Supercritical Carbon Dioxide: Difference between revisions

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==As a Working Fluid==
==As a Working Fluid==
*It can be used as a [[Refrigerant]] or as a Working Fluid in a [[Rankine Cycle]] (Although using Hydrocarbons in the [[Organic Rankine Cycle]] may be of more interest
*It can be used as a [[Refrigerant]] or as a Working Fluid in a [[Rankine Cycle]] (Although using Hydrocarbons in the [[Organic Rankine Cycle]] may be of more interest, pending a proper [[Decision Making Matrix]] or similar investigation as per the relevant [[OSE Specifications]] )
*It has the advantage over [[Butane]] and other similar proposed hydrocarbons in that it is not flammable
*It has the advantage over [[Butane]] and other similar proposed hydrocarbons in that it is not flammable
*The [[Allam-Fetvedt Cycle]] is a novel Power Generation system utilizing [[Oxy-Fuel Combustion]] in an all Supercritical Carbon Dioxide Atmosphere
*The [[Allam-Fetvedt Cycle]] is a novel Power Generation system utilizing [[Oxy-Fuel Combustion]] in an all Supercritical Carbon Dioxide Atmosphere

Latest revision as of 02:32, 12 August 2025

Basics

Uses

Blowing Agent

  • Involves dissolving sCO2 into the material, then rapidly depressurizing it to form a foam
  • Need to look into this further for more specific details

Chemical Synthesis

  • Need to look into this for specifics, but essentially using CO2 as the solvent for the reaction
  • Of interest to the Pharmaceutical Industry, as the Product may be "precipitated" by expanding the mixture out of a nozzle, leaving a fine dry product akin to Spray Drying

Supercritical Fluid Chromatography

  • Can be used for Analytic Chemistry, or in Simulated Moving Bed Chromatography at an industrial scale for purification/separation of desirable (or in the case of Decaffeination etc, undesirable) Compounds

Dry Cleaning

  • Unlike other solvents, sCO2 has virtually no toxicity (short of it being an Asphyxiant Hazard ) so Disposal/Handling concerns are far less

Extraction

  • Supercritical fluid extraction is very common in the Essential Oil Industry (for Fragrances / Food Additives ) ( And also in the Cannabis Industry for High Value High Purity Oils/Resins/Waxes )
  • It is effective, and also has little risk of contamination since simply depressurizing the mixture separates out the CO2 (which can then be collected and recycled)
  • Main issue is initial cost of equipment
  • It is also used for Decaffeination

As a Working Fluid

Internal Links

External Links