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supercritical water
The supercritical water-cooled reactor has favorable features in economics, sustainability and technology availability.
      
A new supercritical water-cooled reactor (SCWR) core structure (the mixed reactor core) and a new fuel assembly design (two-rows FA) are proposed.
      
Heat transfer to supercritical water in the inclined upward internally ribbed tube was enhanced or deteriorated near the pseudo-critical temperature with the variety of ratio between the mass velocity and the heat flux.
      
Hydrogen production from co-gasification of coal and biomass in supercritical water by continuous flow thermal-catalytic reactio
      
The co-gasification performance of coal and a model compound of biomass, carboxymethylcellulose (CMC) in supercritical water (SCW), were investigated experimentally.
      
The physicochemical properties of sub- and supercritical water are discussed.
      
Reaction Kinetics of 2-Propanol Dehydration in Supercritical Water
      
An experimental procedure was proposed for examining reversible chemical reactions in supercritical water.
      
The reaction kinetics of 2-propanol dehydration in supercritical water was studied.
      
It was found that the uncatalyzed reactions of olefin hydrogenation by hydrogen dissolved in supercritical water occur at high rates near the critical point of water.
      
The experimental data on the dehydration of 2-propanol in supercritical water are adequately described by first-order reaction rate equations.
      
The rate constants and activation energies of 2-propanol dehydration near the critical point of supercritical water were found.
      
Decomposition and Oxidation Reactions of Aliphatic Nitro Compounds in Supercritical Water
      
The reaction kinetics of nitromethane, nitroethane, and 1-nitropropane decomposition and oxidation in supercritical water near the critical point was studied in a flow reactor.
      
It was found that pressure has a considerable effect on the rates of decomposition of the above nitrogen-containing compounds in supercritical water over a wide pressure range.
      
The reactivity of the above aliphatic nitro compounds in supercritical water in decomposition reactions decreased and in oxidation reactions increased with an increasing number of carbon atoms.
      
Modeling of the Oxidation of Organic Compounds in Supercritical Water
      
A system for oxidation of organic impurities in supercritical water is proposed.
      
A numerical analysis is performed of one of the variants of a system for acetic acid oxidation by oxygen in supercritical water, which can be a prototype of a pilot plant.
      
Phenol oxidation in supercritical water in a well-stirred continuous reactor
      
 

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