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在处理溢油事故时,在油水界面处附着疏水性改性生物聚合物。

Attachment of a hydrophobically modified biopolymer at the oil-water interface in the treatment of oil spills.

机构信息

Department of Chemical and Biomolecular Engineering, Tulane University, New Orleans, Louisiana 70118, United States.

出版信息

ACS Appl Mater Interfaces. 2013 May;5(9):3572-80. doi: 10.1021/am303000v. Epub 2013 Apr 18.

Abstract

The stability of crude oil droplets formed by adding chemical dispersants can be considerably enhanced by the use of the biopolymer, hydrophobically modified chitosan. Turbidimetric analyses show that emulsions of crude oil in saline water prepared using a combination of the biopolymer and the well-studied chemical dispersant (Corexit 9500A) remain stable for extended periods in comparison to emulsions stabilized by the dispersant alone. We hypothesize that the hydrophobic residues from the polymer preferentially anchor in the oil droplets, thereby forming a layer of the polymer around the droplets. The enhanced stability of the droplets is due to the polymer layer providing an increase in electrostatic and steric repulsions and thereby a large barrier to droplet coalescence. Our results show that the addition of hydrophobically modified chitosan following the application of chemical dispersant to an oil spill can potentially reduce the use of chemical dispersants. Increasing the molecular weight of the biopolymer changes the rheological properties of the oil-in-water emulsion to that of a weak gel. The ability of the biopolymer to tether the oil droplets in a gel-like matrix has potential applications in the immobilization of surface oil spills for enhanced removal.

摘要

通过使用生物聚合物——疏水性改性壳聚糖,可大大增强添加化学分散剂后形成的原油液滴的稳定性。浊度分析表明,与单独使用分散剂稳定的乳液相比,使用生物聚合物和研究充分的化学分散剂(Corexit 9500A)组合制备的盐水原油乳液在延长的时间内保持稳定。我们假设聚合物中的疏水性残基优先锚定在油滴中,从而在油滴周围形成聚合物层。液滴稳定性的增强归因于聚合物层提供了静电和空间排斥的增加,从而对液滴聚结形成了较大的阻碍。我们的结果表明,在溢油事故中应用化学分散剂后添加疏水性改性壳聚糖,可能会减少化学分散剂的使用。增加生物聚合物的分子量会改变水包油乳液的流变性质,使其变为弱凝胶。生物聚合物将油滴束缚在凝胶状基质中的能力在增强去除方面具有固定表面溢油的潜在应用。

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