Published 2016 | Version v1
Journal article

Radon and radioactivity at a town overlying Uranium ores in northern Greece

  • 1. Demokritus Univ. of Thrace, Xanthi (Greece). Lab. of Atmospheric Pollution and Pollution Control Engineering of Atmospheric Pollutants
  • 2. ISLP Xanthi (Greece). ATHENA Research and Innovation Center in Information, Communication and Knowledge Technologies

Description

Extensive measurements of Rn-222 in the town of Xanthi in N Greece show that the part of the town overlying granite deposits and the outcrop of a uranium ore has exceptionally high indoor radon levels, with monthly means up to 1500 Bq m-3. A large number of houses (40%) in this part of the town exhibit radon levels above 200 Bq m-3 while 11% of the houses had radon levels above 400 Bq/m3. Substantial interannual variability as well as the highest in Europe winter/summer ratios (up to 12) were observed in this part of the town, which consist of traditional stone masonry buildings of the late 19th- early 20th century. Measurements of U-238 and Th-232 content of building materials from these houses as well as radionuclide measurements in different floors show that the high levels of indoor radon measured in these buildings are not due to high radon emanation rates from the building materials themselves but rather due to high radon flux from the soil because of the underlying geology, high radon penetration rates into the buildings from underground due to the lack of solid concrete foundations in these buildings, or a combination thereof. From the meteorological variables studied, highest correlation with indoor Rn-222 was found with temperature (r2=0.65). An indoor radon prognostic regression model using temperature, pressure and precipitation as input was developed, that reproduced indoor radon with r2=0.69. Hence, meteorology is the main driving factor of indoor radon, with temperature being the most important determinant. Preliminary flux measurements indicate that the soil-atmosphere Rn-222 flux should be in the range 150-250 Bq m-2 hr-1, which is in the upper 10% of flux values for Europe.

Additional details

Publishing Information

Journal Title
Geophysical Research Abstracts
Journal Volume
18
Journal Page Range
p. 1
ISSN
1607-7962

Conference

Title
EGU2016. European Geosciences Union General Assembly 2016
Dates
17-22 Apr 2016
Place
Vienna (Austria)

INIS

Country of Publication
Germany
Country of Input or Organization
Germany
INIS RN
50018918
Subject category
S54: ENVIRONMENTAL SCIENCES;
Resource subtype / Literary indicator
Conference
Descriptors DEI
CORRELATIONS; DEPOSITS; GREECE; METEOROLOGY; RADIOACTIVITY; RADON 222; SOILS; URANIUM ORES; URBAN AREAS
Descriptors DEC
ALPHA DECAY RADIOISOTOPES; DAYS LIVING RADIOISOTOPES; DEVELOPING COUNTRIES; EUROPE; EVEN-EVEN NUCLEI; HEAVY NUCLEI; ISOTOPES; NUCLEI; ORES; RADIOISOTOPES; RADON ISOTOPES; WESTERN EUROPE

Optional Information

Notes
Published in summary form only