Published May 2014 | Version v1
Book

Study of lixiviant damage of a sandstone deposit during in-situ leaching of uranium

  • 1. Beijing Research Institute of Chemical Engineering and Metallurgy, CNNC, Beijing (China)

Description

The permeability of sandstone deposit is a key factor for economical uranium recovery during in-situ leaching uranium. Low permeability sandstone uranium deposits behave low push-pull capacity, and show formation damage in leaching operations. It is important to study formation damage of permeability, therefore, and to stabilize even improve the push-pull power of drillholes during in-situ leaching. In this paper, formation damage caused by lixiviants was investigated based on a low permeability sandstone uranium deposit. The resulted showed that, under the conditions of in-situ leaching, the salinity of leaching fluid has no harm to formation permeability, on the contrary, the increment of salinity of lixiviant during in-situ leaching improve the permeability of the deposit. The alkalinity, hydrogen peroxide and productivity of the lixiviant cause no significant formation damage. But the fine particles in the lixiviant shows formation damage significantly, and the quantity of the particles should be controlled during production. (authors)

Part of:
Progress report on nuclear science and technology in China (Vol.3). Proceedings of academic annual meeting of China Nuclear Society in 2013, No.2--uranium mining and metallurgy sub-volume

Additional details

Publishing Information

Publisher
China Nuclear Physics Society
Imprint Place
Beijing (China)
ISBN
978-7-5022-6124-5
Imprint Title
Progress report on nuclear science and technology in China (Vol.3). Proceedings of academic annual meeting of China Nuclear Society in 2013, No.2--uranium mining and metallurgy sub-volume
Imprint Pagination
287 p.
Journal Page Range
p. 47-52

Conference

Title
2013 academic annual meeting of China Nuclear Society
Dates
10-14 Sep 2013
Place
Harbin (China)

INIS

Country of Publication
China
Country of Input or Organization
China
INIS RN
48055539
Subject category
S11: NUCLEAR FUEL CYCLE AND FUEL MATERIALS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ACID NEUTRALIZING CAPACITY; FLUIDS; FORMATION DAMAGE; LEACHING; SALINITY; SANDSTONES; URANIUM DEPOSITS
Descriptors DEC
CHEMISTRY; DISSOLUTION; GEOLOGIC DEPOSITS; MINERAL RESOURCES; RESOURCES; ROCKS; SEDIMENTARY ROCKS; SEPARATION PROCESSES; WATER CHEMISTRY

Optional Information

Notes
4 figs., 2 tabs., 11 refs.