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1.
J Plant Nutr ; 19(10-11): 1441-62, 1996.
Artigo em Inglês | MEDLINE | ID: mdl-11541097

RESUMO

The experimental system described allows concomitant hourly measurements of CO2, H2O, and NO3 uptake rates by plants grown hydroponically in a greenhouse. Plants are enclosed in an airtight chamber through which air flows at a controlled speed. Carbon dioxide exchange and transpiration rates are determined from respective differences of concentrations of CO2 and water vapor of the air at the system inlet and outlet. This set-up is based on the "open-system" principle with improvements made on existing systems. For instance, propeller anemometers are used to monitor air flow rates in the chamber. From their signal it is possible to continuously adjust air speed to changing environmental conditions and plant activity. The air temperature inside the system therefore never rises above that outside. Water and NO3 uptake rates are calculated at time intervals from changes in the volume and the NO3 concentration of the nutrient solution in contact with the roots. The precise measurement of the volume of solution is achieved using a balance which has a higher precision than any liquid level sensors. Nitrate concentration is determined in the laboratory from aliquots of solution sampled at time intervals. A number of test runs are reported which validate the measurements and confirm undisturbed conditions within the system. Results of typical diurnal changes in CO2, H2O, and NO3 uptake rates by fruiting tomato plants are also presented.


Assuntos
Dióxido de Carbono/farmacocinética , Nitratos/farmacocinética , Solanum lycopersicum/metabolismo , Água/metabolismo , Ar Condicionado , Dióxido de Carbono/metabolismo , Ritmo Circadiano , Meios de Cultura , Ambiente Controlado , Hidroponia , Nitratos/metabolismo , Fotoperíodo , Transpiração Vegetal , Fatores de Tempo
2.
Rev Lyon Med ; 15(13): Suppl:79-82, 1966.
Artigo em Francês | MEDLINE | ID: mdl-5945495
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