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首页> 外文期刊>Biotechnology Progress >Construction of a thread coater and use of azocasein release tocharacterize the sealant coat porosity of fibers coated with latexbiocatalytic coatings
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Construction of a thread coater and use of azocasein release tocharacterize the sealant coat porosity of fibers coated with latexbiocatalytic coatings

机译:构造螺纹涂布机并使用偶氮酪蛋白释放来表征涂有乳胶生物催化涂层的纤维的密封胶涂层孔隙率

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摘要

A single-stage annular fiber coating method with co-current dry-air drying at 30 degrees C has been developed for multilayer coating of 128 mu m diameter polyester thread (yarn) with latex films as a model for enzyme immobilization and development of a filament biocatalytic filter. Acrylic vinyl acetate polymer coatings were sequentially metered onto the fibers by the combination of a flexible squeegee and a red rubber annulus. The thread coater can operate over a range of 0.07-1.37 m/min thread velocities while delivering a nearly constant and reproducible polymer loading of 30.8 +/- 1.3 mg/m. A 100% polyester, 278.9 denier thread was precoated with latex to generate an approximately 369 denier sealed filament. The filament was then coated with a latex + sulfanilamide-azocasein mixture and sealed with a polymer top coat. The permeability of the polymer sealant top coat was characterized using entrapped azocasein as a tracer molecule and monitoring the azocasein release upon rehydration of the coated threads. Azocasein release rate decreased with curing time at 30 degrees C until 2 days and was invariant after 2-3 days of curing. A 282 mOsm rehydrating solution was sufficient to suppress increased azocasein release due to top coat blistering. No enhancement in the permeability of the top coat was observed when high molecular weight water soluble polymers (WSPs) were used as fillers. This probably results from the low WSP to latex ratio used (0.05-0.1) and the slow rate of WSP leaching compared to the release of azocasein. A method using 60-120 mesh silica was also developed to study the effect of mechanical abrasion of the coated threads as measured by azocasein release kinetics.
机译:已开发出一种在30摄氏度并风干燥的单级环形纤维涂覆方法,用于用乳胶薄膜多层涂覆直径128μm的聚酯线(纱),作为酶固定和长丝发展的模型生物催化过滤器。通过柔性刮刀和红色橡胶环的组合,依次将丙烯酸乙酸乙烯酯聚合物涂料计量加入纤维中。螺纹涂布机可以在0.07-1.37 m / min的线速度范围内运行,同时提供几乎恒定且可重现的30.8 +/- 1.3 mg / m的聚合物负载量。将100%聚酯,278.9旦尼尔的线预涂乳胶,以产生约369旦尼尔的密封长丝。然后用乳胶+磺酰胺-偶氮酪蛋白混合物涂覆长丝,并用聚合物面涂层密封。使用截留的偶氮酪蛋白作为示踪剂分子并监测涂覆线复水后的偶氮酪蛋白释放情况来表征聚合物密封剂面漆的渗透性。在30摄氏度下固化2天后,偶氮酪蛋白的释放速率随固化时间的延长而降低,固化2-3天后则保持不变。 282 mOsm的补液足以抑制由于面涂层起泡而导致的偶氮酪蛋白释放增加。当使用高分子量水溶性聚合物(WSP)作为填料时,未观察到面漆渗透性的提高。这可能是由于所用的WSP与乳胶比率低(0.05-0.1)和与偶氮酪蛋白释放相比WSP浸出速度慢。还开发了一种使用60-120目二氧化硅的方法,以研究通过偶氮酪蛋白释放动力学测定的涂层线的机械磨损效果。

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