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- W2056327293 abstract "Abstract Nano-emulsions are emulsions where the droplet size of the internal phase is 500 nm or less. Because of the small drop size, they are not subject to gravity-driven separation owing to the density differences of the two phases. Nano-emulsions constitute a rapidly expanding field of study, with perceived or consolidated applications to drug delivery, cosmetics, food products, etc. To date, most processes for generating nano-emulsions have relied on brute force mechanical methods (ie., based on high mixing energy in order to overcome the high surface energy generated), including several developed for the E&P industry. These generate nano-emulsions with a broad droplet size distribution and, in general, limited stability. While low energy processes based on phase inversion are well-known, the lack of general preparation methods has limited their applications to specific, high value-added industries. We report a general, transitional phase inversion method for the preparation of mono-disperse nano-emulsions of very small drop size (30-80 nm) which should prove useful for the delivery of oilfield chemicals in a variety of applications. The nano-emulsions possess very long lifetimes and can be charged with one or more oilfield chemicals. Parameters governing nano-emulsion formation and their properties and stability are reported. Nano-emulsions containing oilfield chemicals may find applications to well treatments (scale inhibition, acidizing, etc.), flow assurance (eg., multiple additive packages), and deposit removal/clean-up. Their long-term stability and ease of preparation from a concentrated precursor are compatible with oilfield logistics requirements." @default.
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- W2056327293 date "2007-02-28" @default.
- W2056327293 modified "2023-10-18" @default.
- W2056327293 title "Nanoemulsions: A New Vehicle for Chemical Additive Delivery" @default.
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