Swetha T Angelin, Ananthi V, Bora Abhispa, Sengottuvelan Nallathambi, Ponnuchamy Kumar, Muthusamy Govarthanan, Arun A
Bioenergy and Bioremediation Laboratory, Department of Microbiology, Alagappa University, Karaikudi, Tamil Nadu 630003, India.
Bioenergy and Bioremediation Laboratory, Department of Microbiology, Alagappa University, Karaikudi, Tamil Nadu 630003, India; Department of Molecular Biology, Madurai Kamaraj University, Madurai, Tamil Nadu, India.
Int J Biol Macromol. 2023 Apr 15;234:123703. doi: 10.1016/j.ijbiomac.2023.123703. Epub 2023 Feb 16.
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.
由于其低碳足迹和环境友好性,聚乳酸(PLA)是世界上生产最广泛的生物塑料之一。用聚乳酸部分替代石化塑料的制造尝试逐年增加。尽管这种聚合物通常用于高端应用,但只有在能够以最低成本生产的情况下,其使用量才会增加。因此,富含碳水化合物的食物废料可作为生产聚乳酸的主要原料。乳酸(LA)通常通过生物发酵生产,但具有低成本和高产品纯度的合适下游分离工艺也至关重要。随着需求的增加,全球聚乳酸市场一直在稳步扩大,聚乳酸现已成为包括包装、农业和运输在内的一系列行业中使用最广泛的生物聚合物。因此,采用降低生产成本的高效制造方法和至关重要的分离方法的必要性至关重要。本研究的主要目标是研究乳酸合成的各种方法,以及它们的特点和从食物废料生产乳酸所涉及的代谢过程。此外,还讨论了聚乳酸的合成、其生物降解可能存在的困难及其在不同行业中的应用。