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From the cell factory to the Biodiesel-Bioethanol integrated biorefinery: a systems approach applied to complex problems in micro and macroscales

Grant number: 16/10636-8
Support type:Program for Research on Bioenergy (BIOEN) - Thematic Grants
Duration: February 01, 2017 - January 31, 2022
Field of knowledge:Engineering - Chemical Engineering
Principal Investigator:Roberto de Campos Giordano
Grantee:Roberto de Campos Giordano
Home Institution: Centro de Ciências Exatas e de Tecnologia (CCET). Universidade Federal de São Carlos (UFSCAR). São Carlos , SP, Brazil
Co-Principal Investigators:Antonio José de Almeida Meirelles ; Cristiane Sanchez Farinas ; Everson Alves Miranda ; Heizir Ferreira de Castro ; Paulo Waldir Tardioli ; Raquel de Lima Camargo Giordano ; Silvio Silvério da Silva
Assoc. researchers:Adilson José da Silva ; Alice Medeiros de Lima ; Antonio Carlos Luperni Horta ; Antonio José Gonçalves da Cruz ; Cauê Ribeiro de Oliveira ; Cíntia Regina Sargo ; Eduardo Augusto Caldas Batista ; Felipe Fernando Furlan ; Gilson Campani Junior ; Guilherme José Maximo ; José Manoel Marconcini ; Júlio César dos Santos ; Klicia Araujo Sampaio ; Larissa de Freitas ; Luis Augusto Martins Ruotolo ; Luiz Henrique Capparelli Mattoso ; Marcel Otavio Cerri ; Marcelo Perencin de Arruda Ribeiro ; Patricia Caroline Molgero da Rós ; Pedro Carlos de Oliveira ; Ruy de Sousa Júnior ; Teresa Cristina Zangirolami ; Thais Suzane Milessi Esteves ; Thiago Faggion de Pádua ; Vitor Badiale Furlong ; Willian Kopp
Associated grant(s):18/25719-1 - 41st symposium on biotechnology for fuels and chemicals, AR.EXT
18/04832-4 - 28th European Symposium on Computer Aided Process Engineering (ESCAPE 28), AR.EXT
18/04163-5 - 26th European biomass conference and exhibition - EUBCE 2018, AR.EXT
17/00328-7 - Multi-user equipment granted in the thematic project 2016/10636-8: gas chromatography/mass spectrometry (GC/MS) system, AP.EMU
Associated scholarship(s):19/07902-6 - Development of a microbial cell factory for 3-hydroxypropionic production, BP.MS
19/08997-0 - Advanced oxidative processes as tools to lower the toxicity of vinasse aiming the cultivation of filamentous fungi, BP.IC
18/16689-1 - Cellulases production in biorefineries by solid-state fermentation in packed-bed bioreactors, BP.MS
+ associated scholarships 18/26097-4 - Development of a system for extraction of cellulases produced by solid-state fermentation in packed-bed bioreactor, BP.IC
18/20292-0 - Biosorption of inhibitors generated in the pretreatment of lignocellulosic biomass in biorefineries, BP.MS
18/14095-7 - Novel integrated strategies for economic beta-glucan production from agro-industrial residues and road map for commercialization in Brazil, BP.PD
18/10104-1 - Nanocomposites preparation from urea modified with glycerol for optimization of process of controlled release of nutrients, BP.PD
18/13882-5 - Production of ethanol and xylitol from mixtures of biomass by-products from South and North America, in a bubble column reactor operated in a fluidized bed mode, BP.IC
18/18849-6 - Pretreatment of sugarcane bagasse in repeated batches using hydrodynamic cavitation reactors, BP.IC
18/18586-5 - Implementation of multilinear interpolator as simplified models for reactions catalyzed by lipases, BP.IC
18/11887-0 - Influence of encapsulating conditions on alginate and nutrient supplementation on xylose fermentation by recombinant Saccharomyces Cerevisiae, BP.IC
18/13207-6 - Computational simulation of biodiesel production integrated to extractive distillation of ethanol with glycerol as solvent, BP.PD
18/14552-9 - Effect of xylooligosaccharides (XOS) obtained from sugarcane bagasse in the bactericidal action of Lactobacillus acidophylus and Lactobacillus rhamnosus GG, BP.IC
18/13610-5 - Optimization of hydrolysis of acid oils catalyzed by immobilized lipases, BP.IC
18/10899-4 - Utilization of residual lignocellulosic biomass from 2G ethanol processing to obtain nanocellulose via enzymatic route, BP.PD
18/01386-3 - Artificial lichens and the integration of products with high added value to a biorefinery, BP.DR
18/09692-6 - Reverse technical-economical analysis of the production of carotenoids and microbial oil by the Rhodotorula toruloides oleaginous yeast from the hemicellulosic fraction of sugarcane bagasse integrated into the bioreminaria biodiesel-bioethanol (1G-2G), BP.PD
18/05060-5 - Feasibility assessment of sugarcane-to-ethanol vinasse treated by oxidative processes as fungal culture medium, BP.IC
18/06696-0 - Production and purification of xylooligosaccharides (XOS) with high prebiotic properties from sugarcane bagasse, BP.PD
