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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Biohydrogen production from food waste hydrolysate using continuous mixed immobilized sludge reactors
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Biohydrogen production from food waste hydrolysate using continuous mixed immobilized sludge reactors

机译:使用连续混合固定污泥反应器从食物残渣水解物中生产生物氢

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摘要

A continuous mixed immobilized sludge reactor (CMISR) using activated carbon as support carrier for dark fermentative hydrogen production from enzymatic hydrolyzed food waste was developed. The effects of immobilized sludge packing ratio (10-20%, v/v) and substrate loading rate (OLR) (8-40 kg/m(3)/d) on biohydrogen production were examined, respectively. The hydrogen production rates (HPRs) with packing ratio of 15% were significantly higher than the results obtained from packing ratio of 10% and 20%. The best HPR of 353.9 ml/h/L was obtained at the condition of packing ratio = 15% and OLR = 40 kg/m(3)/d. The Minitab was used to elicit the effects of OLR and packing ratio on HPR (Y) which could be expressed as Y = 5.31 OLR + 296 packing ratio + 40.3 (p = 0.003). However, the highest hydrogen yield (85.6 ml/g food waste) was happened at OLR of 16 kg/m(3)/d because of H-2 partial pressure and oxidization/reduction of NADH. (C) 2014 Elsevier Ltd. All rights reserved.
机译:开发了一种以活性炭为载体的连续混合固定式污泥反应器(CMISR),用于从酶解的食物垃圾中产生深色发酵氢。分别考察了固定污泥堆积率(10-20%,v / v)和底物负载率(OLR)(8-40 kg / m(3)/ d)对生物氢产生的影响。装填率为15%的制氢率(HPRs)明显高于装填率为10%和20%的结果。在装箱率= 15%和OLR = 40 kg / m(3)/ d的条件下获得了353.9 ml / h / L的最佳HPR。 Minitab用于引发OLR和堆积率对HPR(Y)的影响,可以表示为Y = 5.31 OLR + 296堆积率+ 40.3(p = 0.003)。但是,由于H-2分压和NADH的氧化/还原,在OLR为16 kg / m(3)/ d时发生了最高的氢气产量(85.6 ml / g的食物垃圾)。 (C)2014 Elsevier Ltd.保留所有权利。

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