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May 7, 2026Science Letters0 citationsOpen Access

Exploring cannabinoid profile changes during cannabis flower decarboxylation, extraction, and purification

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AMAna F. MoraisRDRicardo Jorge Dinis-OliveiraCRCarlos J. A. Ribeiro

Key Points

  • The goal is to understand variations in cannabinoid profiles during processing of THC-rich cannabis flowers.
  • Decarboxylation at 120 ºC for 1 hour
  • Soxhlet extraction with 96% ethanol for 2 hours
  • Winterization at -80 ºC for 24 hours
  • Activated charcoal treatment for pigment removal
  • Initial Δ9-THCA content was 16.5% with 15.6% total Δ9-THC
  • Final extracts contained 58.9% Δ9-THC post-purification
  • Extraction and purification steps improved cannabinoid concentration by 8.9%

Abstract

Background: Cannabis sativa L. has become widely cultivated. The inflorescences, resins, and oils derived from this plant are employed for both medicinal and recreational purposes, primarily due to the effects associated with cannabinoids such as cannabidiol (CBD) and the psychoactive Δ9-tetrahydrocannabinol (Δ9-THC). However, cannabis plants biosynthesize these compounds in their acidic forms, necessitating a decarboxylation process during the extraction phase 1. Moreover, depending on the final formulation, the extracts may undergo further purification before being incorporated into the final product. These steps enhance the quality of the end product and increase its attractiveness to consumers 2. Objective: This research aims to understand the variations in Δ9-tetrahydrocannabinolic acid (Δ9-THCA), Δ9-THC, and cannabinol (CBN) during the sample processing of the THC-rich cultivar Z-Face. The processing steps include the decarboxylation of acidic cannabinoids, Soxhlet extraction, and purification of extracts through winterization and activated charcoal treatment. Methods: Decarboxylation was performed at 120 ºC for 1 hour. This was followed by a 2-hour Soxhlet extraction with 96% ethanol to extract cannabinoids. The solution underwent winterization at -80 ºC for 24 hours to remove waxes and lipids. Finally, 50% (w/w) activated charcoal was added and mixed for 1 hour to remove chlorophyll and other pigments. Cannabinoid quantification was conducted using an Agilent 1260 Infinity II HPLC-DAD system, equipped with an InfinityLab Poroshell 120 EC-C18 column (3.0 x 150 mm, 2.7 µm) 3. Results: Each step was refined by: (i) Conducting decarboxylation studies at varying temperatures and durations to effectively convert Δ9-THCA into Δ9-THC, while achieving minimal CBN formation; (ii) Optimizing Soxhlet extraction time and number of cycles; (iii) Determining the appropriate winterization temperature and duration; and (iv) Examining the percentage of activated charcoal used, along with the temperature and duration of treatment. Conclusions: The extraction and processing of THC-rich Z-Face flowers, initially containing 16.5% Δ9-THCA (15.6% total Δ9-THC), resulted in final extracts with 58.9% Δ9-THC, corresponding to an 8.9% enrichment during the purification steps.

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Cite This Study

Morais et al. (2026) studied this question.

synapsesocial.com/papers/69fbe382164b5133a91a2ba0https://doi.org/10.48797/sl.2026.506
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