刺激胡萝卜和番茄种子发育的LED植光灯的最佳光谱辐射组成

A. Gubina, E. V. Levin, M. M. Romanovich, A. E. Degterev, N. O. Patokov, I. Lamkin, S. Tarasov
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摘要

介绍。发光二极管(LED)辐射广泛应用于人类活动的各个领域,包括农业。随着城市人口的不断增长和环境状况的日益恶化,高质量食品供应问题日益受到人们的关注。在此背景下,开发高效节能的光学系统,以确保最佳的辐照条件,以加速各类植物的生长,提高自主农业工业综合体的产品质量。基于AlGalnP (660 nm和730 nm)、InGaN (440 nm)和phyto-LEDs (400 nm)组成的植物灯的最佳光谱辐射组成的确定。(0.800 nm),在萌发阶段刺激番茄和胡萝卜芽的生长发育。计算LED光功率和光合光子通量密度(PPFD)。材料和方法。通过实验研究了不同质量和数量的可见辐射对胡萝卜和番茄种子萌发能、子叶和初生叶外观、种子萌发、平均下胚轴和根长等发育参数的影响。确定了保证植物有效生长的最佳光谱组成和辐射功率参数。在萌发期对番茄芽进行660 nm的额外辐照,对萌发、平均芽长和根系发育均有积极影响。波长较短的光(PPFD 243µmol∙s-1∙m-2)对胡萝卜的萌发和发育效果最好。结果表明,~ 170µmol∙s-1∙m-2蓝光和86µmol∙s-1∙m-2红光照射能有效促进胡萝卜的生长。所开发的辐照方案可用于改变作物生长发育不同阶段的光谱辐射组成和PPFD,从而提高产量并降低能源成本。在未来,这项技术可以用于空间研究,在那里高能效是基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Spectral Radiation Composition of a LED Phytolapm for Stimulating Carrot and Tomato Seed Development
Introduction. Light-emitting diode (LED) irradiation is widely used in various spheres of human activity, including agriculture. Due to the growing urban population and aggravating environmental situation, the problem of high-quality food provision is increasingly attracting research attention. In this context, it is important to develop energy-efficient optical systems for ensuring optimal irradiation conditions for accelerating the growth of various types of plants and improving the quality of products in autonomous agro-industrial complexes.Aim. Determination of an optimal spectral radiation composition of a phytolamp consisting of LEDs based on AlGalnP (660 and 730 nm) and InGaN (440 nm), as well as phyto-LEDs (400. _ .800 nm), to stimulate the growth and development of tomato and carrot sprouts at the germination stage. Calculation of the LED optical power and photosynthetic photon flux density (PPFD).Materials and methods. Experiments were carried out to study the influence of visible radiation of different quality and quantity on the development parameters of carrot and tomato seeds, including germination energy, the appearance of cotyledon and primary leaves, seed germination, average hypocotyl and root length. Optimal spectral composition and radiation power parameters ensuring effective growth of plants were determined.Results. Additional 660-nm irradiation of tomato sprouts at the germination stage was shown to exhibit a positive effect on germination, average sprout length and root development. The best results of carrot germination and development were achieved when irradiated with short-wavelength light (PPFD 243 µmol∙s–1∙m–2). Irradiation of ~ 170 µmol∙s–1∙m–2 blue and 86 µmol∙s–1∙m–2 red light was found to be effective for enhancing carrot cultivation.Conclusion. The developed irradiation schemes can be used to vary the spectral radiation composition and PPFD at different stages of crop growth and development, thereby increasing yields and reducing energy costs. In the future, this technology can be used in space research, where high energy efficiency is fundamental.
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