期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
中国华北最古老海相页岩油资源潜力与勘探前景
1
作者 王晓梅 于志超 +4 位作者 何坤 黄秀 冶明泽 管墨迪 张水昌 《石油勘探与开发》 北大核心 2025年第3期563-579,共17页
基于中国华北燕辽盆地中元古界蓟县系洪水庄组页岩样品大视域岩石薄片扫描、高分辨场发射电镜扫描、荧光光谱分析和岩石热解等实验分析,结合沉积正演模拟,对元基2井洪水庄组页岩的储集性、含油性、分布特征和资源潜力进行了系统的岩石... 基于中国华北燕辽盆地中元古界蓟县系洪水庄组页岩样品大视域岩石薄片扫描、高分辨场发射电镜扫描、荧光光谱分析和岩石热解等实验分析,结合沉积正演模拟,对元基2井洪水庄组页岩的储集性、含油性、分布特征和资源潜力进行了系统的岩石学和有机地球化学研究。结果表明:①洪水庄组页岩原始有机碳平均含量高达6.24%,原始生烃潜量为44.09 mg/g,产油能力强;②页岩岩石类型主要为低黏土含量硅质页岩,发育页理缝和有机质收缩缝,可压性和储集性好;③洪水庄组上部洪五段和洪四段为页岩油甜点段,两者以40%的厚度占比贡献了60%以上的页岩油量;④宽城—老庄户地区是燕辽盆地页岩油最有利勘探区,面积约7200 km^(2),原始总生烃量约741.1×10^(8)t,现今页岩油残留资源量下限为11.48×10^(8)t,与准噶尔盆地吉木萨尔凹陷二叠系芦草沟组页岩油的地质资源量相当,显示出燕辽盆地洪水庄组良好的页岩油勘探潜力。 展开更多
关键词 海相页岩油 洪水庄组 硅质页岩 储集性 含油性 资源量 中元古界 燕辽裂陷槽 燕辽盆地 华北克拉通
在线阅读 下载PDF
碳中和战略背景下建设碳工业体系的进展、挑战及意义 被引量:38
2
作者 邹才能 吴松涛 +7 位作者 杨智 潘松圻 王国锋 姜晓华 管墨迪 于聪 于志超 沈月 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2023年第1期190-205,共16页
全球气候变化与碳中和背景下,CO_(2)封存利用已成为人类绿色发展的必然趋势与选择。以CO_(2)捕集、利用与封存/CO_(2)捕集与封存(CCUS/CCS)为核心的碳工业,正成为碳中和目标下的新兴战略产业,规模可持续发展需借鉴全球油气工业发展路径... 全球气候变化与碳中和背景下,CO_(2)封存利用已成为人类绿色发展的必然趋势与选择。以CO_(2)捕集、利用与封存/CO_(2)捕集与封存(CCUS/CCS)为核心的碳工业,正成为碳中和目标下的新兴战略产业,规模可持续发展需借鉴全球油气工业发展路径。地球系统发育3种“碳”,黑碳是未被封存或利用并长期留存在大气圈中的CO_(2),灰碳是被固定或永久封存在地质体中的CO_(2),蓝碳是通过生物、物理、化学等方式可转化为人类利用产品的CO_(2)。碳工业体系覆盖碳产生、碳捕集、碳运输、碳利用、碳封存、碳产品、碳金融等业务,是彻底消除“黑碳”的革命性领域。研发以碳减排、零碳、负碳及碳经济为内涵的碳工业技术体系,构建以CCUS/CCS为基础的低成本、高能效的碳工业体系,是世界各国实现碳中和目标和能源清洁利用的战略举措,利于推动4个“80%”的中国能源供应格局转变,即由2021年含碳化石能源消费占比80%以上、化石能源CO_(2)排放80%以上,转变为2060年非碳新能源占比80%以上、CO_(2)排放减少80%以上,保障实现80×108t碳减排总量与碳中和战略目标。中国碳工业发展面临CO_(2)排放量偏大、煤炭占比偏高和创新体系偏弱3方面挑战,针对性提出3条应对举措:(1)坚定不移开展碳工业体系建设,保障2060年前如期实现碳中和;(2)大力发展新能源,推动中国能源生产与消费结构实现革命性转换;(3)加快建立全产业的碳工业科技创新体系。发展碳工业体系,利用清洁化能源,实现全球碳中和战略目标,对持续优化生态环境、构建绿色地球与生态地球意义重大。 展开更多
关键词 碳工业体系 碳中和 碳汇 绿色地球 碳足迹 碳交易 碳达峰 双碳目标
在线阅读 下载PDF
Assessment and exploration prospects of the oldest marine shale oil in North China
3
作者 WANG Xiaomei YU Zhichao +4 位作者 HE Kun HUANG Xiu YE Mingze guan modi ZHANG Shuichang 《Petroleum Exploration and Development》 2025年第3期630-648,共19页
Based on large-field rock thin section scanning,high-resolution field emission-scanning electron microscopy(FE-SEM),fluorescence spectroscopy,and rock pyrolysis experiments of the Mesoproterozoic Jixianian Hongshuizhu... Based on large-field rock thin section scanning,high-resolution field emission-scanning electron microscopy(FE-SEM),fluorescence spectroscopy,and rock pyrolysis experiments of the Mesoproterozoic Jixianian Hongshuizhuang Formation shale samples from the Yanliao Basin in northern China,combined with sedimentary forward modeling,a systematic petrological and organic geochemical study was conducted on the reservoir quality,oil-bearing potential,distribution,and resource potential of the Hongshuizhuang Formation shale in Well Yuanji-2.The results indicate that:(1)The original organic carbon content of the Hongshuizhuang Formation shale averages up to 6.24%,and the original hydrocarbon generation potential is as high as 44.09 mg/g,demonstrating a strong oil generation potential.(2)The rock type is primarily siliceous shale containing low clay mineral content,characterized by the development of shale bedding fractures and organic shrinkage fractures,resulting in good compressibility and reservoir quality.(3)The fifth and fourth members of the Hongshuizhuang Formation serve as shale oil sweet spots,contributing more than 60%of shale oil production with their total thickness as only 40%of the target formation.(4)The Kuancheng-Laozhuanghu area is the most prospective shale oil exploration option in the Yanliao Basin and covers approximately 7200 km^(2).Its original total hydrocarbon generation potential reaches about 74.11 billion tons,with current estimated retained shale oil resources exceeding 1.148 billion tons(lower limit)–comparable to the geological resources of the Permian Lucaogou Formation shale oil in the Jimsar Sag of the Junggar Basin.These findings demonstrate the robust exploration potential of the Hongshuizhuang Formation shale oil in the Yanliao Basin. 展开更多
