Effect of substrate geometry on oil sorption capacity of raw and chemically modified jute fibre

M. Teli, Sanket P. Valia
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引用次数: 3

Abstract

In this paper jute fibre was modified with three different chemical modification techniques namely acetylation using acetic anhydride, grafting using butyl acrylate monomer and fatty acid modification using oleic acid to increase the oil sorption capacity of the fibre. All the above modifications were carried out in fibrous as well as nonwoven form to study the effect of substrate geometry on oil sorption capacity. It was found that oil sorption capacity of the chemically modified jute fibres was higher than that of the raw fibres and in case of the chemically modified nonwoven it was much higher than the raw as well as modified loose fibres. Reusability of the modified substrates was also tested and it was found that all the substrates could be squeezed to recover oil and reused at least three times. Nonwoven fabric’s substrate geometry permits easy rolling-in and rolling-out of the fabric for the recovery of the oil from the surface of the water. Also these oil sorption-active materials being biodegradable can be used to substitute non-biodegradable synthetic materials in oil spill cleanup.
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基材几何形状对原料和化学改性黄麻纤维吸油能力的影响
采用乙酸酐乙酰化、丙烯酸丁酯单体接枝和油酸脂肪酸改性三种不同的化学改性技术对黄麻纤维进行改性,以提高纤维的吸油能力。在纤维和非织造材料中进行了上述改性,以研究基体几何形状对吸油能力的影响。结果表明,化学改性黄麻纤维的吸油性能明显高于原料纤维,而化学改性非织造布的吸油性能明显高于原料纤维和改性松散纤维。还测试了改性底物的可重复使用性,发现所有底物都可以挤压回收油并重复使用至少三次。非织造布的基材几何形状允许轻松地滚入和滚出织物,以便从水面上回收油。此外,这些生物可降解的吸油活性材料可替代非生物可降解的合成材料用于溢油清理。
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