Smart Particles as Foam and Liquid Marble Stabilizers

Small particles adsorbed to gas-liquid interfaces are widely observed and utilized in many products and various industrial sections, such as flotation, washing, food, water treatment, treatment of radioactive wastes, and distillation in the pe...

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Main Authors: Syuji Fujii, Ryo Murakami
Format: Article
Language:English
Published: Hosokawa Powder Technology Foundation 2014-03-01
Series:KONA Powder and Particle Journal
Subjects:
Online Access:https://www.jstage.jst.go.jp/article/kona/26/0/26_2008014/_pdf/-char/en
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author Syuji Fujii
Ryo Murakami
author_facet Syuji Fujii
Ryo Murakami
author_sort Syuji Fujii
collection DOAJ
description Small particles adsorbed to gas-liquid interfaces are widely observed and utilized in many products and various industrial sections, such as flotation, washing, food, water treatment, treatment of radioactive wastes, and distillation in the petroleum industry. After a dormant period of nearly half a century, there is a revival of interests in studying their behaviour. Colloidal particles with a suitable wettability can strongly adsorb to gas-liquid interfaces, and can work as effective stabilizers for foams and liquid marbles (dry liquids). This article presents an overview of current research activities that center on foams and liquid marbles stabilized with well-defined colloidal particles. It is organized into three parts: i) brief discussions of small particles adsorbed to gas-liquid interfaces and their characterizations; ii) demonstrations of aqueous foams stabilized with inorganic or organic particles; and iii) demonstrations of liquid marbles (dry liquids) stabilized with colloidal particles.
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spelling doaj.art-104fb65614df4f5189dd87e13085fca32022-12-21T19:02:56ZengHosokawa Powder Technology FoundationKONA Powder and Particle Journal0288-45342187-55372014-03-0126015316610.14356/kona.2008014konaSmart Particles as Foam and Liquid Marble StabilizersSyuji Fujii0Ryo Murakami1Department of Applied Chemistry, Faculty of Engineering, Osaka Institute of TechnologyDepartment of Chemical Engineering, Polymer & Composite Engineering (PaCE) Group, Imperial College LondonSmall particles adsorbed to gas-liquid interfaces are widely observed and utilized in many products and various industrial sections, such as flotation, washing, food, water treatment, treatment of radioactive wastes, and distillation in the petroleum industry. After a dormant period of nearly half a century, there is a revival of interests in studying their behaviour. Colloidal particles with a suitable wettability can strongly adsorb to gas-liquid interfaces, and can work as effective stabilizers for foams and liquid marbles (dry liquids). This article presents an overview of current research activities that center on foams and liquid marbles stabilized with well-defined colloidal particles. It is organized into three parts: i) brief discussions of small particles adsorbed to gas-liquid interfaces and their characterizations; ii) demonstrations of aqueous foams stabilized with inorganic or organic particles; and iii) demonstrations of liquid marbles (dry liquids) stabilized with colloidal particles.https://www.jstage.jst.go.jp/article/kona/26/0/26_2008014/_pdf/-char/enfoamsbubblesliquid marblesdry liquidscolloidal particlesadsorptiongas-liquid interfaceswettability
spellingShingle Syuji Fujii
Ryo Murakami
Smart Particles as Foam and Liquid Marble Stabilizers
KONA Powder and Particle Journal
foams
bubbles
liquid marbles
dry liquids
colloidal particles
adsorption
gas-liquid interfaces
wettability
title Smart Particles as Foam and Liquid Marble Stabilizers
title_full Smart Particles as Foam and Liquid Marble Stabilizers
title_fullStr Smart Particles as Foam and Liquid Marble Stabilizers
title_full_unstemmed Smart Particles as Foam and Liquid Marble Stabilizers
title_short Smart Particles as Foam and Liquid Marble Stabilizers
title_sort smart particles as foam and liquid marble stabilizers
topic foams
bubbles
liquid marbles
dry liquids
colloidal particles
adsorption
gas-liquid interfaces
wettability
url https://www.jstage.jst.go.jp/article/kona/26/0/26_2008014/_pdf/-char/en
work_keys_str_mv AT syujifujii smartparticlesasfoamandliquidmarblestabilizers
AT ryomurakami smartparticlesasfoamandliquidmarblestabilizers