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Sustainable solar energy conversion to chemical and electrical energy

机译:可持续将太阳能转化为化学能和电能

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The Earth receives around 1.9 × 10~6 EJ of energy in visible light each year and only a fraction of this light energy is being converted to biomass (chemical energy) via the process of photosynthesis. Out of all photosynthetic organisms, microalgae, due to their fast growth rates, have been identified as potential source of raw material for chemical energy production. Solar panels have also been used worldwide for electrical energy production. Here we explore and introduce a novel methodology on combining solar panels with microalgae cultivation systems. These two methods of energy production would appear to compete for use of the same energy resource (sunlight) to produce either chemical or electrical energy. However, some groups of microalgae (i.e. Chlorophyta) only require the blue and red portions of the spectrum whereas certain types of solar cells absorb strongly in the green part of the solar spectrum but not as much in the red or blue portion of the spectrum. This suggests that a combination of the two energy production systems would allow for a full utilisation of the solar spectrum allowing both the production of chemical and electrical energy from one facility making efficient use of available land and solar energy. In this review we propose to introduce a solar panel as a filter above the algae culture to modify the spectrum of light received by the algae and utilise the unused parts of the spectrum to generate electricity.
机译:地球每年在可见光中接收到约1.9×10〜6 EJ的能量,并且仅其中一部分光能通过光合作用转化为生物质(化学能)。在所有光合生物中,微藻由于其快速的生长速度,已被确定为化学能源生产的潜在原料。太阳能电池板也已在世界范围内用于电能生产。在这里,我们探索并介绍了一种将太阳能电池板与微藻培养系统结合在一起的新颖方法。这两种能源生产方法似乎在竞争使用同一能源(阳光)以生产化学或电能。但是,某些微藻类(即绿藻)仅需要光谱中的蓝色和红色部分,而某些类型的太阳能电池则在光谱中的绿色部分中吸收很强,而在光谱中的红色或蓝色部分中吸收却不那么多。这表明,两种能源生产系统的结合将允许太阳能光谱的充分利用,从而允许从一个设施生产化学和电能,从而有效利用可用土地和太阳能。在这篇综述中,我们建议在藻类培养物上方引入一块太阳能电池板作为过滤器,以修改藻类接收到的光的光谱并利用光谱中未使用的部分来发电。

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