Biodegradable Starch-Based Bioplastic from Chickpea: A Green Alternative to Conventional Plastics

Currently, plastic pollution is a growing global issue due to its non-biodegradability, increasing demand for eco-friendly alternatives such as bioplastics. This study explores the development of bioplastic films from chickpea starch using a three-step molding process. In the first step, starch is extracted from chickpeas. The second step involves hydrolysis and plasticization of starch with glycerol in different ratios. In the final step, the modified starch is blended with polyvinyl alcohol (PVA) in varying ratios to produce the bioplastic films. The optimal formulation, CPS 1:2:2, exhibited strong performance (4.1 MPa TS, 281% EA, and 70.1° WCA). The developed films exhibited improved physicochemical, mechanical, barrier, and chemical resistance properties, including enhanced acid and alkaline stability. FTIR and SEM analyses confirmed the formation of a crosslinked polymer network and its biodegradation, indicating the environmental sustainability of the developed bioplastic.

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Publication Details

Journal
Processes
Published
2026-09-11
DOI
https://doi.org/10.3390/pr14182892
Primary Topic
Nanocomposite Films for Food Packaging
Type
article
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0.00
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article

Biodegradable Starch-Based Bioplastic from Chickpea: A Green Alternative to Conventional Plastics

Khwaja Hossain, Chad A. Ulven, Md Abdur Rahim Badsha, Michael Kjelland et al.
Processes
Nanocomposite Films for Food Packaging
article

Biodegradable Starch-Based Bioplastic from Chickpea: A Green Alternative to Conventional Plastics

Khwaja Hossain, Chad A. Ulven, Md Abdur Rahim Badsha, Michael Kjelland, Israt A. Zaman
article en

Abstract

Currently, plastic pollution is a growing global issue due to its non-biodegradability, increasing demand for eco-friendly alternatives such as bioplastics. This study explores the development of bioplastic films from chickpea starch using a three-step molding process. In the first step, starch is extracted from chickpeas. The second step involves hydrolysis and plasticization of starch with glycerol in different ratios. In the final step, the modified starch is blended with polyvinyl alcohol (PVA) in varying ratios to produce the bioplastic films. The optimal formulation, CPS 1:2:2, exhibited strong performance (4.1 MPa TS, 281% EA, and 70.1° WCA). The developed films exhibited improved physicochemical, mechanical, barrier, and chemical resistance properties, including enhanced acid and alkaline stability. FTIR and SEM analyses confirmed the formation of a crosslinked polymer network and its biodegradation, indicating the environmental sustainability of the developed bioplastic.

ProcessesVol. 14(18)
Mayville State University (US), North Dakota State University (US)
Responsible consumption and production, Life in Land
Openalex Percentile: Top 21%
Nanocomposite Films for Food Packaging
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Biodegradable Starch-Based Bioplastic from Chickpea: A Green Alternative to Conventional Plastics — Khwaja Hossain, Chad A. Ulven, et al. · Processes (2026) | TGRS Research Map | TGRS