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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Production of biohythane from food waste via an integrated system of continuously stirred tank and anaerobic fixed bed reactors
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Production of biohythane from food waste via an integrated system of continuously stirred tank and anaerobic fixed bed reactors

机译:通过连续搅拌釜和厌氧固定床反应器的集成系统生产从食物废物中的生物合金的生产

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摘要

The continuous production of biohythane (mixture of biohydrogen and methane) from food waste using an integrated system of a continuously stirred tank reactor (CSTR) and anaerobic fixed bed reactor (AFBR) was carried out in this study. The system performance was evaluated for an operation period of 200 days, by stepwise shortening the hydraulic retention time (HRT). An increasing trend of biohydrogen in the CSTR and methane production rate in the AFBR was observed regardless of the HRT shortening. The highest biohydrogen yield in the CSTR and methane yield in the AFBR were 115.2 (+/- 5.3) L H-2/kgVS(added) and 334.7 (+/- 18.6) L CH4/kgCOD(added), respectively. The AFBR presented a stable operation and excellent performance, indicated by the increased methane production rate at each shortened HRT. Besides, recirculation of the AFBR effluent to the CSTR was effective in providing alkalinity, maintaining the pH in optimal ranges (5.0-5.3) for the hydrogen producing bacteria. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本研究中进行了使用连续搅拌釜反应器(CSTR)和厌氧固定床反应器(AFBR)的集成系统的食物废物中的生物合水(生物氢和甲烷的混合物)。通过逐步缩短液压保留时间(HRT),评估系统性能为200天的操作期。无论HRT缩短如何,都观察到AFBR中CSTR和甲烷生产率的生物氢中的增加趋势。 AFBR中CSTR和甲烷产量中的最高生物氢产率分别为115.2(+/- 5.3)L H-2 / KgV(加入)和334.7(+/- 18.6)L CH 4 / Kgcod(加入)。 AFBR呈现出稳定的操作和优异的性能,在每个缩短的HRT上增加的甲烷生产率表示。此外,对CSTR的AFRBR流出物的再循环有效地提供碱度,在产生氢气的最佳范围(5.0-5.3)中保持pH值。 (c)2016 Elsevier Ltd.保留所有权利。

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