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Pitfalls in the analysis of phytocannabinoids in cannabis inflorescence
by
Gigli Giuseppe
, Russo, Fabiana
, Gallo, Alfonso
, Laganà Aldo
, Zanotto, Antonio
, Vandelli Maria Angela
, Montone, Carmela Maria
, Cannazza Giuseppe
, ni Flavio
, Sgrò Salvatore
, Citti Cinzia
in
Aromatic compounds
/ Cannabinoids
/ Cannabis
/ Chemical analysis
/ Decarboxylation
/ Decomposition reactions
/ Mathematical analysis
/ Qualitative analysis
/ Reaction kinetics
/ Sample preparation
/ Tetrahydrocannabinol
2020
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Pitfalls in the analysis of phytocannabinoids in cannabis inflorescence
by
Gigli Giuseppe
, Russo, Fabiana
, Gallo, Alfonso
, Laganà Aldo
, Zanotto, Antonio
, Vandelli Maria Angela
, Montone, Carmela Maria
, Cannazza Giuseppe
, ni Flavio
, Sgrò Salvatore
, Citti Cinzia
in
Aromatic compounds
/ Cannabinoids
/ Cannabis
/ Chemical analysis
/ Decarboxylation
/ Decomposition reactions
/ Mathematical analysis
/ Qualitative analysis
/ Reaction kinetics
/ Sample preparation
/ Tetrahydrocannabinol
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Pitfalls in the analysis of phytocannabinoids in cannabis inflorescence
by
Gigli Giuseppe
, Russo, Fabiana
, Gallo, Alfonso
, Laganà Aldo
, Zanotto, Antonio
, Vandelli Maria Angela
, Montone, Carmela Maria
, Cannazza Giuseppe
, ni Flavio
, Sgrò Salvatore
, Citti Cinzia
in
Aromatic compounds
/ Cannabinoids
/ Cannabis
/ Chemical analysis
/ Decarboxylation
/ Decomposition reactions
/ Mathematical analysis
/ Qualitative analysis
/ Reaction kinetics
/ Sample preparation
/ Tetrahydrocannabinol
2020
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Pitfalls in the analysis of phytocannabinoids in cannabis inflorescence
Journal Article
Pitfalls in the analysis of phytocannabinoids in cannabis inflorescence
2020
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Overview
The chemical analysis of cannabis potency involves the qualitative and quantitative determination of the main phytocannabinoids: Δ9-tetrahydrocannabinol (Δ9-THC), cannabidiol (CBD), cannabigerol (CBG), cannabichromene (CBC), etc. Although it might appear as a trivial analysis, it is rather a tricky task. Phytocannabinoids are present mostly as carboxylated species at the aromatic ring of the resorcinyl moiety. Their decarboxylation caused by heat leads to a greater analytical variability due to both reaction kinetics and possible decomposition. Moreover, the instability of cannabinoids and the variability in the sample preparation, extraction, and analysis, as well as the presence of isomeric forms of cannabinoids, complicates the scenario. A critical evaluation of the different analytical methods proposed in the literature points out that each of them has inherent limitations. The present review outlines all the possible pitfalls that can be encountered during the analysis of these compounds and aims to be a valuable help for the analytical chemist.
Publisher
Springer Nature B.V
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