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The Definition and Manufacture of a Seawater Compatible Surfactant for an Offshore Chemical Enhanced Oil Recovery Pilot

机译:用于海上化学强化采油试点的与海水相容的表面活性剂的定义和制造

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Experiences from a chemical supplier perspective are presented to define, optimize and manufacture a surfactant for use with seawater in an offshore enhanced oil recovery (EOR) test. This includes laboratory screening test results followed by quality control checks during manufacture. The surfactant concentrate was successfully manufactured, diluted with seawater, and injected as the main component of a surfactant-polymer (SP) formulation.A branched C_(12,13)-alcohol-7PO-sulfate surfactant was designed for use with seawater. Particular pH buffer chemicals were screened for inclusion with the manufactured surfactant concentrate to give compatibility with seawater. The optimization of the surfactant concentrate with buffer included tests to assure acceptable aqueous solubility, storage stability and rheology. A quality control protocol was used that included decision gates with the operator and key stakeholders.Laboratory testing showed good aqueous solubility of the branched C_(12.13)-alcohol-7PO-sulfate in seawater with about 3.5% TDS and 1800 ppm divalent ions (minor calcium and major magnesium ions). The pH buffer selected for this application gave a pH of 7 to 9 to:1. Prevent precipitation of Ca and Mg divalent cations that could otherwise lead to fluid injectivity issues, and2. Keep the pH stable and above 7 (preventing acid-catalyzed hydrolysis of the sulfate group) for good storage stability of the surfactant concentrate from time of manufacture to time of use.Ultimately, a 15% AM surfactant concentrate with Newtonian viscosity characteristics was manufactured and deployed due to transfer equipment handling requirements. However, for the future, concentrations of 70+% AM, also with Newtonian rheology, are possible for deployment.Implementation of the surfactants in EOR to date has been largely restricted to onshore applications due to the challenges associated with offshore use. This paper provides a real-world example of the manufacture of a surfactant concentrate that was used in an offshore SP field project from the perspective from a chemical supplier. Information relating to the quality assurance and control during surfactant concentrate upscaling is also critical and included in this paper.
机译:介绍了从化学品供应商的角度出发的经验,以定义,优化和制造用于海上增强油采收率(EOR)测试中的海水用表面活性剂。这包括实验室筛选测试结果,然后是制造过程中的质量控制检查。成功制备了表面活性剂浓缩液,用海水稀释,并作为表面活性剂-聚合物(SP)配方的主要成分注入。设计了支化的C_(12,13)-醇-7PO-硫酸盐表面活性剂用于海水。筛选特定的pH缓冲剂化学品以使其包含在制造的表面活性剂浓缩物中,以提供与海水的相容性。用缓冲液对表面活性剂浓缩液的优化包括测试,以确保可接受的水溶性,储存稳定性和流变性。使用的质量控制协议包括与操作员和主要利益相关者的决策闸门。实验室测试表明,支链C_(12.13)-乙醇7PO-硫酸盐在海水中具有良好的水溶性,其中TDS约为3.5%,二价离子含量为1800 ppm(次要)钙和主要的镁离子)。为该应用选择的pH缓冲液的pH为7至9到1:1。防止可能会导致流体注入问题的Ca和Mg二价阳离子沉淀;以及2。保持pH值稳定在7以上(防止酸催化硫酸盐基团的水解),以确保从生产到使用的表面活性剂浓缩物的良好储存稳定性。最终制造出具有牛顿粘度特性的15%AM表面活性剂浓缩物并由于搬运设备处理要求而部署。然而,将来可能会使用浓度为70 +%AM的溶液以及牛顿流变技术进行部署。由于离岸使用带来的挑战,迄今为止,EOR中表面活性剂的使用主要限于陆上应用。本文从化学供应商的角度提供了表面活性剂浓缩物生产的实际示例,该表面活性剂浓缩物用于海上SP现场项目。与表面活性剂精矿升级过程中的质量保证和控制有关的信息也至关重要,并已包含在本文中。

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