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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Hydroisomerization and hydrocracking of long chain n-alkanes on Pt/amorphous SiO2-Al2O3 catalyst
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Hydroisomerization and hydrocracking of long chain n-alkanes on Pt/amorphous SiO2-Al2O3 catalyst

机译:Pt /非晶SiO2-Al2O3催化剂上长链正构烷烃的加氢异构化和加氢裂化

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The hydroisomerization and hydrocracking of n-hexadecane, n-octacosane and n-hexatriacontane on a 0.3% platinum/amorphous silica-alumina (MSA/E) catalyst was investigated in a stirred microautoclave at 345, 360 and 380 degrees C and between 2 and 13.1 MPa hydrogen pressure. For each n-paraffin, the reaction pathway and the kinetic parameters were determined. The results were used to elucidate the effect of chain length and operating conditions on isomerization and cracking selectivity. The conversion of the n-paraffins lead to the formation of a mixture of the respective isomers, as the main product, together with cracking products. At every temperature, the iso-alkane-alkane ratio of cracking products increased considerably with increasing conversion degree. Ar the same conversion level, higher reaction temperatures lead to cracking products characterized by a lower iso-alkane-alkane ratio. The conversion rate constants showed a considerable increase between n-C-16 and n-C-28, whereas a slight decrease between n-C-28 and n-C-36 was observed. The hydroisomerization selectivities showed a decrease as a function of chain length and with increasing conversion levels. The increase in reaction temperature leads to a small decrease in the isomerization selectivities only at low-medium conversion degrees and at the highest temperature investigated, while the effect of this parameter on the maximum yields achievable in iso-C16, iso-C28 and iso-C36 was negligible. The results indicate that the conversion of the n-paraffins follows a first-order kinetic in hydrocarbon while the order in hydrogen pressure was -1.1 +/- 0.21 for n-C-16 and -0.66 +/- 0.15 for n-C-28. Furthermore, an increase in hydroisomerization selectivity at higher hydrogen pressure for n-C-28 conversion was observed. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 40]
机译:在345、360和380摄氏度以及2-3℃之间的搅拌微高压釜中,研究了0.3%铂/无定形二氧化硅-氧化铝(MSA / E)催化剂上正十六烷,正辛烷和正十六烷的加氢异构化和加氢裂化。氢气压力为13.1 MPa。对于每个正链烷烃,确定了反应途径和动力学参数。结果用于阐明链长和操作条件对异构化和裂化选择性的影响。正链烷烃的转化导致作为主产物的各种异构体与裂化产物的混合物的形成。在每个温度下,裂化产物的异烷烃/正烷烃比率随着转化度的增加而显着增加。在相同的转化率下,较高的反应温度导致裂化产物的特征在于较低的异烷烃/正烷烃比。转化率常数显示在n-C-16和n-C-28之间有相当大的增加,而在n-C-28和n-C-36之间观察到了轻微的下降。加氢异构化选择性随着链长的增加和转化率的增加而降低。反应温度的升高仅在低介质转化度和研究的最高温度下会导致异构化选择性的小幅下降,而此参数对iso-C16,iso-C28和iso-C16可获得的最大收率的影响C36可以忽略不计。结果表明,正构烷烃的转化遵循烃中的一级动力学,而氢压力的阶数对于n-C-16为-1.1 +/- 0.21,对于n-C-28为-0.66 +/- 0.15。此外,观察到在更高的氢气压力下,对于n-C-28转化,加氢异构化选择性增加。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:40]

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