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Hydrogen photoproduction by Rhodopseudomonas palustris 42OL cultured at high irradiance under a semicontinuous regime

机译:半连续条件下高照度培养的红假单胞菌42OL的氢光生产

摘要

The main goal of this study was to increase the hydrogen production rate improving the culture technique and the photobioreactor performances. Experiments were carried out at a constant culture temperature of 30? C and at an average irradiance of 480Wm−2 using a cylindrical photobioreactor (4.0 cm, internal diameter). The culture technique, namely, the semicontinuous regime for growing Rhodopseudomonas palustris 42OL made it possible to achieve a very high daily hydrogen production rate of 594 ? 61mL (H2) L−1 d−1. This value, never reported for this strain, corresponds to about 25mL (H2) L−1 h−1, and it was obtained when the hydraulic retention time (HRT) was of 225 hours. Under the same growth conditions, a very high biomass production rate (496 ? 45 mg (dw) L−1 d−1) was also achieved. Higher or lower HRTs caused a reduction in both the hydrogen and the biomass production rates. The malic-acid removal efficiency (MAre) was always higher than 90%. The maximal hydrogen yield was 3.03mol H2 mol MA−1 at the HRT of 360 hours. The highest total energy conversion efficiency was achieved at the HRT of 225 hours.
机译:这项研究的主要目的是提高产氢率,改善培养技术和光生物反应器的性能。实验在30℃的恒定培养温度下进行。 C,使用圆柱形光生物反应器(4.0 cm,内径)的平均辐照度为480Wm-2。这种养殖技术,即半连续种植帕洛斯红假单胞菌42OL的方法,使得日产氢非常高,达到594? 61mL(H2)L-1 d-1。该值从未报告过,该值对应于约25mL(H2)L-1 h-1,是在水力停留时间(HRT)为225小时时获得的。在相同的生长条件下,还可以实现很高的生物质生产率(496?45 mg(dw)L-1 d-1)。较高或较低的HRT导致氢气和生物质生产率降低。苹果酸去除效率(MAre)始终高于90%。在360小时的HRT时,最大氢产量为3.03mol H2 mol MA-1。在225小时的HRT时实现了最高的总能量转换效率。

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    Carlozzi Pietro;

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  • 年度 2012
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  • 正文语种 en
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