首页> 外文期刊>Textile Research Journal >Gross Morphology and Absorption Capacity of Cell-Fibers from the Fibrous Vascular System of Loofah (Luffa cylindrica)
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Gross Morphology and Absorption Capacity of Cell-Fibers from the Fibrous Vascular System of Loofah (Luffa cylindrica)

机译:丝瓜(丝瓜)纤维血管系统的细胞纤维形态和吸收能力。

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This paper investigates the liquid absorbency potential of the vegetal cell-fibers (CF) of Luffa cylindrica (LC) in relation to their microscopic morphology. Absorption after drainage and centrifugation, involving deionized water and saline solutions, is measured on both the raw fibers of the vegetal net and the cell-fibers previously extracted from ligneous fibrous strands (FS) with NaOH-anthraquinone alkali treatment. The microspongy structure of the raw FS-luffa, observed in the vegetal material by scanning electron microscopy (SEM), is formed by multicellular fibers (from 250 to 500) bonded together with a large lumen (5 to 30 μm) and containing small punctuations along the fibers as interconnections. Liquid absorption results show that this original structure of these promising fibers should contribute to good absorption capacity: 18.4g/g and 22.6g/g are respectively obtained with for broken raw FS and CF-luffa fluff treated by 5 wt % NaOH. Their absorption capacity for liquid improves with an additional formaldehyde treatment.
机译:本文研究了丝瓜(LC)的植物细胞纤维(CF)的液体吸收潜力与其微观形态的关系。排水和离心后的吸收(包括去离子水和盐溶液)在植物网的原始纤维和预先用NaOH-蒽醌碱处理从木质纤维束(FS)中提取的细胞纤维上进行测量。通过扫描电子显微镜(SEM)在植物材料中观察到的原始FS-丝瓜的微海绵结构是由多细胞纤维(250至500)与大管腔(5至30μm)结合在一起并包含小标点形成的沿着纤维相互连接。液体吸收结果表明,这些有前途的纤维的这种原始结构应有助于良好的吸收能力:用5 wt%的NaOH处理破碎的原料FS和CF-丝瓜绒时,分别可获得18.4g / g和22.6g / g。通过额外的甲醛处理,它们对液体的吸收能力得以提高。

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