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首页> 外文期刊>Engineering in Life Sciences >Anaerobic Hydrogen Production from Sucrose Using an Acid-Enriched Sewage Sludge Microflora
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Anaerobic Hydrogen Production from Sucrose Using an Acid-Enriched Sewage Sludge Microflora

机译:使用富含酸的污水污泥菌群从蔗糖中厌氧制氢

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摘要

A novel and high-rate anaerobic sequencing bath reactor (ASBR) process was used to evaluate the hydrogen productivity of an acid-enriched sewage sludge microflora at a temperature of 35 °C. In this ASBR process a 4 h cycle, including feed, reaction,settle, and decant steps, was repeatedly performed in a 5 L reactor. The sucrose substrate concentration was 20 g COD/L; the hydraulic retention time (HRT) was maintained at 12-120 h at the initial period and thereafter at 4-12 h. The reaction/settle period ratio, which is the most important parameter for ASBR operation was 1.7. The experimental results indicated that the hydrogenic activity of the sludge microflora was HRT-depcndenl and that proper pH control was necessary for a stable operation of thebioreaclor. The peak hydrogenic activity value was attained at an HRT of 8 h and an organic loading rate of 80 kg COD/ m~3 x day. Each mole of sucrose in the reactor produced 2.8 mol of hydrogen and each gram of biomass produced 39 mmol of hydrogen perday. An overly-short HRT might deteriorate the hydrogen productivity. The concentration ratios of butyric acid to acetic acid, as well as volatile fatty acid and soluble microbial products to alkalinity can be used as monitoring indicators for the hydrogenic bioreaclor.
机译:一种新颖的高速率厌氧测序浴反应器(ASBR)工艺用于评估在35°C的温度下富酸污水污泥微生物区系的氢气生产率。在该ASBR工艺中,在5升反应器中重复进行4小时的循环,包括进料,反应,沉降和倾析步骤。蔗糖底物浓度为20 g COD / L;在初始阶段,水力停留时间(HRT)保持在12-120小时,之后保持在4-12小时。反应/沉降周期比是ASBR操作最重要的参数,为1.7。实验结果表明,污泥微生物区系的氢活性为HRT-去甲基化,并且适当的pH控制对于稳定生物反应器是必需的。 HRT为8 h,有机负荷率为80 kg COD / m〜3 x day时,氢活度达到峰值。反应器中每摩尔蔗糖产生2.8摩尔氢,每克生物质每天产生39毫摩尔氢。 HRT太短可能会降低氢气生产率。丁酸与乙酸的浓度比,以及挥发性脂肪酸和可溶性微生物产物与碱度的浓度比可用作氢生物反应器的监测指标。

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