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首页> 外文期刊>Journal of Applied Polymer Science >Surface modification of polyacrylonitrile staple fibers via alkaline hydrolysis for superabsorbent applications
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Surface modification of polyacrylonitrile staple fibers via alkaline hydrolysis for superabsorbent applications

机译:通过碱性水解对聚丙烯腈短纤维进行表面改性,以实现超吸收性应用

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The alkaline hydrolysis of polyacrylonitrile staple fibers was investigated for evaluation as superabsorbent materials. Studies were performed to analyze the hydrolysis of fibers and the quantification of the developed functional groups, such as carboxyl and amide groups as well as changes in the nitrile content by means of MicroATR. Dyeing of the samples with methylene blue was carried out to monitor the carboxyl groups formed during the hydrolysis. A gradual decrease in the nitrile groups and built up of the carboxyl and the amide groups was observed during the hydrolysis. Microscopic investigation carried out to investigate the surface structure of hydrolyzed fibers. Hydrolysis led to surface nonhomogeneity and erosion that was dependent on the hydrolysis conditions. The fibers showed good water retention behavior, making them superabsorbent materials. The dyeing showed more intense coloration in the surface region of the modified fibers. (C) 2004 Wiley Periodicals, Inc. [References: 12]
机译:研究了聚丙烯腈短纤维的碱性水解性能,以此作为超吸收材料。进行了研究以通过MicroATR分析纤维的水解和发达的官能团(例如羧基和酰胺基)的定量以及腈含量的变化。用亚甲基蓝对样品进行染色以监测水解过程中形成的羧基。在水解过程中,观察到腈基逐渐减少,羧基和酰胺基逐渐增多。进行了显微镜研究以研究水解纤维的表面结构。水解导致表面不均匀和腐蚀,这取决于水解条件。纤维表现出良好的保水性能,使其成为超吸收性材料。染色在改性纤维的表面区域显示出更强烈的着色。 (C)2004 Wiley Periodicals,Inc. [参考:12]

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