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Nima Ghadiri Alamdari

Nima Ghadiri Alamdari

Master of Science

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6
Publications
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71
Citations

Publications

Publications (6)
Article
Full-text available
The aim of this research was to investigate the potential of tomato seed mucilage (TSM) as a new source for preparation of biodegradable films. After extraction and chemical analysis of TSM, the glycerol-plasticized and cellulose nanofiber (CNF)–reinforced bionanocomposite TSM films were successfully prepared and the effect of glycerol (5 and 10%)...
Article
A new intelligent pH-sensitive colorimetric label was fabricated by immobilizing Ixiolirion tataricum anthocyanins (ITA) into biocellulose (bacterial nanocellulose; BNC) film and was then studied to determine how it can be used as a label for monitoring freshness/spoilage of shrimp during storage at 4 °C. The formation of new interactions between I...
Article
Full-text available
In recent years, development of biopolymeric nanofibers as an active biodegradable packaging system has attracted specific attention. The objective of this research was to develop zein‐based electrospun nanofibers (NFs) incorporated with geraniol‐loaded nanoliposomes (G‐loaded NLPs). Geraniol was encapsulated into NLPs with an efficiency of 79.23%....
Article
Full-text available
This study aimed to extract sweet almond oil (SAO), prepare and characterize its nanoemulsion, produce polyvinyl alcohol (PVA) orally disintegrating films (ODFs) containing 20% and 40% of SAO nanoemulsion and characterize the in vitro disintegration time, color parameters, mechanical, structural, morphological and thermal properties, water contact...
Article
Full-text available
Multifunctional carbon quantum dots (CQDs) were synthesized hydrothermally from vinasse (CQD-V) and date seeds (CQD-P) as wastes of bioethanol and date fruit processing industries, respectively. The particle size, morphological and structural characteristics, fluorescence properties, antioxidant and antimicrobial activity, and cytotoxicity of CQDs...
Article
Ixiolirion tataricum mucilage (ITM) was characterized and applied in fabrication of ITM/chitosan (CH) blend films activated by Foeniculum vulgare essential oil (FEO) in free and nanoliposomal forms. Uniform smooth surface structure, viscoelastic solid-like behavior and Newtonian nature of ITM were confirmed by morphological and rheological analyses...

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