From Waste to Green: Water-Based Extraction of Polyphenols from Onion Peel and Their Adsorption on Biochar from Grapevine Pruning Residues

Author:

Prelac Melissa1ORCID,Palčić Igor1ORCID,Cvitan Danko1ORCID,Anđelini Dominik1,Repajić Maja2ORCID,Ćurko Josip2ORCID,Kovačević Tvrtko Karlo1ORCID,Goreta Ban Smiljana1ORCID,Užila Zoran1,Ban Dean1,Major Nikola1ORCID

Affiliation:

1. Institute of Agriculture and Tourism, Karla Huguesa 8, 52440 Poreč, Croatia

2. Department of Food Engineering, Faculty of Food Technology and Biotechnology, University of Zagreb, Pierottijeva 6, 10000 Zagreb, Croatia

Abstract

Onion peels (OP) are rich in bioactive compounds with a plethora of benefits for human health, but this valuable material is often wasted and underutilized due to its inedibility. Likewise, grapevine pruning residues are commonly treated as agricultural waste, but biochar (BC) obtained from this material has favorable characteristics as an adsorbent. This study investigated the potential of BC in removal of targeted polyphenolic compounds from OP extracts. The OP extracts were obtained adhering to green chemistry principles using deionized water amplified by three methods: maceration (MAC), ultrasound-assisted extraction (UAE), and microwave-assisted extraction (MAE). The extraction efficiency on the polyphenolic profile and antioxidant capacity was investigated with different extraction temperatures and solid-to-liquid (s/l) ratios. For further analysis, UAE at 90 °C with an s/l ratio of 1:100 was used due to higher polyphenolic compound yield. The BC adsorption capacity of individual polyphenols was fitted with the Langmuir and Freundlich isotherm models. Quercetin-3,4′-diglucoside obtained the highest R2 coefficient in both models, and the highest qmax value. The optimum conditions in the dosage experiment suggested an amount of 0.5 g of BC using 3 g/L extracts. The studied BC showed a high affinity for targeted phytochemicals from OP extracts, indicating its potential to be applied for the green adsorption of valuable polyphenolic compounds.

Funder

Croatian Science Foundation

Publisher

MDPI AG

Subject

Cell Biology,Clinical Biochemistry,Molecular Biology,Biochemistry,Physiology

Reference86 articles.

1. Prohens, J., and Nuez, F. (2008). Vegetables II. Handbook of Plant Breeding, Springer.

2. Onion;Kole;Genome Mapping and Molecular Breeding in Plants,2007

3. Onion (Allium cepa L.);Elhadi;Fruit and Vegetable Phytochemicals: Chemistry and Human Health,2017

4. FAO (2021). World Food and Agriculture—Statistical Yearbook 2021, FAO.

5. Eurostat (2022). Key Figures on the European Food Chain—2022 Edition, Imprimerie Bietlot.

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