17/21173-1 - Mitigation of inhibitors generated in the pre-treatment of vegetal biomass: technical-economic-environmental impact of different processing routes in the biorefinery, BP.DR
16/22086-2 - Development of novel nanotechnology based pretreatment methods for lignocellulosic biomass, BP.PD
17/11086-4 - Development of innovative approaches for the main stages of 2G ethanol production: continuous pretreatment using hydrodynamic cavitation and evaluation of SSCF process with interconnected reactors, BP.PD
17/25644-9 - Study of crude glycerol addition to Rhodosporidium toruloides culture in hemicellulosic hydrolysate, BP.IC
17/12908-8 - Fungal cultivation on sugarcane vinasse and development of a platform for high-value products in the ethanol industry, BP.PD
17/13931-3 - Soybean protein as an additive in the enzymatic hydrolysis of vegetal biomass: development and techno-economic analysis of the process, BP.MS
17/13349-2 - Reverse techno-economic-environmental analysis of integrated biorefinery biodiesel-bioethanol (1G-2G) processes, BP.PD
17/09695-2 - Elucidation of the biosynthetic pathway of korormicin in Pseudoalteromonas JO10 and heterologous production in E. coli, BE.PQ
16/14852-7 - A sustainable solution against neglected tropical diseases using biosurfactants produced by yeasts in sugarcane bagasse hemicellulosic hydrolyzate, BP.PD - associated scholarships

Abstract

This proposal intends to face technological challenges put forth by a new conception of integrated biorefinery, taking advantage of synergies between the production processes of the two most important biofuels in the Brazilian context: 1st and 2nd generation bioethanol from sugarcane, and biodiesel from vegetable oils and of microbial origin. With this purpose, researchers with large experience in the area, coming from several Institutions in the State of São Paulo, have joined efforts: UFSCar (Chemical Engineering Department), UNICAMP (Faculties of Chemical and Food Engineering), USP (Lorena Engineering School), EMBRAPA Instrumentation (São Carlos). Liquid biofuels from renewable sources are the "backbone" of this biorefinery, based on biochemical routes, but higher aggregated-value molecules have their production studied as well, since they have an important contribution to the feasibility of the business as a hole. In an analogy with the oil industry, this biorefinery would be equivalent to a refinery + 1st-3rd generation petrochemical industrial complex. For the best of our knowledge, the exploitation of the numerous synergies that occur between the production processes of bioethanol and biodiesel is still incipient. The utilization of sub-products that nowadays are problematic, such as glycerol and the hemicellulose fraction of vegetable biomass, the production of totally renewable ethylic biodiesel, among several other examples, may have technically more efficient solutions if the production processes of the two biofuels are conceived in an integrated way, between the two biofuels and with the production of added-value molecules (such as 3-hydroxypropionic acid, aspartic acid, nanocellulose, carotenoids, biosurfactants, and so forth). All these research lines are interlinked by the techno-economic analysis of the processes, integrated within the biorefinery (seen as a macroscale, complex system), too. Advanced (Bio)process Systems Engineering tools will be applied, which allow feeding back targets to be met for the experimental researchers, in order to make the overall process economically feasible - at least according to a first, coarse analysis. In parallel, Biology Systems techniques are used to study the cell factory, seen as a microscale, complex system. Finally, solutions attained in microscale, leading for instance to a recombinant microorganism, will interact with the environment, within bioreactors - which are, in their turn, inserted in the macroscale process. In this way, (bio)process systems engineering methodologies may provide new insights for the analysis of micro- and macroscale phenomena. Such methodologies will help in the definition of the techno-economic viability of the industrial solutions - not forgetting aspects related to their environmental sustainability. (AU)

Articles published in Agência FAPESP Newsletter about the research grant
Studies seek better ways to use biomass  

Scientific publications (56)
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
FREITAS, JULIANA V.; NOGUEIRA, FRANCISCO G. E.; FARINAS, CRISTIANE S. Coconut shell activated carbon as an alternative adsorbent of inhibitors from lignocellulosic biomass pretreatment. INDUSTRIAL CROPS AND PRODUCTS, v. 137, p. 16-23, OCT 1 2019. Web of Science Citations: 1.
