VINH B LE
Electrician at Cambridge St, Houston, TX

License number
Texas 49650
Expiration Date
Jul 26, 2017
Category
Journeyman Electrician
Address
Address
8055 Cambridge St APT 26, Houston, TX 77054
Phone
(281) 682-2243

Professional information

Vinh Le Photo 1

Vinh Le, Houston TX

Work:
Gulf Imaging Associates
11034 Scarsdale Blvd, Houston, TX 77089 Gulf Imaging Associates
4000 Spencer Hwy, Pasadena, TX 77504


Vinh T Le Photo 2

Vinh T Le, Pasadena TX

Specialties:
Radiologist
Address:
4000 Spencer Hwy, Pasadena, TX 77504
11034 Scarsdale Blvd, Houston, TX 77089
Education:
University of Texas Medical Branch, School of Medicine - Doctor of Medicine
University of Texas Medical Branch Galveston, The - Fellowship - Vascular and Interventional Radiology (Diagnostic Radiology)
Board certifications:
American Board of Radiology Certification in Diagnostic Radiology (Radiology), American Board of Radiology Sub-certificate in Vascular and Interventional Radiology (Radiology)


Vinh Quang Le Photo 3

Vinh Quang Le, Houston TX

Specialties:
Family Physician
Address:
10625 Veterans Memorial Dr, Houston, TX 77038
Education:
Doctor of Osteopathy
Board certifications:
American Board of Family Medicine Certification in Family Medicine


Vinh Le Photo 4

Catalytic Reactor

US Patent:
7749466, Jul 6, 2010
Filed:
Jan 11, 2006
Appl. No.:
11/813867
Inventors:
John Vitucci - Spring TX, US
Michael Joseph Bowe - Preston, GB
Lawrence Andrew Stryker - La Crescent MN, US
Douglas Eugene Decker - La Crosse WI, US
Vinh N. Le - Houston TX, US
Assignee:
CompactGTL PLC - Oxfordshire
International Classification:
B01J 8/02, B01J 8/04, B01J 10/00, B01J 19/00, B01J 35/02, B01J 12/00
US Classification:
422211, 422129, 422190, 422193, 422197
Abstract:
A compact catalytic reactor for Fischer-Tropsch synthesis () comprises a reactor module () defining a multiplicity of first and second flow channels arranged alternately, for carrying a gas mixture, and a coolant respectively. A removable gas-permeable catalyst structure () with a substrate for example of metal foil is provided in each flow channel in which the synthesis reaction is to occur. The reactor module () is enclosed within a pressure vessel (), the pressure within the pressure vessel being arranged to be at a pressure substantially that of the high pressure reacting gas mixture. Consequently all the flow channels within the module are either at the pressure of their surroundings, or are under compression; no parts are under tension. This simplifies the design of the module, and increases the proportion of reactor volume which can be occupied by the catalyst.