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31.
【目的】研究马尾藻及其油页岩混合物在不同温度下的热解产气特性。【方法】利用燃烧烟气污染物测试实验台,测量马尾藻及其油页岩混合物在温度区间400℃至800℃下CO和H_2的排放特性,包括峰值浓度、峰值时间和平均浓度。【结果】马尾藻以及其油页岩混合物的热解过程可分为慢速析出、快速析出和降速三个阶段。马尾藻单独热解实验中,排放的CO体积分数峰值达到10 367×10~(-6)。温度的升高有利于马尾藻在热解中CO和H_2的析出,反应的开始时间和完成时间均有所提前。在马尾藻与油页岩混合物的热解中,H2的析出在700℃时达到最高(体积分数峰值为1 254×10~(-6))。油页岩的加入迟滞了CO和H_2的排放时间。【结论】油页岩的加入有效减少马尾藻热解过程中CO的排放并缩短反应时间,提高效率节省能源,马尾藻与油页岩的混合热解具有良好的应用前景。  相似文献   
32.
A new maturity parameter determined on both oil and bitumen samples, the asphaltene Tmax, is proposed and discussed. This parameter could be very useful to address the maturity of the source rock. The asphaltene Tmax is measured by programmed Rock-Eval pyrolysis, using a modified temperature program. Some phases of the experimental procedure, such as the asphaltene preparation and the Rock-Eval measurement substratum choice, are crucial in order to achieve reliable data. Laboratory simulations were carried out in order to assess the possible effects of both primary and secondary migration on asphaltene Tmaxin the expelled oil: the original value of the asphaltene Tmax in the bitumen is not substantially modified and it is very close to that measured on kerogen. Examples of the determination of asphaltene Tmax on many samples, collected from different areas and with different organic matter composition, are given. Results show that Tmax values from oil asphaltenes are reasonable indicators of source rock maturity.  相似文献   
33.
从颗石藻、球等辫金藻300℃热模拟产物中检测出长侧链正烷基二氢化茚、烷基噻吩类化合物。二氢化茚类化合物碳数分布范围为C13 ̄C25,nC14烷基二氢化茚的相对含量最高,没检测到茚类化合物,说明二氢化茚和茚可以源自不同的先质,生活于咸水环境的低等生物是二氢化茚类化合物的母质之一。在300℃热解产物中检测出以m/z111和125为基峰的两个系列的长侧链烷基噻吩,表明在中-高盐度环境下,藻类将无机硫转化  相似文献   
34.
鄂尔多斯盆地北部盒8段古含气范围的地球化学特征   总被引:4,自引:4,他引:0  
鄂尔多斯盆地盒8段气藏为深盆气藏。通过分析鄂尔多斯盆地苏里格庙地区盒8段储集层中有机包裹体的丰度、储集层的热解特征,并结合该区的构造演化和生烃演化等特征,探讨了苏里格庙北部盒8段气层的古含气边界的变化情况及天然气的保存条件。认为盒8段气层的分布范围在早白垩世末期达到最大,后期的构造抬升对气水边界的影响并不大,这是因为构造抬升后,气源岩的压力下降,增加了煤系地层中吸附气的脱附能力,为气藏补充足够的气体,从而使得古气水边界的分布与现今的差别不大。地层倾角的大小能影响天然气的富集和保存,地层倾角相对平缓的斜坡部位利于天然气的聚集,是高产气区。  相似文献   
35.
It is a special petroleum geological phenomenon that Silurian oilsands are extensively distributed in the central and northeast Tarim basin. Some geochemical studies of the oilsands have been carried out, but there is still great controversy over the hydrocarbon-regenerating potential of oilsands and the possibility of Silurian oilsands as hydrocarbon source rocks. In this study, the kinetics of asphaltenes pyrolysis was directly used to simulate the potential of Silurian oilsands for regenerating hydrocarbons. According to the experimental results, combined with other related organic geochemical analysis, it is considered that Silurian oilsands in the Tarim basin have a high hydrocarbon-regenerating potential and are latent hydrocarbon source rocks.  相似文献   
36.
从吐哈盆地侏罗纪煤中分离富集了藻类体、孢子体、角质体、镜质体、基质镜质体和丝质体6种主要显微组分,进行了热解及热模拟实验,并对各显微组分热模拟生成的产物热解油进行了碳同位素组成等分析。各显微组分热解生烃潜力及其热解产物热解油的碳同位素组成表明,煤系有机质中藻类体的生油潜力最高,生成的液态烃类的碳同位素组成最轻;孢子体、角质体等陆源富氢组分生烃潜力低于藻类体,生成的液态烃类的碳同位素组成重于藻类体生成的液态烃类,与煤系含油气盆地中原油的碳同位素组成基本一致。这些富氢显微组分应该是煤系有机质中主要的生油显微组分。镜质体和基质镜质体的生油潜力相对较低,其生成的液态烃类的碳同位素组成比一般煤系原油重得多,而且这些组分本身对液态烃具有较强的吸附力,尽管其在煤系有机质中所占的比例很大,仍然难以成为生成液态石油的主要显微组分,只能在高成熟演化阶段成为良好的生气显微组分。丝质体等惰性组分生烃潜力极低,不可能成为生油组分。此外,结合原煤的显微组分组成、生烃潜力和元素分析,提出仅仅以壳质组的含量高低来评价煤的生烃潜力不完全可靠,热解是经济、快速、有效的评价方法。  相似文献   
37.
采用黄金管—高压釜封闭体系,对吐哈盆地艾试1井的泥岩和煤岩进行了低温热解实验。根据实验结果,分别求取了干气(C1)、湿气(C2~C5)生成过程的初始动力学参数,然后将单一活化能的动力学参数进一步优化为具有高斯分布的活化能,优化后的动力学参数能较好拟合实验数据。利用优化后的动力学模型模拟了吐哈盆地丘东凹陷八道湾组天然气早期生成过程,并将模拟结果与实际地质资料进行了对比。结果表明,经过优化后的低温恒温热解动力学,能有效评价早期生气过程;在丘东次陷发现的天然气,与八道湾组源岩关系密切。  相似文献   
38.
The influence of 6.75 m thick dolerite dike on the sheet coal of the Kaierkan deposit (northwestern Siberian Platform) was studied by organogeochemical methods. It is shown that initial bituminous coal was transformed into anthracite in the immediate vicinity of the dike. Chemical kinetic modeling of the dike-induced cracking of coal's organic matter was performed, and the maximum paleotemperatures were estimated.  相似文献   
39.
Coal beds of the Upper Cretaceous Fruitland Formation in the San Juan Basin of northwestern New Mexico and southwestern Colorado have significant liquid hydrocarbon generation potential as indicated by typical Rock-Eval Hydrogen Indexes in the range of 200–400 mg hydrocarbon/g organic carbon (type II and III organic matter). Small, non-commercial quantities of oil have been produced from the coal beds at several locations. The oils are characterized by high pristane/phytane (ca 4) and pristane/n-C17 ratios (ca 1.2), abundant C21+ alkanes in the C10+ fraction with a slight predominance of odd carbon-numbered n-alkanes, abundant branched-chain alkanes in the C15+ region, and a predominance of methylcyclohexane in the C4----C10 fraction. The oils are indigenous to the Fruitland Formation coals and probably migrated at thermal maturities corresponding to vitrinite reflectance values in the range 0.7–0.8%. Although the oils found to date are not present in commercial amounts, these findings illustrate the potential of some coals to generate and expel oil under conditions of moderate thermal heating.  相似文献   
40.
In certain areas, relatively large accumulations of liquid hydrocarbons have been attributed to coals. Evaluating the source rock potential of coal requires definition of both the generative potential (quantity and composition of generated hydrocarbons), and expulsion efficiency. Hydrous pyrolysis experiments were completed using Tertiary lignites (Ro < 0.35%) from North Dakota and the Far East to evaluate the source rock potential of coal. The North Dakota lignite is vitrinite-rich (93%) and liptinite-poor (3%); the Far East lignite is liptinite-rich (32% of total maceral content). These lignites have Hydrogen Index values of 123 and 483 mg HC/g OC, respectively. Differences in oil-pyrolysate yield, composition, and temperature of maximum pyrolysate yield from hydrous pyrolysis experiments for these two lignites are related to the type and amount of liptinite and vitrinite macerals. A maximum of 48 and 158 mg oil-pyrolysate/g OC is generated and expelled from the North Dakota and Far East lignites, respectively. Although these lignites consist predominantly of gas-prone vitrinitic components, their organic-rich nature can compensate for their poor convertibility to liquid hydrocarbons. The composition of these artificially generated oil-pyrolysates are similar to some non-marine oils, suggesting that this type of organic matter can be a significant contributor to many oils. Although the overall composition of the generated products from the two lignites is similar, the distribution of these products is significantly different. Homologous series of methyl ketones and alkyl benzenes have been identified in both oil-pyrolysates. Their presence and characteristic distribution suggest that microbial degradation occurred during the formation of these lignites. Although many coals generate significate amounts of liquid hydrocarbons that are similar to naturally occurring oils, poor explusion efficiency limits their source rock potential. Significant amounts of liquid products are assimilated by the vitrinitic matrix of most coals prior to expulsion, severely limiting the amount of petroleum available for migration and reservoir accumulation. However, adequate expulsion may occur in certain liptinite-rich coals or coals occurring in unique depositional settings.  相似文献   
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