Similar(60)
This plant combines solids steam reforming and gases steam reforming processes for the conversion of biomass to syngas.
The steam injected into unit operation #3 is super-heated with the exhaust from the solids steam reforming chamber burners.
A pressure transmitter is provided to monitor and record the pressure inside the solids steam reforming chamber.
In unit operation #1, the feedstock is flushed with carbon dioxide to remove any entrained air before it is fed into the solids steam reforming unit operation #2.
During this solids steam reforming process, it was found that the carbon in the feedstock was efficiently converted to gas-phase organics and syngas using a steam to feedstock carbon mass ratio of about 1.4/1.0.
The gas-phase products from the solids steam reforming process and superheated steam (unit operation #2) are injected into unit #3 for conversion of the gas-phase organic species into syngas.
Solid-steam mass transfer coefficients obtained by MSD were six times higher than obtained by SD.
A high temperature solid electrolyte steam sensor with an electrochemically supplied hydrogen as a standard was designed and investigated.
A theoretical model was developed to study the electrical characteristics of a solid oxide steam electrolyzer (SOSE) for hydrogen production.
A mathematical model was developed to simulate the coupled transport/electrochemical reaction phenomena in a solid oxide steam electrolyzer (SOSE) at the micro-scale level.
An electrochemical model was developed to study the J V characteristics of a solid oxide steam electrolyzer based on proton-conducting electrolyte (H-SOSE) for hydrogen production.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com