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重度原油注空气低温氧化过程研究(英文) 被引量:5
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作者 鲍鹏程 韩晓强 +4 位作者 马月琴 路遥 黄晓义 武立斌 刘方方 《化学研究》 CAS 2013年第4期349-354,共6页
低温氧化反应对现场燃烧(ISC)技术点火的成功有十分重要的影响.采用高压氧化管,研究了不同温度压力下,新疆克拉玛依重度原油的低温氧化过程.结果表明,温度和压力的变化对低温氧化反应的放热程度、持续时间以及气体产物有明显影响.适合... 低温氧化反应对现场燃烧(ISC)技术点火的成功有十分重要的影响.采用高压氧化管,研究了不同温度压力下,新疆克拉玛依重度原油的低温氧化过程.结果表明,温度和压力的变化对低温氧化反应的放热程度、持续时间以及气体产物有明显影响.适合油样低温氧化反应的温度和压力分别为150℃和10MPa.此外,采用纯组分替代原油族组分进行低温氧化实验,研究低温氧化反应对原油族组分(饱和烃、芳香烃、胶质、沥青质)含量的影响.结果表明,原油所含族组分中,芳香烃组分最易被氧化,其含量由氧化前的19.17%减少到12.38%(150℃)和9.51%(250℃).随着低温氧化过程的进行,结构复杂的族组分(胶质、沥青质)的含量明显增加.实验数据对油藏实施注空气技术,以及该技术现场实施条件的确定有十分重要的指导意义. 展开更多
关键词 低温氧化 现场燃烧 重度原油 纯组分 注空气
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储集层物性下限值确定方法及其补充 被引量:188
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作者 郭睿 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2004年第5期140-144,共5页
确定油层物性下限是储集层评价和储量评估的基础,方法很多,但受测试资料限制,结果有较大的不确定性。油层物性下限值取决于油层本身组分结构特征,同时受流体性质(特别是原油性质)和埋藏深度的影响。根据多年对国外油田评估的实践,统计分... 确定油层物性下限是储集层评价和储量评估的基础,方法很多,但受测试资料限制,结果有较大的不确定性。油层物性下限值取决于油层本身组分结构特征,同时受流体性质(特别是原油性质)和埋藏深度的影响。根据多年对国外油田评估的实践,统计分析64个国外油田的物性下限值,为确定油层物性下限提供了类比参考基础,建立的油层孔隙度或渗透率下限值大小与原油比重度或埋藏深度的相关关系,可作为判断确定的油层物性下限值合理性的一种参照。 展开更多
关键词 国外油田 物性下限 确定方法 原油重度 原油黏度 埋藏深度 统计分析
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Spatial Distribution Patterns and Potential Sources of Heavy Metals in Soils of a Crude Oil-Polluted Region in China 被引量:7
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作者 FU Xiao-Wen WANG Deng-Ge +1 位作者 REN Xiao-Hua CUI Zhao-Jie 《Pedosphere》 SCIE CAS CSCD 2014年第4期508-515,共8页
Twenty-two soil samples were collected at the subregional scale (50 km2) around Gudao Town, a typical oil-producing region of the Shengli Oilfield in the Yellow River Delta, China to determine the spatial distributi... Twenty-two soil samples were collected at the subregional scale (50 km2) around Gudao Town, a typical oil-producing region of the Shengli Oilfield in the Yellow River Delta, China to determine the spatial distribution patterns and potential sources of heavy metals in soils of crude oil-polluted regions. The concentrations of total petroleum hydrocaxbons (TPHs) and heavy metals as well as other soil properties were determined and the enrichment factor values were calculated for the heavy metals measured. Principal component analysis (PCA) and cluster analysis (CA) were used to estimate potential sources contributing to the concentrations of heavy metals in the soils. The results revealed that the soils were slightly alkaline (pH = 7.33-8.05) and high in salinity (1.43-41.30 g kg-1), TPHs (0.51 28.40 g kg-1) and organic matter (1.74-31.50 g kg-1). The mean concentrations of the measured heavy metals Cu, Zn, Pb, Cd, Cr, Ni and V were 18.4, 78.2, 20.8, 0.19, 56.6, 26.3 and 62.1 mg kg-1, respectively. Although the concentrations of all the metals measured in this study were not high enough to exceed the national control standards, there was a significant enrichment of Cd in the study area and Zn and Ni were in the category of deficiency to minimal enrichment. The spatial distribution patterns of Cu, Cr, Ni and V were similar and partially affected by oil exploitation and petroleum hydrocarbon spills. Potential sources of Cr, Ni, V and Cu in the soils were both natural sources and petroleum hydrocarbon spills, while Zn, Pb and Cd were probably from anthropogenic sources such as farming activities and traffic. 展开更多
关键词 cluster analysis enrichment factor farming activities petroleum hydrocarbon spills principal component analysis
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