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Influence of CO_2 Enrichment in Greenhouses on Pepper Plant (Capsicum annuum L.) Yield under High Temperature Conditions

机译:高温条件下辣椒植物(辣椒增压液)产量对温室的影响

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The CO_2 enrichment of greenhouses is a method to increase plant growth and productivity and it is applied successfully in many regions all over the world. However, in places where high temperatures occur during the main cultivation period, special application of the CO_2 enrichment is needed due to the fact of high ventilation needs which reduce the available time for CO_2 application leading to a lower crop yield. This work examines the effect of artificial CO_2 application on the optimum increase of pepper plants productivity under high temperature conditions. This study was performed in two identical greenhouses (experimental and control greenhouse) and was repeated three times, twice in the spring cultivation period and once in the autumn. During this study, a characteristic property of plant physiology was exploited. It is known that increasing the CO_2 concentration at levels higher than normal the optimum temperature of the C_3 plants growth is also increased. This results in a reduction of time needed for ventilation of greenhouses allowing the application of CO_2 for longer period. The results showed that the CO_2 enrichment technique used under high temperatures confers beneficial outcomes, like all the other known enrichment techniques. In the experimental greenhouse, where the enrichment was applied, plants were absorbing CO_2 at high rates and showed an improved growth and production of about 27% compared to those in the control greenhouse regardless of higher than optimum temperature levels in the experimental greenhouse.
机译:CO_2温室的富集是一种提高植物生长和生产率的方法,并且在世界各地的许多地区成功应用。然而,在主要培养期间发生的高温的地方,由于高通风需求的事实,需要特别适用CO_2富集,这减少了CO_2申请的可用时间导致较低的作物产量。本作品检测人工CO_2应用对高温条件下辣椒植物生产率的最佳增加的影响。该研究在两种相同的温室(实验和对照温室)中进行,重复三次,在春季栽培期间两次,秋季。在这项研究中,利用了植物生理学的特征性质。已知增加了高于正常水平的CO_2浓度,也增加了C_3植物生长的最佳温度。这导致减少温室通风所需的时间,允许施加CO_2以更长的时间。结果表明,高温下使用的CO_2富集技术赋予了有益的结果,如所有其他已知的富集技术。在应用富集的实验温室中,植物以高速率吸收CO_2,与对照温室中的那些相比,其增长和产量增加约27%,而不管实验室温室中的最佳温度水平高。

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