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Water Splitting for High-Yield Hydrogen Production Energized by Biomass Xylooligosaccharides Catalyzed by an Enzyme Cocktail

机译:用酶鸡尾酒催化的生物量Xylooligosachers催化的高收益氢气分裂

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摘要

Green hydrogen production through water splitting at low temperatures is highly desired for hydrogen economy. Herein, we demonstrate an in vitro non-natural enzymatic pathway to utilize the chemical energy stored in xylooligosaccharides from biomass to split water to produce a nearly theoretical yield of H-2 (i.e., approximate to 9.5 H-2 per xylose plus water). This pathway was constructed on the basis of the novel activities of phosphopentomutase catalyzing the conversion of D-xylose 1-phosphate into d-xylose 5-phosphate and of ribose 5-phosphate isomerase catalyzing the conversions of d-xylose 5-phosphate and D-xylulose 5-phosphate. This study suggests that the discovery of novel promiscuous enzyme activities is important to implement complicated biotransformations catalyzed by synthetic enzymatic pathways.
机译:对于低温下的绿色氢气生产对于氢气经济而受到温度。 在此,我们证明了一种体外的非天然酶促途径,以利用储存在木质糖醇的化学能量从生物质中储存以分割水以产生几乎理论的H-2(即,近似为每木糖加上9.5H-2的含量)。 该途径是基于磷化膦酶催化D-木糖1-磷酸盐转化为D-木糖5-磷酸酯和核糖5-磷酸异构酶催化D-木糖5-磷酸酯和D-的转化 木瓜5-磷酸酯。 本研究表明,新颖的混杂酶活性的发现对于实施合成酶途径催化的复杂生物转化是重要的。

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