Published 1996 | Version v1
Miscellaneous

Studies on tritium incorporation into wheat plants after short-term exposure to atmospheric tritium

  • 1. Forschungszentrum Karlsruhe, GmbH (Germany)

Description

The paper summarizes the results of a series of laboratory experiments to study the uptake, loss, conversion and translocation of tritium in wheat plants following a short-term exposure to atmospheric tritiated water vapour (HTO) under laboratory conditions. The experiments were accompanied by the development of a Plant-OBT-Model to calculate the tritium behaviour in wheat. Exposures of potted plants were carried out between anthesis and maturity, under day conditions at two different light intensities (900 μmol m-2s-1 and 120 μmol m-2s-1 photosynthetic active radiation) and under night conditions. In leaves, the tritium uptake into tissue water tritium (TWT) was about four times lower under night conditions than day conditions. Organically bound tritium (OBT) was generated in leaves, stems and ears under day as well as under night conditions. The initial relative OBT concentrations in leaves observed under night conditions were about 50% of those under day conditions. OBT was translocated into the grain in dependence on the growth rate of the grain. Due to incorporation of new organic matter with lower OBT concentration into the grain, the specific OBT concentrations decreased slightly until harvest but the total OBT was rather constant. Once translocation to grain has taken place, OBT is lost only slowly. The growth of the plants has been calibrated with the measured growth data of winter wheat and spring wheat. Subsequently, the tritium incorporation was calibrated using the results of the exposure experiments in the same year. The final OBT concentration in the grain can be predicted with sufficient precision. However, the modelling of the OBT formation and turnover processes right after exposure to tritium needs improvement. A comprehensive validation of the model with independent data sets is still necessary. (J.P.N.)

Part of:
Improvement of environmental transfer models and parameters. Proceedings

Additional details

Publishing Information

Imprint Title
Improvement of environmental transfer models and parameters. Proceedings
Imprint Pagination
289 p.
Journal Page Range
p. 121-135.

Conference

Title
Nuclear cross-over research international workshop on improvement of environmental transfer models and parameters.
Dates
5-6 Feb 1996.
Place
Tokyo (Japan).

Optional Information