Antonio Carlos Ferreira Batista
Federal University of Uberlandia
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Featured researches published by Antonio Carlos Ferreira Batista.
BioMed Research International | 2011
Marcelo Firmino de Oliveira; Andressa Tironi Vieira; Antonio Carlos Ferreira Batista; Hugo de Souza Rodrigues; Nelson Ramos Stradiotto
A simple, fast, and complete route for the production of methylic and ethylic biodiesel from tucum oil is described. Aliquots of the oil obtained directly from pressed tucum (pulp and almonds) were treated with potassium methoxide or ethoxide at 40°C for 40 min. The biodiesel form was removed from the reactor and washed with 0.1 M HCl aqueous solution. A simple distillation at 100°C was carried out in order to remove water and alcohol species from the biodiesel. The oxidative stability index was obtained for the tucum oil as well as the methylic and ethylic biodiesel at 6.13, 2.90, and 2.80 h, for storage times higher than 8 days. Quality control of the original oil and of the methylic and ethylic biodiesels, such as the amount of glycerin produced during the transesterification process, was accomplished by the TLC, GC-MS, and FT-IR techniques. The results obtained in this study indicate a potential biofuel production by simple treatment of tucum, an important Amazonian fruit.
Chemistry and Technology of Fuels and Oils | 2012
Karen A. Borges; Antonio Carlos Ferreira Batista; Hugo de Souza Rodrigues; Manuel Hernandes Terrones; Andressa Tironi Vieira; Marcelo Firmino de Oliveira
We studied the physical and chemical characteristics of methyl and ethyl esters (biodiesel) produced by transesterification of pequi oil (Caryocar brasiliensis Camb.) in the presence of potassium hydroxide. The oil extracted from pequi seed comprises 60% of the fruit content. Such characteristics as density, acidity, viscosity, and carbon residue of the biodiesel meet ANP (Brazilian National Petroleum Agency) standards. Our tests demonstrated the feasibility of utilizing pequi oil for biodiesel production.
Molecules | 2017
Francielle Silva; Wilson Galvão de Morais Júnior; Cleuzilene Vieira da Silva; Andressa Tironi Vieira; Antonio Carlos Ferreira Batista; Anizio M. Faria; Rosana Maria Nascimento de Assunção
The use of polymers as supports for enzyme immobilization is a strategy that enables to remove the enzymes from a chemical reaction and improve their efficiency in catalytic processes. In this work, cellulose triacetate (CTA) was used for physical adsorption of phospholipase Lecitase ultra (LU). CTA is more hydrophobic than cellulose, shows good performance in the lipases immobilization being a good candidate for immobilization of phospholipases. We investigated the immobilization of LU in CTA, the stability of the immobilized enzyme (CTA-LU) and the performance of CTA-LU using soybean oil as a substrate. LU was efficiently immobilized in CTA reaching 97.1% in 60 min of contact with an enzymatic activity of 975.8 U·g−1. The CTA-LU system presents good thermal stability, being superior of the free enzyme and increase of the catalytic activity in the whole range of pH values. The difference observed for immobilized enzyme compared to free one occurs because of the interaction between the enzyme and the polymer, which stabilizes the enzyme. The CTA-LU system was used in the transesterification of soybean oil with methanol, with the production of fatty acid methyl esters. The results showed that CTA-LU is a promising system for enzymatic reactions.
Chemistry and Technology of Fuels and Oils | 2012
Antonio Carlos Ferreira Batista; Hugo de Souza Rodrigues; Nilson Roberto Pereira; Manuel Gonzalo Hernández-Terrones; Andressa Tironi Vieira; Marcelo Firmino de Oliveira
We describe production of methyl and ethyl esters derived from baru oil (Dipteryx alata Vog.). Water and alcohols are removed from the biodiesel obtained by simple distillation. We study the acidity, density, iodine number, viscosity, water content, peroxide number, external appearance, and saponification number of the oil, its methyl and ethyl esters (biodiesels) and their blends (B5, B10, B15, B20, and B30) with commercial diesel fuel.
Fuel | 2014
Tiago Almeida Silva; Rosana Maria Nascimento de Assunção; Andressa Tironi Vieira; Marcelo Firmino de Oliveira; Antonio Carlos Ferreira Batista
Energy | 2014
Karen A. Borges; André L. Squissato; Douglas Queiroz Santos; Waldomiro Borges Neto; Antonio Carlos Ferreira Batista; Tiago Almeida Silva; Andressa Tironi Vieira; Marcelo Firmino de Oliveira; Manuel Gonzalo Hernández-Terrones
Journal of Biofuels | 2011
Flaysner Magayver Portela; Antonio Carlos Ferreira Batista; Manuel Hernandes Terrones; Andressa Tironi Vieira; Marcelo Firmino de Oliveira
Sensor Letters | 2018
Izabel Cristina Eleotério; Marco Antonio Balbino; José Fernando de Andrade; Adelir Aparecida Saczk; Leonardo Luiz Okumura; Bruce R. McCord; Antonio Carlos Ferreira Batista; Marcelo Firmino de Oliveira
Journal of Electrochemical Science and Engineering | 2018
Izabel Cristina Eleotério; Marco Aantonio Balbino; José Fernando de Andrade; Bruno Ferreira; Adelir Aparecida Saczk; Leonardo Luiz Okumura; Antonio Carlos Ferreira Batista; Marcelo Firmino de Oliveira
Archive | 2013
Antonio Carlos Ferreira Batista; Tiago Almeida Silva; Andressa Tironi Vieira; Marcelo Firmino de Oliveira