IP Library Granted Patent US 9,682,359
Granted Patent B2
US 9,682,359 · App. 14/798,598 · Granted Jun 20, 2017

Method for processing hydrocarbon fuels using microwave energy

Inventors: George L. Skoptsov (Pittsburgh, PA); Alan A. Johnson (Calgary, CA)
Assignee: H Quest Partners, LP
B01J19/126B01J19/088C10G1/00C10G15/08C10G15/12C10G32/02B01J2219/0877B01J2219/0879B01J2219/0892B01J2219/1206
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Quick Facts
Patent No.
US 9,682,359
App. No.
14/798,598
Granted
Jun 20, 2017
Kind
B2
Abstract

A method of processing hydrocarbons includes feeding a hydrocarbon feedstock into a reaction tube positioned within an opening of a waveguide, feeding a process gas into the reaction tube, receiving microwaves in the waveguide from a microwave generator, propagating microwave energy from the waveguide into the reaction tube to cause the formation of a first plasma in the reaction tube, that causes the feedstock and process gas to react and form into a product stream comprising a fuel product. The method also includes periodically, without stopping the propagation of microwave energy into the reaction tube, delivering a cleaning gas comprising oxygen. The method may also include forming a second plasma in the reaction tube, from the cleaning gas that causes burning off of a carbon residue film from the reaction tube; extracting the cleaning gas from the product stream; and delivering the extracted cleaning gas to the cleaning gas source.

Claims (22)

1. A method of processing hydrocarbon materials, comprising:

feeding a hydrocarbon feedstock from a hydrocarbon feedstock source into a reaction tube positioned within an opening of a waveguide;

feeding a process gas from a process gas source into the reaction tube;

receiving microwaves in the waveguide from a microwave generator;

propagating microwave energy from the waveguide into the reaction tube to cause the formation of a first plasma in the reaction tube, wherein the first plasma causes the feedstock and process gas to react and form into a product stream comprising a fuel product; and

periodically, without stopping the propagation of the microwave energy into the reaction tube, delivering a cleaning gas comprising oxygen, from a cleaning gas source, into the reaction tube;

forming a second plasma in the reaction tube, from the cleaning gas in the presence of the microwave energy, so that the second plasma causes burning off of a carbon residue film from the reaction tube;

extracting the cleaning gas from the product stream; and

delivering the extracted cleaning gas to the cleaning gas source.

2. The method of claim 1 , further comprising:

pausing the feeding of the hydrocarbon feedstock and the process gas in the reaction tube upon delivery of the cleaning gas; and

maintaining the second plasma for a predetermined period of time within the reaction tube sufficient to burn off at least a portion of the carbon residue film from an inner sidewall of the reaction tube.

3. The method of claim 2 , further comprising:

vacuuming or flushing the burned-off carbon residue film from the reaction tube; and

after the vacuuming or flushing, resuming the feeding of the hydrocarbon feedstock and the process gas into the reaction tube.

4. The method of claim 1 , wherein:

the hydrocarbon feedstock comprises coal mixed with catalyst; and

process gas source comprises one or more sources of gases selected from the group consisting of helium, argon, krypton, neon, xenon, methane, propane, butane, ethane, acetylene, propylene, butylene, ethylene, carbon monoxide, carbon dioxide, water vapor, hydrogen, and nitrogen.

5. The method of claim 1 , wherein the cleaning gas further comprises at least one of the following: argon, steam, or mixtures thereof.

6. The method of claim 2 , further comprising synchronizing the pausing of the feeding of the hydrocarbon feedstock and the process gas into the reaction tube with a duty cycle of the microwave generator.

7. The method of claim 2 , further comprising determining whether the reaction tube is coated with an unacceptable amount of deposits, and delivering the cleaning gas only if such amount of deposits is determined to be present.

8. The method of claim 7 , wherein determining whether the reaction tube is coated with an unacceptable amount of deposits comprises determining whether there is a decrease below a predetermined level in at least one of the following: a quality of the fuel product or quantity of the fuel product.

Continuity (3)
Continuation 14464345 · Aug 20, 2014
Provisional Application 61867916 · Aug 20, 2013
Related Publication 20150315476A1 · Nov 5, 2015