MAGALHAES, ANA M. S.; PEREIRA, ERICSEM; MEIRELLES, ANTONIO J. A.; SAMPAIO, KLICIA A.; MAXIMO, GUILHERME J. Proposing blends for improving the cold flow properties of ethylic biodiesel. FUEL, v. 253, p. 50-59, OCT 1 2019. Web of Science Citations: 0.
TERAN HILARES, R.; DIONIZIO, R. M.; PRADO, C. A.; AHMED, M. A.; DA SILVA, S. S.; SANTOS, J. C. Pretreatment of sugarcane bagasse using hydrodynamic cavitation technology: Semi-continuous and continuous process. Bioresource Technology, v. 290, OCT 2019. Web of Science Citations: 0.
BARBOSA MESQUITA, THIAGO JOSE; SARGO, CINTIA REGINA; FUZER NETO, JOSE ROBERTO; HIDALGO PAREDES, SHEYLA ALEXANDRA; GIORDANO, ROBERTO DE CAMPOS; LUPERNI HORTA, ANTONIO CARLOS; ZANGIROLAMI, TERESA CRISTINA. Metabolic fluxes-oriented control of bioreactors: a novel approach to tune micro-aeration and substrate feeding in fermentations. Microbial Cell Factories, v. 18, n. 1 SEP 4 2019. Web of Science Citations: 0.
FREITAS, JULIANA V.; RUOTOLO, LUIS AUGUSTO M.; FARINAS, CRISTIANE S. Adsorption of inhibitors using a CO2-activated sugarcane bagasse fly ash for improving enzymatic hydrolysis and alcoholic fermentation in biorefineries. FUEL, v. 251, p. 1-9, SEP 1 2019. Web of Science Citations: 1.
DA CONCEICAO, LEYVISON RAFAEL V.; REIS, CRISTIANO E. R.; DE LIMA, ROSEMAR; CORTEZ, DANIELA V.; DE CASTRO, HEIZIR F. Keggin-structure heteropolyacid supported on alumina to be used in trans/esterification of high-acid feedstocks. RSC ADVANCES, v. 9, n. 41, p. 23450-23458, AUG 4 2019. Web of Science Citations: 0.
VASCONCELLOS, VANESSA M.; FARINAS, CRISTIANE S.; XIMENES, EDUARDO; SLININGER, PATRICIA; LADISCH, MICHAEL. Adaptive laboratory evolution of nanocellulose-producing bacterium. Biotechnology and Bioengineering, v. 116, n. 8, p. 1923-1933, AUG 2019. Web of Science Citations: 0.
HERNANDEZ-PEREZ, ANDRES FELIPE; DE ARRUDA, PRISCILA VAZ; SENE, LUCIANE; DA SILVA, SILVIO SILVERIO; CHANDEL, ANUJ KUMAR; DE ALMEIDA FELIPE, MARIA DAS GRACAS. Xylitol bioproduction: state-of-the-art, industrial paradigm shift, and opportunities for integrated biorefineries. CRITICAL REVIEWS IN BIOTECHNOLOGY, v. 39, n. 7 JULY 2019. Web of Science Citations: 0.
