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Two-stage photo-biological production of hydrogen by marine green alga Platymonas subcordiformis

机译:Two-stage photo-biological production of hydrogen by marine green alga platymonas subcordiformis

摘要

A marine green alga, Platymonas subcordiformis, was demonstrated to photobiologically evolve hydrogen (H-2) after the first stage of photosynthesis, when subjected to a two-phase incubation protocol in a second stage of H2 production: anaerobic incubation in the dark followed by the exposure to light illumination. The anaerobic incubation induced hydrogenase activity to catalyse H? evolution in the following phase of light illumination. H,) evolution strongly depended upon the duration of anaerobic incubation, deprivation of sulphur (S) from the medium and the medium pH. An optimal anaerobic incubation period of 32 h gave the maximum H2 evolution in the second phase in the absence of sulphur. Evolution of H,) was greatly enhanced by 13 times when S was deprived from the medium. This result suggests that S plays a critical role in the mediation of H-2 evolution from R subcordiformis. A 14-fold increase in H-2 production was obtained when the medium pH increased from 5 to 8; with a sharp decline at pH above eight. H-2 evolution was enhanced by 30-50% when supplementing the optimal concentrations of 25 mM acetate and 37.5 mM glucose. (C) 2003 Elsevier B.V. All rights reserved.
机译:在第一阶段光合作用之后,在H2生产的第二阶段接受两阶段孵化方案时,海洋绿藻次生侧柏(Platymonas subcordiformis)被证明在光生物学上释放出氢(H-2):在黑暗中进行厌氧培养,然后在黑暗中进行厌氧培养暴露在光线下。厌氧培养诱导氢酶活性催化H?在接下来的光照明阶段的演变。 H,)的进化在很大程度上取决于厌氧培养的持续时间,培养基中硫(S)的去除以及培养基pH的增加。最佳无氧温育时间为32小时,在不存在硫的情况下,第二阶段的氢气释放量最大。当S被从培养基中剥夺时,H,)的进化大大增强了13倍。该结果表明,S在介导R亚皮下组织H-2进化中起着关键作用。当培养基pH从5增加到8时,H-2的产量增加了14倍。 pH值超过8时急剧下降。当补充最适浓度的25 mM醋酸盐和37.5 mM葡萄糖时,H-2的进化提高了30-50%。 (C)2003 Elsevier B.V.保留所有权利。

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