Effect of Acid Soaking on Properties of Zeolite-Based Porous Carbon Composite Prepared for Adsorption of Cationic Dye

被引:0
作者
Nady A. Fathy
Shaimaa El-Shafey
机构
[1] Advanced Materials Technology and Mineral Resources Research Institute,Physical Chemistry Department
[2] National Research Centre,undefined
来源
Chemistry Africa | 2024年 / 7卷
关键词
Zeolite-carbon composite; Chitosan/polyacrylic acid gel; Acid soaking; Dye adsorption;
D O I
暂无
中图分类号
学科分类号
摘要
Novel zeolite-based porous carbon (ZC) composites derived during direct pyrolysis of chitosan and polyacrylic acid as carbon sources and of zeolite as a template followed by acid soaking of HCl and HF were studied. Characterization tools including SEM, XRD, FTIR and N2 adsorption–desorption measurements were employed to assess the effect of acid soaking on the surface and adsorption properties of products (ZC-HCl and ZC-HF). Adsorption of methylene blue (MB) cationic dye was examined to evaluate the adsorption capacities of ZC-HCl and ZC-HF composites. SEM, XRD and FTIR analyses proved that soaking with HCl acid (ZC-HCl) could be removed large amounts of zeolite and formed functional groups with positively charges on the carbon surface. Whereas soaking by HF acid (ZC-HF) influenced slightly on the surface and morphology of zeolite-carbon composite with maintaining negatively charges confirming the attachment of zeolite on the carbon surface. Total surface areas as high as 170 and 241 m2/g were obtained for ZC-HCl and ZC-HF, respectively. Langmuir isotherm could be fitted the adsorption of dye. It was found that equilibrium adsorption capacities of MB at 25 °C and pH 6 were 45.5 and 83.6 mg/g onto ZC-HCl and ZC-HF, respectively. Kinetic data were well-described by pseudo-second order model and consequently the chemisorption powered the adsorption process over the sample's surface. Therefore, the obtained ZC-HF sample is considered to be a potential adsorbent for removing cationic dyes.
引用
收藏
页码:1535 / 1545
页数:10
相关论文
共 137 条
  • [1] Fathy NA(2017)Synthesis of a novel MnO J Water Proc Eng 17 95-101
  • [2] El-Shafey SE(2020)@carbon nanotubes-graphene hybrid catalyst (MnO Des Water Treat 174 344-353
  • [3] El-Shafey OI(2017)@CNT-G) for catalytic oxidation of basic red 18 dye (BR18) J Sol-Gel Sci Technol 48 515-521
  • [4] El-Khouly SM(2019)In Mater Sci Energy Technol 2 417-428
  • [5] Fathy NA(2009)O J Am Chem Soc 131 16493-16499
  • [6] Farag HK(2011) catalyst supported on carbonaceous nanohybrid for enhancing the removal of methyl orange dye from aqueous solutions J Micropor Mesopor Mater 142 716-724
  • [7] Aboelenin RMM(2019)Synthesis and capacitance performance of phosphorous-enriched carbon xerogel Malay J Fund Appl Sci 15 249-253
  • [8] Annamalai KP(2013)Recent development of carbon based materials for energy storage devices Prog Natl Sci Mater Internat 23 308-316
  • [9] Fathy NA(2018)Hydrogen storage in high surface area carbons: experimental demonstration of the effects of nitrogen doping Chem Commun 54 5648-5673
  • [10] Tao Y(2022)Characterization and hydrogen storage of Pt-doped carbons templated by Ptex changed zeolite Y Mater Sci Eng R 149 100682-2474