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Solar Sharing for Both Food and Clean Energy Production: Performance of Agrivoltaic Systems for Corn, A Typical Shade-Intolerant Crop

机译:粮食和清洁能源生产的太阳能共享:玉米农用光伏系统的性能,玉米是一种典型的不耐荫的作物

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The purpose of this research was to examine the performance of agrivoltaic systems, which produce crops and electricity simultaneously, by installing stilt-mounted photovoltaic (PV) panels on farmland. As PV power stations enjoy remarkable growth, land occupation with the purpose of establishing solar farms will intensify the competition for land resources between food and clean energy production. The results of this research showed, however, that the stilt-mounted agrivoltaic system can mitigate the trade-off between crop production and clean energy generation even when applied to corn, a typical shade-intolerant crop. The research was conducted at a 100-m 2 experimental farm with three sub-configurations: no modules (control), low module density, and high module density. In each configuration, 9 stalks/m 2 were planted 0.5 m apart. The biomass of corn stover grown in the low-density configuration was larger than that of the control configuration by 4.9%. Also, the corn yield per square meter of the low-density configuration was larger than that of the control by 5.6%. The results of this research should encourage more conventional farmers, clean energy producers, and policy makers to consider adopting stilt-mounted PV systems, particularly in areas where land resources are relatively scarce.
机译:这项研究的目的是通过在农田上安装高跷式光伏(PV)面板来检查同时产生农作物和电力的农用光伏系统的性能。随着光伏电站的显着增长,以建立太阳能农场为目的的土地占用将加剧粮食与清洁能源生产之间对土地资源的竞争。然而,这项研究的结果表明,即使安装在典型的不耐荫荫的玉米上,高跷式农用光伏系统也可以减轻作物生产与清洁能源生产之间的折衷。该研究是在一个100 m 2的实验场中进行的,该实验场具有三个子配置:无模块(对照),低模块密度和高模块密度。在每种配置中,相距0.5 m种植9根茎/ m 2。在低密度配置下生长的玉米秸秆的生物量比对照配置大4.9%。而且,低密度配置的每平方米玉米产量比对照的玉米产量大5.6%。这项研究的结果应鼓励更多的传统农民,清洁能源生产商和政策制定者考虑采用高跷式光伏系统,尤其是在土地资源相对匮乏的地区。

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