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Pittsburgh-based Climate Tech Company Receives Distinguished ‘Innovation Award’ At International Food & Beverage Expo

GreenSwans’ TMCAqua technology named ‘best new technology for sustainability’ at Process Expo

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Advanced Energy and Water Recovery Technology from Low Grade Waste Heat

The project developed a nanoporous membrane-based technology for recovering energy and water from low-temperature industrial waste gas streams with high moisture contents, prevalent across various industries. This technology retrieves sensible heat and high-purity water, including considerable latent heat, addressing challenges in recovering waste heat from such streams due to poor heat transfer performance and moisture-related…

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Coal power plant flue gas waste heat and water recovery

An advanced waste heat and water recovery technology has been developed to extract a portion of the water vapor and its latent heat from flue gases based on a nanoporous ceramic membrane capillary condensation separation mechanism. The recovered water is of high quality and mineral free, therefore can be used as supplemental makeup water for…

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International Gas Union Research Conference – Super Boiler

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Water Reclamation from High Moisture Content Waste Heat Streams

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Numerical modeling and simulation of condensation heat transfer of a flue gas in a bundle of transport membrane tubes

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Nanoporous Membrane Tube Condensing Heat Transfer Enhancement Study

A Transport Membrane Condenser (TMC), made from nanoporous membrane tube bundles, was developed to recover the water vapor and its significant amount of latent heat from boiler flue gases to improve boiler efficiency and save water. Experiments have been carried out to study the phenomena for both a nanoporous membrane tube bundle and an impermeable…

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Public Interest Energy Research (PIER) Program – Energy and Water Recovery with TMC

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Water, Latent Heat and Sensible Heat Recovery from Waste Heat Exhaust Streams Using the Transport Membrane Condenser

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Reducing Energy Costs with the Super Boiler

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