Academic literature on the topic 'Micro emulsion system'

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Journal articles on the topic "Micro emulsion system"

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Jain, Ashish, Bhushan Hatwar, and Akhlesh Kumar Singhai. "Fabrication and Characterization of Cefixime Containing Micro Emulsion for Parenteral Drug Delivery System." Der Pharma Chemica 16, no. 2 (2024): 8. https://doi.org/10.4172/0975-413X.16.2.293-300.

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The development of an injectable or parenteral micro emulsion formulation of the antibiotic cefixime was the aim of this investigation. We identified cefixime, which is easily soluble in methanol and propylene glycol and just slightly soluble in ethanol and acetone. Cefixime is directly dissolved in the aqueous buffer to create organic solvent-free aqueous solutions for use in biological experiments. To define the limits of a micro emulsion’s existence, pseudo ternary phase diagrams of oil, surfactant, cosurfactant (butanol/isopropyl alcohol mixture) and water were created. Cefixime was
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N., Likitha, and Sandeep K. "Self Emulsifying Drug Delivery System." International Journal of Innovative Science and Research Technology 7, no. 11 (2022): 33–40. https://doi.org/10.5281/zenodo.7319153.

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Self-emulsifying drug delivery systems (SEEDS) are mixtures of perfect isotropic oils and surfactants, with or without cosolvents, that emulsify when gently agitated, similar to the conditions found in the gastrointestinal tract. These systems cause the gastro-intestinal tract (GIT) to mildly agitate while forming fine emulsions (or micro-emulsions). The oral absorption of drugs from SEEDS is greatly influenced by a number of factors, including surfactant concentration, oil/surfactant ratio, polarity of the emulsion, droplet size, and charge. This formulation improves bioavailability by increa
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Veliyev, E. F. "Application of amphiphilic block-polymer system for emulsion flooding." SOCAR Proceedings, no. 3 (September 30, 2021): 78–86. http://dx.doi.org/10.5510/ogp20210300532.

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The paper presents the developed composition of an amphiphilic block polymer that forms a stable emulsion system. The presented block polymer composition also possesses reversible-thermal gel-forming properties, which allows to consider it as an effective working agent on deep fluid diversion purposes. Amphiphilic polymer systems traditionally used in the oil industry are not very stable in high-salinity environments. For this purpose, a block polymer formulation was developed which eliminates this disadvantage. This work presents the results of the research on the effect of the block polymer
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Nagar, Mohit. "Review on Nano-Emulsion Drug Delivery System and Formulation, Evaluation and Their Pharmaceutical Applications." International Journal Of Health Care And Nursing 2, no. 1 (2023): 35–61. http://dx.doi.org/10.55938/ijhcn.v2i1.43.

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Nano-emulsion drug delivery system such as develop to eliminate the limitations with traditional drug administration system. This review provided a good overview of the recent advances in the Nano-emulsion drug delivery system. These are nano-sized submicron emulsions developed to enhanced the circulates of active pharmaceutical ingredients to targeted site. Nano-emulsion is a homogeneous mixture of lipid and aqueous phase and stabilization is obtained through the use of an effective substance such as emulsifying agents. The droplet size has been range between the 50-500 nm. The size and shape
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Abd El-Ghaffar, M. A., Fayza A. Kantouch, Zainn M. Mahmoud, Karima Haggag, Ahmed I. Hashem, and Abdelrahim A. Ramadan. "Micro-emulsion co-polymerisation of butyl acrylate with acrylic acid as binder for textile pigment printing." Pigment & Resin Technology 43, no. 2 (2014): 84–91. http://dx.doi.org/10.1108/prt-12-2012-0090.

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Purpose – The purpose of this paper is to prepare nano size micro-emulsion co-polymer particles based on butyl acrylate (BA)/acrylic acid (AAc) with high monomer/surfactant ratio. The study involved the application of the prepared micro-emulsions co-polymers as textile pigment printing binders. Design/methodology/approach – The micro-emulsion co-polymerisations processes were carried out with different mixtures of BA and AAc using modified process. Sodium dodecyl sulphate (SDS) and potassium peroxy disulphate/glucose were used as emulsifier and redox initiator, respectively. The prepared emuls
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Olena, Aksonova, Gubsky Sergey, Murlykina Natalia, and Otroshko Natalia. "Development of Vitamin D3-fortified Dairy Sour Cream Desert." Journal of Hygienic Engineering and Design 40 (December 8, 2022): 119–31. https://doi.org/10.5281/zenodo.7415722.

