首页> 外文期刊>International journal of hydrogen energy >Simultaneous Biohydrogen Production And Starch Wastewater Treatment In An Acidogenic Expanded Granular Sludge Bed Reactor By Mixed Culture For Long-term Operation
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Simultaneous Biohydrogen Production And Starch Wastewater Treatment In An Acidogenic Expanded Granular Sludge Bed Reactor By Mixed Culture For Long-term Operation

机译:产酸膨化颗粒污泥床反应器同时培养同时生产生物氢气和淀粉废水

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The biofilm-based expanded granular sludge bed (EGSB) reactor was developed to treat starch-containing wastewater and simultaneously recovery hydrogen by mixed microbial culture. Granular activated carbon (GAC) was used as the support media. Operating at the temperature of 30 ℃ for over 400 days (data not shown), the EGSB reactor presented high efficiency in hydrogen production and COD removal ability. The maximum hydrogen production rate (HPR) was found to be 1.64 L/L.d under the organic loading rate (OLR) of 1.0 g-starch/L.d, pH of 4.42 and HRT of 4 h. The hydrogen yield (HY) peaked at 0.11 L/g-COD, under the OLR of 0.5 g-starch/L.d, pH of 3.95 and HRT of 8 h. Hydrogen volume content was estimated to be 35-65% of the total biogas. The average COD removal rate was 31.1% under the OLR of 0.125 g-starch/L.d and HRT of 24 h. The main dissolved fermentation products were ethanol, acetate and butyrate. The average attached biofilm concentration was estimated to be 8.26 g/L, which favored hydrogen production and COD removal. It is speculated that the low pH operation in the present system would contribute significantly to lower the cost of alkaline amount required for pH control in the continuous operation, especially in the scale-up biohydrogen producing system. A model, built on the back propagation neural network (BPNN) theory and linear regression techniques, was developed for the simulation of EGSB system performance in the biodegradation of starch synthesis-based wastewater and simultaneous hydrogen production. The model well fitted the laboratory data, and could well simulate the removal of COD and the production of hydrogen in the EGSB reactor.
机译:开发了基于生物膜的膨胀颗粒污泥床(EGSB)反应器,以处理含淀粉的废水,并同时通过混合微生物培养回收氢气。颗粒状活性炭(GAC)用作支撑介质。 EGSB反应器在30℃的温度下运行400天以上(数据未显示),在制氢和去除COD方面具有很高的效率。在有机负荷率(OLR)为1.0克淀粉/L.d、pH为4.42和HRT为4 h的条件下,最大产氢率(HPR)为1.64 L / L.d。在OLR为0.5 g-淀粉/L.d、pH为3.95和HRT为8 h的条件下,氢产率(HY)达到0.11 L / g-COD的峰值。氢气体积含量估计为总沼气的35-65%。在OLR为0.125 g-淀粉/L.d和HRT为24 h的情况下,平均COD去除率为31.1%。溶解的主要发酵产物是乙醇,乙酸盐和丁酸盐。附着的生物膜平均浓度估计为8.26 g / L,有利于产氢和去除COD。据推测,本系统中的低pH操作将显着降低连续操作中pH控制所需的碱量的成本,特别是在按比例放大的生物氢生产系统中。建立了基于反向传播神经网络(BPNN)理论和线性回归技术的模型,用于模拟EGSB系统在淀粉合成废水的生物降解和同时制氢中的性能。该模型很好地拟合了实验室数据,并且可以很好地模拟EGSB反应器中COD的去除和氢气的产生。

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