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Investigation of BTEX Adsorption on Carbon Nanotubes Cartridges from Air Samples

机译:空气样品中碳纳米管子弹对BTEX吸附的研究

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The volatile organic compounds (VOCs) contribute to serious air pollution problems in Viet Nam. Many studies have investigated in air quality monitoring and treatment, in order to determine the average concentrations of Benzene, Toluene, Ethylbenzene and Xylene (BTEX). Carbon nanotubes (CNTs) have been widely used as adsorbent in environmental treatment, especially for VOCs. This paper aims to determine the adsorption capacity of multiwalled carbon nanotubes for removal of BTEX from air samples. In preliminary study, the effects of various parameters during adsorption experiments were monitored such as flow rate, temperature and BTEX concentrations in air samples. The equipment for BTEX removal was developed by our research team consisting of filter columns, air sample bags, adsorption cartridge. The air samples containing BTEX were conducted directly through a cartridge packed with adsorbent. The adsorption experiments were carried out under various operating conditions such as temperature (30 - 40°C), gas concentration (0,57 - 4,77 mg/L) and the gas flow rate (10 - 90 mL/min). In addition, isotherm studies of CNTs for BTEX removal were achieved by using Langmuir and Freundlich models. The results showed that the experimental parameters were optimized at a flow rate of 30 mL/min and an ambient temperature at 30°C. The adsorption capacity of CNTs increased proportionally with BTEX concentrations. The specific affinity of CNTs for BTEX from air samples was in order of X E T B. The experimental isotherm data were well-fit with the Langmuir model for Benzene and Xylene removal, and the Freundlich model for Toluene and Ethylbenzene adsorption. The CNTs presented highly potential application for BTEX adsorption thanks to their microporous structure and high surface area.
机译:挥发性有机化合物(VOC)在越南造成严重的空气污染问题。为了确定苯,甲苯,乙苯和二甲苯(BTEX)的平均浓度,进行了许多空气质量监测和处理研究。碳纳米管(CNT)已被广泛用作环境处理中的吸附剂,尤其是用于VOC。本文旨在确定用于去除空气样品中BTEX的多壁碳纳米管的吸附能力。在初步研究中,监测了吸附实验期间各种参数的影响,例如空气样品中的流速,温度和BTEX浓度。 BTEX去除设备是由我们的研究团队开发的,包括过滤柱,空气样品袋,吸附盒。包含BTEX的空气样品直接通过装有吸附剂的滤芯引导。吸附实验是在各种操作条件下进行的,例如温度(30-40°C),气体浓度(0.54-4.77 mg / L)和气体流速(10-90 mL / min)。另外,通过使用Langmuir和Freundlich模型,对用于BTEX去除的CNT进行了等温线研究。结果表明,在30 mL / min的流速和30°C的环境温度下优化了实验参数。碳纳米管的吸附能力与BTEX浓度成正比。碳纳米管对空气样品中BTEX的比亲和力依次为X> E> T>B。实验等温数据与Langmuir模型对苯和二甲苯的去除以及Freundlich模型对甲苯和乙苯的吸附非常吻合。碳纳米管具有微孔结构和高表面积,因此在BTEX吸附方面具有很高的应用潜力。

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