Naser Ahmed Z, Deiab I, Darras Basil M
Advanced Manufacturing Laboratory, University of Guelph Guelph ON Canada
Department of Mechanical Engineering, American University of Sharjah Sharjah UAE
RSC Adv. 2021 May 10;11(28):17151-17196. doi: 10.1039/d1ra02390j. eCollection 2021 May 6.
In spite of the fact that petroleum-based plastics are convenient in terms of fulfilling the performance requirements of many applications, they contribute significantly to a number of ecological and environmental problems. Recently, the public awareness of the negative effects of petroleum-based plastics on the environment has increased. The present utilization of natural resources cannot be sustained forever. Furthermore, oil is often subjected to price fluctuations and will eventually be depleted. The increase in the level of carbon dioxide due to the combustion of fossil fuel is causing global warming. Concerns about preservation of natural resources and climate change are considered worldwide motivations for academic and industrial researchers to reduce the consumption and dependence on fossil fuel. Therefore, bio-based polymers are moving towards becoming the favorable option to be utilized in polymer manufacturing, food packaging, and medical applications. This paper represents an overview of the feasibility of both Poly Lactic Acid (PLA) and polyhydroxyalkanoates (PHAs) as alternative materials that can replace petroleum-based polymers in a wide range of industrial applications. Physical, thermal, rheological, and mechanical properties of both polymers as well as their permeability and migration properties have been reviewed. Moreover, PLA's recyclability, sustainability, and environmental assessment have been also discussed. Finally, applications in which both polymers can replace petroleum-based plastics have been explored and provided.
尽管石油基塑料在满足许多应用的性能要求方面很方便,但它们对许多生态和环境问题有重大影响。最近,公众对石油基塑料对环境负面影响的认识有所提高。目前对自然资源的利用不可能永远持续下去。此外,石油经常受到价格波动的影响,最终将被耗尽。由于化石燃料燃烧导致的二氧化碳水平上升正在造成全球变暖。对自然资源保护和气候变化的担忧被认为是全球学术界和工业界研究人员减少对化石燃料消费和依赖的动机。因此,生物基聚合物正朝着成为聚合物制造、食品包装和医疗应用中使用的有利选择发展。本文概述了聚乳酸(PLA)和聚羟基脂肪酸酯(PHA)作为替代材料在广泛工业应用中替代石油基聚合物的可行性。综述了这两种聚合物的物理、热、流变和机械性能以及它们的渗透性和迁移性能。此外,还讨论了PLA的可回收性、可持续性和环境评估。最后,探讨并提供了这两种聚合物可以替代石油基塑料的应用。