IMDEA Water Institute, Science and Technology Campus of the University of Alcalá, Alcalá de Henares, Madrid, Spain.
Rev Environ Contam Toxicol. 2020;250:1-43. doi: 10.1007/398_2019_40.
Plastics and microplastics are nowadays ubiquitously found in the environment. This has raised concerns on possible adverse effects for human health and the environment. To date, extensive information exists on their occurrence in the marine environment. However, information on their different sources and their transport within and across different freshwater and terrestrial ecosystems is still limited. Therefore, we assessed the current knowledge regarding the industrial sources of plastics and microplastics, their environmental pathways and load rates and their occurrence and fate in different environmental compartments, thereby highlighting important data gaps which are needed to better describe their global environmental cycle and exposure. This study shows that the quantitative assessment of the contribution of the different major sources of plastics, microplastics and nanoplastics to aquatic and terrestrial ecosystems is challenged by some data limitations. While the presence of microplastics in wastewater and freshwater is relatively well studied, data on sediments and especially soil ecosystems are too limited. Moreover, the overall occurrence of large-sized plastics, the patterns of microplastic and nanoplastic formation from them, the presence and deposition of plastic particles from the atmosphere and the fluxes of all kinds of plastics from soils towards aquatic environments (e.g. by surface water runoff, soil infiltration) are still poorly understood. Finally, this study discusses several research areas that need urgent development in order to better understand the potential ecological risks of plastic pollution and provides some recommendations to better manage and control plastic and microplastic inputs into the environment.
如今,塑料和微塑料在环境中无处不在。这引起了人们对其可能对人类健康和环境造成的负面影响的关注。迄今为止,人们已经掌握了大量关于它们在海洋环境中存在的信息。然而,关于它们在不同淡水和陆地生态系统中的不同来源及其传输的信息仍然有限。因此,我们评估了关于塑料和微塑料的工业来源、其环境途径和负载率以及它们在不同环境介质中的存在和命运的现有知识,从而突出了需要更好地描述其全球环境循环和暴露的重要数据空白。本研究表明,由于一些数据限制,定量评估塑料、微塑料和纳米塑料的不同主要来源对水生和陆地生态系统的贡献具有一定的挑战性。虽然废水中和淡水中微塑料的存在已得到相对较好的研究,但有关沉积物特别是土壤生态系统的数据仍然非常有限。此外,大尺寸塑料的总体存在情况、它们形成微塑料和纳米塑料的模式、来自大气的塑料颗粒的存在和沉积以及各种塑料从土壤向水生环境的通量(例如通过地表水径流、土壤渗透)仍了解甚少。最后,本研究讨论了一些需要紧急发展的研究领域,以便更好地了解塑料污染的潜在生态风险,并提供了一些建议,以更好地管理和控制塑料和微塑料输入到环境中。