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在厌氧序批式反应器中调控循环时长和pH值对发酵产氢的影响

Effects of manipulating cyclic duration and pH on fermentative hydrogen production in an anaerobic sequencing batch reactor.

作者信息

Won Seung-Gun, Lau Anthony K

机构信息

a Department of Animal Life System , Kangwon National University , Chunchon , South Korea.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2015;50(7):750-6. doi: 10.1080/10934529.2015.1012001.

Abstract

The effects of cyclic duration and pH on biological hydrogen production were investigated in an anaerobic sequencing batch reactor. Experiments were conducted using cyclic duration of (4, 8, and 12 h) in combination with pH (4, 5, and 6) in a 3 × 3 factorial design, while hydraulic retention time and organic loading rate were maintained at 24 h and 10.3 g COD L(-1).d(-1), respectively. At pH 4, the effect of cyclic duration on hydrogen production was found to be insignificant. However, in runs with pH 5 and 6, a shorter cyclic duration of 4 h led to lower hydrogen productivity. The operational condition (pH 6, cyclic duration 12 h) induced higher hydrogen production rate of 2.3 ± 0.6 L H2/L reactor.d, whereas higher hydrogen yield of 2.2 ± 0.4 mol H2/mol sucrose was achieved at pH 5 and the same 12 h cyclic duration. The differences in hydrogen production were not statistically significant between 8 h and 12 h cyclic duration. Higher hydrogen production rates were associated with biomass (mixed liquor volatile suspended solids) concentration ranging from 8-13 g L(-1), but further increase in biomass growth was not accompanied by increased hydrogen production. Furthermore, a food-to-microorganism ratio of 0.84 was found to result in higher hydrogen production rate.

摘要

在厌氧序批式反应器中研究了循环周期和pH值对生物制氢的影响。实验采用3×3析因设计,将循环周期(4、8和12小时)与pH值(4、5和6)相结合,同时将水力停留时间和有机负荷率分别维持在24小时和10.3 g COD L⁻¹·d⁻¹。在pH值为4时,发现循环周期对产氢的影响不显著。然而,在pH值为5和6的运行中,4小时的较短循环周期导致较低的氢气生产率。操作条件(pH值6,循环周期12小时)导致较高的产氢速率,为2.3±0.6 L H₂/L反应器·d,而在pH值为5且循环周期相同为12小时的情况下,实现了较高的氢气产率,为2.2±0.4 mol H₂/mol蔗糖。8小时和12小时循环周期之间的产氢差异在统计学上不显著。较高的产氢速率与8-13 g L⁻¹的生物量(混合液挥发性悬浮固体)浓度相关,但生物量的进一步增长并未伴随着产氢量的增加。此外,发现食物与微生物比为0.84时可产生更高的产氢速率。

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