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Productivity and radiation use efficiency of lettuces grown in the partial shade of photovoltaic panels

机译:在光伏板局部阴影下生长的生菜的生产率和辐射利用效率

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摘要

Combining photovoltaic panels (PVPs) and crops on the same land unit were recently proposed as an alternative to the conversion of cropland into photovoltaic plants. This could alleviate the increasing competition for land between food and energy production. In such agrivoltaic systems, an upper layer of PVPs partially shades crops at ground level. The aim of this work was to (i) assess the effect on crop yield of two PVPs densities, resulting in two shade levels equal to 50% and 70% of the incoming radiation and (ii) identify morphological and physiological determinants of the plant response to shade. Experiments were conducted on four varieties of lettuces (two crisphead lettuces and two cutting lettuces), during two seasons. In all cases, the relative lettuce yield at harvest was equal or higher than the available relative radiation. Lettuce yield was maintained through an improved Radiation Interception Efficiency (RIE) in the shade, while Radiation Conversion Efficiency (RCE) did not change significantly. Enhanced RIE was explained by (i) an increase in the total leaf area per plant, despite a decrease in the number of leaves and (ii) a different distribution of leaf area among the pool of leaves, the maximal size of leaves increasing in the shade. Our result provides a framework for the selection of adapted varieties according to their morphological traits and physiological responses to PVP shade, in order to optimize agrivoltaic systems.
机译:最近提出了在同一土地单元上结合光伏板(PVP)和农作物的方法,作为将农田转化为光伏电站的替代方法。这可以减轻粮食和能源生产之间土地争夺的加剧。在这种农业光伏系统中,PVP的上层在地面上部分遮挡了农作物。这项工作的目的是(i)评估两种PVP密度对作物产量的影响,得出两种阴影水平,分别相当于入射辐射的50%和70%,以及(ii)确定植物反应的形态和生理决定因素遮荫。在两个季节中对四种莴苣进行了试验(两种two头莴苣和两种切丝莴苣)。在所有情况下,收获时的相对生菜产量均等于或高于可用的相对辐射量。通过改善阴影中的辐射截留效率(RIE)可以保持生菜产量,而辐射转换效率(RCE)不会发生显着变化。增强的RIE可以解释为(i)尽管叶片数量减少了,但每株植物的总叶片面积增加了;(ii)叶片池中叶片面积的分布不同,叶片最大尺寸在叶片中增加了。阴影。我们的结果提供了一个框架,可根据其形态特征和对PVP阴影的生理响应选择适应的品种,以优化农用光伏系统。

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