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Conversion Characteristics of Some Major Cannabinoids from Hemp (Cannabis sativa L.) Raw Materials by New Rapid Simultaneous Analysis Method
Authors:Byeong Ryeol Ryu  Md Jahirul Islam  Md Obyedul Kalam Azad  Eun-Ji Go  Md Hafizur Rahman  Md Soyel Rana  Young-Seok Lim  Jung-Dae Lim
Institution:1.Department of Bio-Health Convergence, Kangwon National University, Chuncheon 24341, Korea; (B.R.R.); (M.J.I.); (M.O.K.A.); (E.-J.G.); (M.H.R.); (M.S.R.);2.Physiology and Sugar Chemistry Division, Bangladesh Sugarcrop Research Institute, Ishurdi, Pabna 6620, Bangladesh
Abstract:This study was carried out to develop a high-performance liquid chromatography method for short-time analysis of the main cannabinoids in the inflorescence of hemp (Cannabis sativa L.). We also performed decarboxylation of the raw material using our advanced analysis technique. In this study, the UV spectrum was considered to analyze each of the four common cannabinoids, solvents, and samples, where the uniform elution of acidic cannabinoids without peak tailing and acids was tested. Optimal results were obtained when readings were taken at a wavelength of 220 nm using water and methanol containing trifluoroacetic acid as mobile phases in a solvent gradient system. The established conditions were further validated by system suitability, linearity, precision, detection limit, and quantitation limit tests. The decarboxylation index (DT50) confirmed that Δ9-THCA decarboxylated faster than CBDA, and both maintained a linear relationship with time and temperature. In addition, the loss of cannabidiol was better prevented during the decarboxylation process in the natural state than in the extracted state.
Keywords:cannabis  decarboxylation  cannabinoid  chromatography  cannabidiol
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