The gas condensate is acidic. The acidity in the gas corrodes, therefore, forming sulphurised condensate droplets. Heating desulphurised the gas condensate.
Veq = 133000*(Condensate specific gr/Mol wt of condensate) in SCF/STB Where, Mol wt of condensate = 6084/(API-5.9)
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Condensate yield refers to the amount of liquid (condensate) produced from natural gas or oil during processing and separation. It is commonly expressed as the volume or percentage of condensate recovered from the raw natural gas or oil. Achieving a high condensate yield is important for maximizing the value of the produced hydrocarbons.
condensate
The gas condensate ratio (GCR) is calculated by dividing the volume of gas produced by the volume of condensate produced. This ratio is typically expressed in standard cubic feet per stock tank barrel (scf/STB) or cubic meters per cubic meter (m³/m³) depending on the units used for measurement.
Condensate production divided by (hydrocarbon) gas production. Conventional units stb/MMscf.
At 90 barg pressure, the freezing point of gas condensate is typically lower than at atmospheric pressure. The exact freezing point can vary depending on the composition of the gas condensate. It is advisable to consult the specific properties of the gas condensate mixture to determine its freezing point accurately at 90 barg pressure.
A bose-einstein condensate.
Gas condensate is typically not recommended to be used as a direct replacement for diesel fuel. While both are hydrocarbons, gas condensate has different properties and may not meet the same standards and specifications required for diesel engines. Using gas condensate in place of diesel could potentially damage the engine and affect its performance.
Not liquid but a gas; lithium condensate is a strange state of matter - a very diluted gas at a temperature near zero absolute. The properties of this phase are explained by the Bose-Einstein theory.
That is the correct spelling of "condensation" (a gas going to a liquid state).