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Synthesis of methacrylic acid by aldol condensation of propionic acid with formaldehyde over acid-base bifunctional catalysts

机译:酸碱双功能催化剂上丙酸与甲醛的醛醇缩合反应合成甲基丙烯酸

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A variety of catalysts consisting of MgO,SiO2,Al2O3 and ZrO2,with and without added cesium,were evaluated in the aldol condensation of propionic acid with formaldehyde to produce methacrylic acid.Reactions were performed in a fixed-bed reactor operating at atmospheric pressure and 598 K.Stepwise TPD of pre-adsorbed NH3 and CO2 was used to estimate the number and strength of surface acid and base sites,respectively.Both a strong solid base such as MgO and a non-basic solid such as SiO2 were ineffective at catalyzing the aldol condensation reaction.However,Cs-loaded silica and alumina exhibited moderate activity and high selectivity for the reaction.Results from reactivity measurements and surface characterization suggest that both acid and base sites are needed to catalyze the reaction,and the observed rates over the Afunctional ZrO2 catalyst support this hypothesis.A reversible inhibition of the rate by added water was observed over Cs-SiO2 and is attributed to migration and agglomeration of the cesium on the support in the presence of water.
机译:在丙酸与甲醛的醛醇缩合反应制得甲基丙烯酸的过程中,评估了各种由MgO,SiO2,Al2O3和ZrO2组成的催化剂(含或不含铯)的反应。反应在固定床反应器中在常压和598 K.分别使用预吸附的NH3和CO2的逐步TPD来估算表面酸和碱的数量和强度。强固体碱(如MgO)和非碱性固体(如SiO2)均不能有效地催化然而,负载Cs的二氧化硅和氧化铝对反应显示出中等活性和高选择性。反​​应性测量和表面表征的结果表明,酸和碱位都需要催化,并且在整个反应过程中观察到的速率。无功能的ZrO2催化剂支持这一假设。在Cs-SiO2上观察到添加水对速率的可逆抑制作用,归因于迁移和团聚在水存在下铯在载体上的离子。

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