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Marshall C Wheeler, 6115 Sunrise Ter, Orono, ME 04473

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15 Sunrise Ter, Orono, ME 04473    207-8664239   

Amarillo, TX   

Dallas, TX   

Cedaredge, CO   

Frederick, MD   

Katy, TX   

Austin, TX   

Hurst, TX   

Crosby, TX   

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Marshall C Wheeler

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Position: Executive, Administrative, and Managerial Occupations

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Degree: Associate degree or higher

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Marshall Wheeler

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Us Patents

Process For Improving The Energy Density Of Feedstocks Using Formate Salts

US Patent:
2012020, Aug 9, 2012
Filed:
Dec 20, 2011
Appl. No.:
13/331210
Inventors:
Marshall Clayton WHEELER - Orono ME, US
Adriaan R.P. van HEININGEN - Orono ME, US
Paige A. CASE - Windham ME, US
Assignee:
UNIVERSITY OF MAINE SYSTEM BOARD OF TRUSTEES - Bangor ME
International Classification:
C07C 1/207
US Classification:
585242, 585899, 585310, 585240
Abstract:
Methods of forming liquid hydrocarbons through thermal deoxygenation of cellulosic compounds are disclosed. Aspects cover methods including the steps of mixing a levulinic acid salt-containing feedstock with a formic acid salt, exposing the mixture to a high temperature condition to form hydrocarbon vapor, and condensing the hydrocarbon vapor to form liquid hydrocarbons, where both the formic acid salt and the levulinic acid salt-containing feedstock decompose at the high temperature condition and wherein one or more of the mixing, exposing, and condensing steps is carried out a pressure between about vacuum and about 10 bar. Other methods and parameters for generating energy dense liquid hydrocarbons are also disclosed and claimed.

Formate-Assisted Pyrolysis

US Patent:
2014010, Apr 10, 2014
Filed:
Jan 4, 2013
Appl. No.:
13/734077
Inventors:
- Bangor ME, US
Marshall Clayton Wheeler - Orono ME, US
Adriaan R.P. van Heiningen - Orono ME, US
Assignee:
UNIVERSITY OF MAINE SYSTEM BOARD OF TRUSTEES - Bangor ME
International Classification:
C10G 1/00
US Classification:
585242, 585240
Abstract:
The present invention provides, among other thing, methods for creating significantly deoxygenated bio-oils form biomass including the steps of providing a feedstock, associating the feedstock with an alkali formate to form a treated feedstock, dewatering the treated feedstock, heating the dewatered treated feedstock to form a vapor product, and condensing the vapor product to form a pyrolysis oil, wherein the pyrolysis oil contains less than 30% oxygen by weight.

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