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首页> 外文期刊>Chemical Engineering Communications >Peach-palm (Bactris gasipaes Kunth.) waste as substrate for xylanase production by Trichoderma stromaticum AM7
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Peach-palm (Bactris gasipaes Kunth.) waste as substrate for xylanase production by Trichoderma stromaticum AM7

机译:Peach-Palm(Bactris Gasipaes Kunth。)废物作为木聚糖酶生产的底族酸纤维素制作

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摘要

This work investigated the xylanase production by fungi isolates from tropical agroforestry systems using peach-palm industrial waste as a substrate. Trichoderma stromaticum AM7 was the best xylanase producer and there was a 160% increase in xylanase activity after optimizing by the Box-Behnken statistical design. The optimization process demonstrated that the maximum activity occurred at 0.95% nitrogen concentration after 6 days of cultivation at 32 degrees C, which achieved a yield of 1440 U g(-1) of dry initial substrate. Analysis by scanning electron microscopy showed degradation of the fibers after cultivation. The optimum pH and temperature for xylanase activity were 5.0 and 50 degrees C, respectively. The extensive degradation of the peach-palm waste and xylanase production by T. stromaticum AM7 was due to the combination of a good physicochemical composition of the culture medium and the characteristics of the selected fungus.
机译:本作品研究了使用桃棕榈工业废物作为基材的热带农业体系的真菌分离物的木聚糖酶生产。 Trichoderma Stromaticum AM7是最好的木聚糖酶生产商,通过BATH Behnken统计设计优化后,木聚糖酶活性增加了160%。 优化过程证明,在32℃的培养6天后,在培养6天后发生最大活性,其达到1440 u G(-1)的干初始衬底。 通过扫描电子显微镜进行分析显示培养后纤维的降解。 木聚糖酶活性的最佳pH和温度分别为5.0和50℃。 桃棕榈废物和木聚糖酶生产的巨大降解T.Stromaticum AM7是由于培养基的良好物理化学组成和所选真菌的特性的组合。

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