Deakin Marine Research and Innovation Centre, School of Life and Environmental Sciences, Deakin University, Melbourne, VIC 3125, Australia.
Deakin Marine Research and Innovation Centre, School of Life and Environmental Sciences, Deakin University, Melbourne, VIC 3125, Australia; STEM, University of South Australia, Mawson Lakes campus, Mawson Lakes, SA 5095, Australia.
Sci Total Environ. 2024 Mar 1;914:169868. doi: 10.1016/j.scitotenv.2024.169868. Epub 2024 Jan 6.
The Blue Carbon Ecosystems (BCEs), comprising mangroves, saltmarshes, and seagrasses, located at the land-ocean interface provide crucial ecosystem services. These ecosystems serve as a natural barrier against the transportation of plastic waste from land to the ocean, effectively intercepting and mitigating plastic pollution in the ocean. To gain insights into the current state of research, and uncover key research gaps related to plastic pollution in BCEs, this study conveyed a comprehensive overview using bibliometric, altmetric, and literature synthesis approaches. The bibliometric analysis revealed a significant increase in publications addressing plastic pollution in BCEs, particularly since 2018. Geographically, Chinese institutions have made substantial contributions to this research field compared to countries and regions with extensive BCEs and established blue carbon science programs. Furthermore, many studies have focused on mangrove ecosystems, while limited attention was given to exploring plastic pollution in saltmarsh, seagrass, and multiple ecosystems simultaneously. Through a systematic analysis, this study identified four major research themes in BCE-plastics research: a) plastic trapping by vegetated coastal ecosystems, b) microbial plastic degradation, c) ingestion of plastic by benthic organisms, and d) effects of plastic on blue carbon biogeochemistry. Upon synthesising the current knowledge in each theme, we employed a perspective lens to outline future research frameworks, specifically emphasising habitat characteristics and blue carbon biogeochemistry. Emphasising the importance of synergistic research between plastic pollution and blue carbon science, we underscore the opportunities to progress our understanding of plastic reservoirs across BCEs and their subsequent effects on blue carbon sequestration and mineralisation. Together, the outcomes of this review have overarching implications for managing plastic pollution and optimising climate mitigation outcomes through the blue carbon strategies.
蓝碳生态系统(BCEs)包括位于陆海交界处的红树林、盐沼和海草,它们提供了至关重要的生态系统服务。这些生态系统是阻止陆地塑料垃圾向海洋运输的天然屏障,有效地拦截和减轻了海洋中的塑料污染。为了深入了解当前的研究状况,并揭示与 BCEs 中塑料污染相关的关键研究空白,本研究采用文献计量学、替代计量学和文献综合方法进行了全面综述。文献计量分析显示,关于 BCEs 中塑料污染的研究出版物数量显著增加,特别是自 2018 年以来。在地理位置上,与拥有广泛 BCEs 和已建立蓝碳科学计划的国家和地区相比,中国机构对该研究领域做出了重大贡献。此外,许多研究集中在红树林生态系统,而对盐沼、海草以及多种生态系统中塑料污染的探索关注有限。通过系统分析,本研究确定了 BCE-塑料研究中的四个主要研究主题:a)植被沿海生态系统对塑料的捕获,b)微生物对塑料的降解,c)底栖生物对塑料的摄入,以及 d)塑料对蓝碳生物地球化学的影响。在对每个主题的现有知识进行综合后,我们采用了一个视角镜头来勾勒出未来的研究框架,特别强调栖息地特征和蓝碳生物地球化学。强调塑料污染与蓝碳科学协同研究的重要性,我们强调了机会,可以增进我们对 BCE 中塑料储库及其对蓝碳封存和矿化的后续影响的理解。总的来说,本综述的结果对通过蓝碳战略管理塑料污染和优化气候缓解结果具有全面的意义。