首页> 中文期刊> 《科学技术与工程》 >高成熟富有机质页岩吸附特征及影响因素

高成熟富有机质页岩吸附特征及影响因素

         

摘要

吸附气作为页岩气的一种重要的赋存状态,主要存在于黏土矿物及有机质颗粒的表面或孔隙内,泥页岩的吸附特征对含气量起到至关重要的作用.本次研究通过有机碳含量测试、热成熟度测试、X射线衍射、低温氮吸附及甲烷等温吸附等分析化验手段,对皖南地区下寒武统荷塘组页岩的有机地化特征、岩石学特征、孔隙结构及吸附特征进行了研究,并进一步探讨了吸附性能的控制因素及机理.结果发现:①研究区页岩处于过成熟阶段,RO为2.83% ~3.91%;有机质含量较高,TOC含量主要分布于1.97 wt% ~7.32 wt%,平均为4.58 wt%.②孔隙类型以中孔占主导,宏孔和微孔含量较低.③样品的吸附能力差异较大,吸附量分布在0.47~8.63 m3/t,平均为5.21 m3/t.④吸附能力受有机质含量、热演化程度、孔隙结构及黏土矿物含量等因素共同控制,吸附量随TOC含量、RO及比表面积的增加而增大,随平均孔径及黏土矿物含量的增加而降低.%Adsorbed gas,as an significant existence phase for shale gas,is adsorbed principally on the surface of organic particles and clays or within their pores. Such adsorption behavior of shales and mudstones mainly con-trols the gas content for the particular shales or mudstones. The tests including organic content, thermal maturity, X-ray scattering,low temperature nitrogen adsorption and methane isothermal adsorption were conducted to investi-gate the characterization of the shales regarding organic geochemistry,petrology,pore structure and isothermal ad-sorption,a further research was performed to reveal the controlling factors as well as its mechanisms of adsorption characteristics for the samples. The results show these as follows. ①All the samples have reached a over-mature state,ROranges from 2.83% to 3.91%,TOC content varying from 1.97 wt% to 7.32 wt%,4.58 wt% at an av-erage.②In terms of pore types,meso-pores take up the largest proportion,with micro- and macro-pores represen-ting the minority. ③The adsorption capacity varies significantly among the samples, varying from 0.47 m3/t to 8.63 m3/t,5.21 m3/t. ④At an average,which is dominated by various factors,such as TOC content,RO,pore structure and clay content and shows a positive correlation with TOC content, RO, and specific surface area, but have a negative correlation with average pore diameter and clay content.

著录项

  • 来源
    《科学技术与工程》 |2018年第11期|242-248|共7页
  • 作者

    高原; 毛璐; 马荣;

  • 作者单位

    北京市理化分析测试中心,有机材料检测技术与质量评价北京市重点实验室,北京100083;

    北京市理化分析测试中心,有机材料检测技术与质量评价北京市重点实验室,北京100083;

    北京市理化分析测试中心,有机材料检测技术与质量评价北京市重点实验室,北京100083;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 TE122.2;
  • 关键词

    页岩气; 孔隙结构; 等温吸附; 影响因素;

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