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The maximum steam conversion is limited by temperature, pressure, and the presence of hydrogen chloride gas.
However, direct dehydrogenation of alkanes is an endothermic reaction and conversion is limited by a thermodynamic equilibrium.
While these tweets and twoots are great for getting the word out – I'm not ungrateful by any means – the actual conversion is limited.
The ideal application of this technology is to reactions where the once-through conversion is limited by chemical equilibrium.
At 700 °C, which is a typical reaction temperature employed, methane conversion is limited to ca. 11 % and the reaction is generally operated at low space velocity.
The impact of low rv,b on power conversion is limited owing to SE good part-load behavior, and maximum efficiency of 13.12 15.11% is obtained when rv,b is 3.5.
Similar(46)
The reactants conversion was limited in order to avoid mass-transfer limitations.
However, the increment of conversion was limited.
Ice to hydrate conversion was limited when the LMGS amount was less than stoichiometric and synthesized at low methane pressure, but nearly complete conversion was achieved with temperature ramping and excess LMGS.
The monomer conversion was limited to ca. 60% due to consumption of the coumarin and insolubility of the onium salt in the polymerizing medium at lower monomer content levels.
Generally, esterification reactions are reversible in nature and the conversions are limited by equilibrium and product purities are very low.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com