Processing of model n-alcanes and diesel fraction on the catalyst La-Zn-Mn / Al2O3 + ZSM

IF 0.3 Q4 BIOLOGY
A. Omarova, Larissa R. Sassykova, S. Sendilvelan, M. Tulepov, Military Educational
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引用次数: 0

Abstract

: Catalytic cracking is one of the most common processes in the oil refining industry. It contributes to a significant deepening of the oil refining degree and it is used for the production of high-octane gasolines and diesel fuels from heavy oil fractions, as well as for the production of petrochemical synthesis products. One of the promising methods for the regulation of catalytic properties is the introduction of modifying additives into the catalytic composition. In this work the catalysts on the base of Al 2 O 3 , ZSM catalyst modified by introduction of additives of manganese, lanthanum and zinc have been prepared and studied during the hydrogen-free conversion of hexane, tetradecane and the diesel fraction. The structure and state of the catalyst’s active centers have been studied using a complex of physico-chemical methods (TEM, XPA, TPD). It has been found that catalysts are characterized by the presence of both acid (Bronsted and Lews) and M 0-or Mn + -metal centers. The structure of acid centers can include MnSiO 3, La 5 Si, Mn 15 Si 26 , LaMn 2 Si 2 , La Al 11 O 18 , La 2 Si 2 O 7 , La 3 Si 2 , La 3 Si 2 , functioning as Lews acid sites. The degree of hexane and tetradecane conversion, the composition of the compound form is determined by the length of the hydrocarbon chain and the conditions of the process
在La-Zn-Mn / Al2O3 + ZSM催化剂上处理模型正构烷烃和柴油馏分
:催化裂化是炼油工业中最常见的工艺之一。它有助于显著加深炼油程度,用于从重油馏分生产高辛烷值汽油和柴油,以及生产石化合成产品。调节催化性能的一种有前途的方法是在催化组合物中引入改性添加剂。本文在Al2 O3、ZSM催化剂的基础上,引入锰、镧和锌添加剂,制备了正己烷、十四烷和柴油馏分的无氢转化催化剂,并对其进行了研究。采用物理化学复合方法(TEM、XPA、TPD)研究了催化剂活性中心的结构和状态。已经发现,催化剂的特征在于同时存在酸(Bronsted和Lews)和M0-或Mn+-金属中心。酸中心的结构可以包括MnSiO3、La5Si、Mn15Si26、LaMn2Si2、LaAl11O18、La2Si2O7、La3Si2、La 3Si2,起Lews酸位点的作用。己烷和十四烷的转化程度、化合物形式的组成由烃链的长度和工艺条件决定
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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