MARTIN, LUCAS S.; CERON, ANNIE A.; MOLINARI, DEISE; DE MORAES, FLAVIO F.; ARROYO, PEDRO A.; DE CASTRO, HEIZIR F.; ZANIN, GISELLA M. Enhancement of lipase transesterification activity by immobilization on -cyclodextrin-based polymer. Journal of Sol-Gel Science and Technology, v. 91, n. 1, p. 92-100, JUL 2019. Web of Science Citations: 0.
SILVA, MATEUS V. C.; AGUIAR, LEANDRO G.; ROSA, CINTIA M. R.; DE CASTRO, HEIZIR F.; FREITAS, LARISSA. Kinetic study of isopropyl palmitate synthesis catalyzed by lipases immobilized on a magnetic copolymer support. Chemical Engineering Communications, JULY 2019. Web of Science Citations: 0.
RIBEIRO, CAUE; CARMO, MARCELO. Why nonconventional materials are answers for sustainable agriculture. MRS ENERGY & SUSTAINABILITY, v. 6, JUN 10 2019. Web of Science Citations: 0.
FURLONG, VITOR B.; CORREA, LUCIANO J.; GIORDANO, ROBERTO C.; RIBEIRO, MARCELO P. A. Fuzzy-Enhanced Modeling of Lignocellulosic Biomass Enzymatic Saccharification. ENERGIES, v. 12, n. 11 JUN 1 2019. Web of Science Citations: 0.
FERNANDES ANTUNES, FELIPE ANTONIO; CHANDEL, ANUJ KUMAR; TERAN-HILARES, RULY; INGLE, AVINASH P.; RAI, MAHENDRA; DOS SANTOS MILESSI, THAIS SUZANE; DA SILVA, SILVIO SILVERIO; DOS SANTOS, JULIO CESAR. Overcoming challenges in lignocellulosic biomass pretreatment for second-generation (2G) sugar production: emerging role of nano, biotechnological and promising approaches. 3 BIOTECH, v. 9, n. 6 JUN 2019. Web of Science Citations: 0.
RODRIGUES REIS, CRISTIANO E.; BENTO, HEITOR B. S.; CARVALHO, ANA K. F.; RAJENDRAN, ARAVINDAN; HU, BO; DE CASTRO, HEIZIR F. Critical applications of Mucor circinelloides within a biorefinery context. CRITICAL REVIEWS IN BIOTECHNOLOGY, v. 39, n. 4, p. 555-570, MAY 19 2019. Web of Science Citations: 0.
SHIOZAWA, SIMONE; FERREIRA, MARCELA C.; GONCALVES, DANIEL; MEIRELLES, ANTONIO J. A.; BATISTA, EDUARDO A. C. Liquid-Liquid Equilibrium Data for Systems Involving Triacylglycerols from (Soybean, Cottonseed, or Rice Bran) Oil plus Partial Acyiglycerols plus Anhydrous Ethanol at T=303.2 and 318.2 K. JOURNAL OF CHEMICAL AND ENGINEERING DATA, v. 64, n. 5, SI, p. 2153-2162, MAY 2019. Web of Science Citations: 0.
MUSO CACHUMBA, J. J.; TERAN HILARES, R.; BRUMANO, L. P.; MARCELINO, P. R. F.; ANTUNES, F. A. F.; SANTOS, J. C.; DA SILVA, S. S. Extracellular L-asparaginase production in solid-state fermentation by using sugarcane bagasse as support material. PREPARATIVE BIOCHEMISTRY & BIOTECHNOLOGY, v. 49, n. 4, p. 328-333, APR 21 2019. Web of Science Citations: 0.
TERAN HILARES, R.; RESENDE, J.; ORSI, C. A.; AHMED, M. A.; LACERDA, T. M.; DA SILVA, S. S.; SANTOS, J. C. Exopolysaccharide (pullulan) production from sugarcane bagasse hydrolysate aiming to favor the development of biorefineries. International Journal of Biological Macromolecules, v. 127, p. 169-177, APR 15 2019. Web of Science Citations: 4.
BATISTA, GUSTAVO; SOUZA, RENATA B. A.; PRATTO, BRUNA; DOS SANTOS-ROCHA, MARTHA S. R.; CRUZ, ANTONIO J. G. Effect of severity factor on the hydrothermal pretreatment of sugarcane straw. Bioresource Technology, v. 275, p. 321-327, MAR 2019. Web of Science Citations: 8.
CARVALHO, ANA KARINE F.; BENTO, HEITOR B. S.; REIS, CRISTIANO E. R.; DE CASTRO, HEIZIR F. Sustainable enzymatic approaches in a fungal lipid biorefinery based in sugarcane bagasse hydrolysate as carbon source. Bioresource Technology, v. 276, p. 269-275, MAR 2019. Web of Science Citations: 2.
FLORENCIO, CAMILA; BADINO, ALBERTO C.; FARINAS, CRISTIANE S. Addition of Soybean Protein Improves Saccharification and Ethanol Production from Hydrothermally Pretreated Sugarcane Bagasse. BioEnergy Research, v. 12, n. 1, p. 81-93, MAR 2019. Web of Science Citations: 1.
MARCELINO, P. R. F.; PERES, G. F. D.; TERAN-HILARES, R.; PAGNOCCA, F. C.; ROSA, C. A.; LACERDA, T. M.; DOS SANTOS, J. C.; DA SILVA, S. S. Biosurfactants production by yeasts using sugarcane bagasse hemicellulosic hydrolysate as new sustainable alternative for lignocellulosic biorefineries. INDUSTRIAL CROPS AND PRODUCTS, v. 129, p. 212-223, MAR 2019. Web of Science Citations: 1.
MILESSI-ESTEVES, THAIS S.; CORRADINI, FELIPE A. S.; KOPP, WILLIAN; ZANGIROLAMI, TERESA C.; TARDIOLI, PAULO W.; GIORDANO, ROBERTO C.; GIORDANO, RAQUEL L. C. An Innovative Biocatalyst for Continuous 2G Ethanol Production from Xylo-Oligomers by Saccharomyces cerevisiae through Simultaneous Hydrolysis, Isomerization, and Fermentation (SHIF). CATALYSTS, v. 9, n. 3 MAR 2019. Web of Science Citations: 0.
BRONDI, MARIANA G.; VASCONCELLOS, VANESSA M.; GIORDANO, ROBERTO C.; FARINAS, CRISTIANE S. Alternative Low-Cost Additives to Improve the Saccharification of Lignocellulosic Biomass. Applied Biochemistry and Biotechnology, v. 187, n. 2, p. 461-473, FEB 2019. Web of Science Citations: 4.
SILVEIRA, ERICK ABREU; MORENO-PEREZ, SONIA; BASSO, ALESSANDRA; SERBAN, SIMONA; PESTANA-MAMEDE, RITA; TARDIOLI, PAULO W.; SANCHEZ-FARINAS, CRISTIANE; CASTEJON, NATALIA; FERNANDEZ-LORENTE, GLORIA; ROCHA-MARTIN, JAVIER; GUISAN, JOSE M. Biocatalyst engineering of Thermomyces Lanuginosus lipase adsorbed on hydrophobic supports: Modulation of enzyme properties for ethanolysis of oil in solvent-free systems. Journal of Biotechnology, v. 289, p. 126-134, JAN 10 2019. Web of Science Citations: 2.
BENTO, HEITOR B. S.; CARVALHO, ANA K. F.; RODRIGUES REIS, CRISTIANO E.; DE CASTRO, HEIZIR F. Microbial biodiesel production: From sucrose-based carbon sources to alkyl esters via enzymatic transesterification. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, v. 121, n. B, p. 349-356, JAN 2019. Web of Science Citations: 2.
REIS, CRISTIANO E. R.; BENTO, HEITOR B. S.; ALVES, THIAGO M.; CