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Nanotechnology Role for the Production of Clean Fuel E-85 and Petrochemical Raw Materials

机译:纳米技术在生产清洁燃料E-85和石化原料中的作用

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There have been a number of substantive technical changes that can be described as revolutionary process and evolutionary process. One of these approaches is the use of nanotechnology in the two-stage pyrolysis of petroleum residues of the heavy distillates separated from the Arabian crude oil. Two-stage catalytic pyrolysis technique proved to be an excellent method for the production of unsaturated hydrocarbons (which easily can be converted to alcohol, by addition of H2O, for the production of E-85, i.e., clean fuel) regardless the type of feed stocks used. Basically, the catalysts are arranged into three large groups; amorphous and crystalline alumino-silicates, alkaline or alkaline earth alumino compounds, and different metal oxides on different catalyst carriers such as Zeolites. The high yield of ethylene (30–40%) brought by different catalysts at temperatures of 700–750°C appear to justify the intensive research work in this field.
机译:已经发生了许多实质性的技术变化,可以描述为革命性过程和进化性过程。这些方法之一是在从阿拉伯原油中分离出的重质馏出物的石油残留物的两阶段热解中使用纳米技术。无论原料类型如何,两步催化热解技术都是生产不饱和烃(通过添加H2O可以很容易转化为醇,生产E-85,即清洁燃料)的绝佳方法。使用的库存。基本上,催化剂分为三大类:无定形和结晶的铝硅酸盐,碱金属或碱土金属铝化合物,以及在不同催化剂载体(例如沸石)上的不同金属氧化物。在700–750°C的温度下,不同催化剂带来的高乙烯收率(30–40%)似乎证明了在该领域进行大量研究工作的合理性。

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