Validation of an automated compensation evapotranspirometer with cadmium polluted maize
Keywords:
compensation evapotranspirometer, water lossAbstract
There are only a few facilities to determine the evapotranspiration of a crop canopy. One of these possibilities is the use of evapotranspirometers. In spite of known shortcomings of the equipment they are widely applied in the everyday practice of crop water loss measurements. In our investigation the traditional compensation evapotranspirometer of Thornthwaite-Matter type was renovated at Keszthely Agrometeorological Research Station in 2011. The volume of the tanks (growing chambers) was 4 m3 each with surface area of 4 m2, and the depth of them 1 m. The tanks were layered with soil column characteristic of the surroundings of Keszthely area. The test plant was a short growing season maize hybrid Perlona. Earlier traditional evapotranspirometers were able to measure the daily sum of lost water. Later on the mechanic construction of the equipment might be automated. The renewed instrument is able to collect the water use of the tank in second’s interval. We represent our preliminary results showing diurnal variation of maize evapotranspiration in two different treatments. One of them contains the impact of cadmium on maize water loss. Detailed discussion on the influence of cadmium pollution on water loss of maize excluded from the study. Performing of polluted crops aimed only an independent treatment in our methodological experiment. Main goal of this investigation was an outline of functioning of converted evapotranspirometers.
References
Allen, R. G., Pereira, L. S., Raes, D. and Smith, M. 1998. Crop evapotranspiration, guidelines for computing crop water requirements. FAO Irrig. and Drain. Paper 56, Food and Agric. Orgn. of the United Nations, Rome, Italy. 300 pp.
Antal, E. 1968. Irrigation planning by using meteorological data. PhD Thesis, Budapest (In Hungarian)
Berke, J. 2007. Measuring of Spectral Fractal Dimension. J. of New Mathematics and Natural Computation. 3 (3) 409–418, https://doi.org/10.1142/S1793005707000872
Bi, X., Feng, X., Yang, Y., Li, X., Shin, G. P. Y., Li, F., Qiu, G., Li, G., Liu, T. and Fu, Z. 2009. Allocation and source attribution of lead and cadmium in maize (Zea mays L.) impacted by smelting emissions. Environ. Pollution. 157. 834–839. https://doi.org/10.1016/j.envpol.2008.11.013
Fodor, F. 2003. Lead and cadmium stress in crops. Bot. Közlemények. 90 (1–2)107–120. (In Hungarian)
Greger, M. and Johansson, M. 1992. Cadmium effects on leaf transpiration of sugar beet (Beta vulgaris) Physiologia Plantarum. 86 (3) 465–473. https://doi.org/10.1111/j.1399-3054.1992.tb01345.x
Grismer, M. E., Orang, M., Snyder, R. and Matyac, R., 2002. Pan evaporation to reference evapotranspiration conversion methods. J. Irrig. Drain. Eng. 128. 180–184. https://doi.org/10.1061/(ASCE)0733-9437(2002)128:3(180)
Jensen, M. E., Burman, R. D. and Allen, R. G. (eds.) 1990. Evaporation and irrigation water requirements. ASCE Manuals and Reports on Eng. Practices No. 70., Am.Soc. of Civil Eng., NY, 360 pp.
Kirkham, M. B. 2006. Cadmium in plants on polluted soils: Effects of soil factors, hyperaccumulation, and amendments. Geoderma. 137. 19–32. https://doi.org/10.1016/j.geoderma.2006.08.024
Medeiros, G. A., Arruda, F. B., Sakai, E. and Fujivara, M. 2001. The influence of crop canopy of evapotranspiration and crop coefficient of beans (Phaseolus vulgaris L.). Agric. Water Manag. 49. 211–224. https://doi.org/10.1016/S0378-3774(00)00150-5
STATA 5.0 (1996) Stata Corporation LP Texas, USA, https://www.stata.com
Steduto, P. and Hsiao, T. C. 1998. Maize canopies under two soil water regimes: II. Seasonal trends of evapotranspiration, carbon dioxide assimilation and canopy conductance, and as related to leaf area index. Agric. and Forest Meteor. 89 (3–4) 185–200. https://doi.org/10.1016/S0168-1923(97)00084-1
Wojcik, M. and Tukendorf, A. 1999. Cd tolerance of maize, rye and wheat seedlings. Acta Phys. Plant. 21. 99–107. en.wikipedia.org/wiki/Communicating_vessels https://doi.org/10.1007/s11738-999-0063-3
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