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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Investigation of the biotransformation of pentachlorophenol and pulp paper mill effluent decolorisation by the bacterial strains in a mixed culture
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Investigation of the biotransformation of pentachlorophenol and pulp paper mill effluent decolorisation by the bacterial strains in a mixed culture

机译:混合培养中细菌菌株对五氯苯酚和纸浆厂废水脱色的生物转化研究

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Mixed culture of two bacterial strains Bacillus sp. and Serratia marcescens showed potential pentachlorophenol (PCP) degradation and decolorisation of pulp paper mill effluent. The physico-chemical quality of pulp paper mill effluent has been analyzed after 168 h incubation period degraded by mixed culture. The study revealed that it has decreased high load of BOD, COD, TS, TDS, TSS, sulphate, phosphate, total nitrogen, total phenols, metals and different salts (i.e. chloride, sodium, nitrate, potassium) at 168 h incubation period. PCP degradation in pulp paper mill effluent was confirmed by HPLC analysis. Mixed culture was found to degrade PCP up to (94%) present in pulp paper mill effluent with 1% glucose and 0.5% peptone (w/v) at 30 +/- 1 degrees C, pH 8.0 +/- 0.2 at 120 rpm in 168 h incubation period. The simultaneous release of chloride ion up to 1200 mg/l at 168 h emphasized the bacterial dechlorination in the medium. The pulp paper mill effluent degradation was also supported by decline in pH, AOX (absorbable organic halides), color, D.O., BOD, COD and PCP. The analysis of pulp paper mill effluent degradation products by GC-MS analysis revealed the formation of low molecular weight compound like 2-chlorophenol (RT = 3.8 min) and tetrachlorohydroquinone (RT = 11.86 min) from PCP extracted degraded sample. Further, mixed culture may be used for bioremediation of PCP containing pulp paper mill waste in the environment. (C) 2007 Elsevier Ltd. All rights reserved.
机译:两种细菌菌株芽孢杆菌的混合培养。粘质沙雷氏菌和粘质沙雷氏菌显示了五氯苯酚(PCP)的降解和纸浆厂废水的脱色。经过混合培养降解168 h后,对纸浆厂废水的理化质量进行了分析。该研究表明,在168小时的孵化期中,它降低了BOD,COD,TS,TDS,TSS,硫酸盐,磷酸盐,总氮,总酚,金属和不同盐(例如氯化物,钠,硝酸盐,钾)的高负荷量。通过HPLC分析证实了纸浆厂废水中的PCP降解。在30 +/- 1摄氏度,120 rpm的pH 8.0 +/- 0.2的条件下,发现混合培养物可降解纸浆厂废水中含1%葡萄糖和0.5%蛋白ept(w / v)的PCP,最高可达94%。在168小时的潜伏期。在168小时同时释放高达1200 mg / l的氯离子强调了培养基中细菌的脱氯作用。 pH值,AOX(可吸收的有机卤化物),颜色,D.O.,BOD,COD和PCP的下降也支持了纸浆厂废水的降解。纸浆厂废水降解产物的GC-MS分析表明,从PCP提取的降解样品中形成了低分子量化合物,如2-氯苯酚(RT = 3.8分钟)和四氯氢醌(RT = 11.86分钟)。此外,混合培养可用于环境中含有PCP的纸浆厂废物的生物修复。 (C)2007 Elsevier Ltd.保留所有权利。

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