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Development of a Cylindrical Hydroponics System for Vertical Farming

Development of a Cylindrical Hydroponics System for Vertical Farming
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摘要 The study aimed to develop a vertical crop cultivation system for leafy plants based on cylindrical hydroponics and light emitting diode (LED) technology. Investigations were conducted on growing lettuce (Lactuca sativa cv. "Rex", "Nanda" and "Canasta") indoors in a rotary system and Chinese cabbage (Brassica chinensis) in a multi-tier cylindrical hydroponics system under red and blue (RB) LED lightings. Light intensity from different light sources have an influence on the yield and growth behaviour of indoor lettuce. Photosynthetically active radiation (PAR) levels at 63 μmol/m2·s produced low fresh weights (FW) and leaf areas of lettuce "Rex" and "Nanda" were grown under rotating conditions. The effect was, however, different on the better developed "Canasta". Stem etiolation was a common occurrence under such influence. Chlorosis was not observed on all plant types grown under the LEDs. Cultivating Chinese cabbage plants (FW: 28 g/plant) in cylindrical units stacked vertically above another, increased planting density by 47% when compared to the rotary system,
出处 《Journal of Agricultural Science and Technology(B)》 2015年第2期93-100,共8页 农业科学与技术(B)
关键词 Chinese cabbage cylindrical hydroponic system LED lights LETTUCE rotary system vertical farming. 种植系统 圆柱形 水培 垂直 Brassica 农场 LED灯 生长特性
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参考文献20

  • 1Watanabe, H. 2011. "Light-Controlled Plant Cultivation System in Japan--Development of a Vegetable Factory Using LEDs as a Light Source for Plants." Acta Hort. 907 37-44.
  • 2Chow, K. K., Chang, Y. C., Dhanenthiran, M., and Thittani, N. 2013. "Vertical Food Garden." Presented at the Poly-ITE Social Innovation Research Forum, July 30, Singapore.
  • 3Brown, C. S., Schuerger, A. C., and Sager, J. C. 1995. "Growth and Photomorphogenesis of Pepper Plants under Red Light Emitting Diodes with Supplemental Blue or Far-Red Lighting." J. Am. Soc. Hortic. Sci. 120 (5): 808-13.
  • 4Kim, H. H., Goins, G. D., Wheeler, R. M., and Sager, J. C. 2004. "Green-Light Supplementation for Enhanced Lettuce Growth under Red and Blue Light-Emitting Diodes." HortSci. 39 (7): 1617-22.
  • 5Lee, S. H., Tewari, R. K., Hahn, E. J., and Pack, K. Y. 2007. "Photon Flux and Light Quality Induce Changes in Growth, Stomatal Development, Photosynthesis and Transpiration of Withania somnifera (L.) Dunal. Plantlets." Plant Cell, Tissue and Organ Culture 90 (2): 141-51.
  • 6Shin, K. S., Murhy, H. N., Heo, J. W., Hahn, E. J., and Pack, K. Y. 2008. "The Effect of Light Quality on the Growth and Development of in Vitro Cultured Doritaenopsis Plants." Acta Physiol. Plant. 30 (3): 339-43.
  • 7Smith, H. 1994. "Sensing in the Light Environment: The Functions of the Phytochrome Family." In Photomorphogenesis in Plants, edited by Kendrik, R. E., and Kronenberg, G. H. M. Dordrecht: Kluwer Academic Publ., 377-416.
  • 8Massa, G. D., Kim, H. H., Wheeler, R. M., and Mitchell, C. A. 2008. "Plant Productivity in Response to LED Lighting." HortSci. 43 (7): 1951-6.
  • 9The Straits Times. 2014. "Electronics Giant Panasonic Sets Up Farm in S'pore." The Straits Times, August 1.
  • 10Cooper, A. J. 1978. Commercial Applications of NFT. London, England: Grower Books Publishing, 96.

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