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USY/SAPO-5复合分子筛的制备与改性及催化合成甲基异丁基酮的工艺研究
引用本文:田晓光,尹延超,李永超,侯俊琦,田世超,卞婉莹,连丕勇. USY/SAPO-5复合分子筛的制备与改性及催化合成甲基异丁基酮的工艺研究[J]. 石化技术与应用, 2013, 31(1): 18-22
作者姓名:田晓光  尹延超  李永超  侯俊琦  田世超  卞婉莹  连丕勇
作者单位:辽宁石油化工大学石油化工学院,辽宁抚顺,113001
摘    要:采用水热合成法合成USY/SAPO-5复合分子筛,用金属氧化物(NiO和CuO)对其改性,通过X射线粉末衍射(XRD)和NH3程序升温脱附法(NH3-TPD)对复合分子筛进行表征。以USY/SAPO-5复合分子筛和以金属氧化物改性后的分子筛为催化剂,研究丙酮与异丙醇合成甲基异丁基酮(MIBK)的最佳工艺条件。结果表明,2种金属氧化物均能使复合分子筛催化剂的性能获得改善,NiO的改性效果比CuO好;在NiO负载量为0.9%,反应压力为2.0 MPa,反应温度为200℃,空速为1.25 h-1,n(丙酮)/n(异丙醇)为1的最佳工艺条件下,异丙醇转化率为43.1%,MIBK选择性为85.2%。

关 键 词:甲基异丁基酮  复合分子筛  水热合成法  金属氧化物  异丙醇  丙酮

Preparation and modification of USY/SAPO-5 composite zeolite and catalyzed synthesis of methyl isobutyl ketone
TIAN Xiao-guang , YIN Yan-chao , LI Yong-chao , HOU Jun-qi , TIAN Shi-chao , BIAN Wan-ying , LIAN Pi-yong. Preparation and modification of USY/SAPO-5 composite zeolite and catalyzed synthesis of methyl isobutyl ketone[J]. Petrochemical Technology & Application, 2013, 31(1): 18-22
Authors:TIAN Xiao-guang    YIN Yan-chao    LI Yong-chao    HOU Jun-qi    TIAN Shi-chao    BIAN Wan-ying    LIAN Pi-yong
Affiliation:(School of Petrochemical Technology,Liaoning University of Petroleum & Chemical Technology,Fushun 113001,China)
Abstract:USY/SAPO-5 composite zeolite was prepared by hydrothermal method and modified with metal oxides NiO and CuO.X-Ray powder diffraction and NH3-temperature programmed desorption were used to characterize the composite zeolite and modified zeolite.The optimum process condition for synthesizing methyl isobutyl ketone(MIBK) was investigated with acetone and isopropyl alcohol as raw materials,USY/SAPO-5 zeolite and its metal oxide modified species as catalyst.The results showed that all the two metal oxides could improve the performance of the composite catalyst,and NiO was better than CuO.Under the optimum process conditions of NiO loading mass fraction 0.9%,reaction pressure 2.0MPa,reaction temperature 200℃,space velocity 1.25h-1,n(acetone)/n(isopropyl alcohol) 1,the conversion of isopropyl alcohol reached 43.1%,and the selectivity of MIBK reached 85.2%.
Keywords:methyl isobutyl ketone composite zeolite hydrothermal synthesis process metal oxide isopropyl alcohol acetone
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