Published 1997 | Version v1
Book

Removal of fission products from waste solutions using 16 different soil samples

  • 1. Pakistan Inst. of Nuclear Science and Technology, Islamabad (Pakistan)

Description

Most of the nuclear sites use pits in the surrounding soils for the storage/disposal of low active waste (LAW) solutions. The characteristics of the soil if not suitable for the fixation or adsorption of the radioactive nuclides, may cause migration of these nuclides to hydrosphere. The phenomenon has the risk of radio toxic pollution for the living bodies therefore minerals composing the soil and their adsorption properties need to be investigated. For this purpose 16 different soil samples were collected from all over Pakistan. Mineralogical composition of the soils was determined by X-ray diffraction analysis. It was found that most of the samples contained clay minerals, illite, kaolinite and montmorillonite. Studies for the removal of fission products like, /sup 137/Cs. /sup 60/Sr and activation product /sup 60/CO from solution were carried out on these samples. The sorption experiments were performed by batch technique using radioactive as tracers. Distribution co-efficient were determined by mixing he element solution at pH 3 with the soil at soil solution ratios of 1 to 20. It is revealed from the experimental data that efficient removal of fission products from solutions is achieved by soil samples containing clay mineral montmorillonite, followed by little and kaolinite. These soils thus can be effectively used for the disposal of low level radioactive waste solutions without causing any environmental hazard. (author)

Part of:
Environmental pollution

Additional details

Publishing Information

Publisher
Scientific Information Division, Pinstech, P.O. Nilore, Islamabad Pakistan
Imprint Place
Islamabad (Pakistan)
ISBN
969-8221-03-4
Imprint Title
Environmental pollution
Imprint Pagination
508 p.
Journal Page Range
p. 489-492

Conference

Title
4. International Symposium on Advanced Materials
Dates
17-21 Sep 1997
Place
Islamabad (Pakistan)

Optional Information