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Vertical transport of radiocesium in surface soils: model implementation and dose-rate computation.

A mathematical model on the Radionuclide Behaviour in Soil for the study of the migration of radionuclides in undisturbed soil profile has been developed. The model has been calibrated using 134Cs and 137Cs concentrations along soil samples gathered in a natural grassland and beech wood, respectively, located in the Friuli-Venezia Giulia region (northeastern part of Italy). In these sampling sites, the external exposure due to 134Cs and 137Cs distribution along the soil profile has been also assessed.

Accidents↗

Impacts of atmospherically deposited radionuclides on drinking water supply after a nuclear power plant accident.

This paper analyzes the various possible situations in which a drinking water supply in China may be contaminated by the deposition of airborne radioactive effluent after reactor accidents occur. A model was utilized to calculate the impact of ingestion of contaminated drinking water from a reservoir after a design basic accident of a 900-MWe pressurized water reactor power station. It showed that the maximum individual effective dose caused by a contaminated drinking water supply was at most 0.02% of the total individual effective dose from a reactor design basic accident. This factor was not considered when evaluating the consequence of a reactor design basic accident since, under several unfavorable conditions, the contamination of a drinking water supply from airborne radioactive effluent after a reactor design basic accident is not a major contributor to the impact on individual effective dose. It may be necessary to consider surface water contamination by deposition of airborne radioactive effluent for an emergency plan after a serious accident.

Accidents↗

Residual radioactivity in the soil of the Semipalatinsk Nuclear Test Site in the former USSR.

This paper deals with our efforts to survey residual radioactivity in the soil sampled at the Semipalatinsk Nuclear Test Site and at off-site areas in Kazakhstan. The soil was sampled at the hypocenter where the first Soviet nuclear explosion was carried out on 29 August 1949, and at the bank of the crater called "Bolapan," which was formed by an underground nuclear detonation on 15 January 1965 along the Shagan River. As a comparison, other soil was also sampled in the cities of Kurchatov and Almaty. These data have allowed a preliminary evaluation of the contemporary radioactive contamination of the land in and around the test site. At the first nuclear explosion site and at Bolapan, higher than background levels of 239,240Pu with weapons-grade plutonium were detected together with fission and activation products such as 137Cs, 60Co, 152Eu, and 154Eu.

Gamma Rays↗

Concentration and vertical distribution of 137Cs in the undisturbed soil of southwestern Nigeria.

The results of measurements of 137Cs in soil profiles that were sampled in undisturbed soil in Ondo, Ekiti, and Oyo states in the southwestern area of Nigeria are presented in this paper. Samples were collected from nine soil profiles. The vertical distributions of 137Cs in the soil profiles have been determined. Cesium concentration ranged from 0.31 +/- 0.10 Bq kg(-1) in the 0-2 cm depth to a maximum of 1.25 +/- 0.21 Bq kg(-1) in the 6-8 cm depth at some sites and from 3.16 +/- 0.16 Bq kg(-1) in 0-5 cm depth to below detection limit (BDL) at 20-25 cm at another site. 137Cs total deposition in 0-10 cm depth was found to be greatest at Ikogosi site with a value of 90.30 Bq m(-2). The results generally showed that more than 40 y after the first nuclear weapon tests, 137Cs still remains within the 25 cm upper layer of soil in the region with a migration velocity of 0.17-0.18 cm y(-1). The mean value of effective dose commitment due to the presence of cesium in soil in the entire region was found to be 10.77 microSv.

Cesium Radioisotopes↗

STRONTIUM 90: ESTIMATION OF WORLDWIDE DEPOSITION.

The relation between the worldwide deposition of strontium-90, as calculated by many investigators over the last decade, and that observed in rainfall in New York City has been relatively constant. On the average, for each millicurie of strontium-90 per square mile deposited in New York City, 0.055 megacurie has been deposited on the earth's total surface. Cumulative deposits of strontium-90 on the earth's surface at various intervals over the last 10 years have been computed from this ratio. From the mean quarterly fraction of the annual strontium-90 fallout in New York City for the last 9 years, the worldwide deposition of this nuclide, equal to 2.48 megacuries, is predicted for 1964.

New York↗

Nuclear disaster.

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Animal Feed↗