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Potassium modified NaY: A selective and durable catalyst for dehydration of lactic acid to acrylic acid

机译:钾改性的NaY:一种选择性和持久的催化剂,用于将乳酸脱水为丙烯酸

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摘要

Potassium modification significantly improved the selectivity and durability of NaY zeolites during lactic acid dehydration reaction. The selectivity of 2.8K/NaY zeolites improved from 14.8% to 50.0% over NaY catalyst. Adding potassium also prolonged catalyst life. After 22 h the acrylic acid selectivity of NaY zeolites reduced to less than 10.0% while that of 3.5K/NaY retained 35.6%. Characterizations with NH3-TPD, CO2-TPD, N2 adsorption and thermal analysis techniques revealed that the enhancement of catalytic performances could be attributed to the tuned acidity/basicity and the potassium electronic promoter effect.
机译:钾改性显着提高了乳酸脱水反应过程中NaY沸石的选择性和耐久性。相对于NaY催化剂,2.8K / NaY沸石的选择性从14.8%提高到50.0%。添加钾还延长了催化剂寿命。 22小时后,NaY沸石的丙烯酸选择性降低到小于10.0%,而3.5K / NaY的丙烯酸选择性保持35.6%。 NH3-TPD,CO2-TPD,N2吸附和热分析技术的表征表明,催化性能的提高可归因于酸度/碱性和钾电子促进剂效应的调节。

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