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Competitive adsorption of benzene, toluene and water vapor on super activated carbon nanoparticles

机译:超级活性炭纳米颗粒上苯,甲苯和水蒸气的竞争性吸附

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摘要

Nano-sized particles exist in nature and they can be formed from various products, which could be carbon or minerals, like silver. Engineered nanomaterials (ENMs) are required to have at least one dimension with a size of up to 100 nanometers. Most nanoscale materials would be too small to be seen with the naked eye, even with conventional microscopes. ENMs are manufactured to provide improved properties such as increased strength, chemical reactivity or conductivity. ENMs can improve the quality of life and have an outstanding influence on industrial competitiveness. However, there are rising concerns about the effects of these materials on human health and the environment.;This research aimed at quantifying and comparing the adsorption capacities and dynamics of benzene, toluene and water vapor on super activated carbon nanoparticles (SACNPs) using a bench scale adsorption system. In order to evaluate the possible adsorption behavior of SACNPs with water vapor, benzene and toluene, the various adsorption capacities, breakthrough curves, removal efficiencies and throughput ratios were determined. The single component adsorption schemes were also tested and compared with the adsorption mixtures of benzene, toluene and water vapor. Kinetic adsorption analyses were carried out for the mixtures of benzene, toluene and water vapor. It was hypothesized that water vapor in the gas stream reduced the adsorption of benzene and toluene on SACNPs. This study focused on the interactions of benzene and toluene, which are hazardous air pollutants (HAPs) with water vapor using a bench-sale adsorption system.;Water vapor played an important role in the removal efficiency of SACNPs. Toluene had greater adsorption capacity on SACNPs as compared to benzene. Adsorption kinetics analyses showed that the majority of the adsorption experiments followed a second order kinetic adsorption model, with the exception of the adsorption of benzene with 40% RH which fitted best with the first order kinetic adsorption model.
机译:纳米粒子存在于自然界中,它们可以由多种产品形成,这些产品可以是碳或矿物质,例如银。工程纳米材料(ENM)必须具有至少一维且尺寸最大为100纳米。即使使用常规显微镜,大多数纳米级材料也太小而无法用肉眼看到。制造ENM是为了提供改进的性能,例如提高强度,化学反应性或导电性。 ENM可以改善生活质量,并对工业竞争力产生显着影响。然而,人们越来越关注这些材料对人体健康和环境的影响。这项研究旨在量化和比较苯,甲苯和水蒸气在超活性炭纳米颗粒(SACNPs)上的吸附能力和动力学。规模吸附系统。为了评估SACNPs在水蒸气,苯和甲苯中的可能吸附行为,测定了各种吸附容量,穿透曲线,去除效率和通过量。还测试了单组分吸附方案,并将其与苯,甲苯和水蒸气的吸附混合物进行了比较。对苯,甲苯和水蒸气的混合物进行了动力学吸附分析。假设气流中的水蒸气会减少苯和甲苯在SACNPs上的吸附。本研究的重点是使用台式吸附系统对作为有害空气污染物(HAP)的苯和甲苯与水蒸气的相互作用进行研究。水蒸气在SACNPs的去除效率中起着重要作用。与苯相比,甲苯对SACNPs的吸附能力更大。吸附动力学分析表明,大多数吸附实验遵循二级动力学吸附模型,除了苯与40%RH的吸附最适合一级动力学吸附模型。

著录项

  • 作者

    Tazanu, Sharon N.;

  • 作者单位

    Texas A&M University - Kingsville.;

  • 授予单位 Texas A&M University - Kingsville.;
  • 学科 Engineering.;Environmental engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 66 p.
  • 总页数 66
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:30

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