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Catalytic Dehydration of Glycerol to Acrolein in a Two-Zone Fluidized Bed Reactor

机译:两区流化床反应器中甘油催化脱水为丙烯醛

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摘要

The gas-phase catalytic dehydration of glycerol to acrolein was carried out in a Two-Zone Fluidized-Bed Reactor (TZFBR) using a 20 wt. % phosphotungstic acid (H3PW12O40) catalyst supported on CARIACT-Q10 commercial silica. In the first step, a hydrodynamic study of the reactor was performed. A quality of fluidization of more than 80% was obtained. In the second step, the mechanical stability of the catalyst was studied. It was found that only the external layer of active phase is eliminated under the conditions of operation whereas the global composition of the catalyst was not significantly affected after 44 h of fluidization. Finally, in a third step, the influence of the main operating parameters on the overall catalytic performances (glycerol/oxygen molar ratio and relative volumes of the reaction and regeneration zones) was investigated, showing notably the importance of the O2/glycerol ratio, resulting in an inverse trend between conversion and selectivity. Increasing O2/glycerol ratio led to higher conversion (lower coke deposit as shown by TGA analysis), but to the detriment of the selectivity to acrolein, supposedly due to the presence of O2 in the reaction zone causing the degradation of glycerol and acrolein.
机译:甘油在气相催化脱水成丙烯醛的过程中,使用了20 wt%的二区流化床反应器(TZFBR)。负载在CARIACT-Q10商业二氧化硅上的%磷钨酸(H3PW12O40)催化剂。在第一步中,对反应堆进行了流体动力学研究。获得了大于80%的流化质量。在第二步中,研究了催化剂的机械稳定性。发现在操作条件下仅除去了活性相的外层,而流化44小时后催化剂的整体组成没有受到显着影响。最后,在第三步中,研究了主要操作参数对整体催化性能(甘油/氧气摩尔比以及反应和再生区的相对体积)的影响,特别显示了O2 /甘油比的重要性,转化率和选择性之间呈反比趋势。 O2 /甘油比的增加导致较高的转化率(如TGA分析所示,焦炭沉积量降低),但对丙烯醛的选择性受到损害,这可能是由于反应区中存在O2导致甘油和丙烯醛的降解。

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