Methodologies of synthesis and characterization of novel nanoparticles, nanoPCM and nanofluids.

Short description

Methodologies for the synthesis of different nanoparticles, nanoPCM and nanofluids for different applications. Methodologies for the characterization of these (composition, stability, dispersion, nanoparticle size distribution, thermophysical properties, etc.).

 

Indexed Journals;

  1. Muñoz-Sánchez B, Nieto-Maestre J, Iparraguirre-Torres I, García-Romero A, Sala-Lizarraga, JM. Molten salt-based nanofluids as efficient heat transfer and storage materials at high temperatures. An overview of the literature. Renew Sustain Energy Rev. Submitted 12th September 2016.
  2. Muñoz-Sánchez B, Nieto-Maestre J, Imbuluzqueta G, Marañón I, Iparraguirre-Torres I, García-Romero A. A precise method to measure the specific heat of solar salt-based nanofluids. J Therm Anal Calorim 2017. doi:10.1007/s10973-017-6272-x.
  3. Muñoz-Sánchez B, Nieto-Maestre J, Iparraguirre-Torres I, Sánchez-García J a., Julia JE, García-Romero A. Preparation of nanofluids based on solar salt and boehmite nanoparticles: Characterization of starting materials. AIP Conf Proc 2016;050030. doi:10.1063/1.4949128.
  4. Muñoz-Sánchez B, Nieto-Maestre J, Iparraguirre-Torres I, Sánchez-García J a., Julia JE, García-Romero A. The influence of mixing water on the thermophysical properties of nanofluids based on solar salt and silica nanoparticles. AIP Conf Proc 2016;050031. doi:10.1063/1.4949129.
  5. Muñoz-Sánchez B, Iparraguirre-Torres I, Madina-Arrese V, Izagirre-Etxeberria U, Unzurrunzaga-Iturbe A, García-Romero A. Encapsulated High Temperature PCM as Active Filler Material in a Thermocline-based Thermal Storage System. Energy Procedia, vol. 69, 2015, p. 937–46. doi:10.1016/j.egypro.2015.03.177.

 

Conferences:

  1. B. Muñoz-Sánchez, J. Nieto-Maestre, I. Iparraguirre-Torres, J.E Julia and A. García-Romero. Silica and Alumina Nano-enhanced Molten Salts for Thermal Energy Storage: a Comparison. (Oral). International Conference on Concentrating Solar Power and Chemical Energy Systems, SolarPACES 2016. AIP Conference Proceedings. Abu Dhabi (UAE). 2016.
  2. B. Muñoz-Sánchez, J. Nieto-Maestre, L. Guerreiro, J.E. Julia, M. Collares-Pereira, A. García-Romero. Molten Salt Based Nanofluids Based on Solar Salt and Alumina Nanoparticles: an Industrial Approach. (Poster). International Conference on Concentrating Solar Power and Chemical Energy Systems, SolarPACES 2016. AIP Conference Proceedings. Abu Dhabi (UAE). 2016.
  3. B. Muñoz-Sánchez, J. Nieto-Maestre, I. Iparraguirre-Torres, J.A. Sánchez-García, J.E Julia and A. García-Romero. The Influence of Mixing Water on the Thermophysical Properties of Nanofluids based on Solar Salt and Silica Nanoparticles. (Poster). International Conference on Concentrating Solar Power and Chemical Energy Systems, SolarPACES 2015. AIP Conference Proceedings. Cape Town (South Africa). 2015.
  4. B. Muñoz-Sánchez, J. Nieto-Maestre, I. Iparraguirre-Torres, J.A. Sánchez-García, J.E Julia and A. García-Romero. Preparation of nanofluids based on solar salt and boehmite nanoparticles: Characterization of starting materials. (Poster). International Conference on Concentrating Solar Power and Chemical Energy Systems, SolarPACES 2015. AIP Conference Proceedings. Cape Town (South Africa). 2015.
  5. B. Muñoz-Sánchez, J. Nieto-Maestre, I. Iparraguirre-Torres and A. García-Romero. Nanoparticle size evaluation through Dynamic Light Scattering (DLS) technique in a nitrate salt doped with ceramic nanoparticles. (Oral). International Congress of Energy and Environment Engineering and Management (CIIEM15). París (Francia). 2015.
  6. B. Muñoz-Sánchez, J. Nieto-Maestre, I. Iparraguirre-Torres and A. García-Romero. Assessment of the determination of the Specific Heat of Molten Salt doped with Nanoparticles by means of the DSC technique. (Poster). International IEA-ECES Greenstock Conference 2015. Beijing (China). 2015.

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JP.STE.337:Methodologies of synthesis and characterization of novel nanoparticles, nanoPCM and nanofluids.
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