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羧甲基纤维素与棉籽蛋白的共混物作为可生物降解薄膜

Blends of Carboxymethyl Cellulose and Cottonseed Protein as Biodegradable Films.

作者信息

Cheng Huai N, Biswas Atanu, Kuzniar Gary, Kim Sanghoon, Liu Zengshe, He Zhongqi

机构信息

USDA Agricultural Research Service, Southern Regional Research Center, New Orleans, LA 70124, USA.

USDA Agricultural Research Service, National Center for Agricultural Utilization Research, Peoria, IL 61604, USA.

出版信息

Polymers (Basel). 2024 May 31;16(11):1554. doi: 10.3390/polym16111554.

Abstract

With the increasing awareness of plastic pollution in the environment and the accumulation of microplastics in water, a significant amount of research and development is ongoing to replace the synthetic plastics in packaging and coatings. In this work, we explored the blends of carboxymethyl cellulose (CMC) and washed cottonseed meal (CSM, consisting mostly of cottonseed protein) as agro-based, biodegradable, and sustainable alternatives to plastics. Glycerol was found to be a suitable plasticizer for these blends. The blends of CMC/CSM were produced as single-layer films from 50 to 90 μm in thickness, consisting of different proportions of the components and plasticizer. The evaluated properties included opacity, water vapor permeability, mechanical properties, thermogravimetric analysis, moisture sorption analysis, and water swelling test. Higher percentages of CSM in the blend resulted in higher opacity and lower water vapor permeation rates. The mechanical strength waned with lower levels of CMC. Possible applications for these blends include their use as water-soluble food packaging and coatings and as dissolvable bags and pouches for detergents and agrochemicals.

摘要

随着环境中塑料污染意识的不断提高以及水中微塑料的积累,目前正在进行大量的研究与开发工作,以替代包装和涂料中的合成塑料。在这项工作中,我们探索了羧甲基纤维素(CMC)与水洗棉籽粕(CSM,主要由棉籽蛋白组成)的共混物,作为基于农业、可生物降解且可持续的塑料替代品。发现甘油是这些共混物的合适增塑剂。CMC/CSM共混物制成了厚度为50至90μm的单层薄膜,由不同比例的组分和增塑剂组成。评估的性能包括不透明度、水蒸气透过率、机械性能、热重分析、吸湿分析和水溶胀试验。共混物中较高比例的CSM导致较高的不透明度和较低的水蒸气透过率。较低水平的CMC会使机械强度下降。这些共混物的可能应用包括用作水溶性食品包装和涂料,以及用作洗涤剂和农用化学品的可溶解袋和小袋。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b3a/11174362/a5faebd795d4/polymers-16-01554-g001.jpg

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