Growth of Creeping Bentgrass on Bottom Ash and Dredged up Sand with Four Organic Matter Amendment Rates Under Saline Irrigation Condition

염해 조건에서 유기물이 첨가된 준설모래와 석탄회 토양이 크리핑 벤트그래스의 생육에 미치는 영향

  • Rahayu, Rahayu (Dept. of Agrotechnology, Sebelas Maret National University) ;
  • Yang, Geun-Mo (Dept. of Green Landscape Science, Dankook University) ;
  • Choi, Joon-Soo (Dept. of Green Landscape Science, Dankook University)
  • 라하유 (세블라스마렛국립대학 농업과학과) ;
  • 양근모 (단국대학교 녹지조경학과) ;
  • 최준수 (단국대학교 녹지조경학과)
  • Received : 2009.09.22
  • Accepted : 2009.11.20
  • Published : 2009.12.31

Abstract

This study was carried out to check the possibility of substituting bottom ash from the Seosan power plant for sand as growing media for creeping bentgrass (Agrostis stolonifera L.) under saline irrigation condition. Characteristics of growing media were evaluated by using column and leaching method. Creeping bentgrass cv. Pen-A1 was grown in pots with dredged up sand (DS) and bottom ash (BA) media those were amended using 1%, 2%, and 3 % OM rates in a green house. The plants were irrigated with 1.5 $dSm^{-1}$ saline water. Results showed that visual quality, plant height and shoot dry weight from DS treatment were higher than those of BA treatment. Even though BA contained more salts, repeated leaching could decrease ECe efficiently. In case of no OM amendment, the visual quality, plant height and shoot dry weight were similar between in BA and DS. Amendment of 2% OM increased the height of creeping bentgrass in DS, while decreased the plant growth in BA.

본 실험은 서산 부남호 준설모래와 태안 화력 발전소에서 발생된 석탄회(Bottom ash) 토양이 염해 조건에서 크리핑 벤트그래스의 생육배지로서의 활용 가능성에 대한 평가를 해보고자 수행되었다. 준설모래와 석탄회 토양의 물리, 화학적 특성을 실험실에서 조사하였으며, 각 토양에 유기물(peat)을 0, 1, 2, 3% 비율(w/w)로 각각 혼합한 토양에서 크리핑 벤트그래스 Pen-A1 품종을 파종 후 염이 포함된 물(EC=$1.5dSm^{-1}$)을 관수하며 생육을 평가하였다. 유기물 혼합전 준설 모래의 ECe가 $1.4dSm^{-1}$로 나타나, 석탄회 $8.4dSm^{-1}$에 비해 낮게 나타났다. 가시적 품질, 초장, 줄기 건물중 등은 준설모래 처리구에 비해 석탄회 처리구에서 낮게 나타났다. 석탄회 토양은 염분을 보유하고 있었으나, 관수로 인한 세척시 염분이 용탈되는 것을 확인할 수 있었다. 유기물을 혼합하지 않은 경우는 준설모래와 석탄회 토양에서 가시적 품질, 초장, 건물중이 처리 간에 차이를 보이지 않았으나, 2% 유기물을 혼합한 경우 준설모래 처리구가 석탄회 처리구에 비해 초장이 높게 조사되었다.

