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首页> 外文期刊>Bulletin of the Korean Chemical Society >Development of Microbial Fuel Cells Using Proteus vulgaris
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Development of Microbial Fuel Cells Using Proteus vulgaris

机译:利用寻常变形杆菌开发微生物燃料电池

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Microbial fuel cells comprising the microorganism P. vulgaris, thioninas a mediator, and various mono- and disaccharides in an anodic compartment have been developed. A cathodic compartment containing a Pt electrode and Fe(CN)6 3- was separated from an anode by the Nafion membrane. From absorbance-time measurements, it was found that the absorbance of thionin was not altered by the addition of P. vulgaris, even in the presence of sugars. However, thionin was effectively reduced when P. vulgaris was present. These results differ substantially from the case of safranine O, a phenazine-derivative, indicating that thionin takes up electrons during the metabolic oxidation processes of carbohydrates. Maximum fuel cell efficiency was observed at 37 ∩, optimum temperature for the growth of P. vulgaris, and 0.5 V cell voltage was obtained, which indicates that the metabolism of the microorganism directly affects the efficiency. Thionin concentration was closely related to cell performance. When the charging-discharging characteristics were tested with glucose, galactose,sucrose, maltose, and trehalose as carbon sources, galactose was found to give the highest coulombic efficien-cy. Cell performance was almost fully recovered with only small degradation when glucose and sucrose were used in the repetitive operation. Current was maintained nearly twice as long for sucrose than in the case of glucose.
机译:已经开发了在微生物区隔中包含寻常性毕赤酵母,介导的硫亚砜以及各种单糖和二糖的微生物燃料电池。通过Nafion膜将包含Pt电极和Fe(CN)6 3-的阴极室与阳极隔开。从吸光度时间测量中发现,即使添加了糖,也没有改变寻常硫杆菌的硫蛋白的吸收度。但是,当存在寻常疟原虫时,硫蛋白可有效减少。这些结果与番红素O(吩嗪衍生物)的情况大不相同,这表明硫蛋白在碳水化合物的代谢氧化过程中会吸收电子。在37∩,最佳寻常生长温度下观察到最大的燃料电池效率,并获得0.5 V的电池电压,这表明微生物的代谢直接影响效率。硫蛋白浓度与细胞性能密切相关。当以葡萄糖,半乳糖,蔗糖,麦芽糖和海藻糖为碳源测试充放电特性时,发现半乳糖具有最高的库仑效率。当在重复操作中使用葡萄糖和蔗糖时,电池性能几乎完全恢复,并且降解很小。蔗糖的电流维持时间几乎是葡萄糖的两倍。

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