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Towards an Ideal Reactor Concept for the Production of Ethylene from Hydrocarbons

机译:朝向碳氢化合物生产乙烯的理想反应堆概念

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Ethylene is the world largest volume organic chemical with a worldwide production of approximately 117 million tonnes per year in about 275 plants. The feedstocks for thermal cracking are hydrocarbons: ethane, LPG, naphtha, gas condensates and gas oil. This paper intends to evaluate alternative processes posed in literature, in particular regarding the reactor section of the process. A fundamental point of view is chosen, concentrating on the ability to create a near-optimum reaction path from hydrocarbon feed to ethylene. The critical reactor aspects are high temperature, to be achieved after a short reaction time, at a low hydrocarbon pressure and instantaneously freezing the composition with a high ethylene content by rapid cooling. The majority of the current ethylene production processes are the result of an evolutionary redesign from earlier existing processes; they enable the addition of a large amount of thermal energy in a short period of time at elevated temperature levels in the range of 600 - 1200°C. In this paper the processes are reviewed from a different point of view, namely: how well do they meet the criteria of an ideal process? An ideal process features a maximum olefin yield, no remains of energy carriers or auxiliary chemicals in the product, minimal ecological impact, minimum energy input per unit product, high availability and low degree of complexity of the reaction section. A wide variety of process concepts is covered: dehydrogenation, direct and indirect heating. These processes are related to one another in terms of compliance with the ideal process criteria. Although none of the reported processes fulfils all ideals, the new combination of the adapted firing furnace with ceramic reactors internals and the shock wave reactor come close to it.
机译:乙烯是世界上最大的有机化学品,全球生产每年约11700万吨植物。热裂解原料是碳氢化合物:乙烷,LPG,石脑油,气体缩合物和瓦斯油。本文旨在评估文献中提出的替代过程,特别是关于该过程的反应器部分。选择基本的观点,专注于从烃进料到乙烯产生近最佳反应路径的能力。临界反应器方面是高温,在短的反应时间之后实现,在低烃压力下,通过快速冷却瞬间将组合物瞬间冻结用高乙烯含量的组合物。大多数当前的乙烯生产过程是从早期现有流程的进化重新设计的结果;它们能够在短时间内添加大量的热能,在600-1200℃的范围内的升高的温度水平。在本文中,从不同的角度审查了过程,即:它们如何符合理想过程的标准?一种理想的方法的特征的每单位产品,高可用性以及低程度的反应部分的复杂性的一个最大烯烃产率,在产品中没有剩余物能量载体或辅助化学品的,最小的生态影响,最小的能量输入。覆盖各种过程概念:脱氢,直接和间接加热。这些过程在遵守理想过程标准方面彼此相关。虽然报道的过程都没有满足所有理想,但适应的烧制炉与陶瓷反应器内部和冲击波反应器的新组合接近它。

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