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Recent studies show a correlation between the content of vitamin D3 in the human body and the severity of COVID19. Part of the world’s population is deficient in vitamin D3. The solution to this problem is possible by the development and inclusion of foodstuffs fortified with vitamin D in diets. The aim of this study was to develop a D3 -fortified sour cream dessert using an emulsion system as a vitamin D delivery system. Commercially available raw materials: vitamin D3 powder, sodium carboxymethylcellulose, skimmed milk powder, and sunflower oil were used to create a vitamin D-fortified
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Fatima, Eram, and Dr Vivek. "Role of Micro Emulsion Based In-Situ Gelling System of Fluoroquinolone for Treatment of Posterior Segment Eye Diseases (PSED)." Journal of Drug Delivery and Therapeutics 10, no. 3 (2020): 265–72. http://dx.doi.org/10.22270/jddt.v10i3.4079.

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The in situ drug delivery system and colloidal formulation like micro emulsion has potential to use in ocular delivery. Micro emulsion provides better permeation of drug through the membrane and provides improved bioavailability. The in situ drug delivery system decreases pre-corneal drainage, increase the contact time of formulation with eye and prolong the release in ocular tissues. Again, in situ gelling system has advantage of delivering accurate and reproducible quantities each time, against any already gelled formulations. To combine the benefits of these two dosage forms, micro emulsion
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Ghosh, Shyamal C., Holger Militz, and Carsten Mai. "Natural weathering of Scots pine (Pinus sylvestris L.) boards modified with functionalised commercial silicone emulsions." BioResources 4, no. 2 (2009): 659–73. http://dx.doi.org/10.15376/biores.4.2.659-673.

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A quat-silicone micro-emulsion (particle size <40 nm), an amino-silicone macro-emulsion (110 nm), and an alkyl modified silicone macro-emulsion (740 nm) were used to modify Scots pine (Pinus sylvestris L.) sapwood. Treated and uncoated boards were exposed to natural weathering for one year along with water treated controls according to EN 927-3. The treatment with silicone emulsions did not enhance the color stability, which was assessed at three months intervals using a spectrophotometer and classified according to the CIE-Lab system. Treatment with amino-silicone emulsions gave a more yel
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Sonali, Bhagat* Anup Kendre Shubhangi Dorle Vaishnavi Khandre. "Nanoemulsion Future Approach in Faster Routes of Dosage Delivery." International Journal of Pharmaceutical Sciences 3, no. 1 (2025): 994–1004. https://doi.org/10.5281/zenodo.14638098.

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A nano-emulsion drug delivery system has been developed to overcome the drawbacks of traditional drug administration methods. This review summarizes recent advancements in nano-emulsion systems, which are submicron emulsions designed to enhance the distribution of active pharmaceutical ingredients to specific target sites. Nano-emulsions consist of a uniform mixture of lipid and aqueous phases, stabilized by effective emulsifying agents. The droplet sizes range from 50 to 500 nm, distinguishing nano-emulsions from emulsions and micro-emulsions based on their size and distribution characteristi
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Sonali, Bhagat* Anup Kendre Shubhangi Dorle Vaishnavi Khandre Mayuresh Ramlod. "Nanoemulsion Future Approach in Faster Routes of Dosage Delivery." International Journal of Pharmaceutical Sciences 3, no. 1 (2025): 1026–35. https://doi.org/10.5281/zenodo.14639589.

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A nano-emulsion drug delivery system has been developed to overcome the drawbacks of traditional drug administration methods. This review summarizes recent advancements in nano-emulsion systems, which are submicron emulsions designed to enhance the distribution of active pharmaceutical ingredients to specific target sites. Nano-emulsions consist of a uniform mixture of lipid and aqueous phases, stabilized by effective emulsifying agents. The droplet sizes range from 50 to 500 nm, distinguishing nano-emulsions from emulsions and micro-emulsions based on their size and distribution characteristi
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Dissertations / Theses on the topic "Micro emulsion system"

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Jafarov, M. A., and E. F. Nasirov. "Zn1-xCdxS Nanoparticles, Nanofilms, Nanoscale Junction for SolarCells." Thesis, Sumy State University, 2012. http://essuir.sumdu.edu.ua/handle/123456789/34894.

