Method and Apparatus for Hydrogen Production from Greenhouse Gas Saturated Carbon Nanotubes and Synthesis of Carbon Nanostructures Therefrom

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Description

Patent relating a method and apparatus for hydrogen production from greenhouse gas saturated carbon nanotubes and synthesis of carbon nanostructures therefrom.

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14 p. : ill.

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Henley, Donald E. & Imholt, Timothy December 23, 2008.

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This patent is part of the collection entitled: UNT Scholarly Works and was provided by UNT College of Arts and Sciences to Digital Library, a digital repository hosted by the UNT Libraries. It has been viewed 231 times . More information about this patent can be viewed below.

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Description

Patent relating a method and apparatus for hydrogen production from greenhouse gas saturated carbon nanotubes and synthesis of carbon nanostructures therefrom.

Physical Description

14 p. : ill.

Notes

Abstract: A method and apparatus for the production of hydrogen from carbon nanotubes saturated with hydrocarbon gas or greenhouse gas is described. The hydrogen that is produced is substantially free from carbon dioxide. Additionally, the method described is useful for converting the carbon elements of the hydrocarbon gas or greenhouse gas into a de novo synthesis of carbon nanotubes.

Prior Publication Data: US 2006/0021510 A1, February 2, 2006.

Related U.S. Applicaiton Data: Provisional application number 60/591,481, filed on July 27, 2004.

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UNT Scholarly Works

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  • July 26, 2005

Accepted Date

  • December 23, 2008

Creation Date

  • December 23, 2008

Added to The UNT Digital Library

  • June 30, 2014, 8:51 a.m.

Description Last Updated

  • Dec. 12, 2017, 8:20 p.m.

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Henley, Donald E. & Imholt, Timothy. Method and Apparatus for Hydrogen Production from Greenhouse Gas Saturated Carbon Nanotubes and Synthesis of Carbon Nanostructures Therefrom, patent, December 23, 2008; [Washington, D.C.]. (digital.library.unt.edu/ark:/67531/metadc305434/: accessed December 16, 2018), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT College of Arts and Sciences.