Results 181 to 190 of about 3,810,213 (246)

Ethnomedicinal Uses of Thai Legumes (Fabaceae) and Their Potential in Industrial Applications

open access: yesFood Science &Nutrition, Volume 14, Issue 10, October 2026.
Thai legumes (Fabaceae) are rich sources of bioactive phytochemicals, including saponins, flavonoids, biochanin A, and daidzein. These compounds contribute to diverse ethnomedicinal properties, including antioxidant, antiviral, anti‐inflammatory, anticancer, and cardioprotective activities.
Muhammad Tayyab Arshad   +7 more
wiley   +1 more source

Torrefaction of Sericulture Agro-Industrial Waste for Sustainable Waste-to-Resource Solutions. [PDF]

open access: yesACS Omega
Silveira EA   +5 more
europepmc   +1 more source

Nutritional Composition, Chemical Safety, and Microbiological Quality of Farmed Palm Weevil Larvae (Rhynchophorus phoenicis) From a Commercial Rearing Unit in Ghana

open access: yesFood Science &Nutrition, Volume 14, Issue 10, October 2026.
Frying and roasting significantly reduced moisture content and increased protein content of Rhynchophorus phoenicis larvae. Fat content was highest in fried samples, resulting in elevated energy values. Calcium and iron contents increased significantly following frying and roasting.
Benjamin Kumah Mintah   +6 more
wiley   +1 more source

Punicalagin‐enriched edible coatings from revalorized pomegranate peels for quality enhancement of fresh‐cut celery

open access: yesJournal of the Science of Food and Agriculture, Volume 106, Issue 13, Page 8226-8236, October 2026.
Abstract BACKGROUND Pomegranate peel is a rich source of phenolics, particularly punicalagin, but its valorization for fresh produce preservation requires stabilization. This study aimed to develop and evaluate freeze‐dried encapsulates of pomegranate peel extracts as ingredients in edible coatings for fresh‐cut celery. Pomegranate peels were extracted
Lorena Martínez‐Zamora   +3 more
wiley   +1 more source

Advances in Resistant Starch Research from Agro-Industrial Waste: A Bibliometric Analysis of Scientific Trends. [PDF]

open access: yesFoods
Saavedra-Cordova MA   +4 more
europepmc   +1 more source

Multifactorial Role of Phytogenic CeO2 NPs in Crop Improvement and Stress Alleviation: A Mechanistic Overview

open access: yesPlant-Environment Interactions, Volume 7, Issue 5, October 2026.
The graphical abstract illustrates how CeO2 nanoparticles help plants withstand biotic and abiotic stresses. Their application reduces excessive ROS through enhanced antioxidant defenses, whereas modulating stress signaling, phytohormones, and gene expression.
Faiza Arooj   +6 more
wiley   +1 more source

Agro-Industrial Waste from <i>Pistacia vera</i>: Chemical Profile and Bioactive Properties. [PDF]

open access: yesPlants (Basel)
Piñeiro M   +8 more
europepmc   +1 more source

Almond Shell‐Derived Cellulosic Microfibres: Extraction, Characterisation and Applications in Sustainable Paper‐Based Packaging

open access: yesPackaging Technology and Science, Volume 39, Issue 10, Page 1231-1251, October 2026.
Cellulosic microfibres were extracted from almond shells using organosolv, soda and kraft processes, and comprehensive physicochemical, surface, thermal and morphological characterisation demonstrated their strong potential as sustainable fillers for paper‐based packaging application. ABSTRACT This study develops pathways for the valorisation of almond
Lokesh Kumar   +4 more
wiley   +1 more source

Transforming Agro-Industrial Waste into Bioplastic Coating Films. [PDF]

open access: yesACS Omega
Castillo-Patiño DL   +5 more
europepmc   +1 more source

From Growing Conditions to Composite Performance: Acid‐Engineered Algerian Sisal Fibers for Sustainable Bio‐Epoxy Composites

open access: yesPolymer Composites, Volume 47, Issue 18, Page 16585-16605, 20 September 2026.
High‐Performance Sustainable Ski Core Bio‐Composite Derived from Bio‐Epoxy and Sisal Sibers Systems. ABSTRACT In pursuit of sustainable and high‐performance materials, this work investigates the potential of Algerian sisal fibers as renewable reinforcements in bio‐epoxy composites.
M. A. Kacem   +4 more
wiley   +1 more source

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