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Synthesis and Characterization of Silica from Ragi Husk Ash (Finger Millet) by a Sol-gel Method

机译:Ragi Husk Ash(Finger Millet)二氧化硅的溶胶-凝胶法合成与表征

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Silica aerogel, a mesoporous material, was prepared from ragi husk ash by sol–gel method and dried under atmospheric pressure. In this method, ragi husk ash, which is rich in silica, was extracted with sodium hydroxide solution to produce a sodium silicate solution. This solution was neutralized with acid to form a silica aerogel. The aged gel was washed carefully by de ionized water and ethanol and finally dried under atmospheric air. A temperature of 700 0 C was found to be optimum ashing temperature with maximum amorphous silica content. From a morphological analysis obtained by SEM and diffraction patterns (XRD), a longitudinal fibrous and amorphous structure was observed for Ragi Husk. FTIR characterization indicated the presence of silanol and siloxane groups. Thermo gravimetric was used to characterize burning behaviour and also to determine the activation energies. This economic technology, as applied to waste material, also provides many benefits to the local agro-industry.
机译:二氧化硅气凝胶是一种中孔材料,是用溶胶-凝胶法由拉吉果皮灰制备的,并在大气压下干燥。在该方法中,用氢氧化钠溶液萃取富含二氧化硅的雷吉果壳灰以产生硅酸钠溶液。该溶液用酸中和以形成二氧化硅气凝胶。用去离子水和乙醇仔细洗涤老化的凝胶,最后在大气下干燥。发现700 0 C的温度是具有最大无定形二氧化硅含量的最佳灰化温度。根据通过SEM和衍射图谱(XRD)进行的形态分析,可以观察到Ragi Husk的纵向纤维和无定形结构。 FTIR表征表明存在硅烷醇和硅氧烷基团。热重分析法用于表征燃烧行为并确定活化能。应用于废料的这项经济技术也为当地的农业工业带来了许多好处。

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