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首页> 外文期刊>Water, Air, and Soil Pollution >A Comparative Study on Activated Carbons Derived from a Broad Range of Agro-industrial Wastes in Removal of Large-Molecular-Size Organic Pollutants in Aqueous Phase
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A Comparative Study on Activated Carbons Derived from a Broad Range of Agro-industrial Wastes in Removal of Large-Molecular-Size Organic Pollutants in Aqueous Phase

机译:多种农业工业废料在水相中去除大分子有机污染物中活性炭的比较研究

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摘要

Microporous-mesoporous activated carbons from five different types of agro-industrial wastes were produced using chemical activation with ZnCl2 and carbonization at mild conditions of 600 degrees C, comprehensively characterized and investigated for removal of methylene blue (MB) in aqueous solution, a model large-molecular-size organic pollutant. The external part of the mango pit (mango seed husk) was used for the production of activated carbon (AC) for the first time. Despite that the raw agro-materials exhibited significantly different porosity, all activated carbons produced possessed well-developed microporous-mesoporous structures showing high surface areas and micropore volumes. Further, it was revealed that the pore size distribution of raw agro-material is a more important property in development of microporous-mesoporous structure of produced ACs than their overall porosity. All activated carbons produced adsorbed MB, reaching in most cases 100 % removal from the aqueous phase. Adsorption data were fitted well to a pseudo-second-order kinetic model. For MB adsorption, the mesoporosity and the ratio of micropores accessible for MB were the key factors since there exists the size-selectivity effect on MB adsorption due to MB molecular dimensions. The molecular dimensions of MB were estimated via DFT calculations to 1.66x0.82x0.54 nm, and this parameter was correlated with determined micropore size distributions of activated carbons.
机译:使用ZnCl2进行化学活化并在600摄氏度的温和条件下进行碳化,从五种不同类型的农业工业废料中生产微孔中孔活性炭,并进行了全面表征和研究以去除水溶液中的亚甲基蓝(MB)。分子大小的有机污染物。芒果窖的外部(芒果皮)首次用于生产活性炭(AC)。尽管原始的农业材料显示出明显不同的孔隙率,但所有生产的活性炭均具有发达的微孔-中孔结构,显示出高表面积和微孔体积。此外,还发现,在生产的AC的微孔-中孔结构的发展中,原料农用材料的孔径分布比其总体孔隙率更重要。所有活性炭均产生吸附的MB,在大多数情况下可从水相中去除100%。吸附数据很好地拟合了伪二级动力学模型。对于MB吸附,由于MB分子的尺寸,对MB吸附存在尺寸选择性作用,因此介孔率和MB可达到的微孔比例是关键因素。通过DFT计算估计MB的分子尺寸为1.66×0.82×0.54nm,并且该参数与确定的活性炭的微孔尺寸分布相关。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2015年第7期|214.1-214.15|共15页
  • 作者单位

    Univ Nacl Tumbes, Fac Ciencias Agr, Lab Anal Ambiental, Pampa Grande, Tumbes, Peru;

    CAS, Inst Chem Proc Fundamentals, Dept Catalysis & React Engn, Vvi, Prague 16502, Czech Republic;

    Univ Oulu, Fac Technol Environm & Chem Engn, Oulu 90014, Finland;

    Univ Oulu, Fac Technol Environm & Chem Engn, Oulu 90014, Finland;

    Univ Nacl Tumbes, Fac Ciencias Agr, Lab Anal Ambiental, Pampa Grande, Tumbes, Peru;

    Univ Nacl Ingn, Fac Ciencias, Lab Mat Func, Lima 25, Peru;

    Univ Nacl Piura, Dept Ingn Quim, Urb Miraflores, Piura, Peru;

    CAS, Inst Chem Proc Fundamentals, Dept Catalysis & React Engn, Vvi, Prague 16502, Czech Republic;

    Univ Oulu, Fac Technol Environm & Chem Engn, Oulu 90014, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Agro-industrial biomass; ZnCl2; Activated carbon; Large-molecular-size pollutant; Adsorption; DFT;

    机译:农用生物质ZnCl2活性炭大分子污染物吸附DFT;

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