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首页> 外文期刊>Biotechnology for Biofuels >Transparent polyvinyl-alcohol cryogel as immobilisation matrix for continuous biohydrogen production by phototrophic bacteria
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Transparent polyvinyl-alcohol cryogel as immobilisation matrix for continuous biohydrogen production by phototrophic bacteria

机译:透明聚乙烯醇冷冻凝胶作为固定基质,用于通过光营养细菌产生连续生物氢化

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Phototrophic purple non-sulfur bacteria (PNSB) have gained attention for their ability to produce a valuable clean energy source in the form biohydrogen via photofermentation of a wide variety of organic wastes. For maturation of these phototrophic bioprocesses towards commercial feasibility, development of suitable immobilisation materials is required to allow continuous production from a stable pool of catalytic biomass in which energy is not diverted towards biomass accumulation, and optimal hydrogen production rates are realised. Here, the application of transparent polyvinyl-alcohol (PVA) cryogel beads to immobilisation of Rhodopseudomonas palustris for long-term hydrogen production is described. PVA cryogel properties are characterised and demonstrated to be well suited to the purpose of continuous photofermentation. Finally, analysis of the long-term biocompatibility of the material is illustrated. The addition of glycerol co-solvent induces favourable light transmission properties in normally opaque PVA cryogels, especially well-suited to the near-infrared light requirements of PNSB. Material characterisation showed high mechanical resilience, low resistance to diffusion of substrates and high biocompatibility of the material and immobilisation process. The glycerol co-solvent in transparent cryogels offered additional benefit by reinforcing physical interactions to the extent that only a single freeze–thaw cycle was required to form durable cryogels, extending utility beyond only phototrophic bioprocesses. In contrast, conventional PVA cryogels require multiple cycles which compromise viability of entrapped organisms. Hydrogen production studies of immobilised Rhodopseudomonas palustris in batch photobioreactors showed higher specific hydrogen production rates which continued longer than planktonic cultures. Continuous cultivation yielded hydrogen production for at least 67?days from immobilised bacteria, demonstrating the suitability of PVA cryogel immobilisation for long-term phototrophic bioprocesses. Imaged organisms immobilised in cryogels showed a monolithic structure to PVA cryogels, and demonstrated a living, stable, photofermentative population after long-term immobilisation. Transparent PVA cryogels offer ideal properties as an immobilisation matrix for phototrophic bacteria and present a low-cost photobioreactor technology for the further advancement of biohydrogen from waste as a sustainable energy source, as well as development of alternative photo-bioprocesses exploiting the unique capabilities of purple non-sulfur bacteria.
机译:光养紫色非硫细菌(PNSB)已经获得了关注他们经由各种各样的有机废物的photofermentation以在形式生物氢的宝贵清洁能源的能力。对于这些光营养的生物处理朝着商业可行性的成熟,需要开发合适的固定材料,以允许从稳定的催化生物质池中连续生产,其中能量不会转向生物质积聚,并且实现了最佳的氢生产率。这里,描述了透明聚乙烯醇(PVA)冷冻蛋白珠粒以对长期氢生产的淡盆栽灭绝的固定。 PVA Cryogel属性的特征和证明非常适合于连续光专用的目的。最后,说明了材料的长期生物相容性的分析。加入甘油共溶剂在通常不透明的PVA冷冻凝胶中诱导良好的光传输性能,特别适用于PNSB的近红外光要求。材料表征显示出高机械弹性,低抗性扩散和材料的高生物相容性和固定过程。透明冷冻液中的甘油共溶剂通过加强物理相互作用来提供额外的益处,即仅需要单次冻融循环来形成耐用的冷冻液,延伸超越光营养生物过程的实用性。相反,传统的PVA冷冻胶质需要多个循环,该循环损害捕获的生物的存活率。分批光生物反应器中固定的RhodopseudomonasPalustris的氢气生产研究表明,比浮鳞培养物更长的氢生产率。连续培养从固定的细菌产生至少67℃的氢气产生,证明了PVA冷冻凝胶固定的适用性,用于长期光营养生物处理。在冷冻胶凝中固定的造成的生物体向PVA冷冻凝胶的整体结构表明,长期固定后,展示了在长期固定后的生命,稳定,光专项群体。透明PVA Cryogels提供理想的属性作为光营养细菌的固定基质,并提出低成本的光生物反应器技术,用于进一步推进从废物作为可持续能源的生物氢,以及开发紫色独特能力的替代照片生物处理的发展非硫酸细菌。

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