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Dow Fluidized Catalytic Dehydrogenation (FCDh) The Future of On-Purpose Propylene Production

机译:Dow流化催化脱氢(FCDH)原型丙烯生产的未来

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Shale gas produced an imbalance in propylene supply and demand. This has driven the implementation of several projects using available propane dehydrogenation commercial technology. These technologies were adapted from existing processes. These adapted technologies are not tailored to efficiently manage the inherent challenges of catalyst activity, heat input, reaction equilibrium and unselective thermal reactions. Therefore, the Dow Chemical Company has developed a Catalytic Dehydrogenation Process that is designed from the standpoint of an operating company to efficiently solve the problems inherent in catalytic dehydrogenation processes. The new technology is a circulating fluid bed technology based on existing Fluid Catalytic Cracking (FCC) technology. The Dow process utilizes a proprietary catalyst with a proprietary reactor and regenerator design to achieve 45% propane conversion at approximately 93 mol% selectivity to propylene. The simplicity of the system enables a capital savings greater than 20% versus other commercial offerings. In addition, the higher conversion at moderate pressure reduces the energy requirement per pound of propylene. This new technology can be fully integrated with existing ethylene crackers in parallel with new or existing furnaces. In this way, a producer can increase production in an existing light hydrocarbon facility or build a new facility with exactly the amount of ethylene and propylene product that is desired based on ethane and propane feeds. Dow is currently planning a project to implement this technology in an existing cracker at commercial scale and would license the technology upon request.
机译:页岩气在丙烯供需产生了不平衡。这推动了使用可用丙烷脱氢商业技术的几个项目的实施。这些技术得到了现有过程。这些适应的技术没有定制以有效地管理催化剂活性,热输入,反应平衡和未选择性热反应的固有挑战。因此,Dow Chemical Company开发了一种催化脱氢过程,该过程是从运营公司的观点来设计,以有效解决催化脱氢过程中固有的问题。新技术是一种基于现有流体催化裂化(FCC)技术的循环流化床技术。 Dow工艺利用具有专有反应器和再生器设计的专有催化剂,以实现45%的丙烷转化为约93mol%对丙烯的选择性。系统的简单性使得资本节省大于20%与其他商业产品。此外,中等压力的较高转化率降低了每磅丙烯的能量要求。这种新技术可以与现有的乙烯饼干与新的或现有的炉子平行完全集成。通过这种方式,生产者可以在现有的光源化设施中增加产量,或者以恰好基于乙烷和丙烷进料的乙烯和丙烯产物的含有乙烯和丙烯产物的量增加。 DOW目前正在计划在商业规模的现有饼干中实施该技术,并将根据要求许可该技术。

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