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Semibatch Production of Pharmaceutical Grade Magnesium Stea rate:A Statistical Approach

机译:药用级镁硬质合金含量的半批量生产:一种统计方法

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Fractional factorial design was employed to investigate the effect of feed composition and the major operating variables on the production of pharmaceutical grade magnesium stearate in a double decomposition process.The studied variables were initial stearic acid concentration,initial sodium hydroxide concentration,initial magnesium sulfate concentration,as well as reactor temperature at the time of NaOH addition(the first reaction temperature)and reactor temperature during magnesium sulfate addition(the final reaction temperature),pH of the solution at the end of reaction(final pH).The moisture content of the cake produced after filtration and the yield of magnesium stearate in the dried cake(assay),were the most important responses investigated as a function of feed and operating variables and these were optimized through statistical analysis.The results of the study showed that both magnesium sulfate and NaOH had high positive effects on the final pH,with a nonsignificant effect of the other main factors being observed.Increasing the NaOH concentration and the first reaction temperature led to an increase in the assay production,whereas the binary interaction of stearic acid and NaOH revealed a negative effect.The acid as well as NaOH concentrations exhibited positive influence on the moisture content of the filtered cake.Finally,the simplex optimization method was used to obtain the optimal conditions.The results of the study were successfully adapted to the large scale production of pharmaceutical grade magnesium stearate and pharmaceutical grade product was produced meeting the standards required.
机译:采用分数阶乘设计研究了原料组成和主要操作变量对双分解过程中医药级硬脂酸镁生产的影响。研究变量为硬脂酸初始浓度,氢氧化钠初始浓度,硫酸镁初始浓度,以及添加NaOH时的反应器温度(第一个反应温度)和添加硫酸镁时的反应器温度(最终反应温度),反应结束时溶液的pH值(最终pH)。过滤后产生的滤饼和干饼(测定)中硬脂酸镁的收率是最重要的响应,是进料和操作变量的函数,并通过统计分析进行了优化。研究结果表明,硫酸镁和NaOH对最终pH有很高的正效应,而对增加NaOH浓度和第一个反应温度会导致测定产量的增加,而硬脂酸和NaOH的二元相互作用显示出负面影响。酸和NaOH浓度对最后,采用单纯形优化方法获得了最佳条件。研究结果成功地适用于大规模生产药用级硬脂酸镁,并生产了符合要求的标准的药用级产品。 。

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