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

A. Peixe, H. Ribeiro, A. Ribeiro, Marco Soares, R. Machado, A. Rato, R. Coelho
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引用次数: 4

Abstract

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.
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不同PPFs下宽、窄LED光谱及荧光灯管对作物蔬菜生长参数的影响
对莴苣植株的几个生理和产量参数进行了评价。“Trocadero”在四种不同的光合光子通量(PPF)(70、120、250和400±10µmol m-2 s-1)下生长,在白色(W)、红色(R)和蓝色(B)发光二极管(LED)灯和冷白色荧光管(FL)四种光谱下生长。在相同光谱下使用单一PPF(340±10µmol m-2 s-1)生长的菠菜、芜菁和萝卜的产量参数也进行了评估。在低于250µmol m-2 s-1的PPFs下,生菜的发育受到损害。在更高的ppf(250和400±10µmol m-2 s-1)下,对于两个广谱测试(W led和FL光),所有生理和产率参数都没有显著差异。在所有情况下,W led的表现至少与FL灯一样好,这表明实际的W led可以有效地取代传统光源,具有所有固有的优势,其中包括显著降低功耗。对于所有物种,窄光谱(R和B led)被证明不能提供正常的植物发育。虽然在某些情况下,R led下的植株鲜重高于宽光谱下的植株,但通常会导致植株形态异常,表现为叶柄膨大和叶片卷曲。B型led虽然能促进植物正常形态的生长,但经常导致叶片数量减少,从而导致鲜重降低。
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