Formulation Improvements in the Applications of Surfactant–Oil–Water Systems Using the HLDN Approach with Extended Surfactant Structure

Совершенствование рецептур при применении систем «поверхностно-активное вещество–нефть–вода» с использованием подхода HLDN и структурой расширенных поверхностно-активных веществ
Ana Forgiarini, Ronald Márquez, Jean‐Louis Salager
2021-06-21

HLDN approachcrude oil dewateringemulsions and foamsextended surfactantssurfactant–oil–water systems
Soap applications for cleaning and personal care have been used for more than 4000 years, dating back to the pharaonic period, and have widely proliferated with the appearance of synthetic surfactants a century ago. Synthetic surfactants used to make macro-micro-nano-emulsions and foams are used in laundry and detergency, cosmetics and pharmaceuticals, food conditioning, emulsified paints, explosives, enhanced oil recovery, wastewater treatment, etc. The introduction of a multivariable approach such as the normalized hydrophilic–lipophilic deviation (HLD N) and of specific structures, tailored with an intramolecular extension to increase solubilization (the so-called extended surfactants), makes it possible to improve the results and performance in surfactant–oil–water systems and their applications. This article aims to present an up-to-date overview of extended surfactants. We first present an introduction regarding physicochemical formulation and its relationship with performance. The second part deals with the importance of HLD N to make a straightforward classification according to the type of surfactants and how formulation parameters can be used to understand the need for an extension of the molecule reach into the oil and water phases. Then, extended surfactant characteristics and strategies to increase performance are outlined. Finally, two specific applications, i.e., drilling fluids and crude oil dewatering, are described.
1
Combining HLDN formulation analysis with extended surfactant structures improves performance in surfactant–oil–water systems, including emulsions and foams.
2
Intramolecularly extended surfactants increase solubilization by extending molecular reach into both oil and water phases.
3
The normalized hydrophilic–lipophilic deviation (HLDN) provides a multivariable framework for classifying surfactants and relating formulation parameters to performance.
4
The review outlines molecular and formulation strategies for enhancing extended-surfactant performance and examines applications in drilling fluids and crude-oil dewatering.

extended surfactant–oil–water systems and their applications, particularly drilling fluids and crude oil dewatering

formulation improvements and performance enhancement through extended surfactant structures and the normalized hydrophilic–lipophilic deviation (HLDN) approach

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2021-06-21
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Authors
Ana Forgiarini
Ronald Márquez
Jean‐Louis Salager
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