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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Decolorization of molasses wastewater by yeast strain, Issatchenkia orientalis No. SF9-246
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Decolorization of molasses wastewater by yeast strain, Issatchenkia orientalis No. SF9-246

机译:酵母菌株(伊萨香)SF9-246对糖蜜废水的脱色

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Among 2402 strains of yeast isolated from various sources in Thailand, a strain No. SF9-246 identified as Issatchenkia orientalis, showed the highest potential for use in decolorization of molasses wastewater. In a malt extract-glucose-peptone broth (MYGP) culture containing melanoidin pigment (NIP) at 30 degrees C a 60.2% decolorization was obtained within 7 days. The strain appeared to enhance both MP-degradation and MP-adsorption. The strain showed MP, chemical oxygen demand (COD) and biological oxygen demand (130135) removal efficiencies of 91.2%, 80.0% and 77.4%, respectively from anaerobic-treated molasses wastewater solution (T-MWW), collected from an anaerobic pond. The wastewater contained 2.5% glucose, 0.1% NH4Cl, and 0.1% KH2PO4. The pH was adjusted to 5.0 at 30 degrees C for 7 days batch type culture system. The strain showed almost constant decolorization yield of 75-80% over 7 days in a periodical feeding system of 10%, fresh T-MWW with the culture system. The strain provided a constant decolorization yield about 70% during 3 replacement cycles. Gel filtration chromatography showed that larger molecular weight fraction of NIP solution was rapidly removed, while the smaller molecular weight fraction remained in the effluent. (C) 2007 Elsevier Ltd. All rights reserved.
机译:在从泰国各种来源分离的2402株酵母菌中,编号为SF9-246的菌株被鉴定为Oriental Issatchenkia Orientalis,显示出用于糖蜜废水脱色的最大潜力。在30摄氏度下,含有黑素素(NIP)的麦芽提取物-葡萄糖-蛋白pe肉汤(MYGP)培养物中,在7天内获得了60.2%的脱色率。该菌株似乎增强了MP降解和MP吸附。该菌株的厌氧处理糖蜜废水溶液(T-MWW)的MP,化学需氧量(COD)和生物需氧量(130135)去除效率分别为91.2%,80.0%和77.4%。废水中含有2.5%的葡萄糖,0.1%的NH4Cl和0.1%的KH2PO4。在7天的分批式培养系统中,将pH在30℃下调节至5.0。该菌株在10%的定期T-MWW培养系统的定期喂料系统中,在7天内显示了几乎恒定的75-80%的脱色率。该菌株在3个替换循环中提供了约70%的恒定脱色率。凝胶过滤色谱法表明,较大分子量的NIP溶液被快速去除,而较小分子量的部分保留在流出物中。 (C)2007 Elsevier Ltd.保留所有权利。

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