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Biodegradation Study of Starch-graft-Acrylonitrile Copolymer

机译:淀粉接枝丙烯腈共聚物的生物降解研究

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In this study the biodegradability of starch-graft-acrylonitrile (St-g-AN) copolymer has been investigated using some microorganisms including Aspergillus niger. The fungus A. niger was isolated from the soil and from the wastewater of an acrylic fiber company. The effects of four factors including environment temperature, primary inoculum concentration, pH and weight of copolymer film, on the biomass generation as a measure of biodegradation rate of copolymer, were studied using Taguchi experimental design. The statistical analysis of the results showed that the primary inoculum concentration and temperature were the most important factors affecting the biodegradation of St-g-AN copolymer. The optimum levels of temperature, pH, inoculum concentration, and weight of films to attain the maximum biodegradation (as much as 8.59 % by weight percentage during 28 days) were obtained as 30 ℃,4.75,10~8 spore/mL, and 1.1 g, respectively. The changes in the structure and morphological properties of the copolymer before and after degradation were determined using transform infrared spectroscopy and scanning electron microscopy.
机译:在这项研究中,已经使用包括黑曲霉在内的某些微生物研究了淀粉接枝丙烯腈(St-g-AN)共聚物的生物降解能力。黑曲霉菌是从土壤和丙烯酸纤维公司的废水中分离出来的。利用田口实验设计研究了环境温度,初次接种物浓度,pH和共聚物膜重量等四个因素对生物量生成的影响,以衡量共聚物的生物降解率。结果的统计分析表明,初始接种物的浓度和温度是影响St-g-AN共聚物生物降解的最重要因素。获得最佳生物降解的最佳温度,pH,接种浓度和膜重(在28天内高达8.59%重量百分比)的最佳水平为30℃,4.75、10〜8孢子/ mL和1.1 g,分别。使用变换红外光谱和扫描电子显微镜确定降解前后共聚物的结构和形态学性质的变化。

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