@article{ajfst20261452,
author={{SOM¨¦, Ana-kpan Dome Vincent BEKUON¨¦ and DIAO, Mamounata and NIKIEMA, Rocksane Octavia Kiswendsida and BAZI¨¦, David and OUARO, D¨¦sir¨¦ and DINDAN¨¦, Zakaria and DAKUYO, Roger and KONKOBO, Fr¨¦deric Anderson and SAMA, Hemayoro and GUENN¨¦, Samson and DIBALA, Cr¨¦pin Ibingou and DICKO, Mamoudou Hama},
title={Quantitative Assessment of Drying Methods for Preserving Bioactive Compounds, Antioxidant Properties, and Color Quality of Citrus Matrices: A Meta-analysis},
journal={American Journal of Food Science and Technology},
volume={14},
number={5},
pages={159--175},
year={2026},
url={https://pubs.sciepub.com/ajfst/14/5/2},
issn={2333-4835},
abstract={<b>  </b>Drying is a key technology for the preservation and processing of citrus fruits; however, its effects on bioactive compounds, antioxidant properties, and quality attributes vary considerably by method. This study aims to quantitatively evaluate the effects of different drying methods on the bioactive compounds, antioxidant activities, and colorimetric parameters of citrus matrices using a multilevel meta-analysis conducted in accordance with PRISMA guidelines. A total of 23 studies comprising 413 effect estimates were included. Effect sizes were calculated using multilevel random-effects models estimated by restricted maximum likelihood (REML) and combined with a robust variance estimate. The results show significant decreases in vitamin C content (34%), total phenolic compounds (29.4%), and total flavonoids (37.8%) after drying compared with fresh or control samples. Freeze-drying generally exhibits the best retention of bioactive compounds, while solar and hot air drying result in the greatest losses. Conversely, some variables, notably ABTS activity and narirutin content, show apparent increases after drying (>100% retention), which can be attributed to improved extractability or concentration effects rather than a true increase in compounds. Colorimetric parameters are relatively less affected by drying processes. High heterogeneity (I2 > 98%) is observed for most variables studied, reflecting the diversity of citrus matrices, drying conditions, and analytical methods used, thereby justifying subgroup analyses. This meta-analysis therefore provides quantitative data to guide the selection of appropriate drying technologies to preserve the functional quality of citrus-derived products.},
doi={10.12691/ajfst-14-5-2}
publisher={Science and Education Publishing}
}
