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This original work opens new opportunities for the development of more selective catalytic processes both in organic and aqueous media.
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To tackle the challenge of more and more stringent emission regulations, a selective catalytic reduction (SCR) system is widely used all over the world in Diesel-engine applications.
In our research, we particularly focus our attention on the preparation and the development of reactive transition metal complexes containing imidazole function for new, more selective or more widely catalytic and biological applications.
They went with a more expensive method called "selective catalytic reduction," which injects an ammonia-rich urea solution into the exhaust system.
This makes Rh/alumina a more suitable catalyst for the selective catalytic reduction of NO under excess oxygen conditions.
It results in catalytic systems which are more active, more selective towards ethylene, more stable without changing the selectivity towards C2+ hydrocarbons.
Alkali-doped catalysts improved in general the catalytic performance of MoVSbO, resulting more selective to acrylic acid and less selective to acetic acid than the corresponding alkali-free MoVSbO catalysts.
C4 hydrocarbon catalytic dehydrogenation performance shows V1 series are more selective to olefin while V2 series are active to the dehydrogenation conversion of C4 hydrocarbons.
Among various advanced emission control technologies used to reduce NOx emission from diesel engines, the selective catalytic reduction (SCR) technique has proven to be more efficient.
Interestingly, though Prxs share a universal catalytic cycle and active site, some are observed to have relatively broad substrate specificity, while others are more selective.
Catalytic performance demonstrated that lower cobalt contents in presence of promoter shifted C+5 hydrocarbon product distribution toward a more selective diesel formulation.
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