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Preparation of Potassium Permanganate Confined in Porous Carbon Synthesized from Palm Kernel Shell and its Application for Hydrogen Sulfide Removal

机译:从棕榈籽壳合成的多孔碳中施用高锰酸钾的制备及其硫化氢去除氢

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The goal of this study is to investigate the efficacy of potassium permanganate (KMnO4) confined in porous carbon for hydrogen sulfide removal. As porous support, carbon was prepared by carbonization process of abundantly biomass source of palm kernel shell (named KATKS). The surface of porous carbon was first modified using hydrogen peroxide oxidation. The confinement process was carried out by an impregnation process. The KMnO4 contents in porous carbon were varied i.e. 5%, 10%, and 20% w/w (KMnO4-%/KATKS-Ox). Materials were characterized by N2-sorption analysis and SEM-EDX. The results showed that KATKS possesses a high specific surface area of ca. 700 m~2/g. Due to the impregnation of KMnO4, the specific surface area of KMnO4-%/KATKS-Ox decreased to ca. 450 m2/g. SEM-EDX revealed a successful confinement process in which elements of K, Mn, and O were displayed and dispersed on the carbon surface. In the hydrogen sulfide (H2S) oxidation testing, KMnO4-20%/KATKS-Ox showed the highest performance of H2S removal compared to other materials due to the high amount of KMnO4. KMnO4-20%/KATKS-Ox could reduce until 98.7% of H2S. This is remarkably higher than only using bulk KMnO4 (without confinement) which showed activity of ca. 70% reduction.
机译:本研究的目的是探讨高锰酸钾(KMnO4)局限于多孔碳的硫化氢去除的疗效。作为多孔载体,通过棕榈核壳(名为Katks)的大量生物量来源的碳化过程制备碳。首先使用过氧化氢氧化修饰多孔碳表面。限制过程是通过浸渍过程进行的。多孔碳中的KMnO 4内容物变化,即5%,10%和20%w / w(KmnO 4 - %/ Katks-ox)。通过N 2吸附分析和SEM-EDX表征材料。结果表明,KATKS具有高特异的CA表面积。 700米〜2 / g。由于KMNO4的浸渍,KMNO4 - %/ KATKS-OX的比表面积降低至CA. 450平方米/克。 SEM-EDX揭示了成功的限制过程,其中k,Mn和O的元素显示在碳表面上。在硫化氢(H2S)氧化试验中,KMnO4-20%/ Katks-OX显示出与其他材料相比,H2S的最高性能与由于大量的KMnO 4相比。 KMNO4-20%/ KATKS-OX可以减少到98.7%的H2S。这显着高于仅使用批量kmno4(不包括限制),显示了CA的活动。减少70%。

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