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Updated: Oct 29, 2025

Ultrasonic-Assisted Extraction of Cannabidiolic Acid from Cannabis Biomass
Published on: May 27, 2022
[Design and application of special solid phase extraction column for three cannabinol compounds in hemp]
Shuchang Shen1, Shaohua Li1, Li Guo2
1Center of Analytical and Testing, Qiqihar University, Qiqihar 161006, China.
Insights
A novel solid phase extraction (SPE) column effectively removes hemp impurities, enabling accurate quantification of key cannabinoids like cannabidiol (CBD), cannabinol (CBN), and Δ9-tetrahydrocannabinol (THC) using UHPLC.
Area of Science:
- Analytical Chemistry
- Phytochemistry
- Forensic Science
Background:
- Hemp contains valuable cannabinoids like cannabidiol (CBD), cannabinol (CBN), and Δ9-tetrahydrocannabinol (THC).
- Accurate quantification of these cannabinoids is crucial for determining hemp's properties and applications.
- Hemp extracts contain impurities (pigments, sugars, lipids, metal ions) that interfere with analytical methods like UHPLC.
Purpose of the Study:
- To develop and validate a specialized solid phase extraction (SPE) column for efficient removal of hemp extract impurities.
- To optimize chromatographic conditions for the simultaneous determination of CBD, CBN, and Δ9-THC.
- To assess the efficacy of the SPE method in terms of impurity removal rates and cannabinoid recovery.
Main Methods:
- A mixed-adsorbent SPE column was prepared using neutral alumina, magnesium silicate, and graphitized carbon black.
- Hemp flowers and leaves were extracted using an ethyl acetate/methanol mixture.
- Ultra-high performance liquid chromatography (UHPLC) with optimized conditions (Eclipse Plus C18 column, specific mobile phase, 210 nm detection) was used for cannabinoid analysis.
Main Results:
- The SPE column achieved high removal rates for pigments (up to 99.2%), total sugar (98.5%), total fatty glyceride (96.9%), and metal ions (85.4%).
- Excellent recoveries for CBD (98.9%), CBN (95.7%), and Δ9-THC (99.2%) were obtained after SPE.
- Optimized UHPLC method provided separation within 10 minutes, with good linearity (R² > 0.998), low detection limits (0.38-0.53 μg/L), and acceptable recoveries (90.3%-96.9%) and RSDs (2.2%-8.0%).
Conclusions:
- The developed SPE column effectively purifies hemp extracts, removing significant impurities.
- The optimized UHPLC method allows for sensitive and accurate determination of CBD, CBN, and Δ9-THC.
- This integrated SPE-UHPLC approach is well-suited for routine analysis of major cannabinoids in hemp.
Abstract:
Cannabidiol (CBD), cannabinol (CBN), and Δ9-tetrahydrocannabinol (THC) are the most important components of hemp, whose concentrations determine the properties and applications of hemp. Hemp contains a large number of impurities, which must be removed from the extracting solution before determining the cannabinol contents by ultra-high performance liquid chromatography (UHPLC). Neutral alumina, magnesium silicate, and graphitized carbon black have different surface characteristics when used as adsorbents. The removal rates of pigments, total sugar, total fatty acid glyceride, and metal ions as well as the recoveries of the three cannabinols in the extraction solution were evaluated. The amounts of neutral alumina, magnesium silicate, and graphitized carbon black were 1.80 g, 0.15 g, and 0.05 g, respectively. The three adsorbents were mixed well and packed into a polypropylene pipe to prepare a special 2 g/6 mL solid phase extraction (SPE) column for determining the three cannabinol compounds in hemp. The chemical components of the hemp flowers and leaves were extracted with an ethyl acetate/methanol (9∶1, v/v) mixture. After the extracting solution was allowed to pass through the SPE column, the recoveries of CBD, CBN, and Δ9-THC were 98.9%, 95.7%, and 99.2%, respectively. The removal rates of xanthophyll, chlorophyll a, and chlorophyll were 96.3%, 99.2%, and 95.5%, respectively. The removal rates of total sugar, total fatty glyceride, and metal ions were 98.5%, 96.9%, and 85.4%, respectively. In this study, the chromatographic conditions for analyzing the three cannabinol compounds were optimized. The cannabinol compounds were separated within 10 min on an Eclipse Plus C18 column (50 mm×2.1 mm, 1.8 μm) using a mobile phase consisting of 1% (v/v) acetic acid and acetonitrile (30∶70, v/v) at a flow rate of 0.5 mL/min. The detection wavelength was set at 210 nm with a diode array detector, and the sample injection volume was 1 μL. Good linear relationships were observed between the mass peak areas and mass concentrations of CBD, CBN, and Δ9-THC in the range of 0.5-50 mg/L. The corresponding correlation coefficients (R2) were 0.9983, 0.9995, and 0.9981, while the detection limits were 0.45 μg/L, 0.53 μg/L, and 0.38 μg/L. The recoveries of CBD, CBN, and Δ9-THC were 90.3%-96.9%, 93.7%-95.6%, and 90.8%-96.1%, with relative standard deviations (RSDs) of 2.2%-6.1%, 4.1%-8.0%, and 2.4%-4.8%, respectively. The results were satisfactory, demonstrating that the special SPE column made of neutral alumina, magnesium silicate, and graphitized carbon black was well suited for the determination of the three cannabinol compounds in hemp.
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