Optimization of Ultrasound-Assisted Extraction of Phenolic Compounds and Characterization of Krokos Kozanis (Crocus sativus L.) Byproducts Using Spectrophotometric Assays, ATR-FTIR and Liquid Chromatography–Tandem Mass Spectrometry Analysis
Thalia Tsiaka, Olga Statilko, Maria Chatzikonstantinou, Eleni Lykoudi, Irini F. Strati, Maria C. Giannakourou, Vassilia J. SinanoglouThe global demand for saffron (Crocus sativus L.) generates a large number of floral bio-residues, presenting an environmental challenge but also an opportunity for value-added byproduct recovery within a circular economy framework. This study aimed to optimize the ultrasound-assisted extraction (UAE) of phenolic compounds from Krokos Kozanis (Greek saffron) tepals and its post-hydro-distillation solid residues. A 27-run Box–Behnken design (BBD) was employed to evaluate the effects of ethanol content (%, v/v) in the extracting solvent, extraction time (min), solvent-to-material ratio (mL/g), and ultrasound power (%) on the total phenolic content (TPC). Optimal conditions were determined as follows: 20% (v/v) ethanol, 10 min extraction time, 20 mL/g solvent-to-material ratio, and 80% ultrasound power. Applying these parameters, fresh tepals and post-distillation residues yielded maximum TPC values of 3370.86 and 799.17 mg GAE/100 g dw, respectively. Antioxidant and radical scavenging activities (FRAP and ABTS assays) correlated strongly with TPC (r > 0.95). Several bioactive substances were revealed by the ATR-FTIR spectroscopy, including carotenoids, terpenes, phenolic compounds and carbohydrates. Furthermore, LC-MS/MS identified 24 phenolic compounds, predominantly flavonol glycosides like quercetin 3-O-sophoroside. Notably, the application of hydro-distillation as a pre-treatment promoted the recovery of distinct metabolites in saffron byproducts compared to the intact tepals. This optimized UAE process offers a rapid, green strategy for valorizing saffron waste into natural antioxidants.