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分散态石油烃在活性炭上的吸附:油分散剂的影响。

Sorption of dispersed petroleum hydrocarbons by activated charcoals: Effects of oil dispersants.

机构信息

Environmental Engineering Program, Department of Civil Engineering, Auburn University, Auburn, AL, 36849, USA; The Key Laboratory of Water and Sediment Sciences, Ministry of Education, College of Environment Sciences and Engineering, Peking University, Beijing, 100871, China.

Environmental Engineering Program, Department of Civil Engineering, Auburn University, Auburn, AL, 36849, USA.

出版信息

Environ Pollut. 2020 Jan;256:113416. doi: 10.1016/j.envpol.2019.113416. Epub 2019 Oct 15.

Abstract

Marine oil spill often causes contamination of drinking water sources in coastal areas. As the use of oil dispersants has become one of the main practices in remediation of oil spill, the effect of oil dispersants on the treatment effectiveness remains unexplored. Specifically, little is known on the removal of dispersed oil from contaminated water using conventional adsorbents. This study investigated sorption behavior of three prototype activated charcoals (ACs) of different particle sizes (4-12, 12-20 and 100 mesh) for removal of dispersed oil hydrocarbons, and effects of two model oil dispersants (Corexit EC9500A and Corexit EC9527A). The oil content was measured as n-alkanes, polycyclic aromatic hydrocarbons (PAHs), and total petroleum hydrocarbons (TPHs). Characterization results showed that the smallest AC (PAC100) offered the highest BET surface area of 889 m/g and pore volume of 0.95 cm/g (pH = 6.1). Sorption kinetic data revealed that all three ACs can efficiently adsorb Corexit EC9500A and oil dispersed by the two dispersants (DWAO-I and DWAO-II), and the adsorption capacity followed the trend: PAC100 > GAC12 × 20 > GAC4 × 12. Sorption isotherms confirmed PAC100 showed the highest adsorption capacity for dispersed oil in DWAO-I with a Freundlich K value of 10.90 mg/g∙(L/mg) (n = 1.38). Furthermore, the presence of Corexit EC9500A showed two contrasting effects on the oil sorption, i.e., adsolubilization and solubilization depending on the dispersant concentration. Increasing solution pH from 6.0 to 9.0 and salinity from 2 to 8 wt% showed only modest effect on the sorption. The results are useful for effective treatment of dispersed oil in contaminated water and for understanding roles of oil dispersants.

摘要

海洋溢油经常导致沿海地区饮用水源受到污染。由于使用溢油分散剂已成为溢油治理的主要方法之一,因此分散剂对处理效果的影响仍未得到探索。具体来说,对于使用常规吸附剂从受污染的水中去除分散的油,人们知之甚少。本研究考察了三种不同粒径(4-12、12-20 和 100 目)的原型活性炭(AC)对去除分散油烃的吸附行为,以及两种模型油分散剂(Corexit EC9500A 和 Corexit EC9527A)的影响。油含量以正烷烃、多环芳烃(PAHs)和总石油烃(TPHs)表示。表征结果表明,最小的 AC(PAC100)提供了 889 m/g 的最高 BET 表面积和 0.95 cm/g(pH = 6.1)的孔体积。吸附动力学数据表明,所有三种 AC 都可以有效地吸附 Corexit EC9500A 和两种分散剂(DWAO-I 和 DWAO-II)分散的油,吸附能力遵循以下趋势:PAC100 > GAC12×20 > GAC4×12。吸附等温线证实,PAC100 在 DWAO-I 中对分散油显示出最高的吸附能力,Freundlich K 值为 10.90 mg/g·(L/mg)(n = 1.38)。此外,Corexit EC9500A 的存在对油的吸附表现出两种截然相反的影响,即取决于分散剂浓度的增溶作用和助溶作用。将溶液 pH 值从 6.0 增加到 9.0 以及盐度从 2 增加到 8 wt%,对吸附的影响仅略有增加。研究结果对于有效处理受污染水中的分散油以及理解油分散剂的作用很有帮助。

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