生物塑料
聚乳酸
乳酸
原材料
石油化工
生物降解
生产(经济)
生物高聚物
制浆造纸工业
废物管理
碳足迹
环境科学
生化工程
业务
化学
聚合物
有机化学
工程类
宏观经济学
生物
细菌
经济
遗传学
生态学
温室气体
作者
T. Angelin Swetha,V. Ananthi,Abhispa Bora,Nallathambi Sengottuvelan,Ponnuchamy Kumar,Muthusamy Govarthanan,A. Arun
标识
DOI:10.1016/j.ijbiomac.2023.123703
摘要
Due to its low carbon footprint and environmental friendliness, polylactic acid (PLA) is one of the most widely produced bioplastics in the world. Manufacturing attempts to partially replace petrochemical plastics with PLA are growing year over year. Although this polymer is typically used in high-end applications, its use will increase only if it can be produced at the lowest cost. As a result, food wastes rich in carbohydrates can be used as the primary raw material for the production of PLA. Lactic acid (LA) is typically produced through biological fermentation, but a suitable downstream separation process with low production costs and high product purity is also essential. The global PLA market has been steadily expanding with the increased demand, and PLA has now become the most widely used biopolymer across a range of industries, including packaging, agriculture, and transportation. Therefore, the necessity for an efficient manufacturing method with reduced production costs and a vital separation method is paramount. The primary goal of this study is to examine the various methods of lactic acid synthesis, together with their characteristics and the metabolic processes involved in producing lactic acid from food waste. In addition, the synthesis of PLA, possible difficulties in its biodegradation, and its application in diverse industries have also been discussed.
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