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首页> 外文期刊>International journal of hydrogen energy >Sustained photobiological hydrogen production by Chlorella vulgaris without nutrient starvation
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Sustained photobiological hydrogen production by Chlorella vulgaris without nutrient starvation

机译:通过Noholla Ventgaris的持续光生氢生产而没有营养饥饿

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This article describes the ability of the Chlorella vulgaris BEIJ strain G-120 to produce hydrogen (H-2) via both direct and indirect pathways without the use of nutrient starvation. Photobiological H-2 production reached a maximum rate of 12 mL H-2 L(-1 )h(-1), corresponding to a light conversion efficiency (light to H-2) of 7.7% (average 3.2%, over the 8-day period) of PAR, (photosynthetically active irradiance). Cells presented a maximum in vivo hydrogenase activity of 25.5 +/- 0.2 nmoles H-2 mu gChl(-1) h(-1) and the calculated in vitro hydrogenase activity was 830 +/- 61 nmoles H-2 mu gChl(-1) h(-1). The strain is able to grow either heterotrophically or photo autotrophically. The total output of 896 mL of H-2 was attained for illuminated culture and 405 mL for dark cultures. The average H-2 production rate was 4.98 mL L-1 h(-1) for the illuminated culture and 2.08 mL L-1 h(-)(1) for the one maintained in the dark. (C) 2020 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:本文通过直接和间接途径来描述小球藻vulgaris Beij菌株G-120的能力,而不使用营养饥饿的直接和间接的途径产生氢气(H-2)。光生物理H-2产生达到12mL H-2 L(-1)H(-1)的最大速率,对应于光转化效率(光至H-2),7.7%(平均3.2%,在8中-day时期)的par,(光合作用辐照度)。细胞在25.5 +/- 0.2 Nmols H-2μgCH1(-1)H(-1)H(-1)中的体内氢酶活性最大值,并且计算的体外氢酶活性为830 +/- 61 Nmoles H-2μgCH1( - 1)H(-1)。该菌株能够自营养或自叉营养地生长。为照明培养物和405ml用于黑暗培养,获得了896ml H-2的总输出。用于照明培养的平均H-2生产率为4.98ml L-1 H(-1),为2.08ml L-1 h( - )(1),用于在黑暗中保持。 (c)2020年由elsevier有限公司发布代表氢能出版物LLC。

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