Keywords

References

  1. Austin, R.N. 2005. Chemical reactivity in the marine environment. CHEM 108b. laboratory. USA
  2. Bigelow, C.A., D.C. Bowman, D.K. Cassel, and T.W. Jr. Rufty. 2001. Creeping bentgrass response to inorganic soil amendments and mechanically induced subsurface drainage and aeration. Crop Sci. 41(3):797-805 https://doi.org/10.2135/cropsci2001.413797x
  3. Bigelow, C.A., D.C. Bowman, and K. Cassel. 1999. Germination and establishment with root-zone amendments. Golf Course Manage. 67(4):62–65
  4. Brown, P.A., S.A. Gill and S.J. Allen. 2000. Metal removal from waste water using peat. Wat. Res. Vol. 34. No.16 : 3907-3916 https://doi.org/10.1016/S0043-1354(00)00152-4
  5. Buck, J.K., and L.L. LaBuz. 2005. Bottom ash fines as a soil amendment for turfgrass and sute closure – laboratory and mesocosm studies at PPL Brunner Island and Montour steam electric station. Civil & Envi. Cons. Inc. p.333
  6. Carrow, R.N., and R.R. Duncan. 1998. Salt-affected turfgrass sites: assessment and management. Published by John Wiley and Sons, Inc. New Jersey
  7. Duncan, R.R., R.N. Carrow, and M. Huck. 1999. Effective use of seawater irrigation on turfgrass. USGA Green Section Rec. Feb
  8. Fard, B.M., M. Heidarpour, A. Aghakhani, and M. Feizi. 2007. Effect of irrigation water salinity and leaching properties in a arid region. Int. J. Agric. and Biology 30: 466-469. Iran
  9. Hach, C. 1996. Spectrophotometer soil and irrigation water portable laboratory manual. Js/cth 12-1-96.1ED. Printed in USA
  10. Ketter, T.A., J.W. Doran, and T.L.Gilbert. 2001. Rapid method of texture analysis. USDA-ARS. J. Soil Sci. AM. J. 65:849-852 https://doi.org/10.2136/sssaj2001.653849x
  11. Kjelgren, R., L. Rupp, and D. Kilgren. 2000. Water conservation in urban landscapes. Hort. Science 35:1037-1040
  12. Klute, A. 1986. Methods of soil analysis. Physical and mineralogical method. American Society of Agronomy, Inc. Madison, Wisconsin USA. p.701-702
  13. Kurnia, U., A. Fahmudin, A. Adimihardja, and A. Dairah. 2006. Physical soil properties and their analysis. BB Litbang SDL Pertanian. Deptan Jakarta. Indonesia
  14. McCoy. 2006. Golf course soils and water science. 215A Williams hall 1680 Madison avenue. Ohio State Univ. USA
  15. Maima, J.A., and R.N.J. Comans. 1997. Geochemical modeling of weathering reaction in municipal solid waste incinerator bottom ash. J. Environ. Sci. Tech. 31:1269-1276 https://doi.org/10.1021/es9603158
  16. Marcum, K.B. 2005. Use of saline and non-potable water in the turfgrass industry; constraints and developments. J. Agriculture Water Management 80: 132-146
  17. Middleton, H.E. 1920. The moisture equivalency in relation to the mechanical analysis of soil. J. Soil Sci. 9:159-167 https://doi.org/10.1097/00010694-192002000-00006
  18. Miyamoto, S., A. Chacon, M. Hossain, and I. Martinez. 2005. Soil salinity of urban turf irrigated with saline water I. Spatial Variability. ARC, Texas. El Paso.USA
  19. Mukhtar, S., A.L. Kenmer, S.S. Sadaka, and L.G. Mathis.2003. Evaluation of bottom ash and composed manure blends as a soil amendment material. J. Bioresource Technology 89 : 217-228 https://doi.org/10.1016/S0960-8524(03)00085-3
  20. Ochs, M. 1996. Influence of humified and non humified natural organic compounds on mineral dissolution. J. Chem. Geol. 132: 119-124 https://doi.org/10.1016/S0009-2541(96)00046-0
  21. Olsson, S., J.P. Gastafson, D. B. Kleja, D. Bendz, and I. Persson. 2009. Metal leaching from MSWI bottom ash as affected by salt or dissolved organic matter. J. Waste Management 29: 506-512 https://doi.org/10.1016/j.wasman.2008.03.017
  22. Pengampu, T. 2006. Procedure and technical analysis of soil. Dept. Soil Sci. UNS. Surakarta. Indonesia
  23. Poerwowidodo. 1992. Soil investigation methods. Penerbit Usaha Nasional Surabaya Indonesia. p. 40-45
  24. Silverstooth, J.C. 2005. Saline and sodic soil management in irrigated crop production system. Dept. of Water and Envi. Sci. Univ.of Arizona
  25. Sutanto, R. 1995. Physical-chemical of soil; concept of soil developments and diagnostic horizon formation. Soil Sci. Dept. Gadjah Mada Univ. Indonesia
  26. Tan, K.H. 1995. Soil sampling, preparation and analysis. The Univ. Georgia. Marcel Dekker, Inc. Hong Kong
  27. Tejada, M., M.T. Hernandez, and C. Garcia. 2006. Soil restoration using composed plant residues : effects on soil properties. Soil and Tillage Research. J. 102:109-117
  28. Waltz, C., and B. McCarty. 2000. Soil amendments affect turf establishment rate. GCSAA/gcm/juli. Clemson Univ. South Caroline
  29. Wong, V.N.L., R.S.B. Greene, B.W. Murphy, R. Dalal, S. Mann, and G. Farquhar. 2006. The effects of salinity and sodicity on soil organic carbon stocks and fluxes; an overview. J. Regolith. Australia Nat. Univ
  30. Zhang, F.S., S Yamasaki, and M. Nanzyo. 2002. Waste ashes for use in agricultural production: I. liming effect, contents of plant nutrients and chemical characteristics of some metals. The Sci. of Total Envir. 284: 215-225 https://doi.org/10.1016/S0048-9697(01)00887-7