首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Determination of the concentration of maltose- and starch-like compounds in drinking water by growth measurements with a well-defined strain of a Flavobacterium species.
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Determination of the concentration of maltose- and starch-like compounds in drinking water by growth measurements with a well-defined strain of a Flavobacterium species.

机译:通过使用确定的黄杆菌属菌株进行生长测量来确定饮用水中麦芽糖和淀粉样化合物的浓度。

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摘要

The growth kinetics of Flavobacterium sp. strain S12 specialized in the utilization of glycerol, and a number of oligo- and polysaccharides were determined in batch-culture experiments at 15 degrees C in pasteurized tap water supplied with very low amounts of substrates. Kss for the growth on maltotriose, maltotetraose, maltopentaose, and maltohexaose were 0.03 microM or less and below those for glucose (1.5 microM) and maltose (0.16 microM). Kss for starch, amylose, and amylopectin were 8.4, 25.6, and 11.0 micrograms of C per liter, respectively. A yield of 2.3 X 10(7) CFU/micrograms of C on the oligo- and polysaccharides was calculated from the linear relationships observed between maximum colony counts in pasteurized tap water and the concentrations (usually below 25 micrograms of C per liter) of supplied compounds. The maximum colony counts of strain S12 grown in various types of raw water and tap water revealed that raw water contained only a few micrograms of maltose- and starch-like compounds per liter; in tap water the concentrations were all below 1 microgram of C and usually below 0.1 microgram of C per liter. The application of starch-based coagulant aids gave increased concentrations of maltose- and starch-like compounds in the water during treatment, but these concentrations were greatly reduced by coagulation and sedimentation, rapid sand filtration, and slow sand filtration.
机译:黄杆菌属细菌的生长动力学。专门用于甘油利用的S12菌株和许多寡糖和多糖是在15摄氏度下在巴氏杀菌的自来水中分批培养的实验中测定的,该巴氏杀菌的自来水中添加了少量的底物。麦芽三糖,麦芽四糖,麦芽五糖和麦芽六糖的生长Kss为0.03 microM或更低,低于葡萄糖(1.5 microM)和麦芽糖(0.16 microM)的Kss。淀粉,直链淀粉和支链淀粉的Kss分别为每升8.4、25.6和11.0微克C。从巴氏杀菌自来水中最大菌落数与所供应的浓度(通常低于25微克C /升)之间观察到的线性关系,计算出寡糖和多糖上C的产量为2.3 X 10(7)CFU /微克。化合物。在各种类型的原水和自来水中生长的菌株S12的最大菌落数表明,每升原水仅含有几微克的麦芽糖和淀粉样化合物。在自来水中,浓度均低于1微克C,通常低于0.1微克C / L。淀粉类助凝剂的应用在处理过程中增加了水中麦芽糖和类淀粉化合物的浓度,但是这些浓度却因凝结和沉淀,快速砂滤和缓慢砂滤而大大降低。

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