Patents by Inventor Joung Min Lee

Joung Min Lee has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 9096872
    Abstract: The present invention relates to recombinant microorganisms having an increased ability to produce butanol, and a method of producing butanol using the same. More specifically, the invention relates to recombinant microorganisms whose ability to produce butanol was increased by manipulation of their metabolic networks, and a method of producing butanol using the same. The recombinant microorganisms having an increased ability to produce butanol comprise a deletion of a gene, which encodes an enzyme that converts acetyl CoA to acetate, in host microorganisms having genes that encode enzymes involved in acetyl CoA and butyryl CoA biosynthetic pathway. The recombinant microorganisms obtained by manipulating the metabolic flux of microorganisms are able to selectively produce butanol with high efficiency, and thus are useful as microorganisms for producing industrial solvents and transportation fuels.
    Type: Grant
    Filed: September 21, 2010
    Date of Patent: August 4, 2015
    Assignees: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY, BIOFUELCHEM CO., GS CALTEX CORPORATION
    Inventors: Sang Yup Lee, Yu-Sin Jang, Jin Young Lee, Joung Min Lee, Jin Hwan Park
  • Patent number: 8835663
    Abstract: Provided is a lubricity improver capable of improving lubricity and storage stability due to anti-oxidation, the lubricity improver containing a saturated fatty acid methyl ester derivative including at least one 1,2-dimethoxy ethylene structural unit represented by Chemical Formula a below, obtained by converting a double bond (olefin) of biodiesel, which is used as a lubricity improver of fuel, that is, the existing fatty acid methyl ester (FAME), into a dimethoxy group.
    Type: Grant
    Filed: July 13, 2012
    Date of Patent: September 16, 2014
    Assignee: Korea Institute of Petroleum Management
    Inventors: Young-Kwan Lim, Joung Min Lee, Choong-Sub Jung, Jong-Ryeol Kim, Eui Soon Yim
  • Patent number: 8765446
    Abstract: The present invention relates to recombinant mutant microorganisms having an increased ability to produce alcohol and a method of producing alcohol using the same, and more particularly to recombinant mutant microorganisms which have an increased ability to produce butanol, ethanol, isopropanol or mixed alcohols, which can be used as fuel, while producing little or no producing acetone as a byproduct, and to a method of producing butanol, ethanol, isopropanol or mixed alcohols using the same. The inventive recombinant mutant microorganisms having an increased ability to produce butanol or mixed alcohols and to remove acetone are those in which genes that encode enzymes involved in producing butanol from butyryl-CoA or butylaldehyde and in producing isopropanol from acetone were amplified or introduced in host microorganisms.
    Type: Grant
    Filed: September 21, 2010
    Date of Patent: July 1, 2014
    Assignees: Korea Advanced institute of Science and Technology, Biofuelchem Co., GS Caltex Corporation
    Inventors: Sang Yup Lee, Yu-Sin Jang, Joung Min Lee, Jung Ae Im, Hyohak Song
  • Publication number: 20130053590
    Abstract: Provided is a lubricity improver capable of improving lubricity and storage stability due to anti-oxidation, the lubricity improver containing a saturated fatty acid methyl ester derivative including at least one 1,2-dimethoxy ethylene structural unit represented by Chemical Formula a below, obtained by converting a double bond (olefin) of biodiesel, which is used as a lubricity improver of fuel, that is, the existing fatty acid methyl ester (FAME), into a dimethoxy group.
    Type: Application
    Filed: July 13, 2012
    Publication date: February 28, 2013
    Inventors: Young-Kwan Lim, Joung Min Lee, Choong-Sub Jung, Jong-Ryeol Kim, Eui Soon Yim
  • Publication number: 20130017588
    Abstract: The present invention relates to recombinant microorganisms having an increased ability to produce butanol, and a method of producing butanol using the same. More specifically, the invention relates to recombinant microorganisms whose ability to produce butanol was increased by manipulation of their metabolic networks, and a method of producing butanol using the same. The recombinant microorganisms having an increased ability to produce butanol comprise a deletion of a gene, which encodes an enzyme that converts acetyl CoA to acetate, in host microorganisms having genes that encode enzymes involved in acetyl CoA and butyryl CoA biosynthetic pathway. The recombinant microorganisms obtained by manipulating the metabolic flux of microorganisms are able to selectively produce butanol with high efficiency, and thus are useful as microorganisms for producing industrial solvents and transportation fuels.
    Type: Application
    Filed: September 21, 2010
    Publication date: January 17, 2013
    Applicants: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY, GS CALTEX CORPORATION, BIOFUELCHEM CO.
    Inventors: Sang Yup Lee, Yu-Sin Jang, Jin Young Lee, Joung Min Lee, Jin Hwan Park
  • Publication number: 20120301936
    Abstract: The present invention relates to recombinant mutant microorganisms having an increased ability to produce alcohol and a method of producing alcohol using the same, and more particularly to recombinant mutant microorganisms which have an increased ability to produce butanol, ethanol, isopropanol or mixed alcohols, which can be used as fuel, while producing little or no producing acetone as a byproduct, and to a method of producing butanol, ethanol, isopropanol or mixed alcohols using the same. The inventive recombinant mutant microorganisms having an increased ability to produce butanol or mixed alcohols and to remove acetone are those in which genes that encode enzymes involved in producing butanol from butyryl-CoA or butylaldehyde and in producing isopropanol from acetone were amplified or introduced in host microorganisms.
    Type: Application
    Filed: September 21, 2010
    Publication date: November 29, 2012
    Applicants: KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY, GS CALTEX CORPORATION, BIOFUELCHEM CO.
    Inventors: Sang Yup Lee, Yu-Sin Jang, Joung Min Lee, Jung Ae Im, Hyohak Song