单红仙, 王卉, 贾永刚, 卢芳. 海洋沉积物中石油类污染物的释放研究[J]. 海洋环境科学, 2022, 41(3): 481-488. DOI: 10.12111/j.mes.2021-0056
引用本文: 单红仙, 王卉, 贾永刚, 卢芳. 海洋沉积物中石油类污染物的释放研究[J]. 海洋环境科学, 2022, 41(3): 481-488. DOI: 10.12111/j.mes.2021-0056
SHAN Hong-xian, WANG Hui, JIA Yong-gang, LU Fang. A review of studies on the release of petroleum pollutants from sediments in marine environment[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2022, 41(3): 481-488. DOI: 10.12111/j.mes.2021-0056
Citation: SHAN Hong-xian, WANG Hui, JIA Yong-gang, LU Fang. A review of studies on the release of petroleum pollutants from sediments in marine environment[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2022, 41(3): 481-488. DOI: 10.12111/j.mes.2021-0056

海洋沉积物中石油类污染物的释放研究

A review of studies on the release of petroleum pollutants from sediments in marine environment

  • 摘要: 沉积物中石油类污染物的释放过程受到海洋水动力、环境因素、海床沉积物特性及生物扰动等条件的影响,引发的二次污染作用周期长,而且对水体环境、沿海娱乐活动及海洋生物的各项生理活动都会造成影响。为加深对该释放过程的认识,本文阐述了海洋沉积物中石油类污染物的释放机理,重点分析了海床液化失稳对该过程的影响机制,总结了石油类污染物释放的动力学模型。最后指出了沉积物中石油类污染物的释放在未来的研究方向与工作重点:探究沉积物的理化性质对沉积物中石油类污染物释放的影响;研究波致孔压累积对该过程的作用;建立波浪作用下石油类污染物释放的动力学模型。

     

    Abstract: The release process of petroleum pollutants in sediments is influenced by marine hydrodynamics, environmental factors, characteristics of seabed sediments and biological disturbance, etc. The secondary pollution caused by these pollutants has a long cycle and affects the water environment, coastal recreational activities and various physiological activities of marine organisms. In order to deepen the understanding of the release process, this paper summarizes the mechanism of the release of petroleum pollutants in marine sediments, emphatically analyzes the mechanism of the influence of seabed liquefaction instability on the process, and summarizes the dynamic model of the release of petroleum pollutants. Finally, the future research directions and work emphases of petroleum release from sediments are pointed out: to explore the influence of physical and chemical properties of sediments on petroleum release from sediments, to study the effect of wave-induced pore pressure accumulation on this process, and to establish a dynamic model of petroleum release under wave action.

     

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