首页> 外文会议>Energy and Environment Technology, 2009. ICEET '09 >Simultaneous Biohydrogen Production and Wastewater Treatment in Continuous Stirred Tank Reactor (CSTR) Using Beet Sugar Wastewater
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Simultaneous Biohydrogen Production and Wastewater Treatment in Continuous Stirred Tank Reactor (CSTR) Using Beet Sugar Wastewater

机译:使用甜菜糖废水在连续搅拌釜反应器中同时生产生物氢和废水

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Biohydrogen production with simultaneous wastewater treatment was studied in continuous stirred-tank reactor (CSTR) using beet sugar wastewater as substrate. Aerobic activated sludge was used as parent inoculum to startup the bioreactor. The reactor started up under the condition of influent COD concentration 4000 mg/L, pH 7, HRT 8h and (35±1)¿, with a biomass of 6.09 g/L activated sludge in term of volatile suspended solid (VSS). The reactor demonstrated stable performance with respect to biogas production and substrate degradation after 28 days of operation. Subsequently, the reactor was operated at OLR of 18 kgCOD/m3Ȃ2;day by the 53th day. During this phase of stable operation, the reactor also showed a COD removal efficiency of 45% and a specific H2 production of 76.64L/kgVSS¿d in the system. Experimental data documented the feasibility of molecular H2 generation along with substrate degradation from beet sugar wastewater during the bioreactor operation.
机译:以甜菜糖废水为底物,在连续搅拌釜反应器(CSTR)中研究了同时进行废水处理的生物氢生产。好氧活性污泥用作母体接种物以启动生物反应器。反应器在进水COD浓度为4000 mg / L,pH 7,HRT 8h和(35±1)Â的条件下启动,其生物量为6.09 g / L的活性污泥,以挥发性悬浮固体(VSS)计。在运行28天后,该反应器在沼气生产和底物降解方面表现出稳定的性能。随后,该反应器在第53天以18kgCOD / m 3·2的OLR运行。在稳定运行的这一阶段,反应器还显示出COD去除效率为45%,系统中的H2比产量为76.64L / kgVSS。实验数据证明了在生物反应器运行过程中,从甜菜糖废水中产生分子H2以及底物降解的可行性。

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