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Stabilization mechanism and chemical demulsification of water-in-oil and oil-in-water emulsions in petroleum industry: A review

机译:石油工业稳定机理及水油水乳液的化学破坏:综述

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Emulsions frequently encountered in petroleum production, include water-in-oil (W/O) emulsions, oil-in-water (O/W) emulsions, and water-in-oil-in-water (W/O/W) emulsions, which considerably increase operation and production costs and cause technical challenges such as fouling and corrosion. Chemical treatment as a primary method has been extensively applied to destabilize the highly stable and complex emulsions. Demulsifiers play a vital role in demulsification efficiency of the chemical treatment, while developing effective and cost-efficient demulsifiers remains challenging due to complexity of the emulsions and poorly-understood demulsification mechanisms. This work systematically reviews the stabilization mechanisms of the complex emulsions, including the presence of interface-active species and their effects on the intermolecular and surface forces involved, properties of oil/water interface, and bulk properties of the emulsions. According to the different stabilization mechanisms of W/O emulsions and O/W emulsions, we subdivide demulsifiers into emulsion breakers (EBs) applied to demulsify W/O emulsions and reverse emulsion breakers (REBs) for O/W emulsions. The two types of demulsifiers are comprehensively reviewed and discussed, including types, influencing factors, demulsification mechanisms, and overdose effects. Our work provides useful insights into the fundamental stabilization and destabilization mechanisms of W/O emulsions and O/W emulsions and improves the understanding of efficient EBs and REBs and their applications in crude oil production and other related chemical and environmental engineering processes.y
机译:在石油生产中经常遇到的乳液,包括油内(w / ol)乳液,水 - 水(O / w)乳液和水包油(w / O / w)乳液,大大提高了运营和生产成本,并导致污垢和腐蚀等技术挑战。作为主要方法的化学处理已被广泛地应用以使高稳定且复杂的乳液稳定。破乳剂在化学处理的破乳效率下发挥着至关重要的作用,而开发有效且成本效益的破乳剂由于乳液的复杂性和破坏机制差而存在挑战。这项工作系统地评估复杂乳液的稳定机制,包括界面活性物质的存在及其对所涉及的分子间和表面力的影响,油/水界面的性质以及乳液的块状性质。根据W / O乳液和O / W乳液的不同稳定机制,我们将破乳剂细分为乳液破碎剂(EBS),其用于破乳的W / W乳液和逆转乳液破碎物(REBS)进行O / W乳液。全面审查和讨论了两种破乳剂,包括类型,影响因素,破乳机制和过量效应。我们的工作提供了有用的见解,并对W / O乳液和O / W乳液的基本稳定和稳定化机制提供了有用的见解,并提高了对高效EBS和REBS的理解及其在原油生产和其他相关化学和环境工程过程中的应用.Y

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