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作 者:李皓楠[1] 王春连[2] 刘成林[2] 杨申谷[1] 徐海明[2] 胡海兵 余小灿 刘锦磊
机构地区:[1]长江大学地球科学学院,武汉430100 [2]中国地质科学院矿产资源研究所,国土资源部成矿作用与资源评价重点实验室,北京100037 [3]湖南省湘澧盐化有限责任公司,湖南津市415400 [4]中国地质大学地球科学与资源学院,北京100083
出 处:《地质学报》2015年第11期2019-2027,共9页Acta Geologica Sinica
基 金:国家973项目(编号:2011CB403007);国家自然科学基金青年基金(编号:41502089,41202059);中央级公益性科研院所基本科研业务费专项(编号:K1415);中国地质大调查项目(编号:12120114051901)联合资助
摘 要:江陵凹陷古新统沙市组和始新统新沟嘴组下段沉积为一套巨厚含盐岩系。对始新世早期新沟嘴组下段沉积的无水芒硝中的原生单一液相流体包裹体采用冷冻法进行均一温度测定。原生流体包裹体是在矿物沉积的过程中被捕获的,矿物生长过程中所圈闭的流体(即古盐湖卤水)保存了当时地质环境的各种地质地球信息,可以为研究古温度、古水体成分、古大气成分以及生物的演化等方面提供可靠的定量数据。测温结果显示,其均一温度范围是17.6-38.5℃,均值为27.2℃。这可能说明,江陵凹陷早始新世新沟嘴组下段的古气温在27.2℃左右,极端情况下,当时的古气温可达38.5℃。通过与前人的研究比对发现江陵凹陷自沙市组上段到新沟嘴组下段有明显降温趋势。由于古新世—始新世的升温事件(PETM)使全球气温普遍升高,可以看出江陵凹陷自新沟嘴底部虽已进入PETM事件后的降温期但气候依然以炎热干旱为主要特征。Shashi Formation and the lower section of Xingouzui Formation in the Jinangling Depression deposited a thick rock series of salt.The homogenization temperatures of primary fluid inclusions in thenardite from the lower section of Xingouzui Formation of Early Eocene were measured by freezing method.The samples were placed in a freezer at-18℃for one or two weeks.This temperature was not cold enough to freeze the fluid inclusions.Once removing the sample in a Linkam THMS600heating/freezingstage when we observed the fluid inclusions in a sample produced vapor bubbles.Then the sample was slowly heated until the bubbles disappeared.The current temperature was the homogenization temperature.Temperature results show that the homogenization temperature range is 17.6-38.5℃,with the average of 27.2℃.This maybe show that,the paleotemperature of lower section of Xingouzui Formation in Jinangling Depression of Early Eocene was around 27.2℃.In extreme cases,the paleotemperature can reach 38.5℃.By comparison with previous studies,we found a significant cooling trend from the upper section of Shashi Formation to the the lower section of Xingouzui Formation in the Jinangling Depression.However,due to PETM(Paleocene-Eocene Thermal Maximum)events,global temperatures were generally higher at that time.It can be conduded that although the lower section of the Xinggouzui Formation entered the cooling period after the PETM event,the climate was still parched.
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