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Applications and Development of LEDs as Supplementary Lighting for Tomato at Different Latitudes

期刊

AGRONOMY-BASEL
卷 11, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/agronomy11050835

关键词

daily light integral (DLI); spectral quality; photosynthetic photon flux density (PPFD); toplight; interlight; tomato

资金

  1. Rural Development Programme of the Apulia Region (Italy) [(CUP) B97H20000990009]

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The use of high-tech greenhouses and LED lights in agriculture aims to increase food production efficiency, especially in the Mediterranean region where promising results have been achieved.
High-tech greenhouses and artificial light applications aim to improve food production, in line with one of the sustainable development goals of the UN Agenda 2030, namely, zero hunger. In the past, the incandescent lamps have been used for supplementary lighting (SL) at higher latitudes to increase greenhouse production during the dark season. Light-emitting diodes (LED) have been replacing gas discharge and incandescent lamps, and their development is expanding SL applications in different agricultural scenarios (e.g., urban farming, middle latitudes). In fact, recent research on LED applications in Mediterranean greenhouses have produced encouraging results. Since middle latitudes have a higher daily light integral (DLI) than higher latitudes in the dark season and climate conditions influence the installed power load of greenhouses, LED installation and management in Mediterranean greenhouses should be different and less expensive in terms of investment and energy consumption. Accordingly, the aim of this review is to outline the state of the art in LED applications and development, with a focus on latitude-related requirements. Tomato was used as a representative crop.

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