首页> 外文期刊>Journal of porous materials >Utilization of ZSM-5/MCM-41 composite as FCC catalyst additive for enhancing propylene yield from VGO cracking
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Utilization of ZSM-5/MCM-41 composite as FCC catalyst additive for enhancing propylene yield from VGO cracking

机译:使用ZSM-5 / MCM-41复合材料作为FCC催化剂添加剂以提高VGO裂解产生的丙烯收率

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摘要

A micro-mesoporous ZSM-5/MCM-41 composite molecular sieve (ZM13) was synthesized and tested as an FCC catalyst additive to enhance the yield of propylene from catalytic cracking of vacuum gas oil (VGO). The catalytic performance of the additive was assessed using a commercial equilibrium USY FCC catalyst (E-Cat) in a fixed-bed micro-activity test unit (MAT) at 520 °C and various catalyst/oil ratios. MCM-41, ZSM-5 and two ZSM-5/MCM-41 composites were systematically characterized by complementary techniques such as XRD, BET, FTIR and SEM. The characterization results showed that the composites contained secondary building unit with different textural properties compared to pure ZSM-5 and MCM-41. MAT results showed that the VGO cracking activity of E-Cat did not decrease by using these additives. The highest propylene yield of 12.2 wt% was achieved over steamed ZSM-5/MCM-41 composite additive (ZM13) compared with 8.6 wt% over conventional ZSM-5 additive at similar gasoline yield penalty. The enhanced production of propylene over composite additive was attributed to its mesopores that suppressed secondary and hydrogen transfer reactions and offered easier transport and accessibility to active sites. Gasoline quality was improved by the use of all additives except MCM-41, as octane rating increased by 6-12 numbers.
机译:合成了一种微介孔的ZSM-5 / MCM-41复合分子筛(ZM13),并作为FCC催化剂添加剂进行了测试,以提高真空瓦斯油(VGO)催化裂化产生的丙烯收率。使用商用平衡USY FCC催化剂(E-Cat)在固定床微活性测试装置(MAT)中在520°C和各种催化剂/油比下评估添加剂的催化性能。 MCM-41,ZSM-5和两种ZSM-5 / MCM-41复合材料通过XRD,BET,FTIR和SEM等互补技术进行了系统表征。表征结果表明,与纯ZSM-5和MCM-41相比,复合材料包含具有不同结构特性的次生建筑单元。 MAT结果表明,使用这些添加剂不会降低E-Cat的VGO裂解活性。在类似的汽油收率损失下,相比于蒸煮的ZSM-5 / MCM-41复合添加剂(ZM13),丙烯的最高收率为12.2 wt%,相比之下,传统的ZSM-5添加剂的丙烯收率为8.6 wt%。与复合添加剂相比,丙烯产量的提高归因于其中孔抑制了次级和氢转移反应,并提供了更易于运输和到达活性位的途径。通过使用除MCM-41之外的所有添加剂,汽油质量得以提高,因为辛烷值提高了6-12个数字。

著录项

  • 来源
    《Journal of porous materials》 |2012年第4期|p.499-509|共11页
  • 作者单位

    Center of Research Excellence in Petroleum Refining and Petrochemicals, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia;

    Center of Research Excellence in Petroleum Refining and Petrochemicals, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia;

    Center of Research Excellence in Petroleum Refining and Petrochemicals, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia;

    Center of Research Excellence in Petroleum Refining and Petrochemicals, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia;

    Center of Research Excellence in Petroleum Refining and Petrochemicals, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    FCC additive; catalytic cracking; gasoline; propylene; light olefins; ZSM-5; composite molecular sieve; MCM-41;

    机译:FCC添加剂;催化裂化;汽油;丙烯;轻质烯烃ZSM-5;复合分子筛;MCM-41;

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