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恶臭假单胞菌 MTCC 10510 增强对氯代有机物的微生物还原作用及对纸浆造纸厂废水的同步脱色。

Microbial dechlorination of chloroorganics and simultaneous decolorization of pulp-paper mill effluent by Pseudomonas putida MTCC 10510 augmentation.

机构信息

Centre of Excellence, Department of Microbiology, Dr. Ram Manohar Lohia Avadh University, Faizabad, Uttar Pradesh 224001, India.

出版信息

Environ Monit Assess. 2012 Sep;184(9):5533-44. doi: 10.1007/s10661-011-2359-1. Epub 2011 Sep 14.

DOI:10.1007/s10661-011-2359-1
PMID:21915596
Abstract

The physicochemical analyses of pulp-paper mill effluent revealed that it was dark brown with 1761 ± 2.3 color PtCo units having slightly alkaline pH, high biological oxygen demand and chemical oxygen demand values, and contained large quantities of organic and inorganic constituents, well above the prescribed standards. The bacterial growth, color reduction, and dechlorination were evident in all the four sets of experiments with different possible combinations of nutrient supplementation and Pseudomonas putida augmentation. A high degree of decolorization at 29.7% and 27.4% was observed by the effluent native microflora during 48 and 24 h, in unaugmented effluent supplemented with glucose + yeast extract and glucose + peptone, respectively. The extent of decolorization in glucose + yeast extract unaugmented effluent also corresponded with high degree of dechlorination (59.3%) during 60-h incubation (SET III). An appreciable level of growth, decolorization, and dechlorination was evident in nutrient unsupplemented P. putida augmented effluent as well as in the control natural effluent. However, a maximum level of growth response (OD 1.641-1.902) during 36-48 h, removal of color (39.72-48.2%) during 24-36 h, and chloride ions (80.1-83.5%) during 36 h was achieved in P. putida augmented effluent supplemented with glucose + yeast extract or peptone. Therefore, supplementation of effluent with glucose and yeast extract or peptone and concomitant augmentation with P. putida is required for efficient effluent decolorization and detoxification.

摘要

纸浆造纸厂废水的物理化学分析表明,它呈深棕色,具有 1761±2.3 个 PtCo 色度单位,略呈碱性 pH 值,具有较高的生化需氧量和化学需氧量值,并且含有大量的有机和无机成分,远远超过规定的标准。在所有四组不同营养物质补充和恶臭假单胞菌增强的可能组合的实验中,都观察到细菌生长、颜色还原和脱氯。在未经增强的废水中,原生微生物在 48 和 24 小时内分别以葡萄糖+酵母提取物和葡萄糖+蛋白胨进行补充时,分别达到 29.7%和 27.4%的高脱色率。在 60 小时孵育期间(SET III),葡萄糖+酵母提取物未经增强的废水中的脱氯程度也与高脱氯(59.3%)相对应。在营养物质未补充的恶臭假单胞菌增强的废水中以及在对照天然废水中,都明显有生长、脱色和脱氯的情况。然而,在 36-48 小时期间,最大的生长反应(OD 1.641-1.902)、24-36 小时期间的颜色去除(39.72-48.2%)和 36 小时期间的氯离子去除(80.1-83.5%)都发生在葡萄糖+酵母提取物或蛋白胨增强的废水中。因此,需要向废水中补充葡萄糖和酵母提取物或蛋白胨,并同时增强恶臭假单胞菌,以实现有效的废水脱色和解毒。

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