鄂尔多斯盆地神木—米脂地区本溪组含铝岩系中锂的富集机理研究
- 1. 中国石油长庆油田分公司勘探开发研究院
- 2. 中国石油长庆油田分公司新能源事业部
- 3. 中石油长庆油田分公司
- 4. 成都理工大学
- 收稿日期:
2024-02-05
- 网络出版日期:
2024-07-12
摘要: 目的 锂是我国重要战略性金属和新能源金属之一。鄂尔多斯盆地含铝岩系分布广,近年来,鄂尔多斯盆地陇东地区铝土岩天然气勘探获重大突破,勘探中发现含铝岩系中伴生大量的锂资源。针对含铝岩系中Li的赋存形势和富集规律,不仅对古气候古环境研究具有重要的学术研究意义,也对Li资源的勘探开发提供有力支撑。方法 以鄂尔多斯盆地中东部本溪组含铝岩系为研究对象,在前人经典认识和研究进展的基础上,通过岩心观察、钻井资料、地化试验等方法研究含铝岩系中Li的基本特征、赋存方式和富集规律。结果 Li在含铝岩系中的分布相对不均匀,一般在含铝岩系中上部富集,在岩性序列中,Li主要富集在铝土质黏土岩和黏土质铝土岩中,在铝土质铁矿中相对亏损。Li与Al2O3、SiO2及Al2O3/ SiO2比值关系均先为正相关性,后呈负相关。结论 炎热潮湿多雨的古气候及碱性环境有利于黏土矿物的形成,促进Li+与Al3+、Mg2+发生类质同象作用赋存在黏土矿物中,随着脱硅富铝作用增强,由于缺少足够的黏土矿物,Li在铝土岩中的含量急剧降低。
Enrichment of lithium in bauxite deposits of Benxi Formation in Shenmu-Mizhi area, Ordos Basin
- Received Date:
2024-02-05
- Available Online:
2024-07-12
Abstract: Objective: Lithium constitutes a critical strategic and new energy metal within China. The Ordos Basin features a widespread distribution of bauxite deposits. Recent years have seen a major breakthrough in bauxite gas exploration within the Ordos Basin's Longdong area. The exploration has uncovered a considerable volume of lithium resources associated with the bauxite deposits. Considering the occurrence and enrichment patterns of Li in bauxite deposits, this not only holds significant academic value for studying paleoclimate and paleoenvironment but also offers robust support for the exploration and development of Li resources. Methods: Focusing on the aluminum-bearing rock series of the Benxi Formation in the central and eastern Ordos Basin, this study builds upon classical understandings and recent research advancements to investigate the fundamental characteristics, modes of occurrence, and enrichment patterns of Li, employing core observation, drilling data, and geochemical testing. Results: The findings reveal that Li distribution within the bauxite deposits is notably uneven, with a substantial range of variation. Generally, Li exhibits higher concentrations in the middle and upper segments of the bauxite deposits. Within the lithological sequence, Li predominantly concentrates in bauxite clay rock and clay bauxite rock, while it is comparatively scarce in bauxite iron ore. Initially, a positive correlation exists between Li and Al2O3, SiO2, as well as the Al2O3/SiO2 ratio, which subsequently transitions to a negative correlation. Conclusion: The paleoclimate's hot, humid, and rainy conditions, alongside alkaline environment, facilitate clay mineral formation and enhance the isomorphic substitution of Li+ with Al3+ and Mg2+. As desilication and aluminum enrichment intensify, Li content in bauxite rock sharply decreases, attributed to the insufficient presence of clay minerals.
潘博, 赵伟波, 周星泽, 王怀厂, 张辉, 史云鹤, 陈宇航, 余瑜. 鄂尔多斯盆地神木—米脂地区本溪组含铝岩系中锂的富集机理研究[J]. 沉积学报. doi: 10.14027/j.issn.1000-0550.2024.066
Enrichment of lithium in bauxite deposits of Benxi Formation in Shenmu-Mizhi area, Ordos Basin[J]. Acta Sedimentologica Sinica. doi: 10.14027/j.issn.1000-0550.2024.066
Citation: |
Enrichment of lithium in bauxite deposits of Benxi Formation in Shenmu-Mizhi area, Ordos Basin[J]. Acta Sedimentologica Sinica. doi: 10.14027/j.issn.1000-0550.2024.066
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