Biotechnology Division, National Institute for Interdisciplinary Science and Technology (NIIST), CSIR, Thiruvananthapuram, India.
Bioresour Technol. 2010 Nov;101(22):8493-501. doi: 10.1016/j.biortech.2010.05.092. Epub 2010 Jul 13.
The concept of biodegradable plastics is of considerable interest with respect to solid waste accumulation. Greater efforts have been made in developing degradable biological materials without any environmental pollution to replace oil-based traditional plastics. Among numerous kinds of degradable polymers, polylactic acid sometimes called polylactide, an aliphatic polyester and biocompatible thermoplastic, is currently a most promising and popular material with the brightest development prospect and was considered as the 'green' eco friendly material. Biodegradable plastics like polyglycolic acid, polylactic acid, polycaprolactone, polyhydroxybutyrate, etc. are commercially available for controlled drug releases, implantable composites, bone fixation parts, packaging and paper coatings, sustained release systems for pesticides and fertilizers and compost bags etc. This review will provide information on current PLA market, brief account on recent developments in the synthesis of lactic acid (monomer of PLA) through biological route, PLA synthesis, unique material properties of PLA and modification of those by making copolymers and composites, PLA degradation and its wide spectrum applications.
可生物降解塑料的概念在固体废物积累方面具有相当大的意义。人们已经做出了更多努力来开发可生物降解的生物材料,以替代对环境污染的石油基传统塑料。在众多可降解聚合物中,聚乳酸有时也称为聚丙交酯,是一种脂肪族聚酯和生物相容的热塑性塑料,目前是最有前途和最受欢迎的材料,具有最光明的发展前景,被认为是“绿色”环保材料。可生物降解塑料,如聚乙醇酸、聚乳酸、聚己内酯、聚羟基丁酸酯等,可用于控制药物释放、可植入复合材料、骨固定部件、包装和纸张涂料、农药和肥料的控释系统以及堆肥袋等。本文综述了 PLA 的市场现状,简要介绍了通过生物途径合成乳酸(PLA 的单体)的最新进展、PLA 的合成、PLA 的独特材料性能及其通过共聚和复合材料的改性、PLA 的降解及其广泛的应用。