The effectiveness of precipitation pH and temperature of Mg/Al Hydrotalcite synthesis on the glucose isomerization

A. R. Permanasari
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Abstract

Mg/Al Hydrotalcite as the catalyst in isomerization of glucose into fructose was made by coprecipitation of Mg(NO3)2.6H2O and Al(NO3)3.9H2O. Operating condition of precipitation including the temperature and pH was determined by Response Surface Method (RSM). The catalyst synthesis was carried out in the mole ratio of Mg/Al 3:1 for 18 h and the catalyst was activated by calcination for 3 h at 500°C. Catalyst characterization was done by FTIR, BET, and XRD. The highest mass product of Hydrotalcite Mg/Al 4.52 g, reached at the precipitation conditions of pH 9 and temperature of 45ºC. The catalytic activity of hydrotalcite Mg/Al was tested by the isomerization of Glucose into Fructose. The highest yield and selectivity were 20.14%, 62.40%, respectively. It was reached in pH 9 and 45ºC. While the highest conversion, 53.47%, was achieved in the pH 11.12 with a precipitation temperature of 45ºC. By the RSM analysis, neither the mass of catalyst product nor the catalytic activity from the isomerization (yield, conversion, and selectivity) were affected significantly by the pH and temperature precipitation.
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Mg/Al水滑石合成过程中沉淀pH和温度对葡萄糖异构化的影响
采用Mg(NO3)2.6H2O和Al(NO3)3.9H2O共沉淀法制备Mg/Al水滑石作为葡萄糖异构化成果糖的催化剂。采用响应面法(RSM)确定了沉淀的操作条件,包括温度和pH。催化剂在Mg/Al 3:1摩尔比下合成18 h,在500℃下煅烧3 h活化。采用FTIR、BET和XRD对催化剂进行了表征。在pH为9、温度为45℃的条件下,水滑石的最大质量产物Mg/Al为4.52 g。通过葡萄糖与果糖的异构化反应,考察了镁铝水滑石的催化活性。收率和选择性最高,分别为20.14%和62.40%。pH值为9,温度为45℃。当pH为11.12,沉淀温度为45℃时,转化率最高,达到53.47%。通过RSM分析,pH和温度沉淀对催化剂产物质量和异构化催化活性(产率、转化率和选择性)均无显著影响。
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