陈雪婷, 张兴洲, 刘诗伟, 陈阳军, 冯志华. 微塑料对沉积物及其上覆水体氮循环的影响研究[J]. 海洋环境科学, 2024, 43(2): 262-272. DOI: 10.12111/j.mes.2023-x-0304
引用本文: 陈雪婷, 张兴洲, 刘诗伟, 陈阳军, 冯志华. 微塑料对沉积物及其上覆水体氮循环的影响研究[J]. 海洋环境科学, 2024, 43(2): 262-272. DOI: 10.12111/j.mes.2023-x-0304
CHEN Xueting, ZHANG Xingzhou, LIU Shiwei, CHEN Yangjun, FENG Zhihua. Study on the effect of microplastics on nitrogen transformation in sediments[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2024, 43(2): 262-272. DOI: 10.12111/j.mes.2023-x-0304
Citation: CHEN Xueting, ZHANG Xingzhou, LIU Shiwei, CHEN Yangjun, FENG Zhihua. Study on the effect of microplastics on nitrogen transformation in sediments[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2024, 43(2): 262-272. DOI: 10.12111/j.mes.2023-x-0304

微塑料对沉积物及其上覆水体氮循环的影响研究

Study on the effect of microplastics on nitrogen transformation in sediments

  • 摘要: 海洋氮循环是海洋元素循环的重要组成部分,由不同材质类型的微生物所驱动,对评估海洋生态系统的结构和功能具有重要的意义。鉴于微塑料对海洋生态环境的胁迫,有必要厘清微塑料的存在对氮转化过程的影响,以提升对当代及未来海洋氮循环的理解。据此,本研究设置不同浓度(0.5%和0.05%)、不同粒径(500目、150目和16目)和不同材质类型(PA、PE、PVC、PP、PS)的微塑料暴露实验,评估微塑料的存在是否对海洋沉积物及周边水体氮转化过程存在影响。结果表明,微塑料的存在会改变氧化还原环境,继而对微生物所驱动的氮循环过程产生影响。另外,研究发现,微塑料的材质类型、浓度和粒径分别会对氮循环过程产生不同的影响,意味着微塑料的不同性质会改变海洋沉积物及周边水体的氮循环过程。微塑料会通过影响沉积物中微生物的组成和活性进而影响上覆水中氮素分布,对水体氮循环构成挑战。后续的研究需要深入探究微塑料影响下上覆水中氮循环的同位素动力学,以提升对氮循环的理解。

     

    Abstract: The oceanic nitrogen cycle is an important component of the marine elemental cycle, which is driven by different types of microorganisms and is important for assessing the structure and function of marine ecosystems. However, given the coercion of microplastics on marine ecosystems, there is an urgent need to clarify the impact of the presence of microplastics on nitrogen transformation processes in order to improve the understanding of the contemporary and future oceanic nitrogen cycle. Accordingly, this study set different concentrations (0.5% and 0.05%), particle sizes (500 mesh, 150 mesh and 16 mesh), and types (PA, PE, PVC, PP and PS) of microplastics in order to assess whether the presence of microplastics affects the process of nitrogen transformations in the marine sediments as well as in the overlying waters. The results indicate that the presence of microplastics alters the redox environment, which in turn has an impact on the nitrogen cycling process driven by microorganisms. Additionally, it has found that the material type, concentration, and particle size of microplastics have different effects on the nitrogen cycling process, implying that the different properties of microplastics can alters the nitrogen cycling process of marine sediments and the overlying water. Microplastics can affect the nitrogen distribution in the overlying water by influencing the composition and activity of microorganisms in the sediments, posing a challenge to the nitrogen cycle in the water column. Follow-up studies are needed to investigate the isotope dynamics of nitrogen cycling in overlying water under the influence of microplastics in order to improve the understanding of the nitrogen cycle.

     

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