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  2. Fatty acid methyl ester - Wikipedia

    en.wikipedia.org/wiki/Fatty_acid_methyl_ester

    One reason for using FAME (fatty acid methyl esters) in biodiesel production, rather than free fatty acids, is to mitigate the potential corrosion they can cause to metals of engines, production facilities, and related infrastructure. While free fatty acids are only mildly acidic, over time they can lead to cumulative corrosion.

  3. Fatty acid ester - Wikipedia

    en.wikipedia.org/wiki/Fatty_acid_ester

    The most commonly used alcohol is methanol, producing fatty acid methyl esters (FAME). When ethanol is used fatty acid ethyl esters (FAEE) are created. Other alcohols used for the production of biodiesel include butanol and isopropanol. Fatty acid ethyl esters are biomarkers for the consumption of ethanol (alcoholic beverages). [1] [2] [3]

  4. Biodiesel - Wikipedia

    en.wikipedia.org/wiki/Biodiesel

    The most common form uses methanol (converted to sodium methoxide) to produce methyl esters (commonly referred to as Fatty Acid Methyl Ester – FAME) as it is the cheapest alcohol available, though ethanol can be used to produce an ethyl ester (commonly referred to as Fatty Acid Ethyl Ester – FAEE) biodiesel and higher alcohols such as ...

  5. Ester - Wikipedia

    en.wikipedia.org/wiki/Ester

    An ester of a carboxylic acid.R stands for any group (typically hydrogen or organyl) and R ′ stands for any organyl group.. In chemistry, an ester is a compound derived from an acid (organic or inorganic) in which the hydrogen atom (H) of at least one acidic hydroxyl group (−OH) of that acid is replaced by an organyl group (R ′). [1]

  6. Biodiesel production - Wikipedia

    en.wikipedia.org/wiki/Biodiesel_production

    The process can tolerate water in the feedstock, free fatty acids are converted to methyl esters instead of soap, so a wide variety of feedstocks can be used. Also the catalyst removal step is eliminated. [9] High temperatures and pressures are required, but energy costs of production are similar or less than catalytic production routes. [10]

  7. Oleochemistry - Wikipedia

    en.wikipedia.org/wiki/Oleochemistry

    Other applications of oleochemicals include the production of lubricants, solvents, biodiesel and bioplastics. Due to the use of methyl esters in biodiesel production, they represent the fastest growing sub-sector of oleochemical production in recent years. [7]: 15

  8. Methyl acrylate - Wikipedia

    en.wikipedia.org/wiki/Methyl_acrylate

    Methyl acrylate is after butyl acrylate and ethyl acrylate the third most important acrylic ester with a worldwide annual production of about 200,000 tons in 2007. [16] Poly(methyl acrylate) is a tacky material near room temperature, and as such it is not particularly useful as a structural material.

  9. Transesterification - Wikipedia

    en.wikipedia.org/wiki/Transesterification

    If the alcohol produced by the reaction can be separated from the reactants by distillation this will drive the equilibrium toward the products. This means that esters with larger alkoxy groups can be made from methyl or ethyl esters in high purity by heating the mixture of ester, acid/base, and large alcohol.

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