Ariana M.A. Pintor
Faculdade de Engenharia da Universidade do Porto
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Publication
Featured researches published by Ariana M.A. Pintor.
Water Research | 2012
Ariana M.A. Pintor; Catarina I.A. Ferreira; Joana P.C. Pereira; Patrícia Correia; Susana P. Silva; Vítor J.P. Vilar; Cidália M.S. Botelho; Rui A.R. Boaventura
Cork powder and granules are the major subproducts of the cork industry, one of the leading economic activities in Portugal and other Mediterranean countries. Many applications have been envisaged for this product, from cork stoppers passing through the incorporation in agglomerates and briquettes to the use as an adsorbent in the treatment of gaseous emissions, waters and wastewaters. This paper aims at reviewing the state of the art on the properties of cork and cork powder and their application in adsorption technologies. Cork biomass has been used on its original form as biosorbent for heavy metals and oils, and is also a precursor of activated carbons for the removal of emerging organic pollutants in water and VOCs in the gas phase. Through this literature review, different potential lines of research not yet explored can be more easily identified.
Science of The Total Environment | 2018
Ariana M.A. Pintor; Bárbara R.C. Vieira; Sílvia C.R. Santos; Rui A.R. Boaventura; Cidália M.S. Botelho
There is a growing demand for low-cost, effective adsorbents for arsenic removal from water intended for human consumption in affected rural areas. This work presents a novel adsorbent based on the coating of cork granulates with iron (oxy)hydroxides for the removal of As(III) and As(V) from aqueous matrices. A 26-3 fractional factorial design was used to determine the optimal conditions for the iron coating procedure. The optimal adsorbent was produced by coating low-density cork granulates with iron (oxy)hydroxides precipitated from a 0.05 mol L-1 FeCl3 solution at pH 7, 20 °C temperature and 20 g L-1 S/L ratio, in a single coating cycle. Arsenic adsorption was found to be dependent on pH, with inverse trends for As(III) and As(V). The iron leaching from the adsorbent was also taken into account to select the optimum pH, which was pH 9 for As(III) and pH 3 for As(V). Adsorption kinetics were better described by the pseudo-second-order model for As(III) and the Elovich model for As(V). Equilibrium was reached in 16 h for As(III) at pH 9 and 48 h for As(V) at pH 3. The isotherm models indicated different adsorption behaviours for As(III) and As(V), with better fits by Langmuir and Freundlich models, respectively. The Langmuir maximum adsorption capacity of iron-coated cork adsorbent for As(III) at pH 9 was 4.9 ± 0.3 mg g-1. However, at low equilibrium concentrations, As(V) adsorption was higher than As(III) (e.g. 2.1 ± 0.2 mg g-1 in equilibrium with 0.16 ± 0.03 mg L-1). Speciation studies and XPS analyses indicated that no substantial oxidation of As(III) to As(V) occurred during the adsorption process. The study shows that iron coating can enhance both arsenate and arsenite adsorption capacity of cork materials, leading to an innovative natural adsorbent with high resilience and stability, with possible application in arsenic remediation.
Solar Energy | 2011
Vítor J.P. Vilar; Lívia X. Pinho; Ariana M.A. Pintor; Rui A.R. Boaventura
Chemical Engineering Journal | 2016
Ariana M.A. Pintor; Vítor J.P. Vilar; Cidália M.S. Botelho; Rui A.R. Boaventura
Solar Energy | 2011
Ariana M.A. Pintor; Vítor J.P. Vilar; Rui A.R. Boaventura
Industrial & Engineering Chemistry Research | 2013
Ariana M.A. Pintor; Ana Silvestre-Albero; Catarina I.A. Ferreira; Joana P.C. Pereira; Vítor J.P. Vilar; Cidália M.S. Botelho; F. Rodríguez-Reinoso; Rui A.R. Boaventura
Journal of Environmental Management | 2017
Bárbara R.C. Vieira; Ariana M.A. Pintor; Rui A.R. Boaventura; Cidália M.S. Botelho; Sílvia C.R. Santos
Chemical Engineering Journal | 2016
Renata S. Souza; Paulo S.S. Porto; Ariana M.A. Pintor; G. Ruphuy; M.F. Costa; Rui A.R. Boaventura; Vítor J.P. Vilar
Chemical Engineering Journal | 2015
Ariana M.A. Pintor; Andreia G. Martins; Renata S. Souza; Vítor J.P. Vilar; Cidália M.S. Botelho; Rui A.R. Boaventura
Clean Technologies and Environmental Policy | 2014
Ariana M.A. Pintor; Vítor J.P. Vilar; Cidália M.S. Botelho; Rui A.R. Boaventura