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自生片钠铝石的碳氧同位素特征及其成因意义
引用本文:高玉巧,刘立.自生片钠铝石的碳氧同位素特征及其成因意义[J].高校地质学报,2006,12(4):522-529.
作者姓名:高玉巧  刘立
作者单位:吉林大学 地球科学学院,长春 130061
基金项目:国家自然科学基金;国家油气专项基金
摘    要:自生片钠铝石的碳氧同位素特征可以为片钠铝石的成因研究提供重要的地球化学依据。以海拉尔盆地乌尔逊凹陷和松辽盆地孤店构造片钠铝石碳氧同位素分析为基础,结合国内外已报道的自生片钠铝石的碳氧同位素数据,对自生片钠铝石的碳氧同位素特征及其成因意义进行了探讨。研究表明,海拉尔盆地乌尔逊凹陷和松辽盆地南部孤店CO2气田砂岩中片钠铝石的δ13C范围分别为–5.3‰~–1.5‰(PDB)、–1.9‰~+0.3‰(PDB),均分布于含无机碳物质δ13C分布区间(-9.0‰~+2.7‰)内。计算出的海拉尔盆地和松辽盆地与片钠铝石平衡的CO2气碳同位素分布范围分别为-10.7~-7.0‰(PDB)、-8.7~-6.9‰(PDB),表明片钠铝石绝大部分形成于无机CO2背景。实际地质观察中形成片钠铝石的CO2绝大多数为岩浆脱气来源,岩浆成因片钠铝石碳同位素分布范围为-5.5~+4.5‰(PDB)。海拉尔盆地和松辽盆地的片钠铝石是岩浆成因CO2气运移、聚集的特征矿物。计算出的海拉尔盆地和松辽盆地片钠铝石沉淀时介质水的δ18O值范围为-14.3~-9.4‰(SMOW),表现为轻同位素的特点,表明片钠铝石形成时地层水为大气降水。计算出的海拉尔盆地片钠铝石同位素为52.7~93.6℃,与样品所在深度处的古地温范围(65.4~87.6℃)基本吻合。

关 键 词:自生片钠铝石  碳氧同位素  无机成因  同位素温度
文章编号:1006-7493(2006)04-0522-08
收稿时间:2006-05-15
修稿时间:2006-09-07

Carbon-Oxygen Isotopic Characteristics of Authigenic Dawsonite and Its Genetic Significance
GAO Yu-qiao,LIU Li.Carbon-Oxygen Isotopic Characteristics of Authigenic Dawsonite and Its Genetic Significance[J].Geological Journal of China Universities,2006,12(4):522-529.
Authors:GAO Yu-qiao  LIU Li
Institution:College of geosciences, Jilin University, Changchun 130061, China
Abstract:Carbon-oxygen isotopic characteristics of authigenic dawsonite can provide important geochemical evidence for its origin research. Based on carbon-oxygen isotope analysis of dawsonite from Wuerxun Depression, Hailaer Basin and Gudian Structure in Songliao Basin, combined with carbon-oxygen isotopic data reported in China and overseas, carbon-oxygen isotopic characteristics of authigenic dawsonite and its origin significance are discussed in this paper. It is indicated that the range of dawsoniteδ13C value are –5.3‰~–1.5‰PDB and –1.9‰~+0.3‰PDB respectively in Wuerxun Depression of Hailaer Basin and Gudian Structure of Southern Songliao Basin. These values are within the range of inorganic carbonaceous substance δ13C distribution(–9.0‰~+2.7‰). Furthermore, the calculated δ13C values of CO2 gas in isotope equilibrium with dawsonite range from –10.7 to –7.0‰PDB and from–8.7 to –6.9‰PDB respectively in Hailaer Basin and Songliao Basin, which showes that CO2 of forming dawsonite originates from inorganic background. In geological background, CO2 of forming Dawsonite almost belongs to magmatic origin, with the carbon isotope range from –5.5 to +4.5‰PDB. Dawsonite in Hailaer Basin and Songliao Basin is diagnostic mineral recording migration and accumulation of CO2 with magmatic origin. The calculated formation water δ18O value during dawsonite deposition range from –14.3 to –9.4‰, representing the characteristics of meteoric water. The calculated isotopic temperature of dawsonite is between 52.7℃ and 93.6℃, generally in accordance with palaeo-stratum temperature(65.4~87.6℃).
Keywords:authigenic dawsonite  Carbon-oxygen isotope  organic origin  inorganic origin  isotopic temperature
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