首页> 外文会议>International Mechanical Engineering Congress and Exposition >(V010T11A078)OPTOFLUIDICS FOR ENERGY: FUEL AND ELECTRICITY FROM PLASMONICALLY- EXCITED PHOTOSYNTHETIC BACTERIA
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(V010T11A078)OPTOFLUIDICS FOR ENERGY: FUEL AND ELECTRICITY FROM PLASMONICALLY- EXCITED PHOTOSYNTHETIC BACTERIA

机译:(V010T11A078)能源精工:燃料和电力来自血液激发光合细菌

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Microalgae have been demonstrated to be the only viable major biofuel avenue due to globally finite cropland[l]. Traditional photobioreactors used to cultivate microalgae and cyanobacteria for biofuel production are plagued by low cell density due to limited light penetration depth [2]. An optofluidic approach to cultivation of cyanobacteria provides an opportunity to overcome these difficulties by leveraging the inherent density advantages of biofilm growth [3]. A biophotovoltaic cell (BPV) is presented that is capable Of high-density cultivation of cyanobacteria using surface plasmon resonance (SPR) enhanced evanescent fields as well as producing electrical power. This device, a photosynthetic-plasmonic-voltaic cell (PPV), demonstrated significant power output under direct illumination and plasmonic excitation and demonstrates for the first time the dual use of a gold film for photosystem excitation and electron harvesting. The techniques used in this device are amenable to scale up of an ultra-high density photobioreactor that is capable of coproducing electrical power and biofuel.
机译:已经证明微藻是由于全球有限的农田[L]为唯一可行的主要生物燃烧大道。用于培养微藻的传统光生物反应器和用于生物燃料生产的蓝杆菌由于光渗透深度有限而受到低电池密度的困扰[2]。一种培养青霉素的纯化方法提供了通过利用生物膜生长的固有密度优势来克服这些困难的机会[3]。提出了一种能够使用表面等离子体谐振(SPR)增强的渐振磁场以及产生电力的高密度培养蓝藻培养的生物光学电池(BPV)。该装置是光合 - 等离子体 - 伏特电池(PPV),在直接照明和等离子体激发下表现出显着的功率输出,并首次演示了用于照相励磁和电子收割的金膜的双重使用。该装置中使用的技术可用于扩展的超高密度光生物反应器,其能够配制电力和生物燃料。

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