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5 equipment items found
Manufactured by:Membrane Technology and Research, Inc. (MTR) based inNewark, CALIFORNIA (USA)
Refinery hydrogen requirements are growing due to the increased use of hydrocracking and hydro-treating, including processes such as HydroFlex™ and VeganR that produces renewable diesel. Residual gas from these processes contains a significant amount of unused hydrogen at pressure, and membranes provide an economical recovery method. MTR’s hydrogen-permeable VaporSep-H2™ ...
Manufactured by:MTR Carbon Capture based inNewark, CALIFORNIA (USA)
MTR's PolarCap™ process leverages the innovative Polaris™ polymeric membrane, the first commercial membrane developed specifically for CO2 capture. The PolarCap™ process uses passive separation of CO2 driven by blowers and pumps, avoiding chemical reactions typically required in amine-based capture. This makes PolarCap™ an environmentally friendly option that solely relies ...
Manufactured by:Membrane Technology and Research, Inc. (MTR) based inNewark, CALIFORNIA (USA)
Syngas (H2 + CO) is required to make a variety of products. Each of these syngas derivatives has a specific ratio of H2 to CO in the feed syngas that is optimal for its production. However, the H2:CO ratio produced is a function of the syngas process and the hydrocarbon feed. This ratio will not necessarily be optimal for downstream products. Therefore, some method for reducing the amount of ...
Manufactured by:Membrane Technology and Research, Inc. (MTR) based inNewark, CALIFORNIA (USA)
VaporSep-H2™ is a simple system with compelling economics for recovering hydrogen from the purge gas. In ammonia production, hydrogen and nitrogen are reacted at high pressure to form ammonia. Since the conversion per pass is not 100%, the reactor is operated in loop mode. Ammonia is continuously condensed out of the loop and fresh synthesis gas is added. Because the synthesis gas contains ...
Manufactured by:MTR Carbon Capture based inNewark, CALIFORNIA (USA)
Membrane Technology and Research, Inc. (MTR) offers an advanced CO2 capture solution specifically designed for natural gas combined cycle (NGCC) power plants. This system utilizes a selective exhaust gas recycle (S-EGR) configuration that leverages incoming combustion air as a sweep to pre-concentrate CO2 from 4% to around 20%. This pre-concentration is achieved with minimal energy input, ...
