4.7 Article

Crop Cultivation Underneath Agro-Photovoltaic Systems and Its Effects on Crop Growth, Yield, and Photosynthetic Efficiency

期刊

AGRONOMY-BASEL
卷 12, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/agronomy12081842

关键词

agro-photovoltaic; crop; photosynthesis; weather factor; yield

资金

  1. Korea Institute of Planning and Evaluation for Technology in Food, Agriculture and Forestry (IPET) through the Agricultural Energy Self-Sufficient Industrial Model Development Program - Ministry of Agriculture, and Food and Rural Affairs (MAFRA) [321075022HD020]
  2. Institute of Planning & Evaluation for Technology in Food, Agriculture, Forestry & Fisheries (iPET), Republic of Korea [321075022HD020] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Agro-photovoltaics (APV) can lead to sustainable development in agricultural areas, but constant shading from APV structures poses a major challenge. This study investigated the growth and yield optimization of rice, potato, sesame, and soybean crops under different APV systems. The results showed that different crops had varying responses to APV systems, with some crops performing similarly to the control plots and others experiencing yield reductions. Factors such as plant height and stem length were generally higher in crops grown under APV systems, while solar radiation and photosynthetic efficiency were lower.
Agro-photovoltaics (APV) could be the optimal means of sustainable development in agricultural areas once a few challenges are overcome, perhaps the greatest of which is the constant shading from AVP structures. This study examined how the growth and yield of rice, potato, sesame, and soybean crops could be optimized when grown underneath different APV systems. The solar radiation, shading levels, and temperatures during crop cultivation were measured. In addition, the photosynthetic efficiency was measured at different growth stages. Adjacent to the APV systems were the control plots with full sun. In these studies with potato crops grown under APV systems, most growth and yield parameters were similar to those grown in the control plot except for the plant height. On the other hand, sesame crops grown underneath the APV systems had a lower stem length, effective branching number, 1000 seed weight, and a reduced yield of 19% compared to the crops from the control plot. In two distant locations (Paju and Youngkwang), soybean crops grown underneath APV systems at both sites showed increased ungrained ratios per pod and a reduced yield of 18-20% compared to the control plot. Finally, rice crops cultivated underneath the APV systems had a lower panicle number per hill, spikelet number per panicle, 1000 seed weight, and yield reduction of 13-30% compared to the control plot. Overall, crops grown underneath the APV systems had a greater plant height and stem length. Moreover, the solar radiation and PAR underneath the APV systems were also lower than in the control plots. The photosynthetic efficacy in rice plants grown underneath the APV systems was lower than in the control plots. The photosynthetic efficacy may help lower the crop yield when cultivation is underneath an APV system.

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