首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Comments by Worden and Cai (2006) on Zhang et al. (2005) [Organic Geochemistry 36, 1717-1730] - Reply
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Comments by Worden and Cai (2006) on Zhang et al. (2005) [Organic Geochemistry 36, 1717-1730] - Reply

机译:Worden和Cai(2006)对Zhang等人的评论。 (2005)[有机地球化学36,1717-1730]-答复

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In this short communication, we reply to the comments of Worden and Cai (Worden, R.H., Cai, C.F., 2006. Geochemical characteristics of the Zhaolanzhuang sour gas accumulation and thermochemical sulfate reduction in the Jinxian Sag of Bohai Bay Basin by Zhang et al., Organic Geochemistry 36, 1717-1730, Organic Geochemistry 371 on the data and interpretation of Zhang et al. [Zhang, S.C., Zhu, G.Y., Liang, Y.B., Dai, J.X, Liang, H.B., Li, M.W., 2005. Geochemical characteristics of the Zhaolanzhuang sour gas accumulation and thermochemical sulfate reduction in the Jixian Sag of Bohai Bay Basin, Organic Geochemistry 36, 1717-1730] concerning the origin of an Eocene sour gas and high sulfur oil accumulation from the Jinxian Sag, Bohai Bay Basin, China. We provide clarifications on the current temperature range of sour gas reservoirs and comment on the reliability of 634 S data of various sulfur species used by Zhang et al. (2005) and Cai, C.F., Worden, R.H., Wolff, G.A.,Bottrell, S., Wang, D.L., Li, X., 2005. [Origin of sulfur rich oils and H2S in Tertiary lacustrine sections of the Jinxian Sag, Bohai Bay Basin, China, Applied Geochemistry 20, 1427-1444]. We conclude that there is no verified evidence in support of bacteria sulfate reduction as the dominant geochemical process that contributed to the sour gases in the Eocene reservoirs of the Jinxian Sag, but more geological and sulfur isotope data are still needed to confirm the thermochemical sulfate reduction occurring in deeper parts of the petroleum reservoirs. Crown Copyright (c) 2005 Published by Elsevier Ltd. All rights reserved.
机译:在此简短的交流中,我们回复了Worden和Cai的评论(Worden,RH,Cai,CF,2006年。Zhang等人在渤海湾盆地金县凹陷兆兰庄含硫天然气的地球化学特征和热化学硫酸盐的还原)。 ,有机地球化学36,1717-1730,有机地球化学371上Zhang等人的数据和解释[Zhang,SC,Zhu,GY,Liang,YB,Dai,JX,Liang,HB,Li,MW,2005。渤海湾盆地蓟县凹陷赵兰庄酸性气藏和热化学硫酸盐还原特征,有机地球化学36,1717-1730],涉及渤海湾盆地金县凹陷始新世酸性气和高硫油成因,中国:我们对含硫气藏的当前温度范围进行了澄清,并对Zhang等人(2005)和Cai,CF,Worden,RH,Wolff,GA,Bottrell使用的各种硫物种的634 S数据的可靠性进行了评论。 ,S.,Wang,D 。L.,Li X.,2005. [中国渤海湾盆地金县凹陷第三湖相段富硫油和H2S的来源,应用地球化学20,1427-1444]。我们的结论是,尚无经证实的证据支持细菌硫酸盐还原是造成金县凹陷始新世储层中酸性气体的主要地球化学过程,但仍需要更多的地质和硫同位素数据来确认硫酸盐热化学还原发生在石油储层的较深部分。 Crown版权所有(c)2005,由Elsevier Ltd.发行。保留所有权利。

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