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光伏发电技术
★ 5.0
半透明光伏生物反应器中微藻培养用于可持续发电、废水处理和生物柴油生产
Microalgae cultivation in semi-transparent photovoltaic bioreactor for sustainable power generation, wastewater treatment and biodiesel production
语言:
中文摘要
摘要 近年来,由于传统能源日益枯竭以及对清洁能源的需求不断增长,从太阳能和微藻生物质等可再生资源中获取可持续能源受到了广泛关注。本研究提出了一种新颖的方法,通过在半透明光伏生物反应器中培养微藻,实现电力生成与生物燃料生产的同步进行,该系统具有作为建筑立面应用的潜力。实验结果表明,相较于使用玻璃的光生物反应器,采用半透明光伏材料后,索氏小球藻(Chlorella sorokiniana)的最大生物量浓度从2.5 g/L提高至2.9 g/L(增幅15%),而普通小球藻(Chlorella vulgaris)则从2.7 g/L增至3.2 g/L(增幅18%)。此外,绿色微藻在半透明光伏-光生物反应器中的废水处理能力以及高附加值产物(如脂质、叶黄素、叶绿素a和叶绿素b)的积累也得到显著提升。这归因于半透明光伏-光生物反应器内培养介质所获得的更优光照质量和温度条件。在微藻培养过程中,该系统每平方米可产生超过37 kWh的电能,足以满足反应器照明运行所需的电力供应。放大分析表明,该方法是一种极具前景的技术路径,可用于基于太阳辐射和微藻生物质实现生物法废水处理与可再生能源的协同生产。
English Abstract
Abstract Sustainable energy harvesting from renewable resources such as sunlight and microalgal biomass has received great attention due to the depletion of conventional energy sources and the increasing demand for clean energy. In this research, a novel approach for simultaneous electric power generation and biofuel production was developed by microalgae cultivation in semi-transparent photovoltaic bioreactor which has the potential to be applied as a building facade. According to the results, the maximum biomass concentration of Chlorella sorokiniana and Chlorella vulgaris increased from 2.5 to 2.9 g/L (15 %) and from 2.7 to 3.2 g/L (18 %) by using semi-transparent photovoltaic instead of glass in a photobioreactor, respectively. The wastewater treatment ability and high-value production (i.e., lipid, lutein and chlorophyll a and b) of the green microalgae were also improved by microalgae cultivation in the semi-transparent photovoltaic-photobioreactor. This was attributed to the better light quality and temperature of the medium in the semi-transparent photovoltaic- photobioreactor. More than 37 kWh/m 2 of electrical energy was generated from the semi-transparent photovoltaic-photobioreactor during microalgae cultivation which was enough to provide the electric power required for light operation. The scale-up analysis suggested the proposed approach as a promising technique for biological wastewater treatment and renewable energy generation from solar irradiation and microalgae biomass.
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SunView 深度解读
该半透明光伏生物反应器技术为阳光电源建筑光伏一体化(BIPV)应用提供创新思路。其光谱调控特性可优化SG系列组串逆变器的MPPT算法,针对非标准光谱条件提升发电效率。研究中37kWh/m²的发电量验证了分布式光伏与生物质能耦合的可行性,可结合ST系列储能系统实现微电网自洽运行。该技术对iSolarCloud平台的智能运维算法具有启发意义,可拓展光热耦合场景下的功率预测模型,推动光伏多功能化应用发展。