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One-step preparing magnesium hydroxide particles from mother liquor of salt production

机译:盐生产母液中的一步制备氢氧化镁颗粒

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In this study, MH particles were prepared from mother liquor of salt production in one-step through employing ammonia gas as precipitant and stearic acid as dispersant respectively. Since adopting microporous plate to bubble ammonia gas, the percent conversion of magnesium was boosted obviously. The influence of operating condition of reacting temperature, stirring rate, ammonia flowrate and pore size of plate to magnesium percent conversion were investigated, the maximum is 88.1 % at optimum condition according to experimental results. The MH particle preparing from mother liquor in optimum condition was characterized by XRD, the result indicated the volume of brucite was reach to 99.7% within the composition of the product. In addition, the size distribution and crystal morphology was also detected, the median particle diameter d50 is 883 nm and possessing good dispersibility. From the thermogravimetric analysis of MH particles, the thermostability of product is suitable as flame-retardant composite materials.
机译:在该研究中,通过分别使用氨气作为沉淀剂和硬脂酸的氨水作为分散剂,从盐产生的母液中由盐产生的母液中制备MH颗粒。由于采用微孔板泡泡氨气,因此镁的转化百分比显着提高。研究了反应温度,搅拌速率,氨流量和孔径对镁百分比转化率的影响的影响,根据实验结果,最大值在最佳条件下为88.1%。通过XRD表征在最佳条件下从母液中制备的MH颗粒,结果表明了Brucite的体积达到产物组合物的99.7%。此外,还检测到尺寸分布和晶体形态,中值D50为883nm并具有良好的分散性。从MH颗粒的热重分析,产品的热稳定性是耐阻燃复合材料。

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