Development of sodium alginate–aloe vera hydrogel films enriched with organic fibers: study of the physical, mechanical, and barrier properties for food-packaging applications
Literature Information
Alina Hadi, Anjum Nawab, Feroz Alam, Sara Naqvi
Hydrogels from a botanical origin can be beneficially utilized in the development of edible and biodegradable food-packaging films. Polymer hydrogels are biodegradable and non-toxic in nature and have the potential to replace conventional plastics. In the present study, composite films based on alginate and aloe vera were reinforced with two hydrogel-forming polymers, namely gum tragacanth (GT) and hydroxypropyl methylcellulose (HPMC). A comparative study to assess their reinforcing effect in improving the physical properties as well as mechanical properties of the films was carried out. It was observed that both GT and HPMC significantly improved the tensile strength (TS) of the composite films whereby the TS increased to a maximum value of 68.25 MPa at a 12% concentration of GT and 52.19 MPa at a 4% concentration of HPMC. The flexibility of the films was also improved by incorporating the two hydrogel-forming polymers that caused an increase in the thickness, moisture content, swelling index, and water vapor permeability (WVP) of the composite films. However, the oxygen permeability (OP) was reduced by the addition of GT and the value decreased from 1.46 × 10−15 to 0.45 × 10−15 g m−1 s−1 Pa−1 at the maximum concentration of GT. The solubility of the films also decreased as a result of adding GT and was reduced to 23.12% at a 14% concentration of GT.
Recommended Journals
Related Literature
Supramolecular control of complexation-induced fluorescence change of water-soluble, β-cyclodextrin-modified CdS quantum dots
Kumaranand Palaniappan, Stephen A. Hackney, Jian Liu
DOI: 10.1039/B409075F
Controlled assembly of luminescent racks based on heteroleptic dinuclear lanthanide complexes
M. Margarita Castaño-Briones, Andrew P. Bassett, Linette L. Meason, Peter R. Ashton, Zoe Pikramenou
DOI: 10.1039/B412999G
Modified micro-space using self-organized nanoparticles for reduction of methylene blue
Xianying Li, Hongzhi Wang, Kouzou Inoue, Masato Uehara, Hiroyuki Nakamura, Masaya Miyazaki, Eiichi Abe, Hideaki Maeda
DOI: 10.1039/B300765K
Fabrication of nanowires with polymer shells using treated carbon nanotube bundles as macro-initiators
Yuyang Liu, Jing Tang, J. H. Xin
DOI: 10.1039/B412282H
Chemistry of materials under extreme high pressure-high-temperature conditions
DOI: 10.1039/B300963G
Bioinspired synthesis of new silica structures
Siddharth V. Patwardhan, Niloy Mukherjee, Miriam Steinitz-Kannan, Stephen J. Clarson
DOI: 10.1039/B302056H
Don't forget Langmuir–Blodgett films
Donald H. McCullough, III, Steven L. Regen
DOI: 10.1039/B410027C
Development of porous materials for heterogeneous catalysis: kinetic resolution of epoxides
Leilani L. Welbes, Robert C. Scarrow, A. S. Borovik
DOI: 10.1039/B408553A
NMR and ion selective electrode studies of hydraphile channels correlate with biological activity in E. coli and B. subtilis
W. Matthew Leevy, Michelle E. Weber, Paul H. Schlesinger
DOI: 10.1039/B413588A
You might also like
What industries use (1R,3S)-1,3-Cyclopentanediol (CAS: 16326-97-9)?
(1R,3S)-1,3-Cyclopentanediol finds applications in various industries. In the ph...
What precautions should be taken when handling N'-[4-(Dimethylamino)phenyl]-N,N-dimethyl-1,4-benzenediamine (CAS: 637-31-0)?
When handling N'-[4-(Dimethylamino)phenyl]-N,N-dimethyl-1,4-benzenediamine, it i...
Are there alternatives to 5-(2,4-Difluorophenyl)-2-methoxypyrimidine (CAS: 1352318-16-1) in synthesis?
There are several alternatives to 5-(2,4-Difluorophenyl)-2-methoxypyrimidine in ...
What regulatory guidelines apply to 1-(3-Methoxyphenoxy)propan-2-ol (CAS: 382141-68-6)?
1-(3-Methoxyphenoxy)propan-2-ol (CAS: 382141-68-6) must comply with the Globally...
Is Tetrodotoxin Citrate (CAS: 18660-81-6) safe?
Tetrodotoxin Citrate is extremely dangerous and should be handled with extreme c...
What are the main uses of 2-Methyl-2-propanyl [(1R,3S)-3-hydroxycyclopentyl]carbamate (CAS: 225641-84-9)?
2-Methyl-2-propanyl [(1R,3S)-3-hydroxycyclopentyl]carbamate (CAS: 225641-84-9) i...
How should waste containing 4-(2-Hydroxyhexafluoroisopropyl)Benzoic Acid (CAS: 16261-80-6) be handled?
Waste containing 4-(2-Hydroxyhexafluoroisopropyl)Benzoic Acid (CAS: 16261-80-6) ...
How is 2-Methyl-2-proanyl {(2S)-1-[(benzyloxy)amino]-3-hydroxy-3-methyl-1-oxo-2-butanyl}carbamate (CAS: 102507-19-7) typically synthesized?
2-Methyl-2-proanyl {(2S)-1-[(benzyloxy)amino]-3-hydroxy-3-methyl-1-oxo-2-butanyl...
What is Benzeneethanamine, α-ethyl-, hydrochloride (1:1) (CAS: 20735-15-3)?
Benzeneethanamine, α-ethyl-, hydrochloride (1:1) is an organic compound with the...
Are there alternatives to 3-{(E)-[4-(Dimethylamino)phenyl]diazenyl}benzoic acid (CAS: 20691-84-3) in synthesis?
In the synthesis of compounds similar to 3-{(E)-[4-(Dimethylamino)phenyl]diazeny...















