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首页> 外文期刊>Engenharia Agrícola >HYDROGEN PRODUCTION AND PERFORMANCE OF ANAEROBIC FIXED-BED REACTORS USING THREE SUPPORT ARRANGEMENTS FROM CASSAVA STARCH WASTEWATER
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HYDROGEN PRODUCTION AND PERFORMANCE OF ANAEROBIC FIXED-BED REACTORS USING THREE SUPPORT ARRANGEMENTS FROM CASSAVA STARCH WASTEWATER

机译:使用来自木薯淀粉废水的三个支撑装置的厌氧固定床反应器的氢气生产和性能

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Fixed-bed reactors have been considered promise alternatives for hydrogen production due to their simple construction and increase in the biomass retention. The purpose of this study was to investigate the biological production of hydrogen in anaerobic fixed-bed reactors with cassava starch wastewater used as substrate. Different support materials and arrangements of fixed-bed were used to evaluate the biological production of hydrogen in anaerobic continuous fixed-bed reactors, with cassava starch wastewater as substrate - recycled low-density polyethylene scraps, in packed bed (R1), recycled low-density polyethylene cylinders, in ordained bed (R3) and bamboo stems, in vertical arrangement (R2 and R4). In R1 the initial pH was adjusted for 6.0, with hydraulic retention time (HRT) of 4 h and organic loading rate (OLR) of 9.5 g.L?1.d?1. In R2 the initial pH was maintained in 4.5, with HRT of 4 h and OLR of 9.5 g.L?1.d?1. R3 and R4 were operated with initial pH of 4.5, HRT of 4 h and OLR of 13.5 g.L?1.d?1. The volumetric hydrogen production (VHPR) was favored by lower OLR applied, evenin different pH ranges (6.0 and 4.5). VHPR values of 229 mL H2.L?1.d?1and 248 mL H2.L?1.d?1 were obtained in R1 and R2, respectively. Both in the bamboo stems bed as in the polyethylene cylinders bed, the increase of OLR and the reduction of the initial pH resulted in a diminishing of VHPR to 175 mL H2.d?1.L?1 (R3) and 145 m LH2 .d?1.L?1 (R4). Higher concentrations of butanol (821.32 and 1,529.22 mg.L?1) and ethanol (915.41 and 924.41 mg.L?1) were verified in the reactors with bamboo stems. In R4, the increase of OLR and the reduction of the initial pH contributed to the increase of butanol concentration in 1.8 times, diminishing the VHPR in 41.68%, yield in 63.95% and H2 in 37.6%, and indicating that the effect of pH is more pronounced with the increase of OLR, leading to the solventogenesis.
机译:由于其简单的结构和生物质保留增加,固定床反应器已被认为是氢气产生的承诺替代品。本研究的目的是探讨厌氧固定床反应器中氢的生物生产与用作基材的木薯淀粉废水。不同的支撑材料和固定床的布置用于评估厌氧连续固定床反应器中的氢的生物生产,用木薯淀粉废水作为基材 - 再循环的低密度聚乙烯碎屑,填充床(R1),再循环密度聚乙烯圆筒,在垂直布置(R2和R4)中被定义的床(R3)和竹子茎。在R1中,将初始pH调节6.0,液压保留时间(HRT)为4小时,有机加载速率(OLR)为9.5 G.L?1.D?1。在R2中,初始pH维持在4.5,HRT为4小时,OLR为9.5 G.L?1.D?1。 R3和R4用初始pH为4.5,HRT为4小时,OLR为13.5G.L≤1.D≤1。体积氢生产(VHPR)由施用的低olr施用,均匀不同pH范围(6.0和4.5)。 VHPR值为229mL H 2。1α1.D?148mL H 2。1,分别在R1和R 2中获得148ml H 2。1。在竹茎床上,如聚乙烯圆筒床,olr的增加和初始pH的减少导致VHPR至175mLH2.D≤1.1α1(R3)和145米LH2。 d?1.l?1(R4)。在用竹茎的反应器中验证了更高浓度的丁醇(821.32和1,529.22mg.1→1)和乙醇(915.41和924.41mg.1.1mm.1.1m。在R4中,OLR的增加和初始pH的减少有助于丁醇浓度的增加1.8倍,在33.95%和H2中递减41.68%,产量为37.6%,表明pH值的效果随着OLR的增加,更明显,导致溶剂发生。

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