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LEDs supplemental lighting for vegetable transplant production: spectral evaluation and comparisons with HID technology.

机译:用于蔬菜移植生产的LED辅助照明:光谱评估和与HID技术的比较。

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摘要

Supplemental lighting is a key technology in vegetable nursery greenhouses to improve transplant growth and quality. Light emitting diodes (LEDs) are a newest addition to current supplemental greenhouse lighting technology. However, LED lighting technology must be evaluated in terms of economic feasibility and plant responses. At the University of Arizona, a two-phase study was conducted to evaluate supplemental LED lighting technology for vegetable transplant production in green-house. Tomato ( Solanum lycopersicum 'Komeett') and cucumber ( Cucumis sativus 'Cumlaude') were examined. The first phase study consisted on evaluating blue light supplemental lighting requirement under daily solar light integrals of 6-9 mol m -2 d -1 created by shade screens deployed in the greenhouse. The LEDs used for supplemental lighting were a mix of red and blue providing an average of 55 mol m -2 s -1 PPF for 18 hours (2 am - 8 pm) or 3.5 mol m -2 d -1 over the plant canopy surface. There were three treatments consisted of varied % blue photon flux: 0% blue (0 mol m -2 s -1), 4% blue (2.2 mol m -2 s -1), 16% blue (8.8 mol m -2 s -1) and a control with no supplemental lighting. Blue and red LEDs had peak wavelengths of 455 nm and 661 nm respectively. Plant growth of the young seedlings were largely improved by supplemental LED lighting in both species compared to the control (no supplemental lighting). For example, dry mass was increased by 39% for tomato and 47% for cucumber. For tomato no significant differences in dry mass were observed among different % blue treatments. However, cucumber plants showed significant reduction in dry mass, when the % blue photon flux was increased. The second phase study consisted of a side-by-side comparison of 100% red LED (632 nm peak wavelength) and a conventional high pressure sodium (HPS) lamp at the same light intensity and photoperiod used in the first phase study. Preliminary results showed that plant dry mass under red LED was non-significantly different from that under HPS for tomato but was 25% lower under red LED than HPS for cucumber. Based on the results from the phase one study, it is clear that for 'Komeett' tomato and 'Cumlaude' cucumber, 100% red supplemental LED is sufficient to improve growth of the seedlings. From the phase two preliminary results, it seems that growth of tomato seedlings under 100% red LED was comparable to that under HPS light but the growth of cucumber seedlings was greater under the HPS than the 100% red LED lighting. From this study it is evident that plant species respond differently to supplemental lighting and in order to improve growth and morphology in greenhouse crops the selection of supplemental lighting should be species specific. 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:辅助照明是蔬菜育苗温室中提高移植生长和质量的一项关键技术。发光二极管(LED)是当前辅助温室照明技术的最新成员。但是,必须根据经济可行性和工厂响应来评估LED照明技术。在亚利桑那大学,进行了两个阶段的研究,以评估用于温室蔬菜移植生产的补充LED照明技术。检查了番茄(Solanum lycopersicum'Komeett')和黄瓜(Cucumis sativus'Cumlaude')。第一阶段的研究包括评估温室中部署的遮阳帘在6-9 mol m -2 d -1的日太阳光积分下的蓝光补充照明需求。用于辅助照明的LED是红色和蓝色的混合物,在植物冠层表面提供18小时(上午2点至下午8点)平均55 mol m -2 s -1 PPF或3.5 mol m -2 d -1。 。共有三种处理,包括不同的%蓝色光子通量:0%蓝色(0 mol m -2 s -1),4%蓝色(2.2 mol m -2 s -1),16%蓝色(8.8 mol m -2 s) -1)和没有辅助照明的控件。蓝色和红色LED的峰值波长分别为455 nm和661 nm。与对照组相比,两个物种都通过补充LED照明大大改善了幼苗的幼苗生长(无补充照明)。例如,番茄的干重增加了39%,黄瓜的干重增加了47%。对于番茄,在不同百分比的蓝色处理之间未观察到干重的显着差异。但是,当%蓝色光子通量增加时,黄瓜植株显示出干重的显着减少。第二阶段研究包括并排比较100%红色LED(峰值波长632 nm)和常规高压钠(HPS)灯,它们在第一阶段研究中使用了相同的光强度和光周期。初步结果表明,在红色LED下,番茄的干重与HPS下的无明显差异,但在红色LED下,黄瓜的干重比HPS低25%。根据第一阶段研究的结果,很明显,对于“ Komeett”番茄和“ Cumlaude”黄瓜,100%红色补充LED足以改善幼苗的生长。从第二阶段的初步结果来看,在100%红色LED照明下,番茄幼苗的生长似乎与在高压钠灯​​条件下可比,但在HPS条件下,黄瓜幼苗的生长要比100%红色LED照明下的更大。从这项研究中可以明显看出,植物物种对补充照明的反应不同,为了改善温室作物的生长和形态,补充照明的选择应因种而异。 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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