关键词 marine shale oil Hongshuizhuang Formation siliceous shale reservoir quality oil-bearing resources MESOPROTEROZOIC Yanliao Rift Trough Yanliao Basin North China Craton
在线阅读 下载PDF
Progress, challenge and significance of building a carbon industry system in the context of carbon neutrality strategy 被引量:6
4
作者 ZOU Caineng WU Songtao +7 位作者 YANG Zhi PAN Songqi WANG Guofeng JIANG Xiaohua guan modi YU Cong YU Zhichao SHEN Yue 《Petroleum Exploration and Development》 2023年第1期210-228,共19页
Carbon dioxide storage and utilization has become an inevitable trend and choice for sustainable development under the background of global climate change and carbon neutrality.Carbon industry which is dominated by CO... Carbon dioxide storage and utilization has become an inevitable trend and choice for sustainable development under the background of global climate change and carbon neutrality.Carbon industry which is dominated by CO_(2) capture,utilization and storage/CO_(2) capture and storage(CCUS/CCS)is becoming a new strategic industry under the goal of carbon neutrality.The sustainable development of carbon industry needs to learn from the experiences of global oil and gas industry development.There are three types of“carbon”in the earth system.Black carbon is the CO_(2) that has not been sequestered or used and remains in the atmosphere for a long time;grey carbon is the CO_(2) that has been fixed or permanently sequestered in the geological body,and blue carbon is the CO_(2) that could be converted into products for human use through biological,physical,chemical and other ways.The carbon industry system covers carbon generation,carbon capture,carbon transportation,carbon utilization,carbon sequestration,carbon products,carbon finance,and other businesses.It is a revolutionary industrial field to completely eliminate“black carbon”.The development of carbon industry technical system takes carbon emission reduction,zero carbon,negative carbon and carbon economy as the connotation,and the construction of a low-cost and energy-efficient carbon industry system based on CCUS/CCS are strategic measures to achieve the goal of carbon neutrality and clean energy utilization globally.This will promote the“four 80%s”transformation of China's energy supply,namely,to 2060,the percentage of zero-carbon new energy in the energy consumption will be over 80%and the CO_(2) emission will be decreased by 80%to ensure the carbon emission reduction of total 80×10^(8) t from the percentage of carbon-based fossil energy in the energy consumption of over 80%,and the percentage of CO_(2) emission from energy of over 80%in 2021.The carbon industry in China is facing three challenges,large CO_(2) emissions,high percentage of coal in energy consumption,and poor innovative system.Three strategic measures are proposed accordingly,including:(1)unswervingly develop carbon industrial system and ensure the achievement of carbon neutrality as scheduled by 2060;(2)vigorously develop new energy sources and promote a revolutionary transformation of China’s energy production and consumption structure;(3)accelerate the establishment of scientific and technological innovation system of the whole CO_(2) industry.It is of great significance for continuously optimization of ecological environment and construction of green earth and ecological earth to develop the carbon industry system,utilize clean energy,and achieve the strategic goal of global carbon neutrality. 展开更多
关键词 carbon industry system carbon neutrality carbon sequestration green earth carbon footprint carbon trade peak carbon dioxide emission dual carbon target
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部