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Dive into the research topics where Pedro López-Aranguren is active.

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Featured researches published by Pedro López-Aranguren.


RSC Advances | 2015

Hybrid aminopolymer–silica materials for efficient CO2 adsorption

Pedro López-Aranguren; Santiago Builes; Julio Fraile; Ana M. López-Periago; Lourdes F. Vega; Concepción Domingo

The present work focuses on the development of a new eco-efficient chemical method for the polymerization of aziridine to hyperbranched polyethyleneimine (PEI) into mesoporous silica by using compressed CO2 as a solvent, reaction medium and catalyst. PEI was in situ grafted into MCM-41 and silica gel substrates, with pore diameters of 3.8 and 9.0 nm, respectively. The optimal polymerization conditions were found by varying the reaction pressure (1.0–10 MPa), temperature (25–45 °C) and time (20–400 min). The thermal stability analysis indicated that aminopolymer chains were covalently attached on the amorphous silica surface. The described compressed CO2 route for the synthesis of high amine content hybrid products (6–8 mmolN g−1) is a very fast method, with processing times in the order of few minutes even at very low working pressures (1.0 MPa), being a step forward in the design of efficient hybrid aminopolymer nanocomposites for CO2 capture. The adsorptive behavior of the prepared hybrid materials was experimentally established by recording the N2 (−196 °C) and CO2 (25, 50 and 75 °C) adsorption isotherms. Results were compared to molecular simulation studies performed using Grand Canonical Monte Carlo for either N2 or CO2 adsorbed on amino modified MCM-41, thus helping to elucidate the predominant PEI configuration present in the functionalized materials.


Microporous and Mesoporous Materials | 2012

Sorption of tryalkoxysilane in low-cost porous silicates using a supercritical CO2 method

Pedro López-Aranguren; Javier Saurina; Lourdes F. Vega; Concepción Domingo


Journal of Supercritical Fluids | 2014

Regenerable solid CO2 sorbents prepared by supercritical grafting of aminoalkoxysilane into low-cost mesoporous silica

Pedro López-Aranguren; Julio Fraile; Lourdes F. Vega; Concepción Domingo


Energy & Fuels | 2015

Analysis of CO2 Adsorption in Amine-Functionalized Porous Silicas by Molecular Simulations

Santiago Builes; Pedro López-Aranguren; Julio Fraile; Lourdes F. Vega; Concepción Domingo


Journal of Physical Chemistry C | 2012

Alkylsilane-Functionalized Microporous and Mesoporous Materials: Molecular Simulation and Experimental Analysis of Gas Adsorption

Santiago Builes; Pedro López-Aranguren; Julio Fraile; Lourdes F. Vega; Concepción Domingo


Chemical Engineering Journal | 2013

CO2 capture efficiency and carbonation/calcination kinetics of micro and nanosized particles of supercritically precipitated calcium carbonate

Ana M. López-Periago; Julio Fraile; Pedro López-Aranguren; Lourdes F. Vega; Concepción Domingo


Industrial & Engineering Chemistry Research | 2014

Understanding the Performance of New Amine-Functionalized Mesoporous Silica Materials for CO2 Adsorption

Pedro López-Aranguren; Santiago Builes; Julio Fraile; Lourdes F. Vega; Concepción Domingo


Chemical Communications | 2013

A new method using compressed CO2 for the in situ functionalization of mesoporous silica with hyperbranched polymers.

Pedro López-Aranguren; Lourdes F. Vega; Concepción Domingo


Journal of Polymer Science Part A | 2014

A Novel Solventless Coating Method to Graft Low-Molecular Weight Polyethyleneimine on Silica Fine Powders

Nerea Murillo-Cremaes; Pedro López-Aranguren; Lourdes F. Vega; Javier Saurina; Anna Roig; Concepción Domingo


Aiche Journal | 2012

An equation of state for pore‐confined fluids

Pedro López-Aranguren; Lourdes F. Vega; Concepción Domingo; E. H. Chimowitz

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Concepción Domingo

Institute of Cost and Management Accountants of Bangladesh

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Lourdes F. Vega

University of Science and Technology

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Julio Fraile

Spanish National Research Council

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Ana M. López-Periago

Spanish National Research Council

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Carlos A. García-González

Spanish National Research Council

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Nerea Murillo-Cremaes

Spanish National Research Council

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