News & Events

August 17, 2010

U.S. Energy Secretary Steven Chu announced July 22 the selection of six projects that aim to find ways of converting captured CO2 emissions from industrial sources into useful products such as fuel, plastics, cement and fertilizers. Funded with US$106 million from the American Recovery and Reinvestment Act -matched with US$156 million in private cost-share, the selections demonstrate the potential opportunity to use CO2 as an inexpensive raw material that can help reduce CO2 emissions while producing useful by-products.

The announced projects were initially selected for a first phase funding in October 2009 as part of a US$1.4 billion effort to capture CO2 from industrial sources for storage or beneficial use. Over the succeeding months, the project teams have performed experiments on innovative concepts and produced preliminary designs for pilot plants to study the feasibility of capturing and using CO2 exhausted from industrial processes. The selected projects now enter a second phase in which researchers design, construct and operate their innovations at pilot-scale and evaluate the technical and economic feasibility of applying them commercially.

The projects selected to demonstrate the beneficial use of CO2 include:

Company DOE Award (US$) Description
Novomer 18,417,989

Teaming with Albemarle Corporation and the Eastman Kodak Co., Novomer will develop a process for converting waste CO2 into a number of polycarbonate products (plastics) for use in the packaging industry. Novomer's novel catalyst technology enables CO2 to react with petrochemical epoxides to create a family of thermoplastic polymers that are up to 50 percent by weight CO2. The project has the potential to convert CO2 from an industrial waste stream into a lasting material that can be used in the manufacture of bottles, films, laminates, coatings on food and beverage cans, and in other wood and metal surface applications.

 Touchstone Research Laboratory 6,239,542    This project will pilot-test an open-pond algae production technology that can capture at least 60 percent of flue gas CO2 from an industrial coal-fired source to produce biofuel and other high value co-products. A novel phase change material incorporated in Touchstone's technology will cover the algae pond surface to regulate daily temperature, reduce evaporation, and control the infiltration of invasive species. Lipids extracted from harvested algae will be converted to a bio-fuel, and an anaerobic digestion process will be developed and tested for converting residual biomass into methane.
 Phycal 24,243,509  Phycal will complete development of an integrated system designed to produce liquid biocrude fuel from microalgae cultivated with captured CO2. The algal biocrude can be blended with other fuels for power generation or processed into a variety of renewable drop-in replacement fuels such as jet fuel and biodiesel. Phycal will design, build, and operate a CO2-to-algae-to-biofuels facility at a nominal thirty acre site in Central O'ahu (near Wahiawa and Kapolei), Hawaii. Hawaii Electric Company will qualify the biocrude for boiler use, and Tesoro will supply CO2 and evaluate fuel products.
 Skyonic Corporation  25,000,000 Skyonic Corporation will continue the development of SkyMine mineralization technology-a potential replacement for existing scrubber technology. The SkyMine process transforms CO2 into solid carbonate and/or bicarbonate materials while also removing sulfur oxides, nitrogen dioxide, mercury and other heavy metals from flue gas streams of industrial processes. Solid carbonates are ideal for long-term, safe aboveground storage without pipelines, subterranean injection, or concern about CO2 re-release to the atmosphere. The project team plans to process CO2-laden flue gas from a Capital Aggregates, Ltd. cement manufacturing plant in San Antonio, Texas.
 Calera Corporation 19,895,553  Calera Corporation is developing a process that directly mineralizes CO2 in flue gas to carbonates that can be converted into useful construction materials. An existing CO2 absorption facility for the project is operational at Moss Landing, Calif., for capture and mineralization. The project team will complete the detailed design, construction, and operation of a building material production system that at smaller scales has produced carbonate-containing aggregates suitable as construction fill or partial feedstock for use at cement production facilities. The building material production system will ultimately be integrated with the absorption facility.

Source: Zeus Development Corporation July 28, 2010

 

2011-10-03
July 7th NuCoal Shareholder Update [CORRECTION]

Correction notice for July 7th NuCoal Shareholder Update....2011-07-07
NuCoal Shareholder Update July 7th 2011

The strategic advisor to NuCoal, Pope & Company Limited of Toronto, assisted in identifying strategic options for shareholder...2011-07-07
NuCoal Shareholder Update July 7th 2011

The strategic advisor to NuCoal, Pope & Company Limited of Toronto, assisted in identifying strategic options for shareholder...2011-05-03
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"Very Coal!"

  • 2010-10-07 According to a report by China's Xinhua News Agency, China is expected to have the world's largest coal-conversion industry by 2020.                    
  • 2010-10-19 October 19, 2010 Notice to Shareholders available under Investors (News Releases).                    
  • 2010-10-06 Prof. Frank Clemente, "the world is turning to coal," by 2030, coal consumption will have increased by 53% and coal-fired power generation by 85%. Coal will account for 48% of global incremental electricity generation over the next 20 yrs.