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H2S Artificial Formation as a Result of Steam Injection for EOR: A Compositional Kinetic Approach

机译:H2S人工形成作为EOR蒸汽注射:组成动力学方法

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As a result of hydrothermal stress induced by steam injection in reservoirs, heavy crudes undergo chemical transformations, called aquathermolysis, the extent of which depends at least on steam temperature, injection history and both crude and mineral matrix physicochemical properties. As heavy crudes often have high sulfur content, their hydrothermal alteration results in the formation of H2S. In order to predict artificial H2S emissions during thermal EOR, we seek to develop a geochemical model to be coupled with a 3D reservoir simulator. This paper presents the first step of the process that consists in simulating in-situ aquathermoysis in laboratory in order to derive a 0D compositional kinetic model for H2S formation. For that purpose, aquathermolysis experiments were performed on an Athabasca oil sand sample. The amount of H2S generated during aquathermolysis was measured for different time and temperature conditions. At the same time, sulfur distribution was quantified over crude SARA fractions (Saturates, Aromatics, Resins and Asphaltenes) and insoluble fraction (mainly mineral), before and after aquathermolysis. Experimental results were then derived to elaborate a kinetic model of H2S generation upon aquathermolysis, encompassing the chemical conversion of sulfur in SARA and insoluble fractions.
机译:由于储存器中的蒸汽注射诱导的水热应力,重磨损经历了化学转化,称为Aquather溶解,其范围至少取决于蒸汽温度,注射历史和粗矿物基质物理化学性质。由于沉重的粗源通常具有高硫含量,它们的水热改变导致H2S的形成。为了预测热EOR期间的人造H2S排放,我们寻求开发一种地球化学模型,以与3D储存器模拟器联系。本文介绍了该过程的第一步,该过程包括在实验室中模拟原位Aquathermoysis,以推导出H2S形成的0d成分动力学模型。为此目的,在Athabasca油砂样品上进行Aquathermolysicate实验。测量在不同的时间和温度条件下测量水溶液中产生的H 2 S的量。同时,硫化物分布量化粗糙的Sara级分(饱和,芳烃,树脂和沥青质)和水疗前后不溶性分数(主要是矿物质)。然后衍生实验结果以在Aquathermolys溶解时阐述H2S生成的动力学模型,包括莎拉硫的化学转化和不溶性级分。

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