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Biodegradation of phenol by a newly isolated marine bacterial strain SM5

机译:新分离的海洋细菌菌株SM5对苯酚的生物降解

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15 bacterial strains were isolated from marine sources on the beef extract-peptone agar plates with 1500 mg/L phenol. Among them, the strain SM5 could tolerate 4500 mg/L phenol on solid beef extract-peptone plates and its phenol biodegradation rate was 96.4% in basal salt (BS) medium under the optimum conditions when the concentration of phenol was 1000 mg/L. These conditions were; initial pH 7.0, 37°C, 3 days, 20 ml medium/50 ml flask and inoculum biomass 12.5% (v/v). Rate of phenol biodegradation of the strain was up to 92.0% under the optimum conditions even when the phenol concentration was increased to 2500 mg/L. Also, the effects of supplement sodium chloride [NaCl (5 to 25 g/L)] on phenol biodegradation were very weak. In this study, a high-efficiency bacterial strain SM5 of phenol biodegradation was obtained from sea mud and could be used for treatment of phenolic water with salt.
机译:在牛肉提取物-蛋白tone琼脂平板上从海洋来源分离出15种细菌菌株,含1500 mg / L苯酚。其中,菌株SM5在固体牛肉提取物-蛋白谱板上能耐受4500 mg / L的苯酚,在酚浓度为1000 mg / L的最佳条件下,在碱性盐(BS)培养基中苯酚的生物降解率为96.4%。这些条件是:初始pH 7.0、37°C​​,3天,20 ml培养基/ 50 ml烧瓶和接种量为12.5%(v / v)的生物质。在最佳条件下,即使苯酚浓度增加到2500 mg / L,菌株的苯酚生物降解率也高达92.0%。另外,补充氯化钠[NaCl(5至25 g / L)]对苯酚生物降解的作用非常弱。在这项研究中,从海泥中获得了一种高效的苯酚生物降解细菌菌株SM5,可用于用盐处理酚水。

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