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首页> 外文期刊>International Biodeterioration & Biodegradation >Biodegradation of reactive blue 19 with simultaneous electricity generation by the newly isolated electrogenic Klebsiella sp C NCIM 5546 bacterium in a microbial fuel cell
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Biodegradation of reactive blue 19 with simultaneous electricity generation by the newly isolated electrogenic Klebsiella sp C NCIM 5546 bacterium in a microbial fuel cell

机译:在微生物燃料电池中的新隔离电克雷贝拉SP C NCIM 5546细菌的同时发电的活性蓝19的生物降解

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Reactive Blue-19 (RB19) is an anthraquinone based vinylsulphone dye, which is very difficult to degrade by chemical oxidation because its anthraquinone structure is stabilized by resonance. It has 75-80% fixation efficiency on the cellulose (cotton textiles) and the unfixed dye persists in the environment for long periods. Therefore, textile industry effluents containing reactive blue (RB) 19 dye in a significant concentration need to be treated. Microbial fuel cell (MFC) is the newest approach for generating energy (electricity-bioelectricity) from the textile wastewater using bacteria. In this study, synthetic textile wastewater containing Reactive Blue 19 (RB19) dye (50 mg/L to 800 mg/L) was used to generate electricity with the newly isolated electrogenic bacterium Klebsiella sp. C. The MFC produced the current density of 533 mA/m(2) and power density of 84 mW/m(2). The decolorisation efficiency by Klebsiella sp. C for RB19 was 90% within 24 h under optimised conditions i.e. pH 7, temperature of 37 degrees C, 6 g/L glucose concentration and glucose to microbe ratio of 60. The intermediates identified by GCMS analysis included oxalic acid, indene-1, 3-dione and hydroquinone. These results indicated that Klebsiella sp. C could be considered as a new bacterium for electricity generation along with treatment of RB19 containing effluent.
机译:活性蓝19(RB19)是一种基于蒽醌的乙烯基肺粉染料,这是由于化学氧化非常难以降解,因为其蒽醌结构通过共振稳定。它对纤维素(棉纺织品)有75-80%的固定效率,并在长期内仍然存在未固化的染料。因此,需要治疗含有活性蓝(RB)19染料的纺织工业污水,需要治疗。微生物燃料电池(MFC)是使用细菌从纺织废水产生能量(电力 - 生物电)的最新方法。在该研究中,含有反应性蓝19(RB19)染料(50mg / L至800mg / L)的合成纺织废水用于产生新的电生电菌Klebsiella sp。 C. MFC产生的电流密度为533mA / m(2)和84mW / m(2)的功率密度。 Klebsiella sp的脱色效率。在优化条件下,对于RB19的C为90%,IE在PH 7,温度为37℃,6g / L葡萄糖浓度和微生物率为60.通过GCMS分析鉴定的中间体包括草酸,茚满-1, 3-二酮和氢醌。这些结果表明了克莱布拉SP。 C可以被认为是用于发电的新细菌以及治疗含有流出物的RB19。

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