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Diffusion-based process for carbon dioxide uptake and isoprene emission in gaseous/aqueous two-phase photobioreactors by photosynthetic microorganisms

机译:基于扩散的光合微生物吸收气/水两相光生物反应器中二氧化碳和异戊二烯的过程

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Photosynthesis for the generation of fuels and chemicals from cyanobacteria and microalgae offers the promise of a single host organism acting both as photocatalyst and processor, performing sunlight absorption and utilization, as well as CO_2 assimilation and conversion into product. However, there is a need to develop methods for generating, sequestering, and trapping such bio-products in an efficient and cost-effective manner that is suitable for industrial scale-up and exploitation. A sealed gaseous/aqueous two-phase photobioreactor was designed and applied for the photosynthetic generation of volatile isoprene (C_5H_8) hydrocarbons, which operates on the principle of spontaneous diffusion of CO_2 from the gaseous headspace into the microalgal or cyanobacterial-containing aqueous phase, followed by photosynthetic CO_2 assimilation and isoprene production by the transgenic microorganisms. Volatile isoprene hydrocarbons were emitted from the aqueous phase and were sequestered into the gaseous headspace. Periodic replacement (flushing) of the isoprene (C_5H_8) and oxygen (O_2) content of the gaseous headspace with CO_2 allowed for the simultaneous harvesting of the photoproducts and replenishment of the CO_2 supply in the gaseous headspace. Reduction in practice of the gaseous/aqueous two-phase photobioreactor is offered in this work with a fed-batch and a semi-continuous culturing system using Synechocystis sp. PCC 6803 heterologously expressing the Pueraria montana (kudzu) isoprene synthase (IspS) gene. Constitutive isoprene production was observed over 192h of experimentation, coupled with cyanobacterial biomass accumulation. The diffusion-based process in gaseous/aqueous two-phase photobioreactors has the potential to be applied to other high-value photosynthetically derived volatile molecules, emanating from a variety of photosynthetic microorganisms.
机译:光合作用从蓝细菌和微藻类产生燃料和化学物质提供了一种前景,即单一宿主生物既充当光催化剂和加工者,又进行阳光吸收和利用,以及CO_2同化并转化为产品。然而,需要开发一种以适合于工业规模化和开发的有效且具有成本效益的方式产生,隔离和捕获这种生物产物的方法。设计了一种密封的气/水两相光生物反应器,并用于光合作用生成挥发性异戊二烯(C_5H_8)碳氢化合物,其原理是CO_2从气态顶空自发扩散到微藻或含蓝藻的水相中,然后通过转基因微生物的光合作用CO_2同化和异戊二烯生产。挥发性异戊二烯烃从水相中释放出来,并被隔离到气态顶空中。定期用CO_2置换(冲洗)异戊二烯(C_5H_8)和气态顶空的氧气(O_2)含量,以便同时收获光产物并补充气态顶空中的CO_2供应。这项工作提供了气态/水相两相光生物反应器的减少,该过程采用了分生孢子囊藻(Synechocystis sp。)的分批补料和半连续培养系统。 PCC 6803异源表达葛根(葛根)异戊二烯合酶(IspS)基因。在192h的实验中观察到本构异戊二烯的产生,以及蓝藻生物量的积累。气态/水相两相光生物反应器中基于扩散的过程有可能被应用于其他高价值的光合作用衍生的挥发性分子,这些分子来自各种光合作用微生物。

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