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Novel integration for CO and H2 recovery in gas to liquid processes

机译:气液分离过程中CO和H2回收的新型集成

摘要

This disclosure discusses integrating syngas streams with refinery hydrotreators, synthetic hydrocarbon gas to liquid (GTL) processes, and power generation units (such as combined cycle units) to efficiently use hydrogen contained in the syngas produced from heavy hydrocarbons (pet coke, residues, oil, etc.). Membrane separation and pressure swing adsorption is used to separate components of syngas and feed them to refineries, GTL units, and power/steam generation units. Hydrogen-rich refinery purge is used to raise the H2/CO ratio of syngas. A hydrogen-enriched syngas is produced with an H2/CO ratio favorable for the production on synthetic hydrocarbons (greater than about 1.5 to about 2.0 or higher). Pure hydrogen is also produced in a PSA unit, to further raise the H2/CO ratio of the syngas and provide hydrogen feed for refinery hydrotreators and synthetic hydrocarbon units (such as methanol units).
机译:本公开内容讨论了将合成气流与炼厂加氢处理器,合成烃气制油(GTL)工艺以及发电单元(例如联合循环单元)整合以有效利用重烃(石油焦,残渣,石油)产生的合成气中所含的氢等)。膜分离和变压吸附用于分离合成气的成分,并将其供入精炼厂,GTL装置和动力/蒸汽发生装置。富氢精炼厂吹扫用于提高合成气的H2 / CO比。产生富氢的合成气,其氢气/二氧化碳比有利于合成烃的生产(大于约1.5至约2.0或更高)。在PSA装置中还会产生纯氢,以进一步提高合成气的H2 / CO比,并为炼油厂加氢处理装置和合成烃装置(例如甲醇装置)提供氢气。

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