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Application of the tdr method for the measurement of moisture in degraded soil enriched with biona- 312 substrate

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The present study aimed at a determination of the formula allowing water content to be calculated for model degraded soil enriched with Biona-312 ion exchange substrate. To this end a mixture of sand and Biona-312 was prepared which was monitored for water content changes. Moisture was determined both gravimetrically and reflectometrically (TDR method). To improve the reliability of the TDR method individual calibration was made. The specific calibration formula as polynomial of the third degree was found for water content determination in sand supplemented with Biona-312. The results confirmed the high potential of the TDR method in moisture monitoring, especially when individual calibration is done.
Rocznik
Strony
125--131
Opis fizyczny
bibliogr. 13 poz., tab., wykr.
Twórcy
  • Lublin University of Technology, Faculty of Environmental Engineering, Nadbystrzycka 40B Str., 20-618 Lublin, Poland
autor
Bibliografia
  • [1] Chomczyńska, M. and Pawłowski, L. 2003. Utilization of Spent Ion Exchange Resins for Soil Reclamation. Environmental Engineering Science. 20(4): 301-306.
  • [2] Malicki, M. A., Plagge, R., and Roth, C.H. 1996. Improving the calibration of dielectric TDR soil moisture determination taking into account the solid soil. European Journal of Soil Science. 47: 357-366.
  • [3] Noborio, K. 2001. Measurement of soil water content and electrical conductivity by time domain reflectometry: a review. Computers and Electronics in Agriculture. 31: 213-237.
  • [4] Noborio, K., Horton, R. and Tan, C. S. 1999. Time Domain Reflectometry Probe for Simultaneous Measurement of Soil Matric Potential and Water Content. Soil Science Society of America Journal. 63:1500-1505.
  • [5] Ren, T., Noborio, K. and Horton, R. 1999. Measuring Soil Water Content, Electrical Conductivity, and Thermal Properties with a Thermo-Time Domain Reflectometry Probe. Soil Science Society of America Journal. 63: 450-457.
  • [6] Sobczuk, H. and Suchorab, Z. 2005. Calibration of TDR Instruments for Moisture Measurement of Serated Concrete. In Skierucha, W. and Walczak, T. (eds.) Monitoring And Modelling the Properties of Soil as Porous Medium. Institute of Agrophysics, Polish Academy of Sciences, Lublin, pp. 156-165.
  • [7] Soldatov, V. S., Periśkina, H. G. and Chorośko, R. P. 1978. Ion Exchange Soils (in Russian). Nauka i Technika, Minsk. 271pp.
  • [8] Soldatov, V. S. 1988. Ion Exchanger Mixtures Used as Artificial Nutrient Media for Plants. In Streat, M. (ed.) Ion Exchange for Industry. E. Horwood, London, pp.652-658.
  • [9] Soldatov, V. S., Pawłowski, L., Szymańska, M., Matusevich, V., Chomczyńska, M. and Kloc, E. 1998. Ion Exchange Substrate Biona-111 as an Efficient Measure of Barren Grounds Fertilization and Soils Improvement. Zeszyty Problemowe Postępów Nauk Rolniczych. 461: 425 - 436.
  • [10] Topp, G. C, Davis, J. L. and Annan, A.P. 1980. Electromagnetic Determination of Soil Water Content: Measurements in Coaxial Transmission Lines. Water Resources Research. 16: 574-582.
  • [11] Zając, K. 1988. Zarys metod statystycznych (in Polish). Państwowe Wydawnictwa Ekonomiczne, Warszawa. 460pp.
  • [12] Zgirski, A. and Gondko, R. 1998. Obliczenia biochemiczne (in Polish). Państwowe Wydawnictwo Naukowe, Warszawa. 479pp.
  • [13] Zieliński, R. and Zieliński, W. 1990. Tablice statystyczne (in Polish). Państwowe Wydawnictwo Naukowe, Warszawa. 445pp
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS5-0013-0031
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