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混合培养系统厌氧发酵同步产氢产乙醇研究(英文)
引用本文:王志超,李玉文. 混合培养系统厌氧发酵同步产氢产乙醇研究(英文)[J]. 哈尔滨商业大学学报(自然科学版), 2014, 0(3): 297-303
作者姓名:王志超  李玉文
作者单位:东北林业大学林学院,哈尔滨150040
基金项目:环保部公益基金(200909043)
摘    要:采用连续流槽式搅拌反应系统(ACSTR)作为反应装置,以制糖废水为底物,污水处理厂剩余污泥为反应的启动污泥,着重研究底物质量浓度和HRT对系统同步产氢产乙醇性能的影响.结果表明,在不同的底物质量浓度和HRT条件下,乙醇产量和氢气产量有着相同的变化趋势.当底物质量浓度和HRT分别为6 g COD/L和6 h时,乙醇和氢气产量分别为1.62/7.25 mmol/(L·h)and 2.97/8.73 mmol/(L·h).线性分析发现乙醇产量和氢气产量之间有很好的相关性,线性方程分别为y=0.156 6x+0.4487(r2=0.8778)和y=0.148 8x+1.671 4(r2=0.9838).

关 键 词:底物质量浓度  水力停留时间  产氢速率  乙醇产率

Fermentative coproduction of hydrogen and ethanol with mixed anaerobic culture environment
WANG Zhi-chao,LI Yu-wen. Fermentative coproduction of hydrogen and ethanol with mixed anaerobic culture environment[J]. Journal of Harbin University of Commerce :Natural Sciences Edition, 2014, 0(3): 297-303
Authors:WANG Zhi-chao  LI Yu-wen
Affiliation:( School of Forestry, Northeast Forestry University, Harbin 150040, China)
Abstract:This paper investigated the effect of substrate concentration and HRT on the pro-duction of hydrogen and ethanol from sugary wastewater in an anaerobic continuous stirred tank reactor ( ACSTR) .Aerobic pretreatment sludge was inoculated into ACSTR system and the indigenous sludge microbial populations were used as hydrogen producer .Experimental results indicated that hydrogen/ethanol production has a similar variation tendency in the re-lationships between substrate concentrations , HRTs, hydrogen production and ethanol pro-duction.The highest hydrogen/ethanol production rate of 1.62~7.25 mmol/· ( L· h) and 2.97~8.73 mmol/(L· h) was documented for substrate concentration (6 g COD/L) and HRT (6 h) condition, respectively.Linear regression results show that ethanol production rate ( y) and hydrogen production rate ( x) were proportionately correlated which can be ex-pressed as y=0.156 6x+0.448 7 (r2 =0.8778) for substrate concentration condition and y=0.148 8x+1.671 4 (r2 =0.983 8) for HRT condition.
Keywords:substrate concentration  hydraulic retention time  hydrogen production rate  eth-anol production rate
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