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首页> 外文期刊>The Korean journal of chemical engineering >Adsorption behavior of Ag(Ⅰ) onto elemental sulfur-encapsulated silica nanocapsules for industrial applications
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Adsorption behavior of Ag(Ⅰ) onto elemental sulfur-encapsulated silica nanocapsules for industrial applications

机译:Ag(Ⅰ)在元素硫包裹的二氧化硅纳米胶囊上的吸附性能

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摘要

Pure silica nanocapsules (SiNC-P) and elemental sulfur-encapsulated silica nanocapsules (SiNC-ES) as Ag(I) adsorbents were successfully synthesized by a one-step water-in-oil microemulsion polymerization process. The characterization of the synthesized materials, such as surface morphology, surface area, porosity, functional groups and thermal characteristics, was carried out using various analytical techniques. The SiNC-P and SiNC-ES have nearly similar morphology, but the surface area and pore size of the SiNC-ES are higher than SiNC-P. The Ag(I) adsorption study showed that it increased with increasing elemental sulfur (ES) amount in the SiNC-ES. The SiNC-ES shows high adsorption capacity, independent of pH, and higher adsorption rate as compared to SiNC-P. The maximum Ag(I) adsorption capacity of SiNC-P and SiNC-ES was 50.49mg g(-1) and 98.51mg g(-1), respectively. The adsorption isotherm data were best described by the Langmuir model. The diffusion modeling analysis of the kinetic data indicated that film diffusion is the controlling step, while chemical reaction modeling obeys the pseudo-second-order kinetic model. The SiNC-ES was reusable and good adsorption performance up to four adsorption cycles was observed. The practical capability of the SiNC-ES to adsorb Ag(I) was successfully demonstrated using an industrial waste solution in which a high removal efficiency was observed (eta> 90%). This demonstrates that the SiNC-ES can be a potential adsorbent for Ag(I) recovery from industrial wastes.
机译:通过一步法油包水微乳液聚合工艺成功地合成了纯二氧化硅纳米胶囊(SiNC-P)和元素硫包裹的二氧化硅纳米胶囊(SiNC-ES)作为Ag(I)吸附剂。使用各种分析技术对合成材料进行了表征,例如表面形态,表面积,孔隙率,官能团和热特性。 SiNC-P和SiNC-ES的形貌几乎相似,但是SiNC-ES的表面积和孔径大于SiNC-P。 Ag(I)吸附研究表明,它在SiNC-ES中随元素硫(ES)含量的增加而增加。与SiNC-P相比,SiNC-ES表现出高吸附能力,不受pH值的影响,并且吸附速率更高。 SiNC-P和SiNC-ES的最大Ag(I)吸附容量分别为50.49mg g(-1)和98.51mg g(-1)。吸附等温线数据最好由Langmuir模型描述。动力学数据的扩散建模分析表明,膜扩散是控制步骤,而化学反应建模则遵循伪二级动力学模型。 SiNC-ES可重复使用,观察到高达四个吸附循环的良好吸附性能。使用工业废液成功地证明了SiNC-ES吸附Ag(I)的实用能力,其中观察到了很高的去除效率(η> 90%)。这表明SiNC-ES可能是从工业废料中回收Ag(I)的潜在吸附剂。

著录项

  • 来源
    《The Korean journal of chemical engineering 》 |2020年第4期| 652-662| 共11页
  • 作者

  • 作者单位

    Univ Teknol Malaysia Sch Chem & Energy Engn Adv Mat & Proc Engn Lab Fac Engn Utm Skudai 81310 Johor Malaysia;

    Univ Teknologi Malaysia Sch Chem & Energy Engn Ctr Lipid Engn & Appl Res Fac Engn Utm Skudai 81310 Johor Malaysia;

    Univ Teknol PETRONAS Dept Chem Engn Fac Engn Bandar Seri Iskandar 32610 Perak Malaysia;

    Univ Teknol Malaysia Sch Chem & Energy Engn Adv Mat & Proc Engn Lab Fac Engn Utm Skudai 81310 Johor Malaysia|Univ Teknol Malaysia Hlth & Wellness Res Alliance Adv Mat & Separat Technol AMSET Res Grp Utm Skudai 81310 Johor Malaysia;

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

    Silica; Elemental Sulfur; Nanocapsules; Ag(I) Ions; Adsorption;

    机译:二氧化硅元素硫纳米胶囊;Ag(I)离子;吸附性;

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