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Article

Reinforcement of Thermo-Compressed Sodium Alginate Films with Calcium Alginate Powder

by
Prasong Srihanam
1,*,
Wilaiwan Simchuer
2,
Vanseng Chounlamany
3,
Kesiny Phomkeona
3,
Phengxay Deevanhxay
3 and
Yodthong Baimark
1,*
1
Biodegradable Polymers Research Unit, Department of Chemistry and Centre of Excellence for Innovation in Chemistry (PERCH-CIC), Faculty of Science, Mahasarakham University, Maha Sarakham 44150, Thailand
2
Faculty of Science and Technology, Loei Rajabhat University, Mueang District, Loei 4200, Thailand
3
Department of Chemistry, Faculty of Natural Sciences, National University of Laos, Vientiane 7322, Laos
*
Authors to whom correspondence should be addressed.
Mar. Drugs 2026, 24(4), 142; https://doi.org/10.3390/md24040142
Submission received: 18 February 2026 / Revised: 11 April 2026 / Accepted: 13 April 2026 / Published: 17 April 2026
(This article belongs to the Special Issue Marine Polysaccharides-Based Biomaterials)

Abstract

Alginate is a biocompatible and biodegradable polymer derived from seaweed. It has been extensively researched and developed for various applications. However, its poor mechanical properties present a significant drawback that limits its use in multiple fields. Furthermore, the fabrication of reinforced alginate films using conventional melt processing has the potential for scaling up production. This study aimed to enhance the mechanical properties of sodium alginate (SA) films by incorporating calcium alginate (CA) powder. The SA/CA biocomposite films were created using a thermo-compression technique, with glycerol acting as a plasticizer for the SA matrix. Various CA contents—2.5, 5, 10, and 20 wt%—were investigated. Scanning electron microscopy and energy dispersive spectroscopy revealed good interfacial adhesion between the SA film matrix and the CA powder. As the CA content increased, the moisture content of SA/CA biocomposite films decreased. The addition of CA powder significantly improved the tensile properties of the SA films. Based on the tensile test, SA/CA biocomposite films with 20 wt% CA powder exhibited a maximum tensile strength of 11.7 MPa and a Young’s modulus of 234.7 MPa. These results indicate a substantial increase of 208% in maximum tensile strength and 907% in Young’s modulus compared to SA films without CA. These findings indicated that the CA powder serves as an effective reinforcing filler for thermo-compressed SA films, which could lead to the development of high-strength alginate-based products for potential use in various applications, including biomedical, agricultural, and packaging applications.
Keywords: sodium alginate; calcium alginate; biocomposites; thermo-compression; reinforcement sodium alginate; calcium alginate; biocomposites; thermo-compression; reinforcement

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MDPI and ACS Style

Srihanam, P.; Simchuer, W.; Chounlamany, V.; Phomkeona, K.; Deevanhxay, P.; Baimark, Y. Reinforcement of Thermo-Compressed Sodium Alginate Films with Calcium Alginate Powder. Mar. Drugs 2026, 24, 142. https://doi.org/10.3390/md24040142

AMA Style

Srihanam P, Simchuer W, Chounlamany V, Phomkeona K, Deevanhxay P, Baimark Y. Reinforcement of Thermo-Compressed Sodium Alginate Films with Calcium Alginate Powder. Marine Drugs. 2026; 24(4):142. https://doi.org/10.3390/md24040142

Chicago/Turabian Style

Srihanam, Prasong, Wilaiwan Simchuer, Vanseng Chounlamany, Kesiny Phomkeona, Phengxay Deevanhxay, and Yodthong Baimark. 2026. "Reinforcement of Thermo-Compressed Sodium Alginate Films with Calcium Alginate Powder" Marine Drugs 24, no. 4: 142. https://doi.org/10.3390/md24040142

APA Style

Srihanam, P., Simchuer, W., Chounlamany, V., Phomkeona, K., Deevanhxay, P., & Baimark, Y. (2026). Reinforcement of Thermo-Compressed Sodium Alginate Films with Calcium Alginate Powder. Marine Drugs, 24(4), 142. https://doi.org/10.3390/md24040142

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