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Rheological Study on Seawater Contaminated with Oil Components

机译:含油成分污染海水的流变学研究

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The protection of marine life and prevention of pollution caused by accidental oil spills in seawater have become a critical issue. Thus, quick actions should be executed. One of these actions is the cleanup process, which requires pumping, skimming, and storing the contaminated seawater. This operation requires deep knowledge of the physical and chemical proprieties of pollutant fluid that would help in calculating the power requirements for the cleanup process. This study focuses on the properties of two pollutants: diesel and spent engine oil. Instead of taking on-site samples for analysis, a data bank for these properties would offer an efficient tool to characterize the fluids. The aim of this work was to present a rheological and physiochemical study for the seawater upon the addition of diesel and spent oil pollutants at different concentrations. It was also aimed at investigating the effects of pollutant concentration, mixing time, and temperature on seawater viscosity and density with time. The results of this work will provide a wide range of physical data for a mixture of seawater and crude oil components measured at different temperatures using hydrometer and coaxial cylindrical viscometer standard tests.The experimental results also showed that there is a significant change in seawater viscosity when contaminated with spent engine oil and diesel oil. The viscosity increased as the concentration of spent engine oil and diesel oil increased within seawater. For example, when the diesel oil concentration increased from 10 vol% to 50 vol% rat 25 degrees C, the viscosity increased from 0.0012 Pa. s to 0.0031 Pa. s.At the same temperature, the viscosity increased from 0.00173 Pa. s to 0.0036 Pa. s when the spent engine oil concentration increased from 10 vol% to 50 vol%, respectively. The same trend was observed when the temperature decreased.The effect of time on the density of seawater contaminated with diesel oil appeared to be insignificant at constant concentration and temperature where the density is almost constant for the 140 minutes of testing time. However, as the concentration of diesel oil increased at constant temperature, the density decreased. The same behavior was noticed when studying the effect of temperature where the density of contaminated seawater decreased as the temperature increased at a constant concentration.
机译:保护海洋生物和防止因海水意外漏油而造成的污染已成为关键问题。因此,应该执行快速动作。这些操作之一是清理过程,该过程需要泵送,撇除和存储受污染的海水。此操作需要对污染物流体的物理和化学特性有深入的了解,这将有助于计算清除过程的功率要求。这项研究的重点是两种污染物的特性:柴油和废机油。这些属性的数据库可以代替现场取样进行分析,而是提供一种有效的工具来表征流体。这项工作的目的是介绍在添加不同浓度的柴油和废油污染物后对海水进行的流变学和理化研究。它还旨在研究污染物浓度,混合时间和温度对海水粘度和密度随时间的影响。这项工作的结果将为使用比重计和同轴圆柱粘度计标准测试在不同温度下测量的海水和原油成分的混合物提供广泛的物理数据。实验结果还表明,当粘度增加时,海水粘度会发生显着变化被废机油和柴油污染。粘度随着海水中废机油和柴油浓度的增加而增加。例如,当柴油浓度在25°C下从10vol%增加到50vol%时,粘度从0.0012 Pa.s增加到0.0031 Pa.s.在相同温度下,粘度从0.00173 Pa.s增加到当废机油浓度分别从10体积%增加到50体积%时为0.0036 Pa。s。当温度降低时,观察到了相同的趋势。在恒定的浓度和温度下,时间对柴油污染的海水密度的影响似乎微不足道,在140分钟的测试时间内密度几乎恒定。然而,随着柴油浓度在恒定温度下增加,密度降低。当研究温度的影响时,受污染的海水的密度随着温度的增加而恒定地降低,从而观察到了相同的行为。

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