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Decolorization of molasses wastewater from distilleries using bacterial consortium

机译:利用细菌联盟对酿酒厂的糖蜜废水进行脱色

摘要

Distillery effluent from sugarcane molasses leads to an environmental pollution due to its large volume and the presence of dark brown colored compounds, known as melanoidins. In this study, a bacterial consortium CONS8 isolated from waterfall sediments in Maehongsorn province was selected as a molasses-decolorizing consortium. Consortium CONS8 was able to decolorize, only within 2 days, in Erlenmeyer flasks, three different synthetic wastewaters containing either Viandox sauce (13.5% v/v), beet molasses wastewater (41.5% v/v) or sugarcane molasses wastewater (20% v/v) at 9.5, 8.0 and 17.5%, respectively. Four predominant bacteria present in the consortium CONS8 were identified by the 16S rDNA analysis. To achieve the highest decolorization, the artificial bacterial consortium MMP1 comprising Klebsiella oxytoca, Serratia mercescens (T2) and unknown bacterium DQ817737 (T4), was constructed. Under optimized conditions (aeration, pH), the bacterial consortium MMP1 was able to decolorize the synthetic melanoidins-containing wastewater at 18.3% within 2 days. The comparison of decolorization by the consortium MMP1 with abiotic control proved that the color removal for synthetic melanoidins-containing wastewater medium was mainly due to biotic activity of bacterial cells, without any adsorption phenomena. Supplement of nutrients and vitamin B did not promote melanoidins decolorization by bacterial consortium MMP1. Finally, the performance of a membrane bioreactor (MBR) for synthetic melanoidins-containing wastewater treatment was investigated at laboratory scale, with a mineral membrane. The reactor seeding was made with the MMP1 bacterial consortium inoculum. The reactor was performed with several hydraulic retention times (HRT) of 15, 20, and 40 hours. The performances were analyzed in terms of COD, color removal and biomass in the reactor. The results indicated that the higher COD and color removal efficiency were achieved with the longer HRT.
机译:来自甘蔗糖蜜的酒厂废水由于其体积大和存在深棕色化合物(称为黑素)而导致环境污染。在这项研究中,从湄宏索省瀑布沉积物中分离出的细菌财团CONS8被选为糖蜜脱色财团。财团CONS8仅在2天之内即可在锥形瓶中对三种不同的合成废水进行脱色,这些废水包含Viandox酱(13.5%v / v),甜菜糖蜜废水(41.5%v / v)或甘蔗糖蜜废水(20%v / v)分别为9.5、8.0和17.5%。通过16S rDNA分析鉴定出财团CONS8中存在的四种主要细菌。为了实现最高的脱色,构建了包括产酸克雷伯菌,粘质沙雷氏菌(T2)和未知细菌DQ817737(T4)的人工细菌财团MMP1。在优化的条件下(通气,pH),细菌财团MMP1能够在2天内以18.3%的比例对合成的含黑素类废水进行脱色。通过对MMP1财团与非生物控制进行脱色的比较证明,合成的含类黑素废水介质的脱色主要是由于细菌细胞的生物活性引起的,没有任何吸附现象。营养素和维生素B的补充并没有促进细菌财团MMP1褪黑素的脱色。最后,在实验室规模下,使用矿物膜研究了膜生物反应器(MBR)用于处理含合成类黑素废水的性能。用MMP1细菌联合体接种物接种反应堆。反应器在15、20和40小时的几个水力停留时间(HRT)下进行。根据反应器中的COD,脱色和生物量来分析性能。结果表明,更长的HRT可以实现更高的COD和脱色效率。

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    Jiranuntipon Suhuttaya;

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  • 年度 2009
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