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Research Article

Scale-up of a suspension-like polymerization process for the microencapsulation of phase change materials

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Pages 583-593 | Received 30 Jul 2009, Accepted 11 Jun 2010, Published online: 03 Aug 2010

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Ahmet Sarı, Cemil Alkan & Alper Biçer. (2016) Thermal energy storage characteristics of micro-nanoencapsulated heneicosane and octacosane with poly(methylmethacrylate) shell. Journal of Microencapsulation 33:3, pages 221-228.
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Shiping Zhan, Zhiyi Zhou, Weijing Wang, Qicheng Zhao & Weimin Hou. (2014) Effect of nonionic compound emulsifiers Tween80 and Span80 on the properties of microencapsulated phase change materials. Journal of Microencapsulation 31:4, pages 317-322.
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U. R. Mahajan, I. Emmanuel, A. Sreenivasarao & S. T. Mhaske. (2023) Development of smart polyurethane foam with combined capabilities of thermal insulation and thermal energy storage by integrating microencapsulated phase change material. Polymer Bulletin 80:12, pages 13099-13115.
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A. Palacios, M.E. Navarro-Rivero, B. Zou, Z. Jiang, M.T. Harrison & Y. Ding. (2023) A perspective on Phase Change Material encapsulation: Guidance for encapsulation design methodology from low to high-temperature thermal energy storage applications. Journal of Energy Storage 72, pages 108597.
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U. R. Mahajan, I. Emmanuel, A. Sreenivasa Rao & S. T. Mhaske. (2023) Development of rigid polyurethane foam incorporating phase change material for a low‐temperature thermal energy storage application. Polymer International 72:5, pages 490-499.
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María del Prado Garrido, Juan Francisco Rodriguez, Maria Jesús Ramos, Manuel Carmona, Francisco Javier Redondo Calvo & Ana Maria Borreguero. (2023) Scale-up and Economic Assessment of Biofunctional Particles Synthesis for Bilirubin Removal. Applied Sciences 13:8, pages 5150.
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Daniel López-Pedrajas, Ana M. Borreguero, F. Javier Ramos, Manuel Carmona & Juan Francisco Rodríguez. (2020) The role of vinyl terminated silanes for producing highly concentrated polystyrene slurries in a single step process. Colloid and Polymer Science 298:12, pages 1685-1697.
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Sven Bettermann, Robin Stuhr, Hans-Ulrich Moritz & Werner Pauer. (2019) Customizable 3D-printed stirrers for investigation, optimization and scale-up processes of batch emulsion copolymerizations. Chemical Engineering Science 206, pages 50-62.
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Zhongzhu Qiu, Peng Li, Zhangyuan Wang, Han Zhao & Xudong Zhao. 2019. Advanced Energy Efficiency Technologies for Solar Heating, Cooling and Power Generation. Advanced Energy Efficiency Technologies for Solar Heating, Cooling and Power Generation 101 141 .
Samaneh Sami & Nasrin Etesami. (2017) Thermal characterization of obtained microencapsulated paraffin under optimal conditions for thermal energy storage. Journal of Thermal Analysis and Calorimetry 130:3, pages 1961-1971.
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Anna Trojanowska, Adrianna Nogalska, Ricard Garcia Valls, Marta Giamberini & Bartosz Tylkowski. (2017) Technological solutions for encapsulation. Physical Sciences Reviews 2:9.
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Ángela Alcázar, Ana M. Borreguero, Antonio de Lucas, Juan F. Rodríguez & Manuel Carmona. (2017) Microencapsulation of TOMAC by suspension polymerisation: Process optimisation. Chemical Engineering Research and Design 117, pages 1-10.
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G. X. Wang, W. B. Xu, Q. Hou & S. W. Guo. (2016) Microwave-assisted synthesis of poly(urea-formaldehyde)/lauryl alcohol phase change energy storage microcapsules. Polymer Science Series B 58:3, pages 321-328.
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Behrouz Mohammadi, Fardin Seyyed Najafi, Heydar Ranjbar, Jalal Mohammadi & Mohsen Zakaryazadeh. (2016) Nanoencapsulation of butyl palmitate in polystyrene- co -methyl methacrylate shell for thermal energy storage application. Energy and Buildings 118, pages 99-105.
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Ana C. G. Moreira, Isabel M. Martins, Isabel Fernandes, Maria F. Barreiro & Alírio E. Rodrigues. (2016) Microencapsulation of red and white thyme oil in poly(lactic-co-glycolic) acid: Assessment of encapsulation efficiency and antimicrobial capacity of the produced microcapsules. The Canadian Journal of Chemical Engineering 94:3, pages 469-475.
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E. Onder & N. Sarier. 2015. Functional Finishes for Textiles. Functional Finishes for Textiles 17 98 .
Mustapha Karkri, Gilles Lefebvre & Laurent Royon. 2016. Environment, Energy and Climate Change II. Environment, Energy and Climate Change II 123 149 .
A. Jamekhorshid, S.M. Sadrameli & A.R. Bahramian. (2014) Process optimization and modeling of microencapsulated phase change material using response surface methodology. Applied Thermal Engineering 70:1, pages 183-189.
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A. Jamekhorshid, S.M. Sadrameli & M. Farid. (2014) A review of microencapsulation methods of phase change materials (PCMs) as a thermal energy storage (TES) medium. Renewable and Sustainable Energy Reviews 31, pages 531-542.
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Nihal Sarier & Emel Onder. (2012) Organic phase change materials and their textile applications: An overview. Thermochimica Acta 540, pages 7-60.
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Luz Sánchez-Silva, Nuria Gutiérrez, Paula Sánchez, Amaya Romero & José Luis Valverde. (2012) Smart microcapsules containing nonpolar chemical compounds and carbon nanofibers. Chemical Engineering Journal 181-182, pages 813-822.
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C.Y. Zhao & G.H. Zhang. (2011) Review on microencapsulated phase change materials (MEPCMs): Fabrication, characterization and applications. Renewable and Sustainable Energy Reviews 15:8, pages 3813-3832.
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S. Mondal. 2011. Functional Textiles for Improved Performance, Protection and Health. Functional Textiles for Improved Performance, Protection and Health 163 183 .

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