一种植硅石沉积天然微纳米硅碳矿的发现
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本文为江西省地质勘查基金资助项目(编号:20170041)的成果


Discovery of a natural micro nano silicon carbon deposit deposited by planting silica
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    摘要:

    全球尚无植硅石成矿的先例,近年在江西省丰城市石炉坑发现一种植硅石沉积的天然微纳米硅碳矿床。赋矿岩石由浅灰色—灰黑色植硅石岩,是由大量植硅体堆积固结成岩形成的植硅石,不含孢粉也极少见硅藻,形成于始新世中期—中新世早期温暧湖泽环境沉积。硅碳矿石主要由微米—纳米级石英和固定碳组成,含少量其他杂质;SiO2含量65%~85%、固定碳9%~20%,硅和碳矿物具多孔结构。硅碳矿石通过超细研磨和分选的方式,可获得微米级石英产率49.7%,SiO2含量99.95%,其中粒度在80~200 nm纳米级石英产率可达25%,微米级碳产率30%。植硅石经湿法物理分选可直接制备橡胶补强填料、高硬碳化硅、污水处理和导电性材料等;经矿石矿物加工分离提纯试验,可得介孔硅、介孔碳、白炭黑、纳微硅粉等材料,其工业价值极高。目前暂定为天然微—纳米硅碳矿床,资源储量规模为大型。

    Abstract:

    No precedentedphytolith mineralization have been found in the world except for recent years,a natural micro nano silicon carbon deposit with phytolith deposition was found in Shilukeng,Fengcheng City,Jiangxi Province. Light grey—grayish black silica rock,formed in the warm lake environment deposition from the middle Eocene of Paleogene to the early Miocene of Neogene is the ore bearing rock,which is composed of phytolith formed by the accumulation and consolidation of a large number of phytoliths without anysporopollen or very rare diatom.The porous silicon—carbon ore,is composed of micron nano quartz and fixed carbon,with a small number of other impurities,with about 65%~85%SiO2 content and 9%~20% fixed carbon can yield 49.7% of micron quartz 30% of carbon and 25% of 80~200 nm sized nano quartz.After wet physical separation,phytolith can be directly prepared into rubber reinforcing filler,high hard silicon carbide,sewage treatment and conductive materials.Mesoporous silicon,mesoporous carbon,silica,nano micro silica powder and other materials which has high industrial value,can be obtained through experiment on separation and purification of ore and mineral processing.Currently,this deposit is tentatively determined as a large natural micro nano silicon—carbon deposit.

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王先广,胡正华,肖玉如,杜高翔,王平.2021.一种植硅石沉积天然微纳米硅碳矿的发现[J].地质论评,67(6):1829-1837,[DOI].
WANG Xianguang, HU Zhenghua, XIAO Yuru, DU Gaoxiang, WANG Ping.2021. Discovery of a natural micro nano silicon carbon deposit deposited by planting silica[J]. Geological Review,67(6):1829-1837.

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历史
  • 收稿日期:2021-10-04
  • 最后修改日期:2021-10-16
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  • 在线发布日期: 2021-11-19
  • 出版日期: 2021-11-15