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Synthesis and surface characteristics of nanosilica produced from alkali-extracted rice husk ash

机译:碱提取稻壳灰制备纳米二氧化硅的合成及表面特性

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Rice husk is a form of agricultural biomass that provides an abundant silicon source. This study used rice husk as a raw material to prepare nanosilica without adding an extra surfactant. This work investigated a dissolution-precipitation technique as a function of acid treatment, sodium silicate concentration, gelation pH, aging temperature, and aging time to establish optimum conditions for preparing silica nanoparticles. Experimental results showed that silica produced by hydrochloric acid possesses higher surface area than that of sulfuric, oxalic, and citric acids. Surface characteristics of the sample depend mainly upon gelation pH. The highest surface area and pore volume of silica samples were 634m2/g and 0.811 cm3/g. Pore diameters were controllable from 3 to 9nm by adjusting the solution pH value. Particles had a uniform size of 5-30 nm. The objective of this study was to develop a method of nanosilica preparation that enhances the economic benefits of re-using rice husk waste.
机译:稻壳是农业生物质的一种形式,可提供丰富的硅资源。这项研究以稻壳为原料制备纳米二氧化硅,而无需添加额外的表面活性剂。这项工作研究了溶解沉淀技术与酸处理,硅酸钠浓度,胶凝pH,老化温度和老化时间的关系,从而为制备二氧化硅纳米颗粒建立了最佳条件。实验结果表明,盐酸制得的二氧化硅比硫酸,草酸和柠檬酸具有更高的表面积。样品的表面特性主要取决于凝胶pH。二氧化硅样品的最大表面积和孔体积为634m2 / g和0.811 cm3 / g。通过调节溶液的pH值,可将孔径控制在3至9nm之间。颗粒具有5-30nm的均匀尺寸。这项研究的目的是开发一种制备纳米二氧化硅的方法,该方法可以提高稻壳废料的再利用的经济效益。

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