Oil/Suspended Particulate Material Interactions and Sedimentation

James R Payne , John R Clayton Jr. , Bruce E Kirstein
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引用次数: 95

Abstract

The interactions of physically dispersed oil droplets with suspended particulate material (SPM) can be important for the transport of bulk quantities of spilled crude oil and polycyclic aromatic hydrocarbons (PAH) to subtidal sediments. The literature regarding oil/SPM interactions is reviewed, and results from whole-oil droplet/SPM interaction kinetics and pure-component (Prudhoe Bay crude oil distillate cut) equilibrium partitioning experiments are presented. The effects of oil type, SPM characteristics, and salinity on the interaction rates are examined, and the importance of whole-oil droplet/SPM interactions on particle agglomeration and settling behavior are discussed. Whole-oil droplet/SPM interactions are retarded as oil droplet dispersion into the water column is inhibited by oil viscosity increases due to evaporation weathering and water-in-oil emulsification. Compared to whole oil droplet/SPM interactions, dissolved-component/SPM adsorption is not as significant for transport of individual components to sediments. The information presented in this paper can be used to augment computer-based models designed to predict oil-spill trajectories, oil-weathering behavior, and spilled oil impacts to the marine environment.

油/悬浮颗粒物质相互作用和沉降
物理分散的油滴与悬浮颗粒物质(SPM)的相互作用对于大量泄漏的原油和多环芳烃(PAH)向潮下沉积物的运输是重要的。综述了有关油/SPM相互作用的文献,并给出了全油滴/SPM相互作用动力学和纯组分(Prudhoe Bay原油馏分切割)平衡分配实验的结果。考察了油类、SPM特性和矿化度对相互作用速率的影响,并讨论了全油滴/SPM相互作用对颗粒团聚和沉降行为的重要性。由于蒸发风化作用和油包水乳化作用导致的油粘度增加,抑制了油滴向水柱的分散,从而延缓了全油滴与SPM的相互作用。与整个油滴/SPM的相互作用相比,溶解组分/SPM的吸附对单个组分向沉积物的运移没有那么显著。本文提供的信息可用于增强基于计算机的模型,这些模型旨在预测溢油轨迹、石油风化行为以及溢油对海洋环境的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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