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The In this work the results on the investigation of the precularity near the solar spectrum region, of Zn1-xCdxS nanoparticles, nanofilms, nanoscale p-n and heterojunction prepared on glass-ceramic ad alumminium substrates by precipitation from aqueous solutions are presented. The temperature dependence of dark and light conductivity, spectrum and optical quenching of primary and impurity photoconductivity are investigated. The obtained results show that when controlling ionic composition and heat-treatment (HT) conditions, one can purposely control the properties of Zn1-xCdxS (0 x 0.6)
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Schianti, Juliana de Novais. "Sistemas microfluídicos aplicados na produção de micro e nanopartículas." Universidade de São Paulo, 2012. http://www.teses.usp.br/teses/disponiveis/3/3140/tde-26072013-173006/.

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Neste trabalho foram desenvolvidos sistemas microfluídicos para aplicações na produção de micro e nanopartículas. Os dispositivos microfluídicos foram microfabricados em vidros do tipo borosilicato e em cerâmica verde LTCC (Low Temperature Co-fired Ceramic). Para os dispositivos em vidro foram utilizadas técnicas de fotolitografia, corrosão úmida e soldagem por cola UV. Com estas técnicas foram produzidos sistemas planares com diversas geometrias, sistemas com dispositivos em paralelo com duas e três camadas de vidros. Além disso, dois polímeros o Benzociclobuteno (BCB) e o Parylene-C foram ap
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Aparicio, Pelegrin Rosa M. "Estudi d’incorporació i alliberament de fàrmacs amb noves formes de dosificació basades en sistemes micro-nanoestructurats." Doctoral thesis, Universitat de Barcelona, 2021. http://hdl.handle.net/10803/673925.

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Els materials porosos polimèrics, també denominats escumes sòlides, són materials sòlids de baixa densitat i elevat volum de porus. Són ben coneguts per la seva varietat d’aplicacions i constitueixen una part integral de diverses formes de dosificació. La xarxa porosa és important per determinar fenòmens relacionats amb l’administració de medicaments, tals com la dissolució, adsorció i difusió de fàrmacs. S’ha descrit l’ús de materials mesoporosos per incorporar i posteriorment alliberar diverses molècules d’interès farmacèutic i s’ha demostrat que molècules de diferents mides poden quedar atr
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Al, Mana Noor. "Design of Embedded Metal Catalysts via Reverser Micro-Emulsion System: a Way to Suppress Catalyst Deactivation by Metal Sintering." Diss., 2016. http://hdl.handle.net/10754/614070.

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The development of highly selective and active, long-lasting, robust, low-cost and environmentally benign catalytic materials is the greatest challenge in the area of catalysis study. In this context, core-shell structures where the active sites are embedded inside the protecting shell have attracted a lot of researchers working in the field of catalysis owing to their enhanced physical and chemical properties suppress catalyst deactivation. Also, a new active site generated at the interface between the core and shell may increases the activity and efficiency of the catalyst in catalytic react
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GISKAMUTHIA and 施牧亞. "Investigation of Reclaimed Asphalt Pavement Binder Contribution to the Asphalt Emulsion Slurry System Using X-ray Micro-Computed Tomography." Thesis, 2018. http://ndltd.ncl.edu.tw/handle/qkd3wf.

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碩士<br>國立成功大學<br>土木工程學系<br>106<br>The state of practice to combining RAP into slurry surfacing usually considered RAP binder as inactive and thus the RAP was used as ‘‘black rock”. This is because that the mixing process of the micro-surfacing was done in the ambient temperature that there is no high temperature can provide energy level to mobilize the RAP binder. However, during the service period of the micro-surfacing, the elevated pavement surface temperature and diffusion mechanism, contribution of RAP binder to the micro-surfacing makes possible. Therefore, the main objective of this stud
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Book chapters on the topic "Micro emulsion system"

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Bhanja, Dr Satyabrata, and Dr Chinmaya Keshari Sahoo. "EMULSION, MICRO EMULSION AND NANO EMULSION: A REVIEW." In Futuristic Trends in Pharmacy & Nursing Volume 3 Book 5. Iterative International Publishers, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bapn5ch40.

