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首页> 外文期刊>Brazilian Archives of Biology and Technology >Immobilized Biofilm in Thermophilic Biohydrogen Production using Synthetic versus Biological Materials
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Immobilized Biofilm in Thermophilic Biohydrogen Production using Synthetic versus Biological Materials

机译:使用合成材料与生物材料的高温生物制氢中的固定化生物膜

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Biohydrogen production was studied from the vermicelli processing wastewater using synthetic and biological materials as immobilizing substrate employing a mixed culture in a batch reactor operated at the initial pH 6.0 and thermophilic condition (55 ± 1oC). Maximum cumulative hydrogen production (1,210 mL H2/L wastewater) was observed at 5% (v/v) addition of ring-shaped synthetic material, which was the ring-shaped hydrophobic acrylic. Regarding 5% (v/v) addition of synthetic and biological materials, the maximum cumulative hydrogen production using immobilizing synthetic material of ball-shaped hydrophobic polyethylene (HBPE) (1,256.5 mL H2/L wastewater) was a two-fold increase of cumulative hydrogen production when compared to its production using immobilizing biological material of rope-shaped hydrophilic ramie (609.8 mL H2/L wastewater). SEM observation of immobilized biofilm on a ball-shaped HBPE or a rope-shaped hydrophilic ramie was the rod shape and gathered into group.
机译:使用合成和生物材料作为固定化底物,从细粉加工废水中研究了生物氢的生产,该方法是在间歇式反应器中在初始pH 6.0和嗜热条件(55±1oC)下进行混合培养。在添加5%(v / v)的环状合成材料(环状疏水丙烯酸)时,观察到最大的累计氢气产量(1,210 mL H2 / L废水)。关于合成和生物材料的5%(v / v)添加,使用球形疏水性聚乙烯(HBPE)的固定化合成材料(1,256.5 mL H2 / L废水)的最大累积氢气产生量是累积氢气的两倍增加与使用绳状亲水麻的固定生物材料进行生产相比(609.8 mL H2 / L废水)。球形HBPE或绳索亲水bio麻上固定的生物膜的SEM观察为棒状并聚集。

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