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Photosynthetic biohydrogen production in a wastewater environment and its potential as renewable energy

机译:废水环境中光合生物氢的生产及其作为可再生能源的潜力

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Oxygen (O-2) is a strong inhibitor of hydrogenase (HydA) activity and expression and altering the sulfur (S) oxidizing transitions in photosystem II (PSII) often allows algal photohydrogen production; however, this may not be practical in a wastewater environment. To counteract natural mechanisms of oxygen evolution in PSII, we utilized acetic acid and butyric acid, which are main volatile fatty acids (VFAs) found in anaerobic bacterial digestion in wastewater treatment, as oxygen regulators for photosynthetic bio-hydrogen production using Chlorella vulgaris. It was found that a VFA-containing synthetic wastewater promotes oxygen depletion in a photobioreactor (PBR), producing maximum hydrogen yield of 65.4 +/- 0.3 mu moL H-2 L-1 mM(-1) acetate without artificial sulfur or chloride deprivation. Butyric acids showed no significant effect on oxygen depletion and biohydrogen production in the PBR. The measurements of both relative expression level of mRNA and specific activities of reactivate HydA revealed that repetitive algal H-2 photo-evolution was possible by HydA synthesis in C vulgaris followed by complete oxygen depletion controlled by acetic acid levels in the PBR. This emerging understanding of the role of VFAs on oxygen regulation in PSII in natural environments is expected to lead algal-driven bioenergy production technologies to the next level. (C) 2018 Elsevier Ltd. All rights reserved.
机译:氧(O-2)是强加氢酶(HydA)活性和表达的抑制剂,改变光系统II(PSII)中硫(S)的氧化转变通常可以产生藻类光氢。但是,这在废水环境中可能不切实际。为了抵消PSII中氧气释放的自然机制,我们利用乙酸和丁酸(它们是废水处理中厌氧细菌消化中发现的主要挥发性脂肪酸(VFA))作为使用小球藻生产光合生物氢的氧气调节剂。发现含VFA的合成废水可促进光生物反应器(PBR)中的氧气消耗,产生最大氢产量为65.4 +/- 0.3μmolMoL H-2 L-1 mM(-1)醋酸盐,而无人工硫或氯化物的剥夺。丁酸对PBR中的耗氧量和生物氢产生无明显影响。对mRNA的相对表达水平和重新活化的HydA的比活性的测量结果表明,通过在普通寻常型C中的HydA合成,然后通过PBR中乙酸水平控制的完全耗氧,可以重复进行藻类H-2的光进化。对VFA在自然环境中PSII中氧气调节中的作用的这种新兴理解有望将藻类驱动的生物能源生产技术带入一个新的水平。 (C)2018 Elsevier Ltd.保留所有权利。

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