Journal Article

·2023 OPEN ACCESS

FABRICATION OF TERNARY SILICA-CALCIUM-MAGNESIUM AEROGELS: EFFECT OF FEEDING RATE AND MOLAR RATIO ON PROPERTIES

Burcu Karakuzu İkizler YTU , Pınar Terzioğlu YTU , Tülay Merve Soylu YTU , Sevil Yücel YTU

Konya Journal of Engineering Sciences

Abstract

The silica-calcium-magnesium ternary aerogels were prepared by a solvent exchange method and a subsequent ambient pressure drying process. The effect of process parameters such as feeding rate (9-70 mL.min-1) and molar ratio (Si/(Ca:Mg) = 1:1 - 3:1) on the material characteristics including density, elemental content, surface area, pore size, pore volume, and morphology of powders were investigated. Aerogels were characterized by Fourier transform infrared spectroscopy (FTIR), inductively coupled plasma optical emission spectroscopy (ICP-OES), scanning electron microscopy (SEM), Brunauer–Emmett–Teller (BET), Barrett–Joiner–Halenda (BJH) and tapping density analysis. It was found that the molar ratio of Si/(Ca:Mg) could remarkably affect the surface area and density of aerogels, while the feeding rate had slight effect. The resultant aerogels exhibited high specific surface areas. The results showed that the aerogel has a Si/(Ca:3Mg) molar composition obtained with 9 mL.min-1 had the highest surface area (524 m2.g−1). The increase of Ca to Mg molar ratio caused a decrease in the surface area and density of samples. The resultant aerogels are promising candidates as adsorbents to remove various contaminants.

Keywords

Aerogel Fourier transform infrared spectroscopy Scanning electron microscope Materials science Magnesium Ternary operation Specific surface area Inductively coupled plasma Molar Adsorption Nuclear chemistry Analytical Chemistry (journal) Chemical engineering Chemistry Chromatography Nanotechnology Catalysis Composite material Metallurgy Organic chemistry Plasma

Subject Areas

Aerogels and thermal insulation ·Spectroscopy ·Physical Sciences
Mesoporous Materials and Catalysis ·Materials Chemistry ·Physical Sciences
Supercapacitor Materials and Fabrication ·Electronic, Optical and Magnetic Materials ·Physical Sciences

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