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February 21, 2026Molecules2 citationsOpen Access

Senise Red Pepper (Capsicum annuum L.) Wastes as Source of Rich Capsanthin Extracts by Supercritical CO2 Extraction

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VLVincenzo LaroccaMTMario TrupoMMMaria Martino

Key Points

  • The aim is to explore the extraction of carotenoids from Senise red pepper waste using SC-CO2 extraction.
  • Utilized supercritical CO2 extraction under nine pressure-temperature combinations.
  • Conducted experiments at 250-450 bar and 40-60 °C for 60 minutes.
  • Compared yields with conventional solvent extraction techniques.
  • Achieved extraction yields of 21.5 to 23.5 g/kgDW.
  • The highest carotenoid content was 386 mg/kgDW at 450 bar and 60 °C.
  • Capsanthin was identified as the main carotenoid at 5.88 mg/g, indicating high pigment recovery.

Abstract

The valorization of agro-industrial by-products represents a key strategy for promoting sustainable resource use and recovering high-value bioactive compounds. This study investigated the extraction of carotenoids from processing residues of Capsicum annuum L. cv Senise, a sweet pepper with Protected Geographical Indication (PGI) status, using supercritical CO2 extraction (SC-CO2). Experiments were conducted under nine pressure–temperature combinations (250–450 bar; 40–60 °C) for 60 min, and the results were compared with those obtained by conventional solvent extraction. The extraction yield ranged from 21.5 to 23.5 g/kgDW, with the highest total carotenoid content (386 mg/kgDW) achieved at 450 bar and 60 °C (SFE9), corresponding to a 70.2% recovery relative to the solvent method. HPLC analysis identified capsanthin (5.88 mg/g) as the predominant carotenoid in this extract, followed by zeaxanthin (2.16 mg/g), lutein (0.71 mg/g), β-cryptoxanthin (0.70 mg/g), β-carotene (0.58 mg/g) and capsorubin (0.38 mg/g). Overall, the results demonstrate that the green extraction of Senise pepper waste offers a sustainable approach to obtaining valuable natural pigments.

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Cite This Study

Larocca et al. (2026) studied this question.

synapsesocial.com/papers/69994bef873532290d0200b4https://doi.org/10.3390/molecules31040715
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