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  2. Knoevenagel condensation - Wikipedia

    en.wikipedia.org/wiki/Knoevenagel_condensation

    The active hydrogen component has the forms: [3] Z−CH 2 −Z or Z−CHR−Z for instance diethyl malonate, Meldrum's acid, ethyl acetoacetate or malonic acid, or cyanoacetic acid. [1] Z−CHRR', for instance nitromethane. where Z is an electron withdrawing group. Z must be powerful enough to facilitate deprotonation to the enolate ion even ...

  3. Biohydrogen - Wikipedia

    en.wikipedia.org/wiki/Biohydrogen

    Hydrogen gas is produced in many types of fermentation as a way to regenerate NAD + from NADH. Electrons are transferred to ferredoxin, or can be directly accepted from NADH by a hydrogenase, producing H 2. Because of this most of the reactions start with glucose, which is converted to acetic acid. [6]

  4. Aldol condensation - Wikipedia

    en.wikipedia.org/wiki/Aldol_condensation

    An aldol condensation is a condensation reaction in organic chemistry in which two carbonyl moieties (of aldehydes or ketones) react to form a β-hydroxyaldehyde or β-hydroxyketone (an aldol reaction), and this is then followed by dehydration to give a conjugated enone.

  5. Microbial electrolysis cell - Wikipedia

    en.wikipedia.org/wiki/Microbial_electrolysis_cell

    Lactic and acetic acid achieve 82% efficiency, while the values for unpretreated cellulose or glucose are close to 63%. The efficiency of normal water electrolysis is 60 to 70 percent. As MEC's convert unusable biomass into usable hydrogen, they can produce 144% more usable energy than they consume as electrical energy.

  6. Ethenone - Wikipedia

    en.wikipedia.org/wiki/Ethenone

    The technically most significant use of ethenone is the synthesis of sorbic acid by reaction with 2-butenal (crotonaldehyde) in toluene at about 50 °C in the presence of zinc salts of long-chain carboxylic acids. This produces a polyester of 3-hydroxy-4-hexenoic acid, which is thermally [22] or hydrolytically depolymerized to sorbic acid.

  7. Deprotonation - Wikipedia

    en.wikipedia.org/wiki/Deprotonation

    Deprotonation of acetic acid by a hydroxide ion. Deprotonation (or dehydronation) is the removal (transfer) of a proton (or hydron, or hydrogen cation), (H +) from a Brønsted–Lowry acid in an acid–base reaction. [1] [2] The species formed is the conjugate base of that acid.

  8. Autoprotolysis - Wikipedia

    en.wikipedia.org/wiki/Autoprotolysis

    Any chemical that contains both acidic hydrogen and lone pairs of electrons to accept H + can undergo autoprotolysis. For example, water undergoes autoprotolysis in the self-ionization of water reaction. 2 H 2 O ⇌ OH − + H 3 O + For example, ammonia in its purest form may undergo autoprotolysis: 2 NH 3 ⇌ NH − 2 + NH + 4. Another example ...

  9. Acetic acid - Wikipedia

    en.wikipedia.org/wiki/Acetic_acid

    acetyl chloride SOCl 2 acetic acid (i) Li[AlH 4], ether (ii) H 3 O + ethanol Two typical organic reactions of acetic acid Acetic acid undergoes the typical chemical reactions of a carboxylic acid. Upon treatment with a standard base, it converts to metal acetate and water. With strong bases (e.g., organolithium reagents), it can be doubly deprotonated to give LiCH 2 COOLi. Reduction of acetic ...

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