on heavy metal ions. Inexpensive, non-toxic, and renewable prawn shells were subjected to carbonization and, subsequently, KOH-activation to produce nanoporous K-Ac. Carbonized prawn shells (CPS) and nanoporous KOH-activated carbon (K-Ac) from prawn shells were prepared and characterized by FTIR, XRD, BET, SEM, and TEM. The results showed that as-produced K-Ac samples were a porous material with microporous and mesoporous structures and had a high specific surface area of 3160 m2/g, average pore size of about 10 nm, and large pore volume of 2.38 m3/g. Furthermore, batches of K-Ac samples were employed for testing the adsorption behavior of Cd2+ in solution. The effects of pH value, initial concentration, and adsorption time on Cd2+ were systematically investigated. Kinetics and isotherm model analysis of the adsorption of Cd2+ on K-Ac showed that experimental data were not only consistent with the Langmuir adsorption isotherm, but also well-described by the quasi-first-order model. Finally, the adsorption behaviors of as-prepared K-Ac were also tested in a ternary mixture of heavy metal ions Cu2+, Cr6+, and Cd2+, and the total adsorption amount of 560 mg/g was obtained.
机译:本研究的目的是优化活性炭(AC)的吸附性能,衍生自Penaeus Vannamei虾的壳,在重金属离子上。对廉价,无毒和可再生的虾壳进行碳化,随后,KOH活化以产生纳米多孔K-AC。制备碳化的虾壳(CPS)和纳米多孔koh活性炭(CPS)和纳米多孔KOH活性炭(K-AC),其特征在于FTIR,XRD,BET,SEM和TEM。结果表明,由于微孔和中孔结构的多孔k-ac样品是具有微孔和中孔结构的多孔材料,并且具有3160m 2 / g的高比表面积,平均孔径为约10nm,并且大的孔体积为2.38m 3 / g 。此外,采用批次的K-AC样品用于测试溶液中CD2 +的吸附行为。系统地研究了pH值,初始浓度和吸附时间对CD2 +的影响。 KINETICS和等温模型分析CD2 +在K-AC上的吸附表明,实验数据不仅与Langmuir吸附等温线一致,而且由准一级模型良好描述。最后,在重金属离子Cu 2 +,Cr6 +和CD2 +的三元混合物中也测试了如制备的K-Ac的吸附行为,得到了560mg / g的总吸附量。

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