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The reaction involves the conjugate base of the carboxyl group, a carboxylate ion, and an unsaturated receptor of electron density, such as a protonated carbonyl group. Decarboxylation is a chemical reaction that removes a carboxyl group and releases carbon dioxide (CO 2).
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When cool enough to handle, add the decarboxylated cannabis to butter, oil, or another base for an infusion, or carefully put it in a storage container for future use.Heating buds in an oven before infusion is necessary to activate the THC in the buds so it can be carried into the infusion, and then into the edible. When decarboxylating cannabis in an oven, it’s important to remember that the temperature dial on an oven is more of an average temperature than an exact one. Iron-based hydroxylases operate by reductive activation of O 2 using the decarboxylation of alpha-ketoglutarate as an electron donor. Compared to smoking and vaping, decarboxylation for edibles is done at a lower temperature for a longer period of time to keep cannabinoids and terpenes intact when infused. Where reactions entail heating the carboxylic acid with concentrated hydrochloric acid, such a direct route is impossible as it would produce protonated carbon dioxide.
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Oxygen can contribute to the decarboxylation process, so to slow it down, keep your weed or weed products in an air-tight container to maintain freshness and potency. Some decarboxylation can occur over time when drying and curing cannabis, after harvesting a homegrow.The high temperatures when smoking and vaporizing instantly decarboxylate compounds in weed, making them immediately available for your body to absorb. Heating weed for too long, or at too high of a temperature, can burn off cannabinoids and terpenes, making your weed ineffective. The reaction is especially common in conjunction with the malonic ester synthesis and Knoevenagel condensations. Heating cannabis in an oven above 300ºF will burn off valuable cannabinoids and terpenes, and the flower will not get you high when infused with butter, oil, or anything else. RC(O)CO2H->T=C(OH)R{}+CO2}}} T = C ( OH ) R + R ′ COOH ⟶ T : + RC ( O ) CH ( OH ) R ′ {\displaystyle {\ce {T=C(OH)R{}+R'COOH->T\!
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RC ( O ) CO 2 Fe II + O 2 ⟶ RCO 2 Fe IV = O + CO 2 {\displaystyle {\ce {RC(O)CO2FeTHCA in the plant has an extra carboxyl ring in its chemical structure, and heat removes that ring, or de-carboxylates, the compound, hence where the term comes from. Consuming edibles doesn’t involve heat, as with smoking a joint or hitting a vape pen, but the decarboxylation process still needs to occur to activate the weed in the edible before consumption. Terpenes are volatile and will evaporate at high temperatures, potentially leaving undesirable flavors and aromas behind.