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两段式奶酪乳清发酵系统中连续的氢气和甲烷生产。

Continuous hydrogen and methane production in a two-stage cheese whey fermentation system.

机构信息

División de Ciencias Ambientales, Instituto Potosino de Investigación Científica y Tecnológica, Camino a la Presa San José 2055, Lomas 4a sección, C.P. 78216, San Luis Potosí, S.L.P, México.

出版信息

Water Sci Technol. 2011;64(2):367-74. doi: 10.2166/wst.2011.631.

Abstract

The feasibility of integrating biological hydrogen and methane production in a two-stage process using mixed cultures and cheese whey powder (CWP) as substrate was studied. The effect of operational parameters such as hydraulic retention time (HRT) and organic loading rate (OLR) on the volumetric hydrogen (VHPR) and methane (VMPR) production rates was assessed. The highest VHPR was 28 L H2/L/d, obtained during stable operation in a CSTR at HRT and OLR of 6 h and 142 g lactose/ L/d, respectively. Moreover, hydrogen (13 L/L/d) was produced even at HRT as low as 3.5 h and OLR of 163 g lactose/L/d, nonetheless, the reactor operation was not stable. Regarding methane production in an UASB reactor, the acidified effluent from the hydrogen-producing bioreactor was efficiently treated obtaining COD removals above 90% at OLR and HRT of 20 g COD/L/d and 6 h, respectively. The two-stage process for continuous production of hydrogen and methane recovered over 70% of the energy present in the substrate. This study demonstrated that hydrogen production can be efficiently coupled to methane production in a two-stage system and that CWP is an adequate substrate for energy production.

摘要

利用混合培养物和奶酪乳清粉(CWP)作为底物,在两阶段工艺中整合生物制氢和甲烷生产的可行性进行了研究。评估了水力停留时间(HRT)和有机负荷率(OLR)等操作参数对体积氢气(VHPR)和甲烷(VMPR)产率的影响。在 CSTR 中稳定运行时,获得了最高的 VHPR 为 28 L H2/L/d,HRT 和 OLR 分别为 6 h 和 142 g 乳糖/L/d。此外,即使在 HRT 低至 3.5 h 和 OLR 为 163 g 乳糖/L/d 的情况下也能生产氢气(13 L/L/d),但反应器运行不稳定。关于 UASB 反应器中的甲烷生产,从产氢生物反应器中酸化的流出物得到有效处理,在 OLR 和 HRT 分别为 20 g COD/L/d 和 6 h 时,COD 去除率超过 90%。用于连续生产氢气和甲烷的两段式工艺回收了底物中超过 70%的能量。本研究表明,氢气生产可以在两段式系统中与甲烷生产有效耦合,并且 CWP 是生产能源的合适底物。

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