Mazitova Aliya K, Aminova Guliya K, Vikhareva Irina N
Applied and Natural Sciences Department, Ufa State Petroleum Technological University, Mendeleeva St. 195, 450080 Ufa, Russia.
Polymers (Basel). 2021 May 27;13(11):1761. doi: 10.3390/polym13111761.
The growing anthropogenic load on the lithosphere is currently characterized by the alienation of huge areas for solid domestic waste. One of the most common pollutants is traditional plastics with a degradation period of over 100 years. In connection with the increasing environmental requirements, polymer materials, along with a high set of technological and operational parameters, must be environmentally friendly and biodegradable. The development of polymer composite materials that undergo accelerated physicochemical and biological changes in the natural environment due to the introduction of biodegradable additives is one of the potential methods for processing synthetic materials and ensures the release of significant areas of fertile soils and lands from the steadily increasing amount of polymer waste. The use of adipic acid esters as PVC plasticizers contributes to the production of biodegradable composites. The article describes a method for obtaining new esters of adipic acid, presents the results of studying their properties for practical use in PVC composites, and assesses the economic efficiency of preventing damage to the environment when using them.
目前,人为因素对岩石圈造成的负荷不断增加,其特点是大量土地被用于堆放固体生活垃圾。最常见的污染物之一是传统塑料,其降解期超过100年。随着环境要求的提高,聚合物材料除了要具备一系列高水准的技术和操作参数外,还必须环保且可生物降解。由于引入了可生物降解添加剂,聚合物复合材料在自然环境中会经历加速的物理化学和生物变化,这是处理合成材料的潜在方法之一,可确保大量肥沃土壤和土地从不断增加的聚合物废物中解放出来。使用己二酸酯作为聚氯乙烯增塑剂有助于生产可生物降解的复合材料。本文描述了一种制备新型己二酸酯的方法,展示了研究其在聚氯乙烯复合材料中实际应用性能的结果,并评估了使用它们时预防环境污染的经济效益。