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Title: Device and method for upgrading petroleum feedstocks and petroleum refinery streams using an alkali metal conductive membrane

Abstract

A reactor has two chambers, namely an oil feedstock chamber and a source chamber. An ion separator separates the oil feedstock chamber from the source chamber, wherein the ion separator allows alkali metal ions to pass from the source chamber, through the ion separator, and into the oil feedstock chamber. A cathode is at least partially housed within the oil feedstock chamber and an anode is at least partially housed within the source chamber. A quantity of an oil feedstock is within the oil feedstock chamber, the oil feedstock comprising at least one carbon atom and a heteroatom and/or one or more heavy metals, the oil feedstock further comprising naphthenic acid. When the alkali metal ion enters the oil feedstock chamber, the alkali metal reacts with the heteroatom, the heavy metals and/or the naphthenic acid, wherein the reaction with the alkali metal forms inorganic products.

Inventors:
;
Issue Date:
Research Org.:
FIELD UPGRADING LIMITED, Calgary, CA (United States)
Sponsoring Org.:
USDOE
OSTI Identifier:
1325008
Patent Number(s):
9,441,170
Application Number:
13/679,696
Assignee:
FIELD UPGRADING LIMITED (Calgary, CA)
DOE Contract Number:  
FE0000408
Resource Type:
Patent
Resource Relation:
Patent File Date: 2012 Nov 16
Country of Publication:
United States
Language:
English
Subject:
47 OTHER INSTRUMENTATION; 37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY

Citation Formats

Gordon, John Howard, and Alvare, Javier. Device and method for upgrading petroleum feedstocks and petroleum refinery streams using an alkali metal conductive membrane. United States: N. p., 2016. Web.
Gordon, John Howard, & Alvare, Javier. Device and method for upgrading petroleum feedstocks and petroleum refinery streams using an alkali metal conductive membrane. United States.
Gordon, John Howard, and Alvare, Javier. Tue . "Device and method for upgrading petroleum feedstocks and petroleum refinery streams using an alkali metal conductive membrane". United States. https://www.osti.gov/servlets/purl/1325008.
@article{osti_1325008,
title = {Device and method for upgrading petroleum feedstocks and petroleum refinery streams using an alkali metal conductive membrane},
author = {Gordon, John Howard and Alvare, Javier},
abstractNote = {A reactor has two chambers, namely an oil feedstock chamber and a source chamber. An ion separator separates the oil feedstock chamber from the source chamber, wherein the ion separator allows alkali metal ions to pass from the source chamber, through the ion separator, and into the oil feedstock chamber. A cathode is at least partially housed within the oil feedstock chamber and an anode is at least partially housed within the source chamber. A quantity of an oil feedstock is within the oil feedstock chamber, the oil feedstock comprising at least one carbon atom and a heteroatom and/or one or more heavy metals, the oil feedstock further comprising naphthenic acid. When the alkali metal ion enters the oil feedstock chamber, the alkali metal reacts with the heteroatom, the heavy metals and/or the naphthenic acid, wherein the reaction with the alkali metal forms inorganic products.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2016},
month = {9}
}

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Works referenced in this record:

Desulphurization of gasoline by metallic sodium
journal, July 1976


Hydrodesulfurization and Hydrodenitrogenation
book, January 2002

  • S├ínchez-Delgado, Roberto A.
  • Organometallic Modeling of the Hydrodesulfurization and Hydrodenitrogenation Reactions, Vol. 24, p. 1-34
  • DOI: 10.1007/0-306-47619-3_1