In this work, dierent mesoporous silicas were studied as potential sorbents for toluene, selected as a model molecule of aromatic organic fuel-based pollutants. Three siliceous materials with dierent textural and surface properties (i.e., fumed silica and mesoporous Santa Barbara Amorphous (SBA)-15 and Mobil Composition of matter (MCM)-41 materials) were considered and the eect of their physico-chemical properties on the toluene adsorption process was studied. In particular, FT-IR spectroscopy was used to qualitatively study the interactions between the toluene molecule and the surface of silicas, while volumetric adsorption analysis allowed the quantitative determination of the toluene adsorption capacity. The combined use of these techniques revealed that textural properties of the sorbents, primarily porosity, are the driving forces that control the adsorption process. Considering that, under real conditions of usage, the sorbents are soaked in water, their hydrothermal stability was also investigated and toluene adsorption by both the gas and aqueous phase on hydrothermally pre-treated samples was studied. The presence of ordered porosity, together with the dierent pore size distribution and the amount of silanol groups, strongly aected the adsorption process. In toluene adsorption from water, SBA-15 performed better than MCM-41.

Chiara Vittoni, G.G. (2020). Toluene Adsorption by Mesoporous Silicas with Different Textural Properties: A Model Study for VOCs Retention and Water Remediation. MATERIALS, 13(12), 1-17 [10.3390/ma13122690].

Toluene Adsorption by Mesoporous Silicas with Different Textural Properties: A Model Study for VOCs Retention and Water Remediation

Ilaria Braschi
Funding Acquisition
;
Enrico Buscaroli
Formal Analysis
;
2020

Abstract

In this work, dierent mesoporous silicas were studied as potential sorbents for toluene, selected as a model molecule of aromatic organic fuel-based pollutants. Three siliceous materials with dierent textural and surface properties (i.e., fumed silica and mesoporous Santa Barbara Amorphous (SBA)-15 and Mobil Composition of matter (MCM)-41 materials) were considered and the eect of their physico-chemical properties on the toluene adsorption process was studied. In particular, FT-IR spectroscopy was used to qualitatively study the interactions between the toluene molecule and the surface of silicas, while volumetric adsorption analysis allowed the quantitative determination of the toluene adsorption capacity. The combined use of these techniques revealed that textural properties of the sorbents, primarily porosity, are the driving forces that control the adsorption process. Considering that, under real conditions of usage, the sorbents are soaked in water, their hydrothermal stability was also investigated and toluene adsorption by both the gas and aqueous phase on hydrothermally pre-treated samples was studied. The presence of ordered porosity, together with the dierent pore size distribution and the amount of silanol groups, strongly aected the adsorption process. In toluene adsorption from water, SBA-15 performed better than MCM-41.
2020
Chiara Vittoni, G.G. (2020). Toluene Adsorption by Mesoporous Silicas with Different Textural Properties: A Model Study for VOCs Retention and Water Remediation. MATERIALS, 13(12), 1-17 [10.3390/ma13122690].
Chiara Vittoni, Giorgio Gatti, Ilaria Braschi, Enrico Buscaroli , Giovanni Golemme , Leonardo Marchese, Chiara Bisio
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/762061
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