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Hydrophobic pharmacological compounds are well-suited for administration through lipid dosage forms. One of the most widely used systems for many years has been emulsion. The use of emulsions in pharmaceuticals has expanded, particularly with the introduction of micro- and nano-emulsions. This essay aims to provide a summary of comparative elements such as definitions, theories, kinds, preparation techniques, benefits, drawbacks, and analysis techniques for emulsion, micro-emulsion, and nano-emulsion
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Chauhan, Neha, Bhargavi Patel, Jimisha Kher, Hemangi Patel, and Dr Binal Gohil. "SELF MICROEMULSIFYING DRUG DELIVERY SYSTEM." In Futuristic Trends in Pharmacy & Nursing Volume 3 Book 17. Iterative International Publishers, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bkpn17p1ch2.

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In recent year many drugs are generated which have many challenges during the administration of the drug. The major challenges are the low aqueous solubility in the gastrointestinal track (GIT track) as well as they have poor bioavailability when they are administrated as oral route. These problems can be overcome by developing the self-micro drug delivery system (SMEDDS). Through which we can improve the aqueous solubility of drug and the bioavailability of drug. SMEDDS are the effective method in case of oral administration of drug. They form the physically stable emulsion in git track. The
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Peula-García, J. M., M. Vicario-De-La-Torre, and J. Esquena. "Liquid–Liquid Colloidal Systems as Advanced Biomedical Nanocarriers." In Soft Nanoparticles for Biomedical Applications, 2nd ed. Royal Society of Chemistry, 2025. https://doi.org/10.1039/9781837675203-00391.

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Liquid–liquid mixtures that include micro-, nano-, and water-in-water emulsions are versatile soft colloids widely used in pharmaceutical and biotechnological fields. These systems exhibit unique properties arising from their nanostructured nature (micro- and nanoemulsions) and confined domains (common to all three systems). Microemulsions are thermodynamically stable systems typically containing water, oil, surfactant, and often a co-surfactant, while nanoemulsions are kinetically biphasic systems that require energy input for nanodroplet formation. Water-in-water emulsions consist of two imm
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Naghib, Seyed Morteza, Samin Hoseinpour, and Shadi Zarshad. "Composites in Localized Controlled Drug Delivery Systems (LCDDSs)." In Localized Micro/Nanocarriers for Programmed and On-Demand Controlled Drug Release. BENTHAM SCIENCE PUBLISHERS, 2022. http://dx.doi.org/10.2174/9789815051636122010006.

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Localized controlled drug delivery systems (LCDDSs) have become the main topic in drug delivery, tissue engineering and pharmaceutical science by enhancing formulations and processes of controlled delivery. The side effects and problems of materials/biomaterials are critical and may lead to several issues, such as reducing the effective drug dose, delaying the treatment process, and not having a particular continuous treatment. Therefore, composites composed of hybrid materials/biomaterials with excellent release properties, biocompatibility, stability and biodegradability, with local adjusted
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"The Microbiology of Food Preservation." In Food Microbiology, 5th ed. Royal Society of Chemistry, 2024. http://dx.doi.org/10.1039/bk9781837673698-00073.

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All food preservation procedures are based on control of the factors influencing microbial growth and survival and many rely on a combination of inhibitory factors to achieve a food’s keeping quality and safety. Although most preservation methods were developed empirically before the role of micro-organisms was known, their current successful use on a large scale is critically dependent on understanding the application of underlying scientific principles. A few techniques, such as irradiation and high-pressure processing, were developed more recently and in these cases control of micro-organis
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Griffith Jones, Owen. "Protein Nanostructures." In Edible Nanostructures. The Royal Society of Chemistry, 2014. http://dx.doi.org/10.1039/bk9781849738958-00069.

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Proteins are one of the essential building blocks of biological structures at both the macro- and micro-scales, and many nanometer-sized protein structures are responsible for the basic functions of living systems. By understanding the attributes and potential interactivity of individual proteins one can design specific protein structures at the nanometer length-scale for advanced applications in food or medicine. In this chapter, major classes of protein nanostructures are discussed which have been developed over several decades of research. Of particular emphasis are the protein nanostructur
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"Nanoparticulate Metal Composites Particles: Future Prospects and Therapeutic Implications in Acne Treatment." In Nanotechnology: Journey from Laboratory to Society, edited by Ajay Kumar Shukla, Vimal Kumar Yadav, Manish Kumar, Sunita Panchawat, and Joohee Pradhan. New India Publishing Agency, 2024. http://dx.doi.org/10.59317/978935887385606.

