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  2. Volatility (chemistry) - Wikipedia

    en.wikipedia.org/wiki/Volatility_(chemistry)

    Crude oil entering a refinery is composed of many useful chemicals that need to be separated. The crude oil flows into a distillation tower and is heated up, which allows the more volatile components such as butane and kerosene to vaporize. These vapors move up the tower and eventually come in contact with cold surfaces, which causes them to ...

  3. Evaporation - Wikipedia

    en.wikipedia.org/wiki/Evaporation

    where P 1, P 2 are the vapor pressures at temperatures T 1, T 2 respectively, ΔH vap is the enthalpy of vaporization, and R is the universal gas constant. The rate of evaporation in an open system is related to the vapor pressure found in a closed system. If a liquid is heated, when the vapor pressure reaches the ambient pressure the liquid ...

  4. Essential oil - Wikipedia

    en.wikipedia.org/wiki/Essential_oil

    Essential oils are also known as volatile oils, ethereal oils, aetheroleum, or simply as the oil of the plant from which they were extracted, such as oil of clove. An essential oil is essential in the sense that it contains the essence of the plant's fragrance —the characteristic fragrance of the plant from which it is derived. [ 1 ]

  5. Droplet vaporization - Wikipedia

    en.wikipedia.org/wiki/Droplet_vaporization

    ˙ is the vaporization rate of the droplet (kg.s −1) is the liquid specific heat at constant pressure (J.kg −1.K −1) is the heat flux entering the droplet (J.s −1) The heat flux entering the droplet can be expressed as: [1]

  6. Vaporization - Wikipedia

    en.wikipedia.org/wiki/Vaporization

    Vaporization (or vapo(u)risation) of an element or compound is a phase transition from the liquid phase to vapor. [1] There are two types of vaporization: evaporation and boiling. Evaporation is a surface phenomenon, whereas boiling is a bulk phenomenon (a phenomenon in which the whole object or substance is involved in the process).

  7. Hertz–Knudsen equation - Wikipedia

    en.wikipedia.org/wiki/Hertz–Knudsen_equation

    The Hertz–Knudsen equation describes the non-dissociative adsorption of a gas molecule on a surface by expressing the variation of the number of molecules impacting on the surfaces per unit of time as a function of the pressure of the gas and other parameters which characterise both the gas phase molecule and the surface: [1] [2]