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Cotton Fiber-Based Sorbents for Treating Crude Oil Spills

机译:基于棉纤维的吸附剂处理原油泄漏

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Wood and plant fibers have been studied as natural sorbent materials for treating aquatic oil spills; however, the effectiveness of these materials is limited by their tendency to absorb water as well as oil. Chemical pretreatment of cotton fibers with fatty acids was examined as a means of enhancing the performance of cotton as a sorbent for crude oil. A raw cotton fiber was chemically modified with C18 fatty acid by simple leaving group chemistry. Free surface hydroxyl groups were modified with long alkyl chains to create fibers that displayed increased water contact angles, indicative of a significant decrease in surface energy. The increased affinity for oil and corresponding repulsion of water on the individual modified fibers translated to greater sorption of oil and rejection of water by loose assemblies of fibers (i.e., balls or yarn) when compared with unmodified cotton. X-ray diffraction (XRD) pattern, Fourier transform infrared (FT-IR), ~(13)C cross-polarization/magic angle spinning solid-state nuclear magnetic resonance (CP/MAS SSNMR), and scanning electron microscopy (SEM) showed that cotton fibers were significantly exfoliated by the intercalation of C18 fatty acids about 2.4 times in its diameter. In the presence of seawater, the highly oleophilic C18 fatty acid-modified cotton fiber showed a maximum oil sorption capacity of 35.58 g per gram of fiber, about ~49% greater than that of the corresponding raw cotton fiber.
机译:已经研究了木材和植物纤维作为治疗水生油溢出的天然吸附剂材料;然而,这些材料的有效性受到吸收水和油的倾向的限制。用脂肪酸的棉纤维进行化学预处理作为提高棉花作为原油的吸附剂的性能的手段。通过简单的离子化学用C18脂肪酸化学改性原料棉纤维。用长烷基链改性自由表面羟基,以产生纤维,显示出增加的水接触角,指示表面能的显着降低。与未经修饰的棉花相比,单独改性纤维对单个改性纤维的水和相应排斥水的亲和力转化为通过松散的纤维(即球或纱线)的纤维(即球或纱线)更大的油和排斥水。 X射线衍射(XRD)图案,傅里叶变换红外(FT-IR),〜(13)C交叉偏振/魔法角度旋转固态核磁共振(CP / MAS SSNMR)和扫描电子显微镜(SEM)表明,棉纤维在其直径的嵌入约2.4倍的情况下显着地剥离。在海水存在下,高脂酸C18脂肪酸改性棉纤维显示出每克纤维35.58克的最大油吸附能力,约为49%,大于相应的粗棉纤维。

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