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Reaction of Calcite and Dolomite with In-Situ Gelled Acids, Organic Acids, and Environmentally Friendly Chelating Agent (GLDA)

机译:方解石和白云石与原位胶凝酸,有机酸和环保螯合剂(GLDA)的反应

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摘要

Well stimulation is the treatment remedy when oil/gas productivity decreases to unacceptable economical limits. Well stimulation can be carried out through either "Matrix Acidizing" or fracturing with both "Hydraulic Fracturing" and "Acid Fracturing" techniques. "Matrix Acidizing" and "Acid Fracturing" applications involve injecting an acid to react with the formation and dissolve some of the minerals present and recover or increase the permeability. The permeability enhancement is achieved by creating conductive channels "wormholes" in case of "Matrix Acidizing" or creating uneven etching pattern in case of "Acid Fracturing" treatments.In both cases, and to design a treatment successfully, it is necessary to determine the distance that the live acid will be able to penetrate inside the formation, which in turn, determines the volume of the acid needed to carry out the treatment. This distance can be obtained through lab experiments, if formation cores are available, or estimated by modeling the treatment. The successful model will depend on several chemical and physical processes that take place including: the acid transport to the surface of the rock, the speed of the reaction of the acid with the rock, which is often referred to as "Reaction Rate", and the acid leak-off. The parameters describing these processes such as acid diffusion coefficient and reaction kinetics have to be determined experimentally to ensure accurate and reliable modeling.Hydrochloric acid and simple organic acids such as acetic and citric acids have been used extensively for stimulation treatments. The diffusion and reaction kinetics of these acids, in a straight form, were investigated thoroughly in literature. However, solely these acids are used in a simple form in the field. Acid systems such as gelled, crosslinked gelled, surfactant-based, foam-based, or emulsified acids are used to either retard the reaction rate or to enhance acid diversion. Literature review shows that additional work is needed to understand the reaction and report the diffusion and kinetics of these systems with carbonate. In addition, a new chelating agent (GLDA) was recently introduced as a stand-alone stimulating fluid. The kinetics and the mass transfer properties of this acid were not studied before. Therefore, the objective of this work is to study the reaction of different acid systems with calcite and dolomite and report the mass transport and kinetic data experimentally. Lactic acid, a chelating agent (GLDA), and in-situ gelled HCl-formic acids were investigated in this study. In some cases, rheology measurements and core flood experiments were conducted. The data were combined with the reaction study to understand the behavior of these acids and examine their efficiency if injected in the formation.
机译:当油气生产率降低到不可接受的经济极限时,增产井是一种治疗方法。可以通过“基质酸化”或通过“水力压裂”和“酸压裂”技术进行压裂来进行增产。 “基质酸化”和“酸压裂”应用包括注入酸与地层反应并溶解一些存在的矿物质并恢复或增加渗透率。通过在“基质酸化”的情况下创建导电通道“虫洞”或在“酸压裂”处理的情况下创建不均匀的蚀刻图案来实现渗透性的提高。在两种情况下,为了成功设计处理方法,必须确定活性酸将能够渗入地层内部的距离,这又决定了进行处理所需的酸量。如果可以使用地层岩心,则可以通过实验室实验获得该距离,或者可以通过对处理进行建模来估计该距离。成功的模型将取决于发生的几种化学和物理过程,包括:酸向岩石表面的传输,酸与岩石的反应速度(通常称为“反应速率”)以及酸泄漏。描述这些过程的参数,例如酸扩散系数和反应动力学,必须通过实验确定,以确保准确可靠的建模。盐酸和简单的有机酸(例如乙酸和柠檬酸)已广泛用于刺激处理。这些酸以直链形式的扩散和反应动力学已在文献中进行了深入研究。然而,仅这些酸以简单形式在本领域中使用。诸如胶凝,交联胶凝,基于表面活性剂,基于泡沫或乳化的酸之类的酸体系用于延迟反应速率或增强酸转移。文献综述表明,需要更多的工作来理解反应并报告这些系统与碳酸盐的扩散和动力学。另外,最近引入了一种新的螯合剂(GLDA)作为独立的刺激液。以前没有研究过这种酸的动力学和传质特性。因此,这项工作的目的是研究不同酸体系与方解石和白云石的反应,并通过实验报告质量传输和动力学数据。在这项研究中研究了乳酸,螯合剂(GLDA)和原位凝胶化的HCl-甲酸。在某些情况下,进行了流变学测量和岩心驱替实验。数据与反应研究相结合,以了解这些酸的行为,并检查注入地层中它们的效率。

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    Rabie Ahmed 1978-;

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