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Analysis of Growth Parameters for Crop Vegetables under Broad and Narrow LED Spectra and Fluorescent Light Tubes at Different PPFs

机译:不同PPF下宽窄LED光谱和荧光灯管下作物蔬菜的生长参数分析

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Several physiological and yield parameters were evaluated in lettuce plants, cv. ‘Trocadero’, while growing at four different photosynthetic photon flux (PPF) (70, 120, 250 and 400 ± 10 μmol m -2 s -1 ), under four light spectra, white (W), red (R) and blue (B) Light-Emitting Diode (LED) lamps and cool white fluorescent tubes (FL). Yield parameters were also evaluated on spinach, turnip and radish, growing under identical light spectra but using a single PPF (340 ± 10 μmol m -2 s -1 ). Lettuce development was impaired at PPFs below 250 μmol m -2 s -1 for all tested spectra. At higher PPFs (250 and 400 ± 10 μmol m -2 s -1 ), for the two broad spectra tested (W LEDs and FL light), no significant differences were registered on all physiological and yield parameters evaluated. On all situations W LEDs performed, at least, as good as the FL light, indicating that actual W LEDs can efficiently replace traditional light sources, with all the inherent benefits, which include significant lower power consumption. For all species, narrow light spectra (R and B LEDs) proved not being able to provide normal plant development. Plants under R LEDs, although presenting, in some situations, a fresh weight higher than those achieved with the broad light spectra, always led to abnormal plant morphology, characterized by expanded petioles and leaf curling. B LEDs, in spite of promoting plant growth with normal morphology, frequently led to a lower number of leaves and consequently to a lower fresh weight.
机译:在莴苣植物中评估了几种生理和产量参数。 'Trocadero',在四种光谱下,在白色(W),红色(R)和蓝色四个光谱下以四种不同的光合作用光子通量(PPF)(70、120、250和400±10μmolm -2 s -1)生长时(B)发光二极管(LED)灯和冷白色荧光灯管(FL)。还评估了菠菜,萝卜和萝卜的产量参数,这些菠菜,萝卜和萝卜在相同的光谱下但使用单个PPF(340±10μmolm -2 s -1)生长。对于所有测试的光谱,在低于250μmolm -2 s -1的PPF下,生菜的发育受到损害。在较高的PPF下(250和400±10μmolm -2 s -1),对于两个测试的宽光谱(W LED和FL光),在所有评估的生理和产量参数上均未发现明显差异。在所有情况下,W LED至少表现得与FL灯一样好,这表明实际的W LED可以有效地替代传统光源,并具有所有固有的优势,包括显着降低功耗。对于所有物种,事实证明窄光谱(R和B LED)无法提供正常的植物发育。在某些情况下,处于R LED下的植物的鲜重比通过宽光谱获得的高,但总是导致异常的植物形态,其特征在于叶柄扩大和叶片卷曲。 B LED尽管能以正常形态促进植物生长,但通常会导致叶片数量减少,从而导致鲜重降低。

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