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Pulsing effects of supplemental LED lighting on cucumber seedlings growth and morphology in greenhouse.

机译:辅助LED照明对温室黄瓜幼苗生长和形态的脉冲效应。

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Light Emitting Diodes (LEDs) are an alternative to current greenhouse supplemental lighting technology due to their advertised durable construction, improved energy efficiency and selective spectral output. In addition, LEDs have the capacity to turn on and off high photon fluxes with rapid frequency (pulsed lighting). At the University of Arizona LED pulsed lighting was tested as supplemental light in greenhouse. Cucumber ( Cucumis sativus 'Cumlaude') seedlings were grown until the second true leaf stage. Sunlight DLI (daily light integral, 7.60.7 mol m -2 d -1) was supplemented with red-LEDs (661 nm) for 18 hours (2 am-8 pm) with an average intensity of 60 mol m -2 s -1 PPF. This provided an additional 3.89 mol m -2 d -1 of red supplemental light to DLI. The treatments consisted of (1) no supplemental lighting (control), (2) continuous red LED lighting, and (3) pulsed red-LED lighting at 50% duty ratio (2.5 kHz). The experiment was repeated twice. Results showed that both the continuous and the pulsed supplemental lighting improved the growth and morphology of cucumber seedlings, compared with those in the control. Significant differences between the continuous and the pulsed lighting treatments were observed for hypocotyl length. Plant hypocotyl length was greater in the pulsed lighting treatment than that of the continuous lighting treatment by 7.5%. However, there were no significant differences in number of leaves, fresh and dry mass, leaf area and chlorophyll concentration between the two treatments. We concluded that the pulsed lighting examined in this study (50% duty ratio, 2.5 kHz) could not substitute for continuous lighting in greenhouse cucumber transplants (cv. 'Cumlaude') as supplemental lighting since no benefits were observed and nursery propagators prefer compact cucumber transplants. CT International Symposium on New Technologies for Environment Control, Energy-Saving and Crop Production in Greenhouse and Plant Factory - Greensys 2013, Jeju, Korea Republic, 22-27 September 2013.
机译:发光二极管(LED)由于其持久耐用的结构,提高的能源效率和选择性的光谱输出而成为当前温室辅助照明技术的替代方案。此外,LED具有以快速频率打开和关闭高光子通量的能力(脉冲照明)。在亚利桑那大学,LED脉冲照明已作为温室的补充光进行了测试。黄瓜(Cucumis sativus'Cumlaude')幼苗生长到第二个真叶期。向日光DLI(日光积分,7.60.7 mol m -2 d -1)补充红色LED(661 nm)18小时(2 am-8 pm),平均强度为60 mol m -2 s- 1个PPF。这为DLI提供了额外的3.89 mol m -2 d -1红色补充光。这些处理包括(1)无辅助照明(控制),(2)连续红色LED照明和(3)占空比为50%(2.5 kHz)的脉冲红色LED照明。重复实验两次。结果表明,与对照相比,连续和脉冲辅助照明均能改善黄瓜幼苗的生长和形态。对于下胚轴长度,观察到连续和脉冲照明处理之间的显着差异。在脉冲照明处理中,植物下胚轴长度比连续照明处理长7.5%。然而,两种处理之间的叶片数量,新鲜和干燥质量,叶面积和叶绿素浓度没有显着差异。我们得出的结论是,本研究中研究的脉冲照明(占空比为50%,2.5 kHz)不能替代温室黄瓜移植中的连续照明(cv。“ Cumlaude”)作为辅助照明,因为没有观察到任何好处,并且苗圃繁殖者更喜欢紧凑型黄瓜移植。 CT国际温室和植物工厂环境控制,节能和作物生产新技术研讨会-Greensys 2013,韩国济州,2013年9月22日至27日。

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