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Synthesis and application of Cu-BTC@ZSM-5 composites as effective adsorbents for removal of toluene gas under moist ambience: kinetics, thermodynamics, and mechanism studies

机译:Cu-BTC @ ZSM-5复合材料的合成与应用,作为潮湿环境下除去甲苯气体的有效吸附剂:动力学,热力学和机制研究

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摘要

Metal organic frameworks (MOFs) are excellent adsorbents that provide abundant specific surface area, adjustable pore structure, and rich active sites. The purpose of this study was to prepare composites with hydrophobic and high microporous specific surface area and to adsorb toluene gas in moist ambience. An ethanol activation-assisted hydrothermal method was proposed to synthesize copper-benzene-1,3,5-tricarboxylic acid (Cu-BTC) metal-organic framework, Cu-BTC, and ZSM-5 molecular sieve composites (Cu-BTC@ZSM-5). The dynamic adsorption process of toluene on different adsorbents was investigated, and the results showed that the toluene adsorption capacity of Cu-BTC@ZSM-5 (158.6 mg/g) was 2.53 times higher than Cu-BTC (62.7 mg/g), when the ZSM-5 content is 5% and the humidity is 30%RH. Compared with other factors, the humidity inhibited the adsorption of toluene on Cu-BTC@ZSM-5. Langmuir model and the pseudo-second kinetics model can better describe the adsorption behavior of Cu-BTC@ZSM-5. The thermodynamic results showed the adsorption process was a spontaneous exothermic process at low temperature and mainly physical adsorption. The relative regenerability can still up to 80.4% after six cycles. The adsorption mechanisms of Cu-BTC@ZSM-5 were pore-filling adsorption, p-p interaction, cation-p bonding, and hydrophobic interactions. This study will help to design a systematic route to evaluate the adsorption performance of CuBTC@ZSM-5 for toluene.
机译:金属有机框架(MOF)是优异的吸附剂,可提供丰富的比表面积,可调节的孔隙结构和丰富的活性位点。本研究的目的是制备具有疏水性和高微孔特异性表面积的复合材料,并在潮湿的环境中吸附甲苯气体。提出了一种乙醇活化辅助水热法,合成铜 - 苯-1,3,5-三羧酸(Cu-BTC)金属 - 有机骨架,Cu-BTC和ZSM-5分子筛复合材料(Cu-BTC ZSM -5)。研究了不同吸附剂对不同吸附剂的动态吸附过程,结果表明,Cu-BTC / ZSM-5(158.6mg / g)的甲苯吸附能力比Cu-BTC高2.53倍(62.7mg / g),当ZSM-5含量为5%并且湿度为30%RH时。与其他因素相比,湿度抑制了甲苯对Cu-BTC @ ZSM-5的吸附。 Langmuir模型和伪第二动力学模型可以更好地描述Cu-BTC @ ZSM-5的吸附行为。热力学结果表明,吸附过程是在低温下的自发放热过程,主要是物理吸附。六个循环后,相对再生性仍然可以高达80.4%。 Cu-BTC / ZSM-5的吸附机制是孔填充吸附,P-P相互作用,阳离子-P键合和疏水相互作用。本研究将有助于设计系统的途径以评估CubTC @ ZSM-5的吸附性能。

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