College of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China; School of Marine Sciences, Guangxi University, Nanning 530004, China.
School of Resources, Environment and Materials, Guangxi University, Nanning 530004, China.
J Hazard Mater. 2023 Mar 5;445:130636. doi: 10.1016/j.jhazmat.2022.130636. Epub 2022 Dec 20.
Mangroves receive microplastics (MPs) from terrestrial, marine and atmospheric sources, acting as a huge filter for environmental MPs between land and sea. Due to the high primary production and complex hydrodynamic conditions in mangroves, MPs are extensively intercepted in various ways while flowing through mangroves, leading to a long-standing but fiercely increasing MPs accumulation. However, current researches mainly focused on the occurrence, source and fate of MPs pollution in mangroves, ignoring the role of mangrove forests in the interception of MPs. Our study firstly demonstrates that mangrove ecosystems have significantly greater MPs interception capacity than their surrounding environments. Then, the current status of studies related to the interception of MPs in mangrove ecosystems is comprehensively reviewed, with the main focus on the interception process and mechanisms. At last, the most pressing shortcomings of current research are highlighted regarding the intercepted flux, interception mechanisms, retention time and ecological risks of MPs in mangrove ecosystems and the relevant future perspectives are provided. This review is expected to emphasize the critical role of mangrove forests in the interception of MPs and provide the foundational knowledge for evaluating the MPs interception effect of mangrove forests globally.
红树林从陆地、海洋和大气等多种来源中接收微塑料(MPs),在陆地和海洋之间充当着环境 MPs 的巨大过滤器。由于红树林具有高初级生产力和复杂的水动力条件, MPs 在流经红树林时会以各种方式被广泛拦截,导致 MPs 的长期且不断增加的积累。然而,目前的研究主要集中在红树林中 MPs 污染的发生、来源和命运上,而忽略了红树林在 MPs 拦截方面的作用。我们的研究首先表明,红树林生态系统具有比其周围环境更大的 MPs 拦截能力。然后,全面回顾了与红树林生态系统中 MPs 拦截相关的研究现状,主要关注 MPs 的拦截过程和机制。最后,强调了当前研究中关于红树林生态系统中 MPs 截获通量、拦截机制、滞留时间和生态风险的最紧迫的缺点,并提供了相关的未来展望。本综述旨在强调红树林在 MPs 拦截方面的关键作用,并为评估全球红树林的 MPs 拦截效果提供基础知识。