首页> 外文期刊>Journal of Environmental Management >Oil sorption and retention capacities of thermally-bonded hybrid nonwovens prepared from cotton, kapok, milkweed and polypropylene fibers
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Oil sorption and retention capacities of thermally-bonded hybrid nonwovens prepared from cotton, kapok, milkweed and polypropylene fibers

机译:由棉,木棉,马利筋和聚丙烯纤维制成的热粘合混杂非织造布的吸油和保留能力

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This work reports on a series of thermally-bonded, hybrid and oil-sorbent nonwovens developed from binary and tertiary mixing of cotton, kapok, and three varieties of milkweed fibers (Asclepias Syriaca, Calotropis Procera and Calotropis Gigantea) and polypropylene fibers. The physical and chemical properties of the fibers were investigated to examine their oleophilic character. It was observed that all the fiber surfaces were covered with natural wax. Further, kapok and milkweed fibers were found to have less cell wall thickness and high void ratio. Oil sorption and retention characteristics of these fibers were studied in loose fibrous form as well as in structured assembly form (thermally-bonded nonwovens) using high density oil and diesel oil. The effects of fiber diameter, fiber cross-sectional shape, fiber surface area and porosity on the oil sorption behavior were discussed. An excellent and a selective oil sorption behavior of milkweed fibers (Calotropis Procera and Calotropis Gigantea) blended with cotton and polypropylene fibers were observed. The maximum oil sorption capacity of the developed thermal bonded nonwoven was 40.16 g/g for high density (HD) oil and 23.00 g/g for diesel oil. Further, a high porosity combined with high surface area played a major role in deciding the oil sorption and retention characteristics. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作报告了一系列热粘合,混杂和吸油无纺布,这些无纺布是由棉,木棉和三种马利筋纤维(马齿Syria纤维,Calotropis Procera和Calotropis Gigantea)和聚丙烯纤维的二元和三元混合形成的。研究了纤维的物理和化学性质以检查其亲油性。观察到所有纤维表面都被天然蜡覆盖。此外,发现木棉和马利筋纤维具有较小的细胞壁厚度和高的空隙率。使用高密度油和柴油,研究了这些纤维在疏松纤维形式以及结构化组装形式(热粘合非织造布)中的吸油和保留特性。讨论了纤维直径,纤维横截面形状,纤维表面积和孔隙率对吸油性能的影响。观察到混有棉和聚丙烯纤维的马利筋纤维(Calotropis Procera和Calotropis Gigantea)具有极好的选择性吸油性能。所开发的热粘合非织造布的最大吸油量对于高密度(HD)油为40.16 g / g,对于柴油为23.00 g / g。此外,高孔隙率与高表面积相结合在决定油的吸附和保留特性方面起着重要作用。 (C)2018 Elsevier Ltd.保留所有权利。

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