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cracking, and propane dehydrogenation—run at 600–900 °C and rely on fossil-fuel combustion, producing hundreds of millions of tons of CO₂ annually. Meeting 2030–2050 climate targets requires redesigning
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emerging technologies for propulsion systems. Responsibilities will include, but not limited to, fundamental studies of reactive flow, chemical kinetics, combustion, and detonation, for a wide range of
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, stiff systems of partial differential equations Demonstrated expertise in multiphase flows and stiff chemistry/transport source terms in reacting flows (e.g., combustion, plasma), and strong proficiency
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limited to, fundamental studies of reactive flow, chemical kinetics, combustion, and detonation, for a wide range of propulsion applications, including rocket/hypersonic propulsion systems, gas turbine
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techniques and safety procedures; some experience in reactor design/assembly -Experience with heat exchangers, condensors, filtration, plasma/combustion and/or chemical reactor design. -Ability to plan
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National Energy Technology Laboratory (NETL) | Pittsburgh, Pennsylvania | United States | about 7 hours ago
capture solvents are exposed to high temperatures and post-combustion byproducts which cause these solvents to degrade over time. NETL has built a mobile solvent degradation laboratory which will travel
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the last five years. A minimum of 3 years of experience in (a) design and operation of experimental thermal/fluid systems, (b) mechanical systems and instrumentation, (c) fluid dynamics, combustion, and heat