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Effects of pore structure and surface chemical characteristics on the adsorption of organic vapors on titanate nanotubes

机译:孔结构和表面化学特性对钛酸盐纳米管吸附有机蒸气的影响

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Effects of pore structure and surface chemical characteristics of titanate nanotubes (TNTs) on their ad-sorptive removal of organic vapors were investigated. TNTs were prepared via a hydrothermal treatment of TiO2 powders in a 10 M NaOH solution at 150 °C for 24 h, and subsequently washed with HC1 aqueous solution of different concentrations. Effects of acid washing process (or the sodium content) on the microstructures and surface chemical characteristics of TNTs were characterized with nitrogen adsorption-desorption isotherms, FTIR, and water vapor adsorption isotherms. For the adsorption experiments, gravimetric techniques were employed to determine the adsorption capacities of TNTs for four organic vapors with similar heats of vaporization (i.e., comparable heats of adsorption) but varying dipole moments and structures, including n-hexane, cyclohexane, toluene, and methyl ethyl ketone (MEK), at isothermal conditions of 20 and 25 °C. The experimental data were correlated by well-known vapor phase models including BET and GAB models. Isos-teric heats of adsorption were calculated and heat curves were established. Equilibrium isotherms of organic vapors on TNTs were type II, characterizing vapor condensation to form multilayers. The specific surface area (and pore volume) and hydrophilicity of TNTs were the dominating factors for the determination of their organic vapors adsorption capacity. The GAB isotherm equation fitted the experimental data more closely than the BET equation. The heats of adsorption showed that the adsorption of organic vapors on TNTs was primarily due to physical forces and adsorbates with larger polarity might induce a stronger interaction with TNTs.
机译:研究了钛酸酯纳米管(TNTs)的孔结构和表面化学特性对其吸附去除有机蒸气的影响。通过将TiO2粉末在150 M的10 M NaOH溶液中于150°C进行水热处理24小时来制备TNT,然后用不同浓度的HCl水溶液洗涤。用氮吸附-解吸等温线,FTIR和水蒸气吸附等温线表征了酸洗工艺(或钠含量)对TNTs的微观结构和表面化学特性的影响。对于吸附实验,采用重量分析技术来确定TNTs对四种有机蒸气在相似的汽化热(即相当的吸附热)但偶极矩和结构(包括正己烷,环己烷,甲苯和甲乙酮(MEK),在20和25°C等温条件下。实验数据通过包括BET和GAB模型在内的众所周知的气相模型进行关联。计算了等位吸​​附热,并建立了热曲线。 TNT上有机蒸气的平衡等温线为II型,其特征是蒸气冷凝形成多层。 TNT的比表面积(和孔体积)和亲水性是确定其有机蒸气吸附能力的主要因素。 GAB等温线方程比BET方程更拟合实验数据。吸附热表明,有机蒸气在TNTs上的吸附主要是由于物理力,极性较大的被吸附物可能与TNTs相互作用更强。

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