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Application of Microbubbles to Hydroponics Solution Promotes Lettuce Growth

机译:微泡在水培溶液中的应用促进生菜生长

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摘要

We investigated the effects of microbubbles, generated by a swivelling microbubble generator in hydroponics nutrient solution, on the growth of leaf lettuce (Lactuca sativa). Twenty-four lettuce seedlings at the four- to five-leaf stage each were transplanted into two culture containers at 21 +/- 1 degrees C (day) and 18 +/- 1 degrees C (night) under fluorescent lamps that provided a photosynthetic photon flux of 173 +/- 18 and 171 +/- 16 mu mol(.)m(-2.)s(-1) averaged at eight points at the canopy level for micro-and macrobubbles conditions, respectively, during a photoperiod of 16 h per day. Seedlings were cultivated for 2 weeks in two deep flow technique (DFT) hydroponics culture systems in which micro- or macrobubbles were produced, respectively, by a microbubble aerator and aquarium aeration stones. The nutrient solution was maintained at a temperature of 22 +/- 1 degrees C during the experiment. Fresh and dry weights of the microbubble-treated lettuce were 2.1 and 1.7 times larger, respectively, than those of the macrobubble-treated lettuce. Although the reasons for growth promotion by microbubbles are still under investigation, we speculate that the larger specific surface area of the microbubbles and negative electronic charges oil the microbubbles surfaces may promote growth because microbubbles can attract positively charged ions that are dissolved in the nutrient solution. These results indicate that microbubbles generated in a DFT hydroponics culture system can remarkably promote plant growth.
机译:我们研究了旋转微泡发生器在水培营养液中产生的微泡对莴苣(莴苣)生长的影响。在提供光合作用的荧光灯下,将四叶至五叶阶段的二十四只生菜幼苗分别移植到两个培养容器中,温度分别为21 +/- 1摄氏度(白天)和18 +/- 1摄氏度(夜晚)。在微周期和微泡条件下,分别在冠层水平上的八个点处平均获得的173 +/- 18和171 +/- 16μmol(.m)(-2.)s(-1)的光子通量每天16小时。在两个深流技术(DFT)水培培养系统中将幼苗培养2周,在该系统中,分别通过微泡曝气器和水族馆通气石产生微泡或大泡。在实验过程中将营养液保持在22 +/- 1摄氏度的温度下。经微泡处理的生菜的鲜重和干重分别是经大泡处理的生菜的鲜重和干重的2.1倍和1.7倍。尽管仍在研究通过微泡促进生长的原因,但我们推测,微泡和较大的比表面积较大的比表面积会给微泡表面上油,因为微泡可以吸引溶解在营养液中的带正电的离子,因此可以促进生长。这些结果表明,在DFT水培培养系统中产生的微气泡可以显着促进植物的生长。

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