吉林大学学报(理学版) ›› 2025, Vol. 63 ›› Issue (1): 271-0285.

• • 上一篇    

生物扰动对沉积物-水界面附近污染物环境行为及生物地球化学过程的影响

花修艺, 赵宇, 付欣妍, 谭春阳, 张乐园, 梁大鹏, 董德明   

  1. 吉林大学 新能源与环境学院, 地下水资源与环境教育部重点实验室, 长春 130012
  • 收稿日期:2024-12-05 出版日期:2025-01-26 发布日期:2025-01-26
  • 通讯作者: 花修艺 E-mail:huaxy@jlu.edu.cn

Effects of Bioturbation on Environmental Behavior of Pollutants and Biogeochemical Process near Sediment-Water Interface#br#

HUA Xiuyi, ZHAO Yu, FU Xinyan, TAN Chunyang, ZHANG Leyuan, LIANG Dapeng, DONG Deming#br#   

  1. Key Laboratory of Ground Water Resources and Environment of  Ministry of Education, College of New Energy and Environment, Jilin University, Changchun 130012, China
  • Received:2024-12-05 Online:2025-01-26 Published:2025-01-26

摘要: 沉积物-水界面是水生生态系统中物质交换与能量传递的关键区域, 是包括污染物和营养物在内的物质在沉积物和上覆水之间交换的必由路径. 底栖扰动生物的行为改变界面附近原有沉积物的结构和物质交换平衡, 显著影响局部微环境特征以及微生物种类、 数量和群落组成, 使界面附近的环境变得更复杂和动态. 生物扰动可改变污染物的迁移、 转化和生物可利用性,  并重塑碳、 氮、 磷等重要元素的循环路径和通量. 分析和综述底栖生物扰动对沉积物-水界面附近的典型污染物环境行为和典型生物地球化学循环过程的影响, 有助于深入了解底栖扰动生物介导的环境和生物地球化学过程, 认识生物扰动的重要生态环境意义.

关键词:  , 沉积物-水界面, 生物扰动, 重金属, 有机污染物, 生物地球化学循环

Abstract: Sediment-water interface is a key area for material exchange and energy transfer in an aquatic ecosystem, and is a necessary pathway for the exchange of substances, including pollutants and nutrients, between sediment and overlying water. The behaviors of benthic bioturbators alter the structure of the existing sediments and the balance of the material exchange near the interface, significantly affecting the local microenvironmental characteristics as well as the microbial species, numbers and community composition, and making the  environment near the interface more complex and dynamic. The bioturbation can alter the transfer, transformation and bioavailability of the pollutants, and  reconstruct the cycling pathways and fluxes of important elements such as carbon, nitrogen, and phosphorus. We analyze and summarize the effects of benthic bioturbation on the environmental behavior of typical pollutants and typical biogeochemical cycling processes near the sediment-water interface, which contributes to an in-depth understanding of the benthic bioturbator-mediated environmental and biogeochemical processes, and to the recognition of the ecological significance of bioturbation.

Key words: sediment-water interface, bioturbation, heavy metal, organic pollutant, biogeochemical cycling

中图分类号: 

  • X174