Biological Clean Fuel Processing Systems and Methods

a technology of clean fuel and processing system, applied in the direction of chemical separation, air quality improvement, climate sustainability, etc., can solve the problems of potential liability, relatively rapid use of this technology, etc., to improve plant efficiency, reduce overall carbon emissions, and enhance economic and energy security

Inactive Publication Date: 2012-01-05
WESTERN RES INST INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0008]The resulting biomass produced may be reprocessed as fertilizer, feedstock, biofuel, or the like or may even be directly injected into the combustion facility (such as perhaps in co-fired applications). It is a goal of the present invention to utilize carbon dioxide as a value-added product of fossil-fuel power plants rather than a production-limiting waste product. In this way the carbon originally released from coal combustion can be captured and recycled in perhaps a closed-loop system, thus, significantly lowering overall carbon emissions and even improving plant efficiency.
[0009]It is another goal of the present invention, in embodiments, to enhance economic and energy security of the U.S. through the development of a technology that can reduce energy-related emissions of greenhouse gas and possibly improve the energy efficiency of power generation utilities and perhaps even to ensure that the U.S. can maintain a technological lead in this field. Additionally, this concept may support many goals of the Administration's Energy and Environment Agenda including investment in the next generation of energy technologies, producing more energy at home and promoting energy efficiency (perhaps through biofuel and co-fire applications for the biomass produced), closing the carbon loophole, and promoting U.S. competitiveness.
[0010]The impacts of embodiments of the present invention may provide utility companies with an environmentally responsible and economically viable carbon capture system. Furthermore, the utilization of this technology can be relatively rapid compared to other options for carbon capture such as geologic sequestration which may still require years of testing and modeling as well as sophisticated site characterization and large capital costs with each deployment to ensure injection activities do not create a legacy of potential liability for end users and future generations of Americans. In addition to the potential for a relatively rapid R&D phase, low risk to the end user in terms of long term liability, and the ability to improve plant efficiency through biofuel production and (or) co-fire applications, the biologic carbon capture system can almost certainly create new green jobs associated with the design, construction, maintenance and operation of these systems at power plants across the country as well as spur increased activity and innovation in the bio-processing / biofuel industries focused on utilizing the enormous quantities of biomass that can be produced.

Problems solved by technology

Furthermore, the utilization of this technology can be relatively rapid compared to other options for carbon capture such as geologic sequestration which may still require years of testing and modeling as well as sophisticated site characterization and large capital costs with each deployment to ensure injection activities do not create a legacy of potential liability for end users and future generations of Americans.

Method used

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  • Biological Clean Fuel Processing Systems and Methods
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Embodiment Construction

[0022]The present invention includes a variety of aspects, which may be combined in different ways. The following descriptions are provided to list elements and describe some of the embodiments of the present invention. These elements are listed with initial embodiments, however it should be understood that they may be combined in any manner and in any number to create additional embodiments. The variously described examples and preferred embodiments should not be construed to limit the present invention to only the explicitly described systems, techniques, and applications. Further, this description should be understood to support and encompass descriptions and claims of all the various embodiments, systems, techniques, methods, devices, and applications with any number of the disclosed elements, with each element alone, and also with any and all various permutations and combinations of all elements in this or any subsequent application.

[0023]The present invention, may provide in v...

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Abstract

Methods and systems to achieve clean fuel processing systems in which carbon dioxide emissions (1) from fossil fuel consumption sources (2) may be processed in at least one processing reactor (4) containing a plurality of chemoautotrophic bacteria (5) which can convert the carbon dioxide emissions into biomass (6) which may then be used for various products (21) such as biofuels, fertilizer, feedstock, or the like. Sulfate reducing bacteria (13) may be used to supply sulfur containing compounds to the chemoautotrophic bacteria (5).

Description

PRIORITY CLAIM[0001]This application is an international PCT application claiming priority to and the benefit of U.S. Provisional Application No. 61 / 228,898 filed Jul. 27, 2009 and U.S. Provisional Application No. 61 / 358,700 filed Jun. 25, 2010, each hereby incorporated by reference herein.TECHNICAL FIELD[0002]This invention relates to the technical field of clean processing systems, specifically, methods and apparatus for capturing and converting carbon dioxide emissions from fossil fuel consumption sources. Through perhaps the use of chemoautotrophic bacteria, the invention provides apparatus and methods that can be used to capture and reduce carbon dioxide emissions into the atmosphere.BACKGROUND OF THE INVENTION[0003]Carbon sequestration is a topic receiving enormous attention in the media and among government agencies and industries involved in fossil fuel production and use. Combustion of fossil fuels is responsible for approximately 83% of greenhouse gas emissions in the U.S....

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): C12P1/04C12P3/00C12P7/16C12P5/02C12P7/40C12P7/06
CPCB01D53/62C10G2300/405B01D2251/95B01D2257/504C10G2300/1011C10L1/026C12N1/20C12P7/649F23J15/02F23J2215/50Y02C10/02Y02C10/04Y02E50/13Y02E50/343Y02E50/17Y02E50/346C10G2300/4043B01D53/84Y02E20/32Y02E50/10Y02E50/30Y02P20/151Y02P20/59Y02P30/00Y02P30/20Y02P30/40Y02A50/20Y02C20/40
Inventor JIN, SONGFALLGREN, PAULMORRIS, JEFFREY M.BLAND, ALAN E.RICHARDS, PATICKNEWCOMER, JESSE D.COLBERG, PATRICIA
Owner WESTERN RES INST INC
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