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Optimization of process condition of nanosilica production by hydrothermal method

机译:水热法生产纳米硅制剂工艺条件的优化

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Bagasse ashes have high silica content thus it can be used in nanosilicaproduction to increase its benefit value. This study aimed to get the best time for synthesis and to determine the optimum synthesis time and temperature. This study used the hydrothermal method, a simple method with relatively low reaction temperature and provide a good chemical homogeneity. Time varieties in synthesizing silica were 8,10 and 12 hours, at the temperature of 150 °C. But the results were not as expected. Moreover, optimization of synthesis temperature and time used 4 hours at the temperature of 150 °C based on previous studies. Optimization was conducted using the Response Surface Methodology (RSM). Later, a testusing PSA (Particle Size Analyzer) was performed to obtain particle sizes and PDI values (Polydispersity Index). The results showed that the prediction model of temperature synthesis was 152.67 °C, synthesis time of 6 hours, particle size of 276.288 nm and PDI value of 0.189642. The tests showed that the size of particle obtained was 330.39 nm and PDI value at 0.3580. Actual results and predicted results were not significant different.
机译:Bagasse灰烬具有高二氧化硅含量,因此可用于纳米硅加固以增加其益处价值。本研究旨在获得合成的最佳时间,并确定最佳合成时间和温度。本研究采用了水热法,一种具有相对较低的反应温度的简单方法,提供了良好的化学均匀性。合成二氧化硅的时间变量为8,10和12小时,在150℃的温度下。但结果并非预期。此外,基于先前的研究,在150℃的温度下使用4小时的合成温度和时间优化。使用响应表面方法(RSM)进行优化。后来,进行睾丸PSA(粒度分析仪)以获得粒度和PDI值(多分散指数)。结果表明,温度合成的预测模型为152.67℃,合成时间为6小时,粒度为276.288nm和pdi值为0.189642。测试表明,所得颗粒的尺寸为330.39nm,PDI值为0.3580。实际结果和预测结果并不重要。

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