天然气液体转化为汽车汽油:沸石催化剂的加工方法和混合配方的开发

IF 2.8 Q2 ENGINEERING, CHEMICAL
Andrey Altynov, Ilya Bogdanov, Daniil Lukyanov, Maria Kirgina
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引用次数: 0

摘要

天然气液体是天然气制备过程中的副产品,是最常见的环保能源之一。在偏远地区的天然气田,没有资源高效的方法来使用天然气液体。然而,液化天然气是一种有价值的碳氢化合物原料,用于生产汽车燃料,特别是汽车汽油。这项工作的目的是开发一种通过在沸石催化剂上处理天然气液体来获得汽车汽油的方法,同时考虑到沸石催化剂的粒度、工艺参数和原料组成的影响。作为工作的一部分,首次揭示了沸石催化剂粒度、工艺参数和原料组成对所得加工产品组成和特性的影响规律。从俄罗斯联邦西伯利亚西部各天然气田获得的关于天然气液体成分和特征的数据库已经积累起来。研究发现,沸石催化剂的最佳粒径为0.50 ~ 1.00 mm;最佳工艺参数为温度375℃,压力2.5 atm。进料空间速度为2h−1。结果表明,在沸石催化剂上处理不同成分的天然气液体,平均可使其爆轰阻力提高16点以上。结果表明,该工艺在车用汽油生产中具有广阔的应用前景。本文提出了一些在油田和加工厂生产的框架内获得燃料的混合配方。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural Gas Liquids into Motor Gasolines: Methodology for Processing on a Zeolite Catalyst and Development of Blending Recipes
Natural gas liquids are a by-product of natural gas preparation, one of the most common and environmentally friendly energy sources. In natural gas fields located in remote areas, there is no resource-efficient way to use natural gas liquids. However, natural gas liquids are a valuable hydrocarbon feedstock for the production of motor fuels, in particular motor gasolines. The aim of this work is to develop a method for obtaining motor gasolines by processing natural gas liquids on a zeolite catalyst, taking into account the influence of the particle size of the zeolite catalyst, the technological parameters of the process, and the composition of the feedstock. As part of the work, for the first time, regularities of the influence of zeolite catalyst particle size, technological parameters of the process and the composition of feedstock on the composition and characteristics of the resulting processed products were revealed. A database about the composition and characteristics of natural gas liquids, obtained from various gas fields in Western Siberia of the Russian Federation, has been accumulated. During the study, it was found that the optimal particle size of the zeolite catalyst is 0.50–1.00 mm; optimal technological parameters are a temperature of 375 °C, pressure 2.5 atm. and the feedstock space velocity 2 h−1. It is shown that the processing of natural gas liquids of various compositions on a zeolite catalyst, on average, makes it possible to increase their detonation resistance by more than 16 points. The results obtained indicate the prospects of using the process for the production of motor gasoline. The paper presents a number of blending recipes for obtaining fuels, both within the framework of production at the fields and at processing plants.
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来源期刊
ChemEngineering
ChemEngineering Engineering-Engineering (all)
CiteScore
4.00
自引率
4.00%
发文量
88
审稿时长
11 weeks
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