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The properties of Nanoparticulate Metal Composite Particles (NMCP) are superior to those of standard formulations that rely on the creation and manufacturing of nanostructures (Rahman et al., 2017). Numerous metallic&amp;#2;nanoparticulate carriers are now being studied as efficient drug delivery methods. These include lipidic micro/nano-emulsion systems, lipidic vesicles, metallic nanoparticles, lipid nanoparticles, polymeric nanoparticles, lipid-polymer hybrid nanoparticle systems, etc. The topical application of silver nanoparticles as nanocarriers has garnered significant attention among t
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Epstein, Irving R., and John A. Pojman. "Polymer Systems." In An Introduction to Nonlinear Chemical Dynamics. Oxford University Press, 1998. http://dx.doi.org/10.1093/oso/9780195096705.003.0017.

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In the classic 1967 film “The Graduate” the protagonist, Benjamin (Dustin Hoffman), is attempting to plan his postcollege path. His neighbor provides one word of advice, “Plastics.” This counsel has become part of American culture and is often parodied. But, it is good advice, because not since the transformations from stone to bronze and then to iron have new materials so completely transformed a society. Plastics made from synthetic polymers are ubiquitous, from Tupperware to artificial hearts. About half the world’s chemists work in polymer-related industries. In this chapter, we will surve
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Conference papers on the topic "Micro emulsion system"

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Williams, Terry M. "Isothiazolone Biocides in Water Treatment Applications." In CORROSION 2004. NACE International, 2004. https://doi.org/10.5006/c2004-04083.

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Abstract Isothiazolone biocides have been used for microbial control in a variety of industrial water treatment applications. The most widely used product is a mixed isothiazolone biocide (methylchloro-methylisothiazolone; MCMI). MCMI has broad spectrum efficacy versus bacteria, algae, and fungi. The other isothiazolone biocide is a new micro-emulsion technology based on 4,5-dichloro-2-n-octyl-4-isothiazolin-3-one (DCOI). DCOI is primarily an algicide for cooling water treatment and a fungicide for papermill applications. MCMI and DCOI inhibit certain dehydrogenase enzymes which disrupt metabo
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Guo, Kai, Yuling Lv, Limin He, Xiaoming Luo, and Donghai Yang. "Investigation on Corrosion Base Characteristics and Deep Dehydration Technology of Micro-Droplets in Oil Pipelines." In ASME 2019 Asia Pacific Pipeline Conference. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/appc2019-7617.

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Abstract Corrosion is an important cause of steel pipeline failure and oil leakage, especially local pitting corrosion in long distance crude oil pipelines. Deep dehydration is of great significance to pipeline anticorrosion, however, further experimental results show that it is very difficult to achieve deep dehydration by a single electric field. Recent studies have shown that the particle size change of dispersed phase for the emulsion with large droplets after electromagnetic synergistic treatment is more obvious than that of a single electric field. In this study, the effect of micro-drop
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Cuaran-Cuaran, Zuleny, Orlando Rincon-Arango, and Manuel Ocampo-Terreros. "Micro-scale study about interfacial interaction of emulsion-aggregate system for cold mix asphalt." In 2022 Congreso Internacional de Innovación y Tendencias en Ingeniería (CONIITI). IEEE, 2022. http://dx.doi.org/10.1109/coniiti57704.2022.9953715.

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Alyousef, M., O. S. Alade, J. Al Hamad, R. Al-Abdrabalnabi, and A. Al Ramadhan. "Understanding Pore Scale Emulsification During Surfactant Injection: A Visualization of Emulsion Formation Using Microchips and Core Flooding Visualizing Cell." In International Petroleum Technology Conference. IPTC, 2024. http://dx.doi.org/10.2523/iptc-23700-ea.

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Abstract Utilizing a surfactant solution to create an emulsion in a rock's pore space has been proven to enhance heavy oil production. By obstructing some of the pores in the rock, fingering is reduced, and micro-displacement efficiency is improved, ultimately increasing oil recovery. This technique is also valuable in reducing the interfacial tension between oil and water by inducing phase dispersion and altering the physical characteristics of the oil in the reservoir. While previous research has concentrated on increasing oil recovery through in-situ emulsion, there has not been much explor
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Ren, Yong, and Kai Seng Koh. "Droplet Fission in Non-Newtonian Multiphase System Using Bilayer Bifurcated Microchannel." In ASME 2016 5th International Conference on Micro/Nanoscale Heat and Mass Transfer. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/mnhmt2016-6709.

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In this paper, we present a novel design of bilayer polydimethylsiloxane (PDMS) microchannel formed by bifurcated junction, from which each curved branch lies on the upper and lower layer, respectively. With this 3D platform, we aim to investigate droplet formation and subsequent fission in a multiphase system using non-Newtonian fluids, which are ubiquitous in daily life and have been widely used in industrial applications including biomedical engineering, food production, personal care and cosmetics, and material synthesis. Numerical model has been established to characterize the non-Newtoni
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Kharghoria, A., Nathan Lett, J. T. Portwood, et al. "Laboratory to Field Scale Simulation of a Complex Micro-Emulsion System Performance for Enhanced Oil Recovery." In SPE Asia Pacific Enhanced Oil Recovery Conference. Society of Petroleum Engineers, 2015. http://dx.doi.org/10.2118/174667-ms.

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Rodionova, N. S., E. S. Popov, and N. A. Zaharova. "EMULSION PROBIOTICS IN TECHNOLOGIES OF ALIMENTARY CORRECTION PHYSIOLOGICAL CONDITIONS OF THE BODY." In I International Congress “The Latest Achievements of Medicine, Healthcare, and Health-Saving Technologies”. Kemerovo State University, 2023. http://dx.doi.org/10.21603/-i-ic-114.

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The paper shows the possibility of combining in a single food system the biomass of a&#x0D; consortium of probiotic microorganisms and bioactive vegetable oils, which ensures more efficient&#x0D; absorption and assimilation of micro- and macro-components. The resulting emulsion probiotic&#x0D; products provide a significant increase in the preventive, therapeutic and biocorrective action of&#x0D; bioactive oils from low-oil domestic raw materials, proven by numerous studies of physicians,&#x0D; biologists, physiologists.
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Lian, Zheng, Yong Ren, Kai Seng Koh, Jun He, George Zheng Chen, and Xiaogang Yang. "High Throughput Fabrication of Microdroplets Using Needle Based Microfluidic System." In ASME 2019 6th International Conference on Micro/Nanoscale Heat and Mass Transfer. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/mnhmt2019-4263.

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Abstract Needle-based microfluidic system that comprised of needle-based microfluidic devices (NBMD) in parallel connection was employed to generate polydimethylsiloxane (PDMS) microdroplets using oil-in-water (O/W) single emulsion template. The parallel-connection could be simply realized by multiple single NBMD connected via flow diverting devices. The versatile flow diverting devices could not only avoid the additional use of injection pumps for introducing fluids into the microfluidic system, but also enhance the yields of microdroplets. The entire production rate of the system has been ra
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Hincapie, Rafael E., Ante Borovina, Torsten Clemens, Eugen Hoffmann, and Jonas Wegner. "Alkali/Polymer Flooding of High-TAN Oil: Live Oil and Dead Oil Evaluation." In Abu Dhabi International Petroleum Exhibition & Conference. SPE, 2021. https://doi.org/10.2118/207424-ms.

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Abstract Alkali/Polymer (AP) flooding of high-TAN oil is a promising EOR method. Phase tests reveal that the generated emulsions are thermodynamically unstable macro-emulsions rather than Winsor type emulsions as observed in Alkali/Surfactant (AS) systems. We investigated the effect of gas on the phase behavior and displacement efficiency. The impact of gas in solution on the displacement efficiency is much more pronounced than in AS projects, neglecting the gas effects underestimates incremental recovery factor by &amp;lt;15 %. Experiments and analysis were performed to investigate the effect
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Panigrahi, Dillip Kumar, and Mihir Sarangi. "Fabrication of Deterministic Micro-Asperities on Thrust Surfaces Using Photo Chemical Machining." In ASME 2019 14th International Manufacturing Science and Engineering Conference. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/msec2019-2955.

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Abstract The present invention relates to characterization and the sequence of operations in photo chemical machining as a means to fabricate positive deterministic micro-textures on mild steel thrust pad surfaces. Fabrication of surface micro-texture by current technique is conceived in two-stages: where photographic emulsion process is used to pattern the microstructure, and chemical etching method is employed to fabricate the textures on mild steel surface by dissolving exposed metal surface. The texture fabricated by present invention is having slightly rough etched bottom surface with sha
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