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Continuous Catalyst Regeneration (CCR) Platforming
You are currently viewing: Articles Back. Download Complete Article. In the CCR Platforming process, low octane C6 to C11 paraffins and naphthenes are converted to higher octane aromatics and hydrogen. The process typically consists of a stack of three or four reactors, where the catalyst flows downwards from one reactor to the next by gravity. The spent catalyst is transported to the regenerator section, where it is continuously regenerated.
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Catalytic reforming is a chemical process used to convert petroleum refinery naphthas distilled from crude oil typically having low octane ratings into high-octane liquid products called reformates , which are premium blending stocks for high-octane gasoline. The process converts low-octane linear hydrocarbons paraffins into branched alkanes isoparaffins and cyclic naphthenes , which are then partially dehydrogenated to produce high-octane aromatic hydrocarbons. The dehydrogenation also produces significant amounts of byproduct hydrogen gas, which is fed into other refinery processes such as hydrocracking. A side reaction is hydrogenolysis , which produces light hydrocarbons of lower value, such as methane , ethane , propane and butanes. In addition to a gasoline blending stock, reformate is the main source of aromatic bulk chemicals such as benzene , toluene , xylene and ethylbenzene which have diverse uses, most importantly as raw materials for conversion into plastics.
The unit, in operation at Sinopec Hainan Petrochemical Co. The highly energy efficient CCR Platforming is a continuous catalytic reforming process used throughout the petroleum and petrochemical industries to produce aromatics and hydrogen from naphthenes and paraffins. Sinopec Hainan Petrochemicals Co. UOP LLC, headquartered in Des Plaines, Illinois, USA, is a leading international supplier and licensor of process technology, catalysts, adsorbents, process plants, and consulting services to the petroleum refining, petrochemical, and gas processing industries.