天然气地球化学勘探

油气微生物检测技术:理论、实践和应用前景

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  • 1.盎亿泰地质微生物技术(北京)有限公司,北京 100029;2.中国石油大学资源信息学院,北京 102249;
    3.长江大学地球化学系,湖北 荆州 434023;4.美国地质微生物技术公司,美国 俄克拉荷马州 74051

收稿日期: 2008-06-30

  修回日期: 2008-10-06

  网络出版日期: 2008-12-10

Microbial Oil gas Detection Technologies: Theory, Practice and Application Prospect

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  • 1. AE and E Geomicrobial Technologies, Inc., Beijing 100029, China; 2. School of Resources and Information, China University of Petroleum, Beijing 102249, China; 3. Geochemistry Department, Yangtze University, Jingzhou 434023, China;4. Geo-Microbial Technologies, Inc., Ochelata, Oklahoma 74051, USA)

Received date: 2008-06-30

  Revised date: 2008-10-06

  Online published: 2008-12-10

摘要

简述了微生物勘探技术(MOST+SSG)的原理和方法。指出:专性烃氧化菌对食物(碳源)的高度选择性决定了MOST技术烃检测结果的唯一性和重现性;全球MOST勘探,特别是岩性地层油气藏勘探的成功范例展现了地震勘探(2D/3D)和微生物勘探(MOST)相结合的综合勘探模式对于提高勘探成功率,降低勘探风险的重大价值。

本文引用格式

梅海;林壬子,;梅博文,;Daniel Hitzman . 油气微生物检测技术:理论、实践和应用前景[J]. 天然气地球科学, 2008 , 19(06) : 888 -893 . DOI: 10.11764/j.issn.1672-1926.2008.06.888

Abstract

This article briefly introduced the mechanisms and methodologies of microbial oil and gas exploration technologies (MOST+SSG). High selectivity of obligate hydrocarbon oxidizing bacteria towards their food (carbon source) determined the high specificity and reproducibility of MOST results.MOST surveys worldwide, especially the successful implementation of MOST on lithostratigraphic traps, proved that the integration of seismic exploration technologies (2D/3D) with microbial exploration technologies (MOST+SSG) can significantly improve exploration success rate and minimize exploration risk.

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