Begoña Fernández
University of Oviedo
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Publication
Featured researches published by Begoña Fernández.
Journal of Hazardous Materials | 2010
Julia Ayala; Begoña Fernández; José Pedro Sancho; Purificación García
Electrofilter powders, a by-product of the Bayer process for the production of alumina from bauxite, were leached with sulphuric acid to dissolve gibbsite and transition aluminas, thus obtaining a commercial aluminium sulphate solution and a solid residue. This residue is treated again under more drastic conditions with sulphuric acidic in a furnace at a higher temperature, is then leached with water and filtered, a small amount of solid remaining (alpha-alumina). The liquid is a highly acidic aluminium sulphate solution which does not fulfil commercial grade specifications; the liquor is accordingly treated with potassium hydroxide or ammonium hydroxide to obtain potassium or ammonium alum. Experimental tests were conducted to investigate the synthesis of alum by crystallization. The effects on alum formation of various operating conditions, including the amount of potassium or ammonium hydroxide, temperature and seed alum dosage, were examined. The crystallization process was found to be quite effective in obtaining alum.
Journal of Marketing Channels | 2013
Begoña Fernández; Begoña González-Busto; Yolanda Álvarez Castaño
A franchise company is a hybrid or plural form, typically established by both company-owned units and franchised units, where the latter receive an entire business format. We explore the reasons that explain franchise chain growth and how franchising firms choose the extent of company ownership. We build a dynamic model including contractual and system variables such as fees, royalties, investment, chain size, or trade name recognition. By means of this model, we go on to analyze the dynamic behavior of a chain and how its ownership structure evolves over time as a result of the interaction of the variables mentioned above. Using theories from strategic management and agency models, it is argued that franchise chains pursue a balanced growth that lead to superior performance.
Environmental Technology | 2018
Julia Ayala; Begoña Fernández
ABSTRACT The removal of heavy metals from mining waste leachate by spent coffee grounds has been investigated. In synthetic solutions, metal uptake was studied in batch adsorption experiments as a function of pH, contact time, initial metal concentration, adsorbent concentration, particle size, and the effect of co-ions (Na, K, Ca, Mg, Cu, Cd, Ni, Zn). Results showed that adsorption was significantly affected by pH, showing the highest affinity within a pH range of 5–7. Sorption of heavy metals reached equilibrium in 3 h. Removal percentages of metals ions increased with increasing dosage. Particle size did not have a significant influence on metal uptake. The adsorption of heavy metals was found to fit Langmuir and Freundlich isotherms. Maximum Zn, Cd and Ni uptake values were calculated as 10.22, 5.96 and 7.51 mg/g, respectively, using unwashed coffee grounds (UCG) as the adsorbent and 5.36, 4.28 and 4.37 mg/g when employing washed coffee grounds as the adsorbent. The presence of co-ions inhibited the uptake of heavy metals, divalent ions having a more negative effect than monovalent ions. The results obtained in the experiments with mining waste leachate showed that UCG is effective in removing heavy metals.
Applied Clay Science | 2008
José Pedro Sancho; Oscar Jaime Restrepo; Purificación García; Julia Ayala; Begoña Fernández; L.F. Verdeja
Hydrometallurgy | 2009
J.P. Sancho; Julia Ayala; M.P. García; Begoña Fernández
JOM | 2015
Julia Ayala; Begoña Fernández
Revista De Metalurgia | 2009
J. P. Sancho; Begoña Fernández; J. Ayala; M. P. García; A. Lavandeira
Hydrometallurgy | 2015
Julia Ayala; Begoña Fernández
Revista De Metalurgia | 1998
Juan Jimenez; Begoña Fernández; J. Sainz Ayala; J. Monchón; A. Formoso; F. Bueno
Dyna | 2012
Liliana Marcela Tamayo; Christian Goñi; Íñigo Ruiz-Bustinza; Mª Florentina Barbés; Begoña Fernández; Érika Marinas; Miguel Ángel Barbés; Julia Ayala