Institute for Environmental Protection and Research (ISPRA), Via Vitaliano Brancati 48, 00144 Rome, Italy; Department of Marine Biotechnology, Stazione Zoologica Anton Dohrn, Villa Comunale, 80121 Napoli, Italy.
Department of Marine Biotechnology, Stazione Zoologica Anton Dohrn, Villa Comunale, 80121 Napoli, Italy.
J Hazard Mater. 2021 Aug 15;416:125763. doi: 10.1016/j.jhazmat.2021.125763. Epub 2021 Mar 26.
Plastic is a ubiquitous material in our life, and its durability represents a great problem for the environment. Several studies reported the occurrence of plastic litter in different environmental compartments and, consequently, numerous efforts are currently focused on how improving its recycling process and produce environmentally friendly solutions. In recent years, biodegradable polymers/plastics (BPs) have been proposed to reduce environmental impacts in specific applications (e.g., when conventional plastics are difficult or expensive to remove from the environment). Their wide use in commercial products, especially in the packaging sector, is causing new pollution alarm. Research studies are ongoing to improve BPs manufacturing and characteristics, but few data are reported about their behavior and toxicity into the marine environment. This paper reviewed the current state of the art highlighting that, even though the degradation of BPs in simulated or real marine environments is quite investigated, only eleven papers reported their effects on marine organisms (e.g., behavioral and oxidative stress and potential cascading effects on marine ecosystems). Presently, the main benefits of BPs are linked to waste management (including collection and recycling of organic waste). Due to the existing knowledge gaps, BPs cannot be deemed yet as a solution to marine plastic pollution.
塑料在我们的生活中无处不在,其耐用性对环境造成了很大的问题。多项研究报告了塑料垃圾在不同环境中的存在,因此,目前正在努力改进其回收过程并开发环保解决方案。近年来,可生物降解聚合物/塑料(BPs)已被提议用于减少特定应用中的环境影响(例如,当常规塑料难以或难以从环境中去除时)。它们在商业产品中的广泛使用,特别是在包装领域,引起了新的污染警报。目前正在进行研究以改善 BPs 的制造和特性,但有关其在海洋环境中的行为和毒性的数据很少。本文综述了当前的研究现状,突出表明,尽管 BPs 在模拟或真实海洋环境中的降解得到了相当多的研究,但只有 11 篇论文报道了它们对海洋生物的影响(例如,行为和氧化应激以及对海洋生态系统的潜在级联效应)。目前,BPs 的主要好处与废物管理(包括有机废物的收集和回收)有关。由于存在知识差距,因此不能将 BPs 视为解决海洋塑料污染的方法。