Collisional-dissociative recombination of electrons with molecular ions.
Recombination rate of electrons in plasma containing ions of molecule with both repulsive and bound neutral states
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Recombination rate of electrons in plasma containing ions of molecule with both repulsive and bound neutral states
Recombination of carbon monoxide and atomic oxygen in expansion wave at high temperature in single pulse shock tube
Population of atomic levels by cascade, dielectric and three-body electronic recombination, discussing spontaneous transition, electron impact and RF spectra
Carbon monoxide and atomic oxygen recombination in expansion wave of single-pulse shock tube at high temperatures
Hydrogen crossover in proton exchange membrane water electrolyzers (PEMWEs) poses a safety hazard, reduces the overall efficiency, and limits the operational differential pressure range. Here, in this study, a membrane electrode assembly (MEA) with innovative Pt duo-recombination layer (DRL) design is developed by the unique reactive spray deposition technology (RSDT). The novel design comprises two thin RLs integrated within the volume of the membrane and has a total Pt loading of only 0.04 mg Pt cm −2 . Long-term durability test for over 3000 h is performed with as-fabricated MEA at steady-state conditions typical for an industrial hydrogen production system. The results from the durability test show that the newly developed DRL design effectively suppresses the H2 crossover to below 0.5 vol%. Furthermore, comprehensive post-test characterization of the MEA is performed and potential failure mechanisms in the Pt RLs observed during the durability test are identified and discussed in detail for the first time.
As global temperatures rise, improving crop yields will require enhancing the thermotolerance of crops. One approach for improving thermotolerance is using bioengineering to increase the thermostability of enzymes catalysing essential biological processes. Photorespiration is an essential recycling process in plants that is integral to photosynthesis and crop growth. The enzymes of photorespiration are targets for enhancing plant thermotolerance as this pathway limits carbon fixation at elevated temperatures. We explored the effects of temperature on the activity of the photorespiratory enzyme glycerate kinase (GLYK) from various organisms and the homologue from the thermophilic alga Cyanidioschyzon merolae was more thermotolerant than those from mesophilic plants, including Arabidopsis thaliana. To understand enzyme features underlying the thermotolerance of C. merolae GLYK (CmGLYK), we performed molecular dynamics simulations using AlphaFold-predicted structures, which revealed greater movement of loop regions of mesophilic plant GLYKs at higher temperatures compared to CmGLYK. Based on these simulations, hybrid proteins were produced and analysed. These hybrid enzymes contained loop regions from CmGLYK replacing the most mobile corresponding loops of AtGLYK. Two of these hybrid enzymes had enhanced thermostability, with melting temperatures increased by 6 °C. One hybrid with three grafted loops maintained higher activity at elevated temperatures. Whilst this hybrid enzyme exhibited enhanced thermostability and a similar Km for ATP compared to AtGLYK, its Km for glycerate increased threefold. This study demonstrates that molecular dynamics simulation-guided structure-based recombination offers a promising strategy for enhancing the thermostability of other plant enzymes with possible application to increasing the thermotolerance of plants under warming climates.
Catalytic surface recombination of atomic oxygen
Recombination coefficient of the nighttime f-layer
Three-body collision rates in atomic recombination reactions
Unsteady diffusion with recombination in ternary mixture of diatomic molecules, dissociated atoms, and an inert gas
Energy transfer during atomic recombination on solid surfaces
Investigation of hydrogen recombination-rate constant in hydrogen-propelled arc-jet engine
Effect of ionization and recombination on the electron distribution function of a slightly ionized gas in the presence of an external magnetic and electric field
Influence of catalyst on the atomic recombination in nonequilibrium nozzle flows of hydrogen
Exhaust nozzle recombination for hydrogen-fueled subsonic combustion ramjet engines
Exhaust nozzle recombination of hydrogen fuel in subsonic ramjet engines at hypersonic speeds
Temperature measurement of free atmosphere considering atomic recombination