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1)  Jianghan overlain basin and adjacent area
江汉叠合盆地及邻区
2)  The Jianghan superimposed basin
江汉叠合盆地
3)  Chongjiang and its neighboring area of Guizhou
从江及毗邻地区
4)  Jianghan Basin
江汉盆地
1.
Diagenesis of anhedritite in the Cretaceous reservoir and its influence on the hydrocarbon distribution in southeast Jianghan Basin;
江汉盆地白垩系储集层中硬石膏的成岩作用及其对油气分布的控制
2.
Exploration potential contrast of non-sandstone reservoirs within salt-layers between Shashi and Qianjiang Formations,Jianghan Basin;
江汉盆地潜江组与沙市组盐间非砂岩油气藏勘探潜力对比
3.
Characteristics of pore structures and oil production potential of sandstone reservoir of Paleogene Xingouzui Formation in Jianghan Basin;
江汉盆地新沟嘴组砂岩孔隙结构与产油潜力
5)  the Jianghan Basin
江汉盆地
1.
Based on the distribution characteristics of proven oil field reserves size and the changing trend of oil yield and discovery rate per exploration well over the years in the Qianjiang Sag,the Jianghan Basin,three different kinds of statistic methods such as pool size sequence,Weng's life cycle and exploration benefit method have been chosen in the paper.
根据江汉盆地潜江凹陷已探明油田储量规模分布特点、历年石油产量和单井发现率数据变化趋势,选用了油田规模序列法、翁氏生命旋回法和勘探效益法3种统计方法,在分析不同方法的数学原理、数学模型、参数特征及适用条件的基础上,从不同侧面计算潜江凹陷石油资源量。
2.
Nonsandstone reservoirs between salt beds of Qianjiang Formation in the Qianjiang Sag of the Jianghan Basin are mainly composed of dolomicrite,glauberite rock,mudstone and their peperite.
组成江汉盆地潜江凹陷潜江组盐间段非砂岩储层的岩石主要为泥晶白云岩、钙芒硝岩、泥岩及其混积岩,孔渗性普遍较差。
3.
The bulk rock analysis technology of organic petrology was used in this paper to systematically study the maceral composition, hydrocarbon generating components and organic thermal evolution of the Lower Tertiary source rock in the Jianghan Basin.
作者采用有机岩石学全岩分析技术 ,系统研究了江汉盆地下第三系烃源岩的显微组分组成、生烃组分及有机质热演化。
6)  Weihe Basin and its neighbouring region
渭河盆地及周邻地区
补充资料:催化叠合
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性质:炼油工业较早应用的工艺之一。其工艺流程简单,原料易得,产品汽油的辛烷值高。按原料组成和目的产品的不同,叠合工艺可分两类。(1)非选择性叠合,用未经分离的C3、C4液化气作原料,目的是生产高辛烷值的叠合汽油。(2)选择性叠合,用组成比较单一的丙烯或丁烯馏分作原料,生产某种特定的产品,如丙烯选择性叠合生产四聚丙烯作洗涤剂或增塑剂;异丁烯选择性叠合生产高辛烷值汽油等。

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