Published November 2009 | Version v1
Journal article

Persistence of radon-222 flux during monsoon at a geothermal zone in Nepal

  • 1. Equipe de Geomagnetisme, Institut de Physique du Globe de Paris, UMR-7154 and Universite Paris-Diderot, 4 place Jussieu, F-75005 Paris (France)
  • 2. National Seismic Centre, Department of Mines and Geology, Lainchaur, Kathmandu (Nepal)
  • 3. Equipe de Geologie des Systemes Volcaniques, Institut de Physique du Globe de Paris, UMR-7154, 4 place Jussieu, F-75005 Paris (France)
  • 4. CEA, DAM, DIF, F-91297 Arpajon (France)

Description

The Syabru-Bensi hydrothermal zone, Langtang region (Nepal), is characterized by high radon-222 and CO2 discharge. Seasonal variations of gas fluxes were studied on a reference transect in a newly discovered gas discharge zone. Radon-222 and CO2 fluxes were measured with the accumulation chamber technique, coupled with the scintillation flask method for radon. In the reference transect, fluxes reach exceptional mean values, as high as 8700 ± 1500 g m-2 d-1 for CO2 and 3400 ± 100 x 10-3 Bq m-2 s-1 for radon. Gases fluxes were measured in September 2007 during the monsoon and during the dry winter season, in December 2007 to January 2008 and in December 2008 to January 2009. Contrary to expectations, radon and its carrier gas fluxes were similar during both seasons. The integrated flux along this transect was approximately the same for radon, with a small increase of 11 ± 4% during the wet season, whereas it was reduced by 38 ± 5% during the monsoon for CO2. In order to account for the persistence of the high gas emissions during monsoon, watering experiments have been performed at selected radon measurement points. After watering, radon flux decreased within 5 min by a factor of 2-7 depending on the point. Subsequently, it returned to its original value, firstly, by an initial partial recovery within 3-4 h, followed by a slow relaxation, lasting around 10 h and possibly superimposed by diurnal variations. Monsoon, in this part of the Himalayas, proceeds generally by brutal rainfall events separated by two- or three-day lapses. Thus, the recovery ability shown in the watering experiments accounts for the observed long-term persistence of gas discharge. This persistence is an important asset for long-term monitoring, for example to study possible temporal variations associated with stress accumulation and release.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.jenvrad.2009.07.004

Additional details

Identifiers

DOI
10.1016/j.jenvrad.2009.07.004;
PII
S0265-931X(09)00164-7;

Publishing Information

Journal Title
Journal of Environmental Radioactivity
Journal Volume
100
Journal Issue
11
Journal Page Range
p. 955-964
ISSN
0265-931X
CODEN
JERAEE

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
41044498
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
BUILDUP; CARBON DIOXIDE; EMISSION; MONSOONS; RADON 222; SEASONAL VARIATIONS
Descriptors DEC
ALPHA DECAY RADIOISOTOPES; CARBON COMPOUNDS; CARBON OXIDES; CHALCOGENIDES; DAYS LIVING RADIOISOTOPES; EVEN-EVEN NUCLEI; HEAVY NUCLEI; ISOTOPES; NUCLEI; OXIDES; OXYGEN COMPOUNDS; RADIOISOTOPES; RADON ISOTOPES; STORMS; VARIATIONS

Optional Information

Copyright
Copyright (c) 2009 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.