All Issue

2018 Vol.50, Issue 1
28 February 2018. pp. 3-10
Abstract
References

Literature Cited

1
Rural Development Administration (RDA), Hydroponic culture dissemination present status, Suwon, Korea.

Rural Development Administration (RDA). Hydroponic culture dissemination present status, Suwon, Korea (2008).

2
S. T. Park, K. Y. Choi and Y. B. Lee, Kor. J. Hort. Sci. Technol, Water content characteristics of coconut coir substrates on different mixture ratios and irrigation rates and times, 28(1); 227-233 (2010)

Park, S. T., Choi, K. Y., and Lee, Y. B., Water content characteristics of coconut coir substrates on different mixture ratios and irrigation rates and times, Kor. J. Hort. Sci. Technol. 28(1):227-233 (2010).

3
S. E. Kim, S. Y. Sim, M. H. Lee and Y. S. Kim, Journal of Bio-Environment Control, Appropriate daily last irrigation time in coir bag culture for tomato, 21(1); 12-19 (2012)

Kim, S. E., Sim, S. Y., Lee, M. H., and Kim, Y. S., Appropriate daily last irrigation time in coir bag culture for tomato, Journal of Bio-Environment Control 21(1):12-19 (2012).

4
Y. H. Lee, Improvement of physicochemical properties for sound coconut coir substrates for hydroponics, Seoul. The University of Seoul. (2007)

Lee, Y. H., Improvement of physicochemical properties for sound coconut coir substrates for hydroponics, MS Diss., The University of Seoul, Seoul (2007).

5
J. M. Choi, I. Y. Kim and B. K. Kim, Root substrates, Daejeon, Korea. Hackyesa. (2009)

Choi, J. M., Kim, I. Y., and Kim, B. K., Root substrates, Hackyesa, Daejeon, Korea (2009).

6
S. G. Song, K. Lee, D.-S. Lee, J.-H. Rhie, B.-D. Hong and H.-S. Bae, Korean J. Soil Sci. Fert, Changes in physical and chemical properties of coir used as the bag culture substrate of greenhouse tomatoes for three years, 49(4); 503-509 (2016)

Song, S. G., Lee, K., Lee, D.-S., Rhie, J.-H., Hong, B.-D., and Bae, H.-S., Changes in physical and chemical properties of coir used as the bag culture substrate of greenhouse tomatoes for three years, Korean J. Soil Sci. Fert. 49(4):503-509 (2016).

10.7745/kjssf.2016.49.5.503
7
M. R. Evans and K. Sreenivas, Hortscience, Source variation in physical and chemical properties of coconut coir dust, 31(6); 965-967 (1996)

Evans, M. R. and Sreenivas K., Source variation in physical and chemical properties of coconut coir dust, Hortscience 31(6):965-967 (1996).

8
M. Abad, P. Noguera, R. Puchades, A. Maquieira and V. Noguera, Bioresource Technology, Physico-chemical and chemical properties of some coconut coir dusts for use as a peat substitute for containerised ornamental plants, 82(2); 241-245 (2002)

Abad, M., Noguera, P., Puchades, R., Maquieira, A., and Noguera, V., Physico-chemical and chemical properties of some coconut coir dusts for use as a peat substitute for containerised ornamental plants, Bioresource Technology 82(2):241-245 (2002).

10.1016/s0960-8524(01)00189-4
9
J. G. Ohler, Coconut: Tree of Life, FAO Plant production and protection paper 57, Rome, Italy. Food and Agricultural Organization. (1984)

Ohler, J. G., Coconut: Tree of Life, FAO Plant production and protection paper 57, Food and Agricultural Organization, Rome, Italy (1984).

10
R. Viswanathan and L. Gothandapani, Bioresour. Technol, Mechanical properties of coir particle board, 67(1); 93-95 (1999)

Viswanathan, R. and Gothandapani, L., Mechanical properties of coir particle board, Bioresour. Technol. 67(1):93-95 (1999).

11
S. E. Allen, second ed. Chemical Analysis of Ecological Material, Oxford, UK. Blackwell Science. (1989)

Allen, S. E., Chemical Analysis of Ecological Material, second ed. Blackwell Science, Oxford, UK (1989).

12
TAPPI, Tappi standards and suggested methods, Test methods, T 212 cm-93, T249-75, T 203 os-74, T 211 cm-93 TAPPI Press, Atlanta, Georgia. (1994)

TAPPI, Tappi standards and suggested methods, Test methods, T 212 cm-93, T249-75, T 203 os-74, T 211 cm-93 TAPPI Press, Atlanta, Georgia (1994).

13
D. D. Warncke, Hort-Science, Analysing greenhouse growth media by the saturation extraction method, 211(2); 223-225 (1986)

Warncke, D. D., Analysing greenhouse growth media by the saturation extraction method, Hort-Science 211(2):223-225 (1986).

14
R. M. Rowell, J. S. Han, J. S. Rowell, E. Frollini, A. L. Leao and (Eds.) L. H. C. Mattoso, Characterization and Factors Effecting Fiber Properties, In: Natural Polymers and Agrofibers CompositesSan Carlos; 115-134, ISBN-13:9788586463068, Brazil. (2000)

Rowell, R. M., Han, J. S., and Rowell, J. S., Characterization and Factors Effecting Fiber Properties, In: Natural Polymers and Agrofibers Composites, Frollini, E., Leao, A. L., and Mattoso, L. H. C. (Eds.), San Carlos, Brazil, ISBN-13:9788586463068, pp. 115-134 (2000).

15
S. Kalia, B. S. Kaith and I. Kaur, Cellulose fibers: bio- and nano-polymer composites: green chemistry and technology; 738, Berlin, Germany. Springer-Verlag. (2011)

Kalia, S., Kaith, B. S., and Kaur, I., Cellulose fibers: bio- and nano-polymer composites: green chemistry and technology, Springer- Verlag, Berlin, Germany, p. 738 (2011).

16
B. Alberts, A. Johnson, J. Lewis, M. Raff, K. Roberts and P. Walter, 2nd Ed. Molecular biology of the cell, New York. Garland Science. (2002)

Alberts, B., Johnson, A., Lewis, J., Raff, M., Roberts, K., and Walter, P., Molecular biology of the cell, 2nd Ed., Garland Science, New York (2002).

17
H. P. Khalil, S. Abdul, M. S. Alwani and A. K. M. Omar, Bioresources, Chemical composition, anatomy, lignin distribution, and cell wall structure of malaysian plant waste fibers, 1(2); 220-232 (2006)

Khalil, H. P., Abdul, S., Alwani, M. S., and Omar, A. K. M., Chemical composition, anatomy, lignin distribution, and cell wall structure of malaysian plant waste fibers, Bioresources 1(2):220-232 (2006).

Information
  • Publisher :Korea Technical Association of The Pulp and Paper Industry
  • Publisher(Ko) :한국펄프종이공학회
  • Journal Title :Journal of Korea TAPPI
  • Journal Title(Ko) :펄프종이기술
  • Volume : 50
  • No :1
  • Pages :3-10
  • Received Date : 2017-12-28
  • Revised Date : 2018-01-11
  • Accepted Date : 2018-02-13