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2019 Vol.28, Issue 4 Preview Page
30 November 2019. pp. 376-387
Abstract
References
1
Abad, M., P. Noguera, R. Puchades, A. Maquieira and V. Noguera. 2002. Physico-chemical and chemical properties of some coconut coir dusts for use as a peat substitute for containerised ornamental plants. Bioresour. Technol 82:241-245. 10.1016/S0960-8524(01)00189-4
10.1016/S0960-8524(01)00189-4
2
Aljibury F. K. and May D. 1970. Irrigation schedules and production of processing tomatoes on the san joaquin valley westside. Calif Agric 24:10-11.
3
An, C. G., Y. H. Hwang, G. M. Shon, C. S. Lim, J. L. Cho and B. R. Jeong. 2009. Effect of irrigation amount in rockwool and cocopeat substrates on growth and fruiting of sweet pepper during fruiting period. Kor. J. Hort. Sci. Technol 27:233-238. (in Koean)
4
Chang, Y. H., Y. H. Hwang, C. G. An, H. S. Yoon, J. U. An, C. S. Lim and G. M. Shon. 2012. Effects of non-drainage hydroponic culture on growth, yield, quality and root environments of muskmelon (cucumis melo L.). Journal of Bio- Environment Control 21:348-353. (in Koean) 10.12791/KSBEC.2012.21.4.348
10.12791/KSBEC.2012.21.4.348
5
Cho, M. S., Y. K. Na, W. Y. An, H. K. Lim and K. C. Cho. 1999. Effect of growth and fruit characteristics on nutrient feeding method of hydroponics in melon. Kor. J. Hort. Sci. Technol 17:637. (in Koean)
6
Choi, G. L., K. H. Yeo, S. H. Choi, H. J. Jeong, S. Y. kim, N. J. Kang and H. G. Choi. 2017. Moisture retention and diffusion characteristics of the coir substrate according to the ratio of chip and dust. Hortic. Sci. Technol 35:92. (in Koean)
7
Choi, G. L., M. W. Cho, J. W. Cheong, H. C. Rhee, Y. C. Kim, M. Y. Roh and Y. I. Kang. 2012. Effect of ec levels in nutrient solution on the growth of juvenile rose in hydroponics using coir substrate. Journal of Bio-Environment Control 21:317-321. (in Koean) 10.12791/KSBEC.2012.21.4.317
10.12791/KSBEC.2012.21.4.317
8
Choi, J. M., L. Y. Kim, and B. G. Kim. 2009. Soilless substrates. Hakyesa, Daejeon, Korea. (in Koean)
9
Dorais M, P. A., and Gosselin A. 2001. Greenhouse tomato fruit quality. Hort Reviews 26:239-319. 10.1002/9780470650806.ch5
10.1002/9780470650806.ch5
10
FAO. 2019. Crop statistics. Retrieved from http://www.fao.org/faostat/en/#data/QC.
11
Handrek, K. A. 1993. Properties of coir dust, and its use in the formulation of soilless potting media. Comm. Soil Sci. Plant Anal 24:349-363. 10.1080/00103629309368804
10.1080/00103629309368804
12
Hayata, Y., T. Tabe, S. Kondo, and K. Inoue. 1998. The effects of water stress on the growth, sugar and nitrogen content of cherry tomato fruit. J. Japan. Soc. Hort. Sci 65:759-766. 10.2503/jjshs.67.759
10.2503/jjshs.67.759
13
Kim, H. J. and Y. S. Kim. 2003. Effect of irrigation duration by integrated sol radiation on growth and water use efficiency of muskmelon grown in perlite culture. J. Kor. Soc. Hort. Sci 44:146-151. (in Koean)
14
Kim, H. M., K. O. No and S. J. Hwang. 2016. Use of pellet or cube-type phenolic foam as an artificial medium for production of tomato plug seedlings. Kor. J. Hort. Sci. Technol 34:414-423. (in Koean) 10.12972/kjhst.20160042
10.12972/kjhst.20160042
15
Lee, M. W. 2006. Soil biology. Dongguk Univ. Press. (in Koean)
16
Lee, W. J., J. H. Lee, K. S. Jang, Y. H. Choi, H. T. Kim and G. J. Choi. 2015. Development of efficient screening methods for melon plants resistant to fusarium oxysporum f. Sp. Melonis. Kor. J. Hort. Sci. Technol 33:70-82. (in Koean) 10.7235/hort.2015.14101
10.7235/hort.2015.14101
17
Lemaire, F. 1994. Physical, chemical and biological properties of growing medium. Acta Hortic 396:273-284. 10.17660/ActaHortic.1995.396.33
10.17660/ActaHortic.1995.396.33
18
Li, X. R., H. N. Cao, K. C. Yoo, and I. S. Kim. 2001. Effect of limited supplying frequency and amount of nutrient solutions on the yield and fruit quality of tomato grown in ash ball. J. Kor. Soc. Hort. Sci 42: 501-505. (in Koean)
19
MAFRA. 2018. Present status of greenhouse and vegetable production in 2017. Sejong, Korea. p. 52-165. (in Koean)
20
Park, D. K., J. K. Kwon, J. H. Lee, Y. C. Um, H. T. Kim and Y. H. Choi. 1998. The effect of soil water content during at fruit ripening stage on yield and quality in musk melon. J. Bio. Fzc. Env. 7:330-335. (in Koean)
21
RDA. 2012. Manual for agriculture investigation. Suwon, Korea 590-593. (in Koean)
22
RDA. 2013. Nutrient solution management technology of strawberry in high bed hydroponic cultivation. Suwon, Korea p. 8. (in Koean)
23
RDA. 2018. Melon farming skill guide. Wanju, Korea p. 31-99. (in Koean)
24
Rhee, H. C., M. W. Cho, Y. C. Um, J. M. Park and J. H. Lee. 2008. Control of irrigation amount for production of high quality fruitt in melon fertigation cultivation. Journal of Bio-Environment Control 17:288-292. (in Koean)
25
Soffer H and Burger D. 1989. Plant propagation using an areohydroponics system. HortScience 24:154.
26
Wu, H. C., L. F. Chan, M. L. Wei and H. Y. Lu. 2010. A simple and inexpensive technique for estimating leaf surface area of muskmelon (Cucumis melo L.). J. Taiwan Agric. Res. 59:71-77.
Information
  • Publisher :The Korean Society for Bio-Environment Control
  • Publisher(Ko) :(사)한국생물환경조절학회
  • Journal Title :Protected Horticulture and Plant Factory
  • Journal Title(Ko) :시설원예ㆍ식물공장
  • Volume : 28
  • No :4
  • Pages :376-387
  • Received Date : 2019-08-22
  • Revised Date : 2019-09-25
  • Accepted Date : 2019-10-02