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US Patent 8236566 Preparation and optimization of oxygenated gasolines

Patent 8236566 was granted and assigned to Phillips 66 on August, 2012 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
1

Patent attributes

Current Assignee
Phillips 66
Phillips 66
1
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
82365661
Patent Inventor Names
Yi-Ming Chen1
Christopher J. LaFrancois1
David S. Seiver1
David W. Carpenter1
James W. Holbert1
Date of Patent
August 7, 2012
1
Patent Application Number
122774541
Date Filed
November 25, 2008
1
Patent Citations Received
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US Patent 12000720 Product inventory monitoring
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US Patent 11975316 Methods and reforming systems for re-dispersing platinum on reforming catalyst
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US Patent 11702600 Assemblies and methods for enhancing fluid catalytic cracking (FCC) processes during the FCC process using spectroscopic analyzers
4
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US Patent 11970664 Methods and systems for enhancing processing of hydrocarbons in a fluid catalytic cracking unit using a renewable additive
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US Patent 11802257 Systems and methods for reducing rendered fats pour point
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US Patent 11835450 Methods and assemblies for determining and using standardized spectral responses for calibration of spectroscopic analyzers
6
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US Patent 11860069 Methods and assemblies for determining and using standardized spectral responses for calibration of spectroscopic analyzers
7
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US Patent 11885739 Methods and assemblies for determining and using standardized spectral responses for calibration of spectroscopic analyzers
8
...
Patent Primary Examiner
‌
Christine T Mui
1
Patent abstract

A process for controlling the composition of an xBOB so that the xBOB will yield an oxygenate-containing gasoline which precisely meets desired specifications when mixed with the desired amount of oxygenate. The process involves blending a plurality of blendstocks to produce an xBOB, withdrawing a sample of the xBOB, obtaining spectroscopic measurements for the sample, applying mathematical models that were based on correlation of xBOB spectra to associated oxygenate-containing gasoline properties, to predict laboratory analysis results for oxygenate-containing gasoline properties, and using the analysis results to control and optimize the blending process.

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