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The effect of biomass immobilization support material and bed porosity on hydrogen production in an upflow anaerobic packed-bed bioreactor

机译:上流厌氧填充床生物反应器中生物量固定化支持材料和床孔隙率对产氢的影响

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The aim of this study was to investigate the effect of the support material used for biomass attachment and bed porosity on the potential generation of hydrogen gas in an anaerobic bioreactor treating low-strength wastewater. For this purpose, an upflow anaerobic packed-bed (UAPB) reactor fed with sucrose-based synthetic wastewater was used. Three reactors with various support materials (expanded clay, vegetal coal, and low-density polyethylene) were operated for hydraulic retention time (HRT) of 0.5 and 2 h. Based on the results obtained, three further reactors were operated with low-density polyethylene as a material support using various bed porosities (91, 75, and 50 %) for an HRT of 0.5 h. The UAPB reactor was found to be a feasible technology for hydrogen production, reaching a maximum substrate-based hydrogen yield of 7 mol H _2 mol~(-1) sucrose for an HRT of 0.5 h. The type of support material used did not affect hydrogen production or the microbial population inside the reactor. Increasing the bed porosity to 91 % provided a continuous and cyclic production of hydrogen, whereas the lower bed porosities resulted in a reduced time of hydrogen production due to biomass accumulation, which resulted in a decreasing working volume.
机译:这项研究的目的是研究用于生物质附着和床孔隙度的载体材料对厌氧生物反应器处理低强度废水中潜在产生氢气的影响。为此,使用了以蔗糖基合成废水为原料的上流厌氧填充床(UAPB)反应器。三个带有各种支撑材料(膨胀粘土,植物煤和低密度聚乙烯)的反应器的水力停留时间(HRT)为0.5和2小时。根据获得的结果,使用低密度聚乙烯作为材料支撑体,使用三个不同的床孔隙率(91%,75%和50%),以0.5小时的HRT运行另外三个反应器。 UAPB反应器是一种可行的制氢技术,在0.5 h的HRT下,基于底物的最大氢产量为7 mol H _2 mol〜(-1)蔗糖。所使用的载体材料的类型不影响氢气的产生或反应器内的微生物种群。将床孔隙率提高至91%可提供连续且循环的氢气产生,而较低的床孔隙率则由于生物质积累而缩短了氢气生产时间,从而导致工作量减少。

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