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热失重分析中烧失率的地质意义初探——以海拉尔盆地贝38井南屯组一段泥岩为例
引用本文:张淑华,陈春瑞,沈光政. 热失重分析中烧失率的地质意义初探——以海拉尔盆地贝38井南屯组一段泥岩为例[J]. 海相油气地质, 2005, 10(2): 53-56
作者姓名:张淑华  陈春瑞  沈光政
作者单位:1. 大庆油田有限责任公司勘探开发研究院;石油大学(北京)资源与信息学院
2. 大庆油田有限责任公司勘探开发研究院
摘    要:海拉尔盆地贝38井南屯组一段20块泥岩样品中出现5块烧失率异常,其烧失率达8.812%~18.770%,为其它样品的2~4倍。对异常样品作进一步烧失试验:0~400℃区间,烧失强度都较低,说明粘土矿物的吸附水、层间水及有机质的可溶烃含量都较少;400~500℃区间有2块样品的烧失强度明显异常,表明其有机质含量明显偏高;500~950℃区间,另2块样品的烧失强度特别高,这是由于其中的伊利石结构水脱失所致。该地层的微量元素Cu/Zn、Sr/Ba、V/Ni和常量元素Mn/Ti、MnO2随深度的变化与烧失率曲线有极好的相关性。烧失率异常可指示氧化—还原环境或水体深浅变化以及判别水体的盐度。

关 键 词:热失重分析  烧失率  古地理环境  氧化—还原环境  海拉尔盆地

Geology Significance of Cauterized Loss in Analysis of Thermal Loss-in-weight:A case of Lower Cretaceous Nantun 1 Member Shale Samples from Well Bei-38 in Hailaer Basin
ZHANG Shuhua,Chen Chunrui,Shen Guangzheng. Geology Significance of Cauterized Loss in Analysis of Thermal Loss-in-weight:A case of Lower Cretaceous Nantun 1 Member Shale Samples from Well Bei-38 in Hailaer Basin[J]. Marine Origin Petroleum Geology, 2005, 10(2): 53-56
Authors:ZHANG Shuhua  Chen Chunrui  Shen Guangzheng
Affiliation:Zhang Shuhua Chen Chunrui Shen Guangzheng
Abstract:There are 1/4 abnormal samples of cauterized loss in the Lower Cretaceous Nantun 1 Member shale from Well Bei-38 in Hailaer Basin. The cauterized loss of the 5 samples are 2~4 times as high as the average samples.The result of experiment shows: (1)low cauterized loss between 0~400℃ implies that there are a small amount of absorbed water and interlayer water in clay minerals and a small amount of soluble organic matter;(2)obviously abnormal cauterized loss for two samples between 400~500℃ indicates that organic matter is high evidently;(3)extraordinarily abnormal cauterized loss for the other two samples between 500~950℃ are abnormal because the structured water in mineral illite are dehydrated. The variation of Mn/Ti and MnO2 ratios of the constant elements, and Cu/Zn, Sr/Ba and V/Ni ratios of the trace elements with increasing depth is correlative well with their curves of cauterized loss.It is suggested that the cauterized loss can indicate the oxidation-reduction environment or the varied depth and the salinity of water.
Keywords:Thermal loss-in-weight analyse  Cauterized loss  Paleogeographical environment  Redoxomorphic environment
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