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首页> 外文期刊>Chemical and Biochemical Engineering Quarterly >Biodegradation of p-nitrophenol by Immobilized Rhodococcus sp. Strain Y-1
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Biodegradation of p-nitrophenol by Immobilized Rhodococcus sp. Strain Y-1

机译:固定型红球菌对对硝基苯酚的生物降解。 Y-1株

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摘要

A high efficiency p-nitrophenol (PNP) degrading bacterial strain Y-1 capable of utilizing PNP as sole carbon and energy source was screened and isolated from the activated sludge of Jilin Chemical Plant Oxidation Ditch in China. 16S rDNA sequencing identified strain Y-1 to be Rhodococcus sp. Polyvinyl alcohol (PVA) and sodium alginate were employed to immobilize the Rhodococcus sp. strain Y-1. Compared to the free cells, the immobilized cells possessed better PNP-degrading activity and stronger tolerance against the inhibitory effect of PNP. An orthogonal experimental design of L_9 (3~4) was used to investigate the effects of temperature, pH, and agitation rate on the biodegradation capabilities of the immobilized cells; the optimum conditions were as follows: 30 °C, pH at 7.0-7.5, shaken at 120 rpm. Moreover, immobilization supplemented with 1 g Fe_3O_4 significantly enhanced the PNP degradation capability (up to 500 mg L~(-1)). Our results indicated that immobilized Rhodococcus sp. strain Y-1 possessed good potential for application in the treatment of wastewater containing PNP.
机译:从中国吉林化工厂氧化沟活性污泥中筛选分离出了高效利用PNP作为唯一碳源和能源的降解对硝基苯酚的菌株Y-1。 16S rDNA测序鉴定菌株Y-1为红球菌。聚乙烯醇(PVA)和海藻酸钠被用来固定红球菌。 Y-1株。与游离细胞相比,固定化细胞具有更好的PNP降解活性和对PNP抑制作用的耐受性。采用L_9(3〜4)正交实验设计,研究温度,pH和搅拌速率对固定化细胞生物降解能力的影响。最佳条件如下:30°C,pH在7.0-7.5,以120 rpm摇动。此外,添加1 g Fe_3O_4的固定化显着增强了PNP的降解能力(高达500 mg L〜(-1))。我们的结果表明,固定的红球菌属。 Y-1菌株在处理含PNP废水中具有良好的应用前景。

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