砒砂岩的结构组成研究
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1.华东交通大学;2.大连理工大学

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国家重点研发计划(2017YFC0504506):砒砂岩资源利用及生态产业技术与示范;国家青年(51708220):砒砂岩体溃散机理及砒砂岩改性建筑材料研究;校科研启动基金项目(10012003417017);中央级公益科研院所基本业务费专项:HKY-JBYW-2016-38。第一作者董晶亮(1988-),男,博士,讲师,dongjingliang19881@163.com。通信作者陈磊伟(1995-),男,硕士,Chenleiwei1@163.com。 ,陈磊伟1,张海娜1,王立久2


Study on structural composition of Pisha Sandstone
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    摘要:

    砒砂岩区水土流失剧烈,是黄河粗泥沙来源的核心区,明晰砒砂岩的结构组成和矿物组成,是揭示砒砂岩地区水土流失机制及研发出治理砒砂岩地区水土流失方法的基础。本篇文章通过借助定量XRD及光学显微镜分析等材料分析法分析砒砂岩的结构组成和矿物组成。结果表明:(1)砒砂岩的结构由颗粒状骨架物质和粘土类胶结物质组成,其胶结方式为接触式胶结;(2)砒砂岩颗粒状骨架物质主要由石英、碳酸钙及长石等组成,粘土类胶结物质为蒙脱石、绿泥石、高岭石及氧化铁等;(3)砒砂岩颗粒状骨架晶体(石英和长石等)是依靠亲水弱胶结粘土物质的胶结力、晶体间的摩擦力、机械咬合力及颗粒支撑作用所形成的固体混合物。同时由于胶结物质的不完全填充导致砒砂岩中颗粒物与颗粒物之间存在大量的孔隙,为三元颗粒支撑渗透式结构。

    Abstract:

    The Pisha Sandstone has caused serious soil erosion in the Inner Mongolia area. It is the main source of coarse silt in the middle and lower reaches of the Yellow River. In order to reveal the formation mechanism of soil erosion in the Pisha Sandstone area and the research and developing methods to control soil erosion in the Pisha Sandstone area, it is necessary to clear the root cause of the collapse of Pisha Sandstone. This paper analyzes the structural composition and mineral composition of the Pisha Sandstone by means of quantitative XRD and optical microscope analysis. The results show: (1) This paper found the soft rock is a kind of mudstone with severe weathering and loose structure. The structure of Pisha Sandstone is composed of granular skeleton material and clay cementation material, and its cementation is contact cementation. (2) The granular skeleton material is mainly composed of quartz, calcium carbonate and the structure of granular skeleton. Montmorillonite, chlorite, kaolinite and iron oxide are cementation materials. (3) Pisa Sandstone is a solid mixture. Granular skeleton crystals (quartz and feldspar) are linked together by the cementing force of the hydrophilic and weak cemented clay, and the friction between crystals, mechanical bite force and particle support. Due to incomplete filling of cementing materials, there are many pores between particles and particulates. Its structure is composed of granular support and osmotic structure.

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历史
  • 收稿日期:2021-10-30
  • 最后修改日期:2022-01-13
  • 录用日期:2022-01-18
  • 在线发布日期: 2022-10-10
  • 出版日期: