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Featured researches published by Jiang Qigui.


Petroleum Exploration and Development | 2010

Kinetics of the hydrocarbon generation process of marine source rocks in South China

Jiang Qigui; Wang Yan-bin; Qin Jianzhong; Wang Qin; Zhang Caiming

Abstract The kinetics of hydrocarbon generation of different types of marine source rocks and planktonic algae in South China were analyzed using the Rock-Eval 6 instrument and the Optkin kinetic software. The average activity energy of marine source rocks has the characteristics of E AI E AII1 E AII2 E AIII , in the effective hydrocarbon generation period, with the kerogen transformation being from 10% to 90%. The variation of the hydrocarbon generation activity energy (Δ E ) is Δ E III >Δ E II2 >Δ E II1 >Δ E I , the hydrocarbon generation speed is V mI > V m II1 > V mII2 > V mIII , while the planktonic algae has a very low activation energy for hydrocarbon generation and can generate a great abundance of heavy oil during the immature –low mature period. According to the results of kinetic experiments on thermal simulation experiments and simulation residue samples, the kinetic hydrocarbon generation process of marine source rocks can be described by four stages: (1) heavy oil generation, where the vitrinite reflectance (Ro) is 0.3%–0.6%, and the average activation energy is about 220 kJ/mol; (2) normal oil generation, where the vitrinite reflectance is 0.6%–1.2%, and the average activation energy is approximately 250–270 kJ/mol; (3) condensate and gas generation, where the vitrinite reflectance is higher than 1.2% and the average activation energy is higher than 270 kJ/mol; and (4) gas “dead line” of kerogen, where the vitrinite reflectance is higher than 4.21% and the average activation energy is higher than 320 kJ/mol.


Acta Geologica Sinica-english Edition | 2010

Genesis of Marine Carbonate Natural Gas in the Northeastern Sichuan Basin, China

Zhang Qu; Meng Qingqiang; Qin Jianzhong; Jiang Qigui; Zheng Lunju


Archive | 2015

Testing device for residual gas content of rock and testing method thereof

Jiang Qigui; Fan Ming; Wang Qiang; Song Xiaoying; Liu Weixin; Yu Lingjie


Archive | 2014

Enrichment device and enrichment method for light hydrocarbon in dry gas

Zhang Caiming; Song Xiaoying; Xu Jin; Wang Qin; Zhang Qu; Jiang Qigui; Xu Qin


Archive | 2014

Method for separating alkyl ketone component from petroleum geological samples

Zhang Zhirong; Xie Xiaomin; Zhang Caiming; Song Xiaoying; Jiang Qigui


Archive | 2017

Preparation method of crude oil asphaltene and application thereof

Tao Guoliang; Liu Peng; Cao Tingting; Zhang Zhirong; Jiang Qigui; Li Maowen; Liu Wenhui; Qin Jianzhong; Teng Geer; Shen Baojian


Archive | 2017

Rock specimen stereometry appearance

Bao Yunjie; Bao Fang; Wo Sen; Li Zhiming; Jiang Qigui


Archive | 2017

Preparation method of crude asphaltene pyrolysis reaction sample and application of preparation method

Shen Baojian; Tao Guoliang; Zhang Zhirong; Liu Peng; Jiang Qigui; Qin Jianzhong; Cao Tingting


Shiyou Shiyan Dizhi | 2016

原油中の石油の全二次元ガスクロマトグラフィー/飛行時間質量分析【JST・京大機械翻訳】

Ma Yuanyuan; Jiang Qigui; Song Xiaoying; Qian Menhui; Liu Peng


Shiyou Shiyan Dizhi | 2016

異なる状態におけるシェールオイルの定量的キャラクタリゼーション技術と応用研究【JST・京大機械翻訳】

Jiang Qigui; Li Maowen; Qian Menhui; Li Zhiming; Li Zheng; Huang Zhenkai; Zhang Caimin; Ma Yuanyuan

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Liu Wenhui

Chinese Academy of Sciences

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Meng Qingqiang

China University of Petroleum

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