首页> 外文期刊>International journal of hydrogen energy >Photoproduction of H_2 by wildtype Anabaena PCC 7120 and a hydrogen uptake deficient mutant: from laboratory experiments to outdoor culture
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Photoproduction of H_2 by wildtype Anabaena PCC 7120 and a hydrogen uptake deficient mutant: from laboratory experiments to outdoor culture

机译:野生型鱼腥藻PCC 7120和氢吸收缺陷型突变体对H_2的光生产:从实验室实验到室外培养

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摘要

We have analyzed the filamentous cyanobacterium Anabaena PCC 7120 (wildtype) containing one nitrogenase, one uptake hydrogenase and one bidirectional hydrogenase and its hydrogen uptake deficient mutant AMC 414 for their H_2 production capacities. Anabaena PCC 7120 and AMC 414 had similar growth rates in turbidostat mode with increased growth rates at higher light intensity. Rates of C_2H_2 reduction were similar for both strains. In contrast to the wildtype, AMC 414 produced H_2 in a PhotoBioReactor (PhBR) using air as the lifting gas. The rate of H_2 production increased with light intensity and was not even saturated at 456 *uE m~(-2) s~(-1). H_2 production increased significantly when replacing the air with argon. The maximal H_2 production during outdoor conditions was recorded using AMC 414 with a peak at 14.9 ml H_2 h~(-1) l~(-1). Despite the relatively high production, maximal efficiency of solar energy to H_2 conversion was only 0.042%. A molecular method was developed to analyze the relative abundancies of weight and mutant in competition experiments in the PhBR.
机译:我们已经分析了丝状的蓝细菌鱼腥藻PCC 7120(野生型),其中包含一种固氮酶,一种摄取氢化酶和一种双向氢化酶及其氢摄取不足的突变体AMC 414的H_2生产能力。 Anabaena PCC 7120和AMC 414在turbidostat模式下具有相似的增长率,但在较高的光强度下增长率有所提高。两种菌株的C_2H_2还原速率相似。与野生型相反,AMC 414在PhotoBioReactor(PhBR)中使用空气作为提升气体产生H_2。 H_2的产生速率随着光强度的增加而增加,甚至在456 * uE m〜(-2)s〜(-1)时还没有达到饱和。当用氩气替代空气时,H_2的产量显着增加。使用AMC 414记录了室外条件下的最大H_2产生,其峰值为14.9 ml H_2 h〜(-1)l〜(-1)。尽管产量相对较高,但将太阳能转化为H_2的最大效率仅为0.042%。在PhBR的竞争实验中,开发了一种分子方法来分析重量和突变体的相对丰度。

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