Formation of boehmite through desilication of volcanic-ash-altered kaolinite and its retention for gallium: Contribution to enrichment of aluminum and gallium in coal

IF 5.6 2区 工程技术 Q2 ENERGY & FUELS
Shuai Zhang , Tangchen Yuan , Bo Sun , Lei Li , Xiaojun Ma , Songlin Shi , Qinfu Liu
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引用次数: 0

Abstract

Multiple parting bands within Permo–Carboniferous coal that are generally enriched in critical metals in the northern North China have been confirmed to be altered from volcanic ash (tonsteins). The tonsteins and adjacent coal in some areas contain boehmite with varying contents. Whether or not the boehmite has a relationship with the volcanic-ash-altered kaolinite remains poorly understood. Herein, petrographical, mineralogical, whole-rock geochemical, and in-situ elemental analyses, combined with U–Pb–Hf isotopic analysis of zircon, were performed for the boehmite-bearing/rich partings and coal collected from the eastern edge of the Datong and Jungar coalfields. Except for the boehmite, well-ordered kaolinite is predominant in the parting samples, where the columnar/tabular and vermicular kaolinite are commonly present. Additionally, the zircons separated from the representative parting and coal samples are mostly igneous origin with only one age population of ca. 300 Ma, almost same with the depositional age of the coal, suggesting that the kaolinite in the inorganic constitutes of the investigated coal seams were mainly altered from volcanic ash. Numerous fine-grained boehmite exhibit textural features of replacement for columnar/tabular and vermicular kaolinite along the cleavage cracks in the parting samples, suggesting that such boehmite were formed from desilication of volcanic-ash-altered kaolinite. The tonsteins and coal along the eastern edge of the coalfields were uplifted and influenced by fault activities due to Indosinian and Yanshan orogeny, which were probably experienced intensive leaching by silica-undersaturated percolating water and groundwater, resulting in desilication of volcanic-ash-altered kaolinite and precipitation of residual Al as boehmite. The Ga, preserved in the alumina octahedral sheets of volcanic-ash-altered kaolinite, were retained by boehmite due to its very similar geochemical behavior with Al. The formation of boehmite and its retention for Ga made a contribution to the genesis of high–Al–Ga coal in the northern North China.

火山灰蚀变高岭石脱硅形成薄铝石及其对镓的保留:对煤中铝和镓富集的贡献
华北北部二叠-石炭系煤中多处主要富集关键金属的分型带被证实是由火山灰蚀变而成。某些地区的矿石和邻近的煤中含有不同含量的薄水铝石。薄水铝石与火山灰蚀变高岭石的关系尚不清楚。在此基础上,对大同和准噶尔煤田东缘含薄铝石/富薄铝石分选体和煤进行了岩石学、矿物学、全岩地球化学和原位元素分析,并结合锆石U-Pb-Hf同位素分析。除薄水铝石外,在分型样品中以有序高岭石为主,其中柱状/板状高岭石和蛭状高岭石普遍存在。此外,代表性分型和煤样分离出的锆石多为火成岩,只有一个年龄群,约300 Ma,与煤的沉积年龄基本一致,说明煤层无机成分中的高岭石主要是由火山灰蚀变的。在分型样品中,大量细粒薄铝石沿解理裂隙呈现出替代柱状/板状和蛭状高岭石的结构特征,表明这种薄铝石是由火山灰蚀变高岭石脱硅形成的。在印支和燕山造山运动的影响下,煤田东缘的重晶石和煤被抬升,并受到断裂活动的影响,可能经历了硅质欠饱和地下水和可渗透的大气水的强烈淋滤,导致火山灰蚀变高岭石脱硅,残余铝以薄铝石的形式析出。由于薄铝石的地球化学行为与铝非常相似,因此在火山—火山灰蚀变高岭石的氧化铝八面体薄片中保存了Ga,薄铝石的形成及其对Ga的保留对华北北部高Al - Ga煤的形成起着重要作用。
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来源期刊
International Journal of Coal Geology
International Journal of Coal Geology 工程技术-地球科学综合
CiteScore
11.00
自引率
14.30%
发文量
145
审稿时长
38 days
期刊介绍: The International Journal of Coal Geology deals with fundamental and applied aspects of the geology and petrology of coal, oil/gas source rocks and shale gas resources. The journal aims to advance the exploration, exploitation and utilization of these resources, and to stimulate environmental awareness as well as advancement of engineering for effective resource management.
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