Published 1983 | Version v1
Report Open

Studies on uranium ore processing

  • 1. Korea Advanced Energy Research Inst., Seoul (Republic of Korea)

Description

For the exploitation of domestic uranium ore deposit, comprehensive studies on uranium ore processing of the Geum-San pit ore are carried out. Physical and chemical characteristics of the Geum-San ore are similar to those of Goe-San ore and the physical beneficiation could not be applicable. Optimum operating conditions such as uranium leaching, solid-liquid separation, solvent extraction and precipitation of yellow cake are found out and the results are confirmed by the continous operation of the micro-plant with the capacity of 50Kg, ore/day. In order to improve the process of ore milling pilot plant installed recently, the feasibility of raffinate-recycle and the precipitation methods of yellow cake are intensively examined. It was suggested that the raffinate-recycle in the leaching of filtering stage could be reduced the environmental contamination and the peroxide precipitation technique was applicable to improve the purity of yellow cake. The mechanism and conditions the third phase formation are thoroughly studied and confirmed by chemical analysis of the third phase actually formed during the operation of pilot plant. The major constituents of the third phase are polyanions such as PMosub(12)Osub(40)sup(3-) or SiMosub(12)Osub(40)sup(4-). And the formation of these polyanions could be reduced by the control of redox potential and the addition of modifier. (Author)

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Additional details

Publishing Information

Imprint Title
Studies on uranium ore processing and conversion
Imprint Pagination
603 p.
Journal Page Range
pt. 1 p. 3-102.
Report number
KAERI/RR--358/82

INIS

Country of Publication
Korea, Republic of
Country of Input or Organization
Korea, Republic of
INIS RN
15024176
Subject category
S11: NUCLEAR FUEL CYCLE AND FUEL MATERIALS;
Descriptors DEI
LEACHING; ORE PROCESSING; PRECIPITATION; SEPARATION PROCESSES; SOLVENT EXTRACTION; URANIUM ORES
Descriptors DEC
DISSOLUTION; ORES