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Tinted Semi-Transparent Solar Panels Allow Concurrent Production of Crops and Electricity on the Same Cropland

机译:有色半透明太阳能电池板允许同一耕地的作物和电力同时生产

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摘要

Agrivoltaics describes concurrent agricultural production of crops and photovoltaic generation of electricity on the same cropland. By using tinted semi-transparent solar panels, this study introduces a novel element to transform the concept of agrivoltaics from just solar-sharing to selective utilization of different light wavelengths. Agrivoltaic growth of basil and spinach is tested. When compared with classical agriculture, and based on the feed-in-tariff of the experimental location, agrivoltaic co-generation of biomass and electricity is calculated to result in an estimated financial gross gain up to +2.5% for basil and +35% for spinach. Marketable biomass yields do not change significantly for basil, while a statistically significant loss is observed for spinach. This is accompanied by a relative increase in the protein content for both plants grown under agrivoltaic conditions. Agrivoltaics implemented with tinted solar panels improve the biomass production per unit amount of solar radiation up to 68%, with up to 63% increase in the ratio of leaf and stem biomass to root. Agrivoltaics can enrich the portfolio of farmers, mitigate risks associated with climate, and vastly enhance global photovoltaics capacity without compromising agricultural production.
机译:Agrivoltaics描述了同一耕地上的作物和光伏发电的同时农业生产。本研究通过使用着色半透明太阳能电池板,介绍了一种新颖的元素,从而从太阳能共享转换农理的概念,以选择性利用不同的光波长。测试罗勒和菠菜的农理生长。与古典农业相比,基于实验位置的送入关税时,计算生物质和电力的农业生成,以导致罗勒的估计金融总额增长高达+ 2.5%,+ 35%菠菜。罗勒的可营销生物质产量不会显着变化,而菠菜则观察到统计学上显着的损失。这伴随着在农理条件下种植的两种植物的蛋白质含量的相对增加。用着色太阳能电池板实施的农理,将生物量产生的太阳辐射高达68%,叶片和茎生物质的比例高达63%。 Agrivoltaics可以丰富农民组合,减轻与气候相关的风险,并大大提升全球光伏能力,而不会影响农业生产。

著录项

  • 来源
    《Advanced energy materials》 |2020年第35期|2001189.1-2001189.9|共9页
  • 作者单位

    Univ Greenwich Sch Sci Chatham ME4 4TB Kent England;

    Via San Francesco 35 I-20077 Melegnano Italy;

    Univ Greenwich Sch Sci Chatham ME4 4TB Kent England;

    Polysolar Ltd Aurora BAS High Cross Madingley Rd Cambridge CB3 0ET England;

    Sheffield Solar Dept Phys & Astron Hicks Bldg Hounsfield Rd Sheffield S3 7RH S Yorkshire England;

    Univ Milan Dept Agr & Environm Sci Prod Via Celoria 2 I-20133 Milan Italy;

    Univ Milan Dipartimento Sci & Polit Ambientali Via Celoria 2 I-20133 Milan Italy;

    Univ Milan Dipartimento Sci & Polit Ambientali Via Celoria 2 I-20133 Milan Italy;

    Univ Greenwich Sch Sci Chatham ME4 4TB Kent England;

    Univ Cambridge Dept Biochem Hopkins Bldg Cambridge CB2 1QW England;

    Univ Milan Dipartimento Sci & Polit Ambientali Via Celoria 2 I-20133 Milan Italy|Univ Cambridge Dept Biochem Hopkins Bldg Cambridge CB2 1QW England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    agrivoltaics; bio-energy; crops; photovoltaics;

    机译:农理;生物能量;作物;光伏;

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