Koczoń Piotr, Bartyzel Bartłomiej, Iuliano Anna, Klensporf-Pawlik Dorota, Kowalska Dorota, Majewska Ewa, Tarnowska Katarzyna, Zieniuk Bartłomiej, Gruczyńska-Sękowska Eliza
Department of Chemistry, Institute of Food Sciences, Warsaw University of Life Sciences, 02-776 Warsaw, Poland.
Department of Morphological Sciences, Institute of Veterinary Medicine, Warsaw University of Life Sciences, 02-776 Warsaw, Poland.
Polymers (Basel). 2022 Dec 19;14(24):5551. doi: 10.3390/polym14245551.
The growing perspective of running out of crude oil followed by increasing prices for all crude oil-based materials, e.g., crude oil-based polymers, which have a huge number of practical applications but are usually neither biodegradable nor environmentally friendly, has resulted in searching for their substitutes-namely, bio-based polymers. Currently, both these types of polymers are used in practice worldwide. Owing to the advantages and disadvantages occurring among plastics with different origin, in this current review data on selected popular crude oil-based and bio-based polymers has been collected in order to compare their practical applications resulting from their composition, chemical structure, and related physical and chemical properties. The main goal is to compare polymers in pairs, which have the same or similar practical applications, regardless of different origin and composition. It has been proven that many crude oil-based polymers can be effectively replaced by bio-based polymers without significant loss of properties that ensure practical applications. Additionally, biopolymers have higher potential than crude oil-based polymers in many modern applications. It is concluded that the future of polymers will belong to bio-based rather than crude oil-based polymers.
随着原油即将枯竭的观点日益凸显,以及所有原油基材料(如原油基聚合物)价格不断上涨,原油基聚合物虽有大量实际应用,但通常既不可生物降解也不环保,这促使人们寻找其替代品——即生物基聚合物。目前,这两类聚合物在全球范围内都有实际应用。由于不同来源的塑料存在优缺点,在本综述中收集了有关选定的常见原油基和生物基聚合物的数据,以便比较它们因组成、化学结构以及相关物理和化学性质而产生的实际应用。主要目标是成对比较具有相同或相似实际应用的聚合物,而不考虑其不同的来源和组成。事实证明,许多原油基聚合物可以被生物基聚合物有效替代,而不会显著损失确保实际应用所需的性能。此外,在许多现代应用中,生物聚合物比原油基聚合物具有更高的潜力。得出的结论是,聚合物的未来将属于生物基聚合物而非原油基聚合物。