Published April 2000 | Version v1
Journal article

Radon in Himalayan springs: a geohydrological control

  • 1. Wadia Inst. of Himalayan Geology, Dehra Dun (India)
  • 2. Garhwal Univ., Srinagar, Uttar Pradesh (India). Dept. of Physics

Description

This paper presents the results of radon measurements in springs of the Himalayan region by using radon emanometry technique. The radon was measured in different springs, draining from different geohydrological setups, and from stream water in order to find the geohydrological control over radon concentration in groundwater emanating in the form of spring. The radon values were found to vary from 0.4 Bq/l to 887 Bq/l, being observed lowest for a turbulent stream and highest for the spring. The radon values were recorded highest in the springs draining through gneiss, granite, mylonite, etc. Radon concentrations have been related with four spring types viz. fracture-joint related spring, fault-lineament related spring, fluvial related spring and colluvial related spring, showing geohydrological characteristics of the rocks through which they are emanating. The high radon concentration in fracture-joint and fault-lineament springs is related to increased ratio of rock surface area to water volume and uranium mineralisation in the shear zones present in the close vicinity of fault and thrust. The low concentration of radon in fluvial and colluvial springs is possibly because of high transmissivity and turbulent flow within such deposits leading to natural de-emanation of gases. (orig.)

Additional details

Publishing Information

Journal Title
Environmental Geology (Berlin)
Journal Volume
39
Journal Issue
6
Journal Page Range
p. 523-530
ISSN
0943-0105
CODEN
ENGOE9