用于藻类生物燃料生产的人造光生物反应器的发光二极管系统:系统和趋势分析

C. L. Arroyo, Chrischell B. Lucas, Gabriel Joshua G. Giray, Christopher Marzel S. Llorente, Ronnie S. Concepcion, R. R. Vicerra
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摘要

光生物反应器(PBR)支持藻类生物质的生产,藻类生物质是生产生物燃料的已知资源。然而,不同的LED系统配置会影响藻类的生长。本文对藻类培养用光生物反应器的不同光能利用趋势进行了文献综述。本研究还试图通过使用工程原理来填补共同趋势的空白。介绍了光生物反应器及其工作原理。强调光在光生物反应器中的重要性,并对LED趋势(如LED放置,光强度,闪烁光和光谱质量)的不同期刊进行同行评审。结果表明,与上表面定向光照相比,下表面定向光照对种植的帮助更大。另一方面,较高的光照强度支持藻类的生长,尽管过高的光照强度会导致保护机制减弱。闪烁灯也被发现比连续灯更有利,主要是基于闪烁灯更节能。在光谱质量方面,有报道称蓝光和红光对促进培养物的生长很重要。然而,就光的光谱组成而言,最适合一种藻类菌株的光可能与另一种菌株的光不同。因此,在设计PBR时,必须对要使用的应变进行最合适的光谱组成的研究。讨论了最近LED系统的一些进展,并发现它们是可用于光生物反应器的高效设备,尽管成本仍然是一个问题。建议将电子工程原理应用于太阳能和人造光的可能同步使用,以降低成本。这一进展可以为有效地在光生物反应器中大规模部署led铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Light Emitting Diode Systems for Artificial Photobioreactors Used in Algal Biofuel Production: A Systematic and Trend Analysis
Photobioreactors (PBR) support the production of algal biomass which is a known resource in producing biofuel. Different LED system configurations, however, affect the growth of algae. This study aims to do a literature review on the different light utilization trends of photobioreactors used for cultivating algae. This study also seeks to fill in the gaps common to the trends by using engineering principles. Photobioreactors and their working principle are introduced. Importance of light in photobioreactors is emphasized and different journals on LED trends such as LED placement, light intensity, flashing light, and light spectral quality are peer-reviewed. Results show that bottom surface directional lighting helps the cultivation more in comparison to upper surface directional lighting. Higher levels of light intensity on the other hand support the growth of algae although excessive levels cause the protective mechanism to weaken. Flashing light is also found to be slightly more conducive than continuous light mostly based on flashing light being more energy efficient. For light spectral quality, it was reported that blue and red lights are important to promote the growth of the culture. However, with regards to spectral composition of light, the best fit for one algae strain may differ from that of another strain. As such, investigation of the best-fit spectral composition for the strain to be used must be done when designing a PBR. Some recent LED system advancements were discussed and were found to be efficient devices that can be used for photobioreactors although costing remains to be a problem. Application of electronics engineering principles on the possible synchronous use of solar and artificial light is recommended to lessen the cost. Such advancement can pave the way for efficiently using LEDs in photobioreactors for large-scale deployment.
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