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Effect of cell immobilization, hematite nanoparticles and formation of hydrogen-producing granules on biohydrogen production from sucrose wastewater

机译:固定化细胞,赤铁矿纳米颗粒和产氢颗粒的形成对蔗糖废水中生物氢生产的影响

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This study investigated the effect of granules formation, hematite nanoparticles and bio-film carriers on biohydrogen production from sucrose wastewater in continuous stirring tank reactors operated at 12 h HRT, pH of 5.5 and 35 degrees C. Granular-based bioreactor was subjected to acid incubation period for 24 h by shifting the pH from 5.5 to 3. Before application of the acid incubation, hydrogen-producing granules (HPGs) diameter and hydrogen production rate (HPR) of 0.5 mm and 4.3 L/L.d, respectively were measured at 10 g-sucrose/L. Application of acid incubation enhanced the granulation process, where the particle size increased to 2.8 mm and'higher HPR of 7.8 L/L.d was obtained. Higher sucrose concentration (15-30 gL) enhanced HPGs diameter and increased the HPR. At 10 g-sucrose/L, addition of hematite nanoparticles increased the HPR to 5.9 L/L.d higher than 3.87 L/L.d measured in control reactor. Biofilm-based reactor showed HPR of 2.48 L/L.d lower than the control reactor. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究调查了在12 h HRT,pH 5.5和35摄氏度下运行的连续搅拌釜反应器中颗粒形成,赤铁矿纳米颗粒和生物膜载体对蔗糖废水生产生物氢的影响。对基于颗粒的生物反应器进行酸培养通过将pH值从5.5改变为3,持续24小时。在进行酸培养之前,在10 g下测得的生氢颗粒(HPG)直径和生氢速率(HPR)分别为0.5 mm和4.3 L / Ld。 -蔗糖/ L。酸培养的应用增强了制粒过程,其中粒径增加到2.8 mm,获得了更高的HPR 7.8 L / L.d。较高的蔗糖浓度(15-30 gL)会增加HPG的直径并增加HPR。在10 g蔗糖/ L下,添加赤铁矿纳米颗粒使HPR增至5.9 L / L.d,高于在对照反应器中测得的3.87 L / L.d。基于生物膜的反应器显示HPR比对照反应器低2.48 L / L.d。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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