$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

[국내논문] 인공광 식물공장내 광질 제어가 작물생육에 미치는 영향
Effects of Light-Quality Control on the Plant Growth in a Plant Factory System of Artificial Light Type 원문보기

한국환경농학회지 = Korean journal of environmental agriculture, v.40 no.4, 2021년, pp.270 - 278  

허정욱 (농촌진흥청 국립농업과학원 농업공학부) ,  백정현 (농촌진흥청 국립농업과학원 농업공학부)

Abstract AI-Helper 아이콘AI-Helper

BACKGROUND: Horticultural plant growth under field and/or greenhouse conditions is affected by the climate changes (e.g., temperature, humidity, and rainfall). Therefore investigation of hydroponics on field horticultural crops is necessary for year-round production of the plants regardless of exter...

주제어

참고문헌 (23)

  1. Kozai T (2013) Resource use efficiency of closed plant production system with artificial light: Concept, estimation and application to plant factory. Proceedings of the Japan Academy, Series B, 89(10), 447-461. https://doi.org/10.2183/pjab.89.447. 

  2. Orsini F, Pennisi G, Zulfiqar F, Gianquinto G (2020) Sustainable use of resources in plant factories with artificial lighting (PFALs). European Journal of Horticultural Science, 85(5), 297-309. https://doi.org/10.17660/eJHS.2020/85.5.1. 

  3. Heo J, Kang D, Bang H, Hong S, Chun C, Kang K (2012) Early growth, pigmentation, protein content, and phenylalanine ammonia-lyase activity of red curled lettuces grown under different lighting conditions. Horticultural Science & Technology, 30(1), 6-12. https://doi.org/10.7235/hort.2012.11118. 

  4. Heo JW, Kim HH, Lee KJ, Yoon JB, Lee JK, Huh YS, Lee KY (2015) Effect of supplementary radiation on growth of greenhouse-grown kales. Korean Journal of Environmental Agriculture, 34(1), 38-45. https://doi.org/10.5338/KJEA.2015.34.1.02. 

  5. Arcel M, Lin X, Huang J, Wu J, Zheng S (2021) The application of LED illumination and intelligent control in plant factory, a new direction for modern agriculture: A review. International Journal of Physics: Conference Series, 1732(1), 012178, IOP Publishing. https://doi.org/10.1088/1742-6596/1732/1.012178. 

  6. Promratrak L (2017) The effect of using LED lighting in the growth of crops hydroponics. International Journal of Smart Grid and Clean Energy, 6(2), 133-140. https://doi.org/10.12720/sgee.6.2.133-140. 

  7. Zhang X, He D, Niu G, Yan Z, Song J (2018) Effects of environment lighting on the growth, photosynthesis, and quality of hydroponic lettuce in a plant factory. International Journal of Agricultural and Biological Engineering, 11(2), 33-40. https://doi.org/10.25165/j.ijabe.20181102.3420. 

  8. Toldi D, Gyugos M, Darko E, Szalai, G, Gulyas Z, Gierczik, K, Szekely A, Boldizsar A, Galiba G et al. (2019) Light intensity and spectrum affect metabolism of glutathione and amino acids at transcriptional level. PloS One, 14(12), e0227271. https://doi.org/10.1371/journal.pone.0227271. 

  9. Fan XX, Xue F. Song B, Chen LZ, Xu G, Xu H (2019) Effects of blue and red light on growth and nitrate metabolism iIn pakchoi. Open Chemistry, 17(1), 456-464. https://doi.org/10.1515/chem-2019-0038. 

  10. Wojciechowska R, Kolton A, Dlugosz-Grochowska O, Kunicki E, Mrowiec K, Bathelt P (2020). LED lighting affected the growth and metabolism of eggplant and tomato transplants in a greenhouse. Horticultural Science, 47(3), 150-157. https://doi.org/10.17221/78/2019-HORTSCI. 

  11. Kozai T (2017) Benefits, problems and challenges of plant factories with artificial lighting (PFALs): A short review. International Symposium on New Technologies for Environment Control, Energy-Saving and Crop Production in Greenhouse and Plant Factory, 25-30. https://doi.org/10.17660/ActaHort.2018.1227.3. 

  12. Kozai T (2019) Towards sustainable plant factories with artificial lighting (PFALs) for achieving SDGs. International Journal of Agricultural and Biological Engineering, 12(5), 28-37. https://doi.org/10.25165/j.ijabe.2019205.5177. 

  13. Sapkota S, Sapkota S, Liu Z (2019) Effects of nutrient composition and lettuce cultivar on crop production in hydroponic culture. Horticulturae, 5(4), 72-80. https://doi.org/10.3390/horticulturae5040072. 

  14. Heo JW, Park KH, Hong SG, Lee JS, Baek JH (2019) Hydroponic nutrient solution and light quality influence on lettuce (lactuca sativa L.) growth from the artificial light type of plant factory system. Korean Journal of Environmental Agriculture, 38(4), 225-236. https://doi/org/10.5338/KJEA.2019.38.4.31. 

  15. Khattak AM, Pearson S (2005) Light quality and temperature effects on antirrhinum growth and development. Journal of Zhejiang University Science B, 6(2), 119-124. https://doi.org/10.1631/jzus.2005.B0119. 

  16. Kobayashi K, Amore T, Lazaro M (2013) Light-emitting diodes (LEDs) for miniature hydroponic lettuce. Optics and Photonics Journal, 3(1), 74-77. https://doi.org/10.4236/opj.2013.31012. 

  17. Pattison PM, Tsao JY, Brainard GC, Bugbee B (2018) LEDs for photons, physiology and food. Nature, 563 (7732), 493-500. https://doi.org/10.1038/s41586-018-0706-x. 

  18. Kim MW (2017) Effects of dietary supplementation with allium hookeri root on hepatic enzyme contents in streptozotocin-induced diabetic rats. Journal of the East Asian Society of Dietary Life, 27(4), 399-407. https://doi.org/10.17495/easdl.2017.8.27.4.399. 

  19. Park EK, Noh JG, Lee MJ, Nam SY, Hong EY, Lee CH (2016) Effects of shading rates on growth and yield of allium hookeri cultivation at greenhouse in middle area of Korea. Protected Horticulture and Plant Factory, 25(4), 320-327. https://doi.org/10.12791/KSBEC.2016.25.4.320. 

  20. Zheng J, Ji F, He D, Niu G (2019) Effect of light intensity on rooting and growth of hydroponic strawberry runner plants in a LED plant factory. Agronomy, 9(12), 875. https://doi.org/10.3390/agronomy9120875. 

  21. Cha MK, Kim JS, Cho YY (2012) Growth response of lettuce to various levels of EC and light intensity in plant factory. Protected Horticulture and Plant Factory, 21(4), 305-311. https://doi.org/10.12791/KSBEC.2012.21.3.305. 

  22. Park MH, Lee YB (1999) Effects of light intensity and nutrient level on growth and quality of leaf lettuce in a plant factory. Protected Horticulture and Plant Factory, 8(2), 108-114. https://doi.org/10.12791/KSBEC.1999.8.2.108. 

  23. Nguyen DT, Kitayama M, Lu N, Takagaki M (2020) Improving secondary metabolite accumulation, mineral content, and growth of coriander (Coriandrum sativum L.) by regulating light quality in a plant factory. The Journal of Horticultural Science and Biotechnology, 95(3), 356-363. https://doi.org/10.1080/14620316.2019.1677510. 

저자의 다른 논문 :

관련 콘텐츠

오픈액세스(OA) 유형

GOLD

오픈액세스 학술지에 출판된 논문

이 논문과 함께 이용한 콘텐츠

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로