微藻生物活性farade:用于国家规模生产潜力评估的开放数据

IF 9 1区 工程技术 Q1 ENERGY & FUELS
Victor Pozzobon
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引用次数: 0

摘要

这项工作结合了微藻培养数值模拟和来自法国气象预报机构和法国政府的开放大数据,以评估在法国大陆地区每年部署微藻生物农业的潜力。数据整理后,评估了三种场景。在保守和乐观的情况下,新建筑(办公楼、零售大楼、酒店、工业建筑和国家建筑)的年生产潜力分别在+28.9±3.7和+202.6±17.4吨之间。这相当于生产6100至62000个微藻生物农业单位,足以维持全年连续生产。分析主建筑类型显示,零售建筑(如商场)是最适合使用该技术的地方,其次是国家建筑和办公室。最后,对结果的深入分析表明,相对方位是系统性能的第一个预测因子,而其在法国的地理位置只是系统性能的一个调制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microalgae bio-reactive façade: Open data for nation-scale production potential assessment
This work combines microalgae culture numerical modeling and open big data from the French weather forecast agency and the French government to evaluate the annual deployment potential for microalgae biofaçade over France’s mainland territory. After data curation, three scenarii were evaluated. The annual production potential offered by new buildings (offices, retail buildings, hotels, industrial buildings, and state buildings) lies between +28.9 ± 3.7 and +202.6 ± 17.4 ton per year for the conservative and the optimistic scenario, respectively. It corresponds to producing 6100 to 62,000 microalgae biofaçade units, which is more than enough to sustain year-round continuous production. Analyzing the host building type revealed that retail buildings (e.g., malls) are the most favorable places for the technology, followed by state buildings and offices. Finally, in depth analysis of the results showed that façade orientation is the first predictor of the system performance while its geographical location in France is only a modulator of it.
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来源期刊
Renewable Energy
Renewable Energy 工程技术-能源与燃料
CiteScore
18.40
自引率
9.20%
发文量
1955
审稿时长
6.6 months
期刊介绍: Renewable Energy journal is dedicated to advancing knowledge and disseminating insights on various topics and technologies within renewable energy systems and components. Our mission is to support researchers, engineers, economists, manufacturers, NGOs, associations, and societies in staying updated on new developments in their respective fields and applying alternative energy solutions to current practices. As an international, multidisciplinary journal in renewable energy engineering and research, we strive to be a premier peer-reviewed platform and a trusted source of original research and reviews in the field of renewable energy. Join us in our endeavor to drive innovation and progress in sustainable energy solutions.
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