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Optimization of Artificial Light for Spinach Growth in Plant Factory Based on Orthogonal Test

机译:基于正交试验的植物工厂菠菜生长用人工光的优化

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摘要

Artificial LED source provides the possibility to regulate the lighting environment in plant factorys that use limited space to plant, aiming at high throughput and good quality. However, different parameters of light intensity, quality, and photoperiod will influence the growth and accumulation of bio-compounds in plants. In order to find the optimal setting of LED light for spinach planting, four group experiments were designed using the orthogonal testing method. According to the experimental results, for growth indexes including fresh weight, dry weight, root length and so on, photoperiod is the most influential factor, light intensity is the second, and light quality is the least. The best light mode (R:B = 4:1, photosynthetic photon flux density (PPFD) = 100 μmol∙m ∙s and 13/11 h) among all eight possible combinations in the range was also determined. Furthermore, for quality indexes, including the soluble sugar content, protein content and so on, a new scoring method was introduced to make a comprehensive score for evaluating. Then, the light combination (R:B = 4:1, PPFD = 150 μmol∙m ∙s and 9/15 h) in the range was found as the optimal scheme for spinach quality under those parameters. As there is trade-off between the optimal light parameters for growth and quality, it is necessary to achieve a balance between yield and quality of the plant during production. If farmers want to harvest spinach with larger leaf area and higher yield, they need to pay attention to the adjustment of the photoperiod and use a lower light intensity and a longer lighting time. If they do not mind the yield of the vegetable but want to improve the taste and nutrition of spinach products, they should pay more attention to the light intensity and use a higher light intensity and a shorter lighting time.
机译:人造LED光源为调节工厂工厂的照明环境提供了可能性,这些工厂使用有限的空间来实现高产量和高质量的目标。但是,光强度,质量和光周期的不同参数将影响植物体内生物化合物的生长和积累。为了找到适合菠菜种植的LED灯的最佳设置,使用正交测试方法设计了四组实验。根据实验结果,对于包括鲜重,干重,根长等在内的生长指标,光周期是影响最大的因素,光强度次之,光质量最低。还确定了该范围内所有八种可能组合中的最佳光模式(R:B = 4:1,光合光子通量密度(PPFD)= 100μmol∙m∙s和13/11 h)。此外,针对包括可溶性糖含量,蛋白质含量等在内的质量指标,引入了一种新的评分方法来对评价进行综合评分。然后,在这些参数下,找到该范围内的光组合(R:B = 4:1,PPFD = 150μmol∙m∙s和9/15 h)作为菠菜质量的最佳方案。由于生长和质量的最佳光照参数之间需要权衡取舍,因此有必要在生产过程中实现植物的产量和质量之间的平衡。如果农民想收获更大叶面积和更高产量的菠菜,则需要注意光周期的调整,并使用较低的光照强度和较长的光照时间。如果他们不介意蔬菜的产量,但想改善菠菜产品的味道和营养,则应更加注意光照强度,并使用较高的光照强度和较短的照明时间。

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