Sandra Cerqueira Pereira
Empresa Brasileira de Pesquisa Agropecuária
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Featured researches published by Sandra Cerqueira Pereira.
Biotechnology for Biofuels | 2015
Sandra Cerqueira Pereira; Larissa Maehara; Cristina Maria Monteiro Machado; Cristiane Sanchez Farinas
BackgroundIn the sugarcane industry, large amounts of lignocellulosic residues are generated, which includes bagasse, straw, and tops. The use of the whole sugarcane lignocellulosic biomass for the production of second-generation (2G) ethanol can be a potential alternative to contribute to the economic viability of this process. Here, we conducted a systematic comparative study of the use of the lignocellulosic residues from the whole sugarcane lignocellulosic biomass (bagasse, straw, and tops) from commercial sugarcane varieties for the production of 2G ethanol. In addition, the feasibility of using a mixture of these residues from a selected variety was also investigated.ResultsThe materials were pretreated with dilute acid and hydrolyzed with a commercial enzymatic preparation, after which the hydrolysates were fermented using an industrial strain of Saccharomyces cerevisiae. The susceptibility to enzymatic saccharification was higher for the tops, followed by straw and bagasse. Interestingly, the fermentability of the hydrolysates showed a different profile, with straw achieving the highest ethanol yields, followed by tops and bagasse. Using a mixture of the different sugarcane parts (bagasse-straw-tops, 1:1:1, in a dry-weight basis), it was possible to achieve a 55% higher enzymatic conversion and a 25% higher ethanol yield, compared to use of the bagasse alone. For the four commercial sugarcane varieties evaluated using the same experimental set of conditions, it was found that the variety of sugarcane was not a significant factor in the 2G ethanol production process.ConclusionsAssessment of use of the whole lignocellulosic sugarcane biomass clearly showed that 2G ethanol production could be significantly improved by the combined use of bagasse, straw, and tops, when compared to the use of bagasse alone. The lower susceptibility to saccharification of sugarcane bagasse, as well as the lower fermentability of its hydrolysates, can be compensated by using it in combination with straw and tops (sugarcane trash). Furthermore, given that the variety was not a significant factor for the 2G ethanol production process within the four commercial sugarcane varieties evaluated here, agronomic features such as higher productivity and tolerance of soil and climate variations can be used as the criteria for variety selection.
Bioresource Technology | 2016
Ariane Silveira Sbrice Pinto; Sandra Cerqueira Pereira; Marcelo Perencin de Arruda Ribeiro; Cristiane Sanchez Farinas
Rapid, efficient, and low-cost technologies for monitoring the fermentation process during second generation (2G) or cellulosic ethanol production are essential for the successful implementation of this process at the commercial scale. Here, the use of near-infrared (NIR) spectroscopy associated with partial least squares (PLS) regression was investigated as a tool for monitoring the production of 2G ethanol from lignocellulosic sugarcane residues including bagasse, straw, and tops. The spectral data was based on a set of 103 alcoholic fermentation samples. Models based on different pre-processing techniques were evaluated. The best root mean square error of prediction (RMSEP) values obtained in the external validation were around 3.02 g/L for ethanol and 6.60 g/L for glucose. The findings showed that the PLS-NIR methodology was efficient in accurately predicting the glucose and ethanol concentrations during the production of 2G ethanol, demonstrating potential for use in monitoring and control of large-scale industrial processes.
Biotechnology Progress | 2018
Larissa Maehara; Sandra Cerqueira Pereira; Adilson José da Silva; Cristiane Sanchez Farinas
The efficient use of renewable lignocellulosic feedstocks to obtain biofuels and other bioproducts is a key requirement for a sustainable biobased economy. This requires novel and effective strategies to reduce the cost contribution of the cellulolytic enzymatic cocktails needed to convert the carbohydrates into simple sugars, in order to make large‐scale commercial processes economically competitive. Here, we propose the use of the whole solid‐state fermentation (SSF) medium of mixed filamentous fungi as an integrated one‐pot strategy for on‐site enzyme production, biomass hydrolysis, and ethanol production. Ten different individual and mixed cultivations of commonly used industrial filamentous fungi (Aspergillus niger, Aspergillus oryzae, Trichoderma harzianum, and Trichoderma reesei) were performed under SSF and the whole media (without the extraction step) were used in the hydrolysis of pretreated sugarcane bagasse. The cocultivation of T. reesei with A. oryzae increased the amount of glucose released by around 50%, compared with individual cultivations. The release of glucose and reducing sugars achieved using the whole SSF medium was around 3‐fold higher than obtained with the enzyme extract. The addition of soybean protein (0.5% w/w) during the hydrolysis reaction further significantly improved the saccharification performance by blocking the lignin and avoiding unproductive adsorption of enzymes. The results of the alcoholic fermentation validated the overall integrated process, with a volumetric ethanol productivity of 4.77 g/L.h, representing 83.5% of the theoretical yield. These findings demonstrate the feasibility of the proposed one‐pot integrated strategy using the whole SSF medium of mixed filamentous fungi for on‐site enzymes production, biomass hydrolysis, and ethanol production.
Renewable Energy | 2016
Sandra Cerqueira Pereira; Larissa Maehara; Cristina Maria M Machado; Cristiane Sanchez Farinas
Bioenergy Research | 2016
L. A. Camargo; Sandra Cerqueira Pereira; A. C. Correa; Cristiane Sanchez Farinas; José Manoel Marconcini; Luiz H. C. Mattoso
XX Congresso Brasileiro de Engenharia Química | 2015
L. A. de Camargo; Sandra Cerqueira Pereira; Cristiane Sanchez Farinas; José Manoel Marconcini; Luiz H. C. Mattoso
XX Congresso Brasileiro de Engenharia Química | 2015
Sandra Cerqueira Pereira; Larissa Maehara; Cristina Maria Monteiro Machado; Cristiane Sanchez Farinas
Simpósio Nacional de Bioprocessos e Simpósio de Hidrólise Enzimática de Biomassa | 2015
Lais Angelice de Camargo; Sandra Cerqueira Pereira; Cristiane Sanchez Farinas; José Manoel Marconcini; Luiz H. C. Mattoso
Anais do Congresso Brasileiro de Engenharia Química | 2014
Ariane Silveira Sbrice Pinto; Sandra Cerqueira Pereira; Cristiane Sanchez Farinas; Marcelo Perencin de Arruda Ribeiro
Anais do Congresso Brasileiro de Engenharia Química | 2014
Sandra Cerqueira Pereira; Larissa Maehara; Cristiane Sanchez Farinas; Cristina Maria Monteiro Machado
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Cristina Maria Monteiro Machado
Empresa Brasileira de Pesquisa Agropecuária
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