首页> 外文会议>International Conference on Greenhouse Gas Control Technologies >GEOCHEMISTRY OF ANHYDRITES AT THE IEA WEYBURN SITE: IMPLICATIONS FOR ASSESSING THE EFFECTIVENESS OF SEALING ROCKS
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GEOCHEMISTRY OF ANHYDRITES AT THE IEA WEYBURN SITE: IMPLICATIONS FOR ASSESSING THE EFFECTIVENESS OF SEALING ROCKS

机译:IEA Weyburn遗址中Anhydrite的地球化学:对评估密封岩石有效性的影响

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At the Weyburn Field, Canada, CO_2 is being injected into Mississippian carbonates of the Midale Beds, which are capped by sedimentary anhydrites of the Midale Evaporite and anhydritized carbonates within a diagenetically alterated zone that, in turn, are overlain by a regional aquitard, the Watrous Formation. Primary anhydrites in Mississippian units have □~(18)O values ranging 14 to 16 per thousand SMOW and □~(34)S compositions from 18 to 20 per thousand CDT which are within the range of isotopic compositions estimated for primary Mississippian anhydrite. Primary anhydrites from the Lower Watrous Formation have O and S isotopic compositions ranging from 12 to 14 per thousand SMOW and 15 to 18 per thousand CDT, respectively, corresponding to the isotopic values estimated for Triassic and Jurassic seawater. Sulphur isotope ratios of most late-stage anhydrite cements in Mississippian rocks are generally similar to those of Mississippian seawater, suggesting the source of sulphur for secondary anhydrite cements was dominantly Mississippian seawater. The distinct isotopic signatures of anhydrites in Mississippian units from those in the Lower Watrous suggests that fluid communication between Mississippian reservoirs and the Watrous sediments was limited, and that the Watrous Formation has been an effective long-term seal for the Mississippian reservoirs.
机译:在Weyburn领域,加拿大,CO_2正在被注入中型床的密西西比亚碳酸盐,其被中型蒸发丁系机的沉积空中物覆盖,并在成岩地改变的区域内的碳酸水溶液,反过来,由地区逐渐覆盖不满的形成。密西西比海单位的原发性残氮物具有□〜(18)o值,范围为14至16次污点,□〜(34)次组合物,从18至20毫升CDT,其在针对原发性密西西比酸盐的同位素组合物的范围内。来自较低的Watrous地层的原发性残水质具有o和S同位素组合物,分别为每千次污点12至14个污点,相当于三叠系和侏罗纪海水估计的同位素值。密西西比河岩石中大多数晚期空水水泥的硫同位素比例通常与密西西比海海水的硫磺,这表明二级空水水解水泥的硫磺是占主导地位的密西西比海水域。密西西比人民单位中的水化物的不同同位素特征表明,密西西比州水库与水土区之间的流体沟通有限,而瓦上的形成是密西西比水库的有效长期密封。

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