Science & Technology Review
|
2014, 32(35): 50-60
Characteristics and Forming Process of Juhongtu Boron Deposit in Yashatu, Qinghai Province
Full
QI Lujing1,2, ZHENG Mianping1,2, WU Guopeng1,2, ZHANG Xuefei2, DU Shaorong1,2
Affiliations
1. College of Geosciences and Surveying Engineering, China University of Ming and Technology, Beijing 100083, China;
2. MLR Key Laboratory of Saline Lake Resources and Environments; Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China
Published: 2014-12-18
doi: 10.3981/j.issn.1000-7857.2014.35.006
Outline
The situation of boron resources is not promising in our country, so it is urgent to find alternative exogenous boron deposits. The Huke basin is located in the northern edge of the Qaidam basin, belonging to a "resource prospecting" area. The NWNWW Piedmont thrust and the NE fault control the formation and the distribution of the boron deposits and the mineralization points in Juhongtu and surrounding areas. The regional rock, the sedimentary and the water content have obvious positive anomalies of B, and the water is rich in B, Li and poor in Br, I, and the ΣCe ΣY ratio is close to that of the earth's crust, reflecting that the metallogenic source comes from the groundwater and the boron source rock. From the Juhongtu boron ore and the typical exogenous boron deposit, it is found that the boron ore is distributed in the upper Pleistocene series on fine grained sediments, reflecting stable sedimentary environments; the sediments show a positive change in the portrait with the granularity of clastic particle size from coarse to fine, the change of B2O3 containing grades from low to high and the change of the depression from the center to the edge. The strata thickness is gradually punched out from the middle to the sides. It is the first time to show that the deposit is formed in the late Pleistocene, 28 ka BP; the silicon is transformed into low temperature quartz and C opal and dilute alkali elements Li > Rb > Cs, which shows that the sinter has undergone a long-term "dehydration". Based on the carbonate sediment isotope and XRD analysis, the Juhongtu boron ore forming process is divided into three stages: I-early silicon tufa deposition stage; II- the lower boron ore initial sedimentary stage; and III-main boron ore deposition stage. The study of the formation mechanism of boron deposits in Qilian mountain area helps understanding of metallogenic processes.
Boron deposit
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deposit features
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prospecting direction
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Hake Basin
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juhongtu
齐路晶, 郑绵平, 武国朋, 张雪飞, 杜少荣.
柴达木盆地外生硼矿床成矿特征与找矿方向探讨——以雅沙图地区哈克盆地为例.
科技导报,
2014
, 32
(35)
: 50
-60
.
DOI: 10.3981/j.issn.1000-7857.2014.35.006
QI Lujing, ZHENG Mianping, WU Guopeng, ZHANG Xuefei, DU Shaorong.
Characteristics and Forming Process of Juhongtu Boron Deposit in Yashatu, Qinghai Province[J].
Science & Technology Review,
2014
, 32
(35)
: 50
-60
.
DOI: 10.3981/j.issn.1000-7857.2014.35.006
Year 2014 volume 32 Issue 35
PDF
629
222
Cite this Article
BibTeX
Article Info
doi: 10.3981/j.issn.1000-7857.2014.35.006
- Receive Date:2014-09-16
- Online Date:2014-12-25
- Published:2014-12-18