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Uniform algal growth in photobioreactors using Surface Scatterers

机译:使用表面散射体使光生物反应器中的藻类均匀生长

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Cultures of algae, such as cyanobacteria, are a promising source of renewable energy. However, algal growth is highly dependent on light intensity and standard photobioreactors do a poor job of distributing light uniformly for algal utilization due to shading effects in dense algal cultures. Engineered scattering schemes are already employed in current slab-waveguide technologies, like edge-lit LEDs. Stacking such slab-waveguides that uniformly distribute light could potentially yield photobioreactors to overcome the shading effect and grow extremely high densities of algal cultures that would lower monetary and energetic costs. Here, we characterize and design a scattering scheme for specific application within photobioreactors which employs a gradient distribution of surface scatterers with uniform lateral scattering intensity. This uniform scattering scheme is shown to be superior for algal cultivation.
机译:藻类培养物(例如蓝细菌)是可再生能源的有前途的来源。但是,藻类的生长高度依赖于光强度,并且标准的光生物反应器在致密的藻类培养物中具有遮光作用,因此很难为藻类的利用均匀地分配光。目前的平板波导技术已经采用了工程化的散射方案,例如边缘照明的LED。堆叠这种均匀分布光的平板波导可以潜在地产生光生物反应器,以克服阴影效应并生长出极高密度的藻类培养物,这将降低货币和能源成本。在这里,我们表征并设计了一种针对光生物反应器中特定应用的散射方案,该方案采用具有均匀横向散射强度的表面散射体的梯度分布。该均匀散射方案显示出对于藻类培养是优越的。

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