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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >High rate continuous biohydrogen production by hyperthermophilic Thermotoga neapolitana
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High rate continuous biohydrogen production by hyperthermophilic Thermotoga neapolitana

机译:高嗜热渗透性热量高速率连续生物氢化的高速率连续生物氢

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摘要

This study focused on continuous-flow hydrogen production by Thermotoga neapolitana at a hydraulic retention time (HRT) decreasing from 24 to 5 h. At each HRT reduction, the hydrogen yield (HY) immediately dropped, but recovered during prolonged cultivation at constant HRT. The final HY in each operating period decreased from 3.4 ( +/- 0.1) to 2.0 ( +/- 0.0) mol H-2/mol glucose when reducing the HRT from 24 to 7h. Simultaneously, the hydrogen production rate (HPR) and the liquid phase hydrogen concentration (H-2aq) increased from 82 ( +/- 1) to 192 ( +/- 4) mL/L/h and from 9.1 ( +/- 0.3) to 15.6 ( +/- 0.7) mL/L, respectively. Additionally, the effluent glucose concentration increased from 2.1 ( +/- 0.1) to above 10 mM. Recirculating H-2-rich biogas prevented the supersaturation of H-2aq reaching a value of 9.3 ( +/- 0.7) mL/L, resulting in complete glucose consumption and the highest HPR of 277 mL/L/h at an HRT of 5 h.
机译:本研究专注于Thermotoga Neapolitana在液压保留时间(HRT)从24至5小时下降的连续流氢生产。 在每次HRT还原时,氢屈服(HY)立即掉落,但在恒定的HRT下长期培养期间回收。 每次运行期的最终HY从3.4(+/- 0.1)降低到2.0(+/- 0.0)mol H-2 / mol葡萄糖,当从24〜7h中减少HRT时。 同时,氢生产率(HPR)和液相氢浓度(H-2AQ)从82(+/- 1)增加到192(+/- 4)ml / l / h和9.1(+/- 0.3 分别为15.6(+/- 0.7)ml / l。 另外,流出物葡萄糖浓度从2.1(+/- 0.1)增加到10mm。 再循环H-2富含沼气阻止了H-2AQ的过饱和度达到了9.3(+/- 0.7)ml / L的值,导致完全葡萄糖消耗和最高的HPR在5的HRT下的277ml / L / h。 H。

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