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Adsorption Of Benzothiophene And Dibenzothiophene On Ion-impregnated Activated Carbons And Ion-exchanged Y Zeolites

机译:离子浸渍的活性炭和离子交换Y型沸石对苯并噻吩和二苯并噻吩的吸附

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摘要

This work mainly involved the investigation of the adsorption of benzothiophene (BT) and dibenzothiophene (DBT) on transition-metal ion-impregnated activated carbons and ion-exchanged Y zeolites. Five kinds of transition-metal ions, Ag~+, Ni~(2+), Zn~(2+), Cu~(2+), and Fe~(3+), were separately loaded on activated carbons (ACs) and the Na~Ⅰ/Y zeolites, respectively. Adsorption isotherms were measured with the static adsorption method. Textual properties of these adsorbents were measured by using ASAP 2010. Results indicated that (1) there was no adsorption of DBT on Na~Ⅰ/Y because the aperture size of Na~Ⅰ/Y was smaller than the molecular size of BT, (2) the equilibrium amount adsorbed of BT on Ag~Ⅰ/Y was the highest within six ion-exchanged zeolites studied and that on Ni~Ⅱ/Y, Zn~Ⅱ/Y, Cu~Ⅱ/Y, and Fe~Ⅲ/Y became improved in comparison to Na~Ⅰ/Y, (3) the equilibrium amounts adsorbed of BT and DBT on the modified ACs followed the order: Ag~Ⅰ/AC > Ni~Ⅱ/AC > Cu~Ⅱ/AC > Zn~Ⅱ/AC > AC > Fe~Ⅲ/AC, and (4) at low BT concentrations (Cs < 3mmol/L), the ion-exchanged Y zeolites had a higher adsorption capacity of BT compared to the modified ACs because of their larger surface area of micropores, while at higher BT concentrations (7 < Cs < 10 mmol/L), the modified ACs had a higher adsorption capacity of BT because of their much larger surface area.
机译:这项工作主要涉及苯并噻吩(BT)和二苯并噻吩(DBT)在过渡金属离子浸渍的活性炭和离子交换的Y沸石上的吸附研究。分别将5种过渡金属离子Ag〜+,Ni〜(2 +),Zn〜(2 +),Cu〜(2+)和Fe〜(3+)负载在活性炭(AC)上和Na〜Ⅰ/ Y沸石。吸附等温线用静态吸附法测量。这些吸附剂的文字性质使用ASAP 2010进行了测量。结果表明(1)DBT在Na〜Ⅰ/ Y上没有吸附,因为Na〜Ⅰ/ Y的孔径小于BT的分子大小,( 2)在研究的六种离子交换沸石中,BT吸附在Ag〜Ⅰ/ Y上的平衡量最高,Ni〜Ⅱ/ Y,Zn〜Ⅱ/ Y,Cu〜Ⅱ/ Y和Fe〜Ⅲ/上的吸附量最高。与Na〜Ⅰ/ Y相比,Y得到了提高,(3)改性ACs上BT和DBT的平衡吸附量依次为:Ag〜Ⅰ/ AC> Ni〜Ⅱ/ AC> Cu〜Ⅱ/ AC> Zn 〜Ⅱ/ AC> AC> Fe〜Ⅲ/ AC,以及(4)在低BT浓度(Cs <3mmol / L)下,离子交换Y沸石比改性ACs具有更高的BT吸附能力。微孔的表面积较大,而在较高的BT浓度(7

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  • 来源
    《Energy & fuels》 |2008年第6期|p.3858-3863|共6页
  • 作者单位

    Research Institute of Chemical Engineering, South China University of Technology,Guangzhou 510640, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TK-;
  • 关键词

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