Patel Aditya, Murali Rushabh, Choudhary Heena, Purnima D, Pal Ramendra Kishor
Department of Chemical Engineering, Birla Institute of Technology and Science, Pilani Pilani Campus, Vidya Vihar Pilani Rajasthan 333031 India.
Department of Pharmacy, Birla Institute of Technology and Science, Pilani Hyderabad Campus, Jawahar Nagar, Kapra Mandal Medchal District 500 078 Telangana India.
RSC Adv. 2025 May 20;15(21):16392-16432. doi: 10.1039/d4ra08544b. eCollection 2025 May 15.
The generation of plastic waste is around 400 million tons per year. The non-degradable nature of fossil-derived plastics creates pollution, one of the most concerning environmental challenges faced by society, agencies, and governments today. A promising alternative to plastics is bioplastics. Bioplastics are biopolymer-based plastics derived from biomass or manufactured from the processing of monomers derived from biomass. Proteins are naturally occurring biomolecules that are one of the most suitable natural polymers for making bioplastics. In the form of films, proteins possess various desirable properties such as mechanical strength, gas impermeability, and durability. They are also renewable and easily accessible. Making bioplastics from wasted or unused protein sources is the ideal scenario. This review discusses the opportunities that come along with vegetative and microbial proteins to make bioplastics. It covers various sources for protein extraction, such as gluten, whey, zein, and soy from terrestrial sources and water hyacinth and duckweed from aquatic sources. It also discusses the methods of processing vegetative proteins to make bio-plastic products, the current challenges in employing bioplastics for typical applications, and the prospects to steer us towards a clean and sustainable future.
每年产生的塑料垃圾约为4亿吨。化石衍生塑料的不可降解特性造成了污染,这是当今社会、机构和政府面临的最令人担忧的环境挑战之一。塑料的一种有前景的替代品是生物塑料。生物塑料是以生物聚合物为基础的塑料,来源于生物质或由生物质衍生的单体加工而成。蛋白质是天然存在的生物分子,是最适合制造生物塑料的天然聚合物之一。以薄膜形式存在时,蛋白质具有各种理想特性,如机械强度、气体不渗透性和耐久性。它们也是可再生且易于获取的。利用废弃或未使用的蛋白质来源制造生物塑料是理想的情况。本综述讨论了利用植物性和微生物蛋白质制造生物塑料所带来的机遇。它涵盖了蛋白质提取的各种来源,如陆地来源的面筋、乳清、玉米醇溶蛋白和大豆,以及水生来源的凤眼蓝和浮萍。它还讨论了加工植物性蛋白质以制造生物塑料制品的方法、在典型应用中使用生物塑料目前面临的挑战,以及引领我们走向清洁和可持续未来的前景。