石油学报 ›› 2026, Vol. 47 ›› Issue (7): 1371-1380.DOI: 10.7623/syxb202607004

• 地质勘探 • 上一篇    

南海北部始新统烃源岩藻类母质差异性及其在烃源岩评价中的应用

兰蕾1,2, 杨树春1,2, 吴奎1,2, 丁文静1,2, 谢晓军1,2, 周姗姗1,2, 林青1,2   

  1. 1. 中海油研究总院有限责任公司 北京 100028;
    2. 中海石油(中国)有限公司北京研究中心 北京 100028
  • 收稿日期:2025-12-29 修回日期:2026-03-23 发布日期:2026-08-04
  • 通讯作者: 兰蕾,女,1987年6月生,2012年获中国石油大学(北京)硕士学位,现为中海油研究总院有限责任公司高级工程师,主要从事烃源岩、油气地球化学与油气成藏研究工作。Email:lanlei@cnooc.com.cn
  • 作者简介:兰蕾,女,1987年6月生,2012年获中国石油大学(北京)硕士学位,现为中海油研究总院有限责任公司高级工程师,主要从事烃源岩、油气地球化学与油气成藏研究工作。Email:lanlei@cnooc.com.cn
  • 基金资助:
    中海油研究总院有限责任公司科技课题“南海北部古湖成烃生物组成及烃源岩发育机理研究”(KK-ZYZL-03)资助。

Variability of algal parent material in Eocene source rocks of the northern South China Sea and its application in the evaluation of source rocks

Lan Lei1,2, Yang Shuchun1,2, Wu Kui1,2, Ding Wenjing1,2, Xie Xiaojun1,2, Zhou Shanshan1,2, Lin Qing1,2   

  1. 1. CNOOC Research Institute Co., Ltd., Beijing 100028, China;
    2. Beijing Research Center, CNOOC China Limited, Beijing 100028, China
  • Received:2025-12-29 Revised:2026-03-23 Published:2026-08-04

摘要: 南海北部始新统湖相烃源岩是该地区已发现原油的主要来源,以往研究笼统地认为研究区湖相烃源岩有机质以浮游藻类来源为主,并常以4-甲基甾烷指数作为评价藻类贡献的指标。然而,随着勘探的深入,发现部分优质烃源岩4-甲基甾烷丰度偏低,反映这一指标在识别优质湖相烃源岩及其贡献时的局限性,同时也制约了烃源岩发育机理研究与评价体系构建。通过对南海北部主要富烃凹陷的始新统半深湖亚相烃源岩开展岩石热解、微体古生物和分子地球化学等分析,发现烃源岩中存在3类优势藻类组成。珠江口盆地珠二坳陷和珠三坳陷的始新统烃源岩以疑源类及绿藻贡献为主,其中,珠三坳陷烃源岩中的绿藻以盘星藻单一来源为主,珠二坳陷烃源岩中的绿藻由盘星藻和葡萄藻共同组成;珠江口盆地珠一坳陷和北部湾盆地内始新统烃源岩的藻类相对复杂,除疑源类外,甲藻类的占比普遍高于绿藻类。受优势藻类组成控制,北部湾盆地和珠江口盆地珠一坳陷始新统优质烃源岩普遍表现为含有高丰度C30 4-甲基甾烷,而珠江口盆地珠三坳陷的烃源岩则表现为含有高丰度C30四环聚戊二烯(TPP),几乎不含指示甲藻来源的C30 4-甲基甾烷。在珠江口盆地珠二坳陷始新统烃源岩及其来源的原油中,C30 4-甲基甾烷与TPP含量均不突出,但在个别样品中发现含有明显的丛粒藻烷。研究认为,应综合考虑C30 4-甲基甾烷、TPP和丛粒藻烷的含量,从而提升优质烃源岩判识与分布预测的准确性。研究推测珠江口盆地珠二坳陷白云凹陷始新统发育较优质的半深湖亚相烃源岩。

关键词: 南海北部, 始新统, 成烃生物, 湖相烃源岩, 生物标志化合物

Abstract: The Eocene lacustrine source rocks in the northern South China Sea constitute the principal source of discovered crude oils in the region. Previous studies have generally inferred that the organic matter in these lacustrine source rocks is predominantly derived from planktonic algae, with C30 4-methylsteranes commonly employed as an indicator of algal input. However, with continued exploration, relatively low abundances of C30 4-methylsteranes have been identified in some high-quality source rocks, highlighting the limitations of this proxy in identifying high-quality lacustrine source rocks and quantifying their contributions, and thereby constraining investigations into their formation mechanisms and the development of evaluation frameworks. Based on pyrolysis, micropaleontological, and molecular geochemical analyses of the Eocene semi-deep lacustrine source rocks from major hydrocarbon-rich sags in the northern South China Sea, three dominant algal assemblages are identified. The Eocene source rocks in Zhu Ⅱ and Zhu Ⅲ depression of the Pearl River Mouth Basin are dominated by acritarchs and green algae. Green algae are dominated by a single source of Pediastrum in Zhu Ⅲ depression, while both Pediastrum and Botryococcus in Zhu Ⅱ depression. In contrast, the Eocene source rocks in the Zhu Ⅰ depression of Pearl River Mouth Basin and the Beibuwan Basin exhibit more complex algal compositions. In addition to acritarchs, dinoflagellates generally contribute more than green algae. Controlled by the dominant algal assemblages, high-quality Eocene lacustrine source rocks in both the Beibuwan Basin and the Zhu Ⅰ depression of Pearl River Mouth Basin generally exhibit high abundances of C30 4-methylsteranes. By contrast, source rocks in Zhu Ⅲ depression are characterized by high abundances of C30 tetracyclic polyprenoids (TPP) and are nearly devoid of C30 4-methylsteranes indicative of dinoflagellate input. In the Eocene source rocks of Zhu Ⅱ depression and their derived oils, neither C30 4-methylsteranes nor TPP are prominent. However, botryococcane is clearly identified in some samples. It is therefore proposed that integrated consideration of C30 4-methylsteranes, TPP, and botryococcane contents can enhance the accuracy of identifying high-quality source rocks and predicting their distribution. On this basis, relatively high-quality Eocene semi-deep lacustrine source rocks are inferred to be developed in the Baiyun sag of Zhu Ⅱ depression.

Key words: northern South China Sea, Eocene, hydrocarbon-generating organism, lacustrine source rock, biomarker

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