Published April 2020 | Version v1
Book

Potential sandstone-type uranium mineralization analysis in Baoerguoji dent, Erlian Basin

  • 1. Geologic Party No.243, CNNC, Chifeng (China)

Description

Baoerguoji dent is a large dent in Wunite depression of Erlian basin. This paper analyzes the uranium sources, structural environment, sedimentary facies belt, oxidizing zone, radioactive hydrologic condition, mineralization condition and researches the sedimentary characteristics of target stratum. Through summarizing metallogenetic conditions, comprehensive assessing uranium mineralization potential, analyzing range of reconnaissance associated similar metallogenic model in adjacent regions, the paper points out that the Wunite and Wujianfang are the most favorable area for leachable sandstone type uranium deposits exploration and the Baoerguoji dent has excellent metallogenetic potentiality. (authors)

Part of:
Progress report on nuclear science and technology in China (Vol.6). Proceedings of academic annual meeting of China Nuclear Society in 2019, No.1--Uranium Geology sub-volume

Additional details

Publishing Information

Publisher
China Atomic Energy Press
Imprint Place
Beijing (China)
ISBN
978-7-5221-0522-2
Imprint Title
Progress report on nuclear science and technology in China (Vol.6). Proceedings of academic annual meeting of China Nuclear Society in 2019, No.1--Uranium Geology sub-volume
Imprint Pagination
380 p.
Journal Page Range
p. 141-148

Conference

Title
2019 academic annual meeting of China Nuclear Society
Dates
20-23 Aug 2019
Place
Baotou (China)

INIS

Country of Publication
China
Country of Input or Organization
China
INIS RN
53114772
Subject category
S11: NUCLEAR FUEL CYCLE AND FUEL MATERIALS; S58: GEOSCIENCES;
Resource subtype / Literary indicator
Conference
Descriptors DEI
CHINA; EXPLORATION; MINERALIZATION; SANDSTONES; URANIUM; URANIUM DEPOSITS
Descriptors DEC
ACTINIDES; ASIA; ELEMENTS; GEOLOGIC DEPOSITS; METALS; MINERAL RESOURCES; RESOURCES; ROCKS; SEDIMENTARY ROCKS

Optional Information

Notes
6 figs., 13 refs.