Postgrado de Ciencias Ambientales and Departamento de Investigación en Zeolitas, Instituto de Ciencias, Universidad Autónoma de Puebla, Mexico.
Chemosphere. 2010 Nov;81(7):876-83. doi: 10.1016/j.chemosphere.2010.08.004.
Adsorption isotherms of BTX aromatic hydrocarbons (benzene, toluene, and p-xylene) on pristine (SiO2) and metal-doped (Ag-SiO2, Cu-SiO2 and Fe-SiO2) mesoporous and microporous substrates were measured and interpreted. These adsorbents were synthesized by the sol-gel procedure and their BTX sorption isotherms were obtained by the gas chromatographic technique (GC) at several temperatures in the range 423-593 K. The uptake amount of these hydrocarbon adsorptives on SiO2, Ag-SiO2, Cu-SiO2 and Fe-SiO2 mesoporous and microporous substrates was temperature-dependent. Additionally, the interaction of BTX molecules with the pore walls was evaluated by means of the corresponding isosteric heat of adsorption (qst), which was found to follow the next increasing sequence: qst (benzene)<qst (toluene)<qst (p-xylene). In general, the isosteric heat of adsorption of aromatic BTX compounds on microporous silica depicted an increasing tendency when the amount adsorbed was raised. This was a consequence of the existence of cohesive interactions (adsorbate-adsorbate) besides of the adhesive ones (adsorbate-adsorbent). The inclusion of silver or iron atoms within the SiO2 structure leads to an increased adsorbed amount of BTX molecules on the solid surface if compared with the Cu-SiO2 adsorbent. The adsorption of benzene, but not of toluene and p-xylene, molecules on pristine SiO2 is facilitated by the pore size of this substrate since this is the highest of all materials.
BTX 芳烃(苯、甲苯和对二甲苯)在原始(SiO2)和金属掺杂(Ag-SiO2、Cu-SiO2 和 Fe-SiO2)介孔和微孔基质上的吸附等温线进行了测量和解释。这些吸附剂是通过溶胶-凝胶法合成的,其 BTX 吸附等温线是通过气相色谱技术(GC)在 423-593 K 的几个温度下获得的。这些烃吸附剂在 SiO2、Ag-SiO2、Cu-SiO2 和 Fe-SiO2 介孔和微孔基质上的吸附量随温度而变化。此外,通过相应的吸附等焓(qst)评估了 BTX 分子与孔壁的相互作用,发现其遵循以下增加顺序:qst(苯)<qst(甲苯)<qst(对二甲苯)。一般来说,当吸附量增加时,微孔硅上芳香 BTX 化合物的吸附等焓呈增加趋势。这是由于存在内聚相互作用(吸附物-吸附物)除了粘附相互作用(吸附物-吸附剂)之外。与 Cu-SiO2 吸附剂相比,如果将银或铁原子包含在 SiO2 结构中,则会导致 BTX 分子在固体表面上的吸附量增加。由于这种材料的孔径最大,因此苯分子在原始 SiO2 上的吸附更容易,但甲苯和对二甲苯分子的吸附则不然。