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Tag: Systems

$28 Million in DOE Funding Available for Advanced Energy Systems R&D

June 13, 2017
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The Department of Energy (DOE) is offering approximately $ 28 million in cost-shared funding for research and development of advanced energy systems.  According to three separate funding opportunity announcements (FOAs), the department is looking for research into advanced combustion systems, advanced turbines, and gasification.

“Advanced energy conversion systems are designed to enable efficient, low-cost, and near-zero emission energy from existing and new fossil fuel power plants,” a DOE release says.

University Turbine Systems Research

The University Turbine Systems Research (UTSR) program has available $ 5.15 million to fund laboratory/bench scale research and development projects in six technical topic areas:

  • Low-NOx combustion technology development for “air-breathing” advanced turbines
  • Advanced cooling technology development for “air-breathing” advanced turbines
  • Advanced materials technology development for “air-breathing” advanced turbines
  • Big data analytics
  • Advanced instrumentation
  • Pressure gain combustion

DOE anticipates awarding funding for six to nine projects. Up to three awards are expected in each of the first three topic areas, and one per topic in the last three areas.…

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New Technology Offers Hope for Cost-Effective Carbon Capture and Storage Systems

October 13, 2016
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Academics at the University of Sheffield—a public research university in the UK—have begun two new carbon capture and storage (CCS) projects, searching for cheaper methods of capturing carbon dioxide (CO2) from fossil-fueled power plants.

The work is being funded by the European Commission’s (EC’s) Horizon 2020 Low Carbon Energy program.

Solvents Could Be Game-Changing

The “ROLINCAP” project received €3.2 million to explore how new chemical solvents could be used in a “rotating packed bed” process, which is designed to accelerate chemical reactions. The method may allow CO2 to be captured more efficiently, with smaller equipment than was previously required.

“Our European consortium will work with experts from South Korea to develop technologies for post-combustion carbon capture and storage. We will explore new solvents and new techniques for process intensification, which I hope will lead to cheaper, more efficient carbon capture,” said Meihong Wang, Professor of Energy Systems in the Department for Chemical and Biological Engineering.

Carbon Clean Solutions Ltd.…

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District Energy Systems Improve Efficiency and Reduce Carbon Emissions

June 27, 2016
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Although it’s not widely publicized, a majority of the energy used to generate electricity is wasted in the form of heat discharged to the environment. For better or worse, that’s just the way a typical thermal power plant works.

Fuel, such as coal, biomass, natural gas, or uranium (in the case of nuclear plants), is used to heat water, producing high-temperature and high-pressure steam. The steam is admitted into a turbine, which spins a generator to produce electricity. However, not all of the energy stored in the steam is converted to useful work through the process.

In order for the cycle to continue, the steam exhausted from the turbine must be returned to its liquid form inside a condenser. In a fairly standard arrangement, the condenser is cooled by river, lake, or ocean water. The cooling water from the condenser is often simply released back to its source, and with it, the energy that was transferred inside the condenser.

Waste Not, Want Not

The average U.S.…

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