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Biodegradable slashing agents from soy protein for textile industry.

机译:大豆蛋白可生物降解的切割剂,用于纺织工业。

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摘要

Biodegradable sizing agents were developed from physically modified soy protein, acrylic-acid grafted soy protein and soymeal to substitute poly(vinyl alcohol) (PVA) sizes for high-speed weaving and reduce environmental pollution from textile desizing effluent. PVA is the best textile size due to its excellent film properties and adhesion to fibers. However, non-biodegradability of PVA leads to serious environmental issues. Till now, no biodegradable substitutes with size properties and cost-effectiveness comparable to PVA have been developed.;In this research, sizing agents from physically modified soy protein, acrylic-acid grafted soy protein and soy meal were developed to substitute PVA size. The potential of using the soy protein based sizes for warp sizing in textile industry were investigated by tensile properties of size films, adhesion of sizes to yarns, abrasion resistance of sized yarns, industrial-scale weaving performance, desizing efficiency and biodegradability of sizing agent. Our research showed that soy protein based sizes had film elongation, adhesion to yarns and abrasion resistance similar or higher than commercial PVA sizes. Industrial weaving trial showed that, at lower add-on, physically modified soy protein sized cotton and polyester/cotton yarns had weaving efficiencies 13% and 3% higher than the PVA sized ones, and 39% and 10% higher than the modified starch sized ones. Physically modified soy protein sized polyester yarns had weaving efficiencies similar to the PVA sized ones. In addition, soy protein based sizes had a chemical oxygen demand value of 70 -109 mg/L after 5 days treatment in activated sludge, much lower than 398 mg/L of PVA, demonstrating that soy protein sizes were readily biodegradable.
机译:可生物降解的上浆剂由物理改性的大豆蛋白,丙烯酸接枝的大豆蛋白和豆浆开发而成,可替代聚乙烯醇(PVA)尺寸,以实现高速织造并减少纺织品退浆废水对环境的污染。 PVA具有出色的薄膜性能和对纤维的粘附性,因此是最佳的纺织品尺寸。然而,PVA的不可生物降解性导致严重的环境问题。到目前为止,还没有开发出具有可与PVA媲美的尺寸特性和成本效益的可生物降解的替代品。在这项研究中,开发了物理改性大豆蛋白,丙烯酸接枝大豆蛋白和豆粕的上浆剂来替代PVA的尺寸。通过上浆薄膜的拉伸性能,上浆对纱线的粘合力,上浆纱线的耐磨性,工业规模编织性能,上浆效率和上浆剂的生物降解性,研究了将大豆蛋白基上浆用于纺织工业上浆的潜力。我们的研究表明,基于大豆蛋白的胶料的薄膜伸长率,对纱线的粘附性和耐磨性与商业PVA胶料相似或更高。工业编织试验表明,添加量较低时,物理改性大豆蛋白上浆的棉和聚酯/棉纱的编织效率比PVA上浆的高13%和3%,比改性淀粉上浆的效率高39%和10%那些。物理改性的大豆蛋白上浆的涤纶纱的织造效率与PVA上浆的相似。此外,在活性污泥中处理5天后,基于大豆蛋白的蛋白尺寸具有70 -109 mg / L的化学需氧量,远低于398 mg / L的PVA,表明大豆蛋白尺寸易于生物降解。

著录项

  • 作者

    Zhao, Yi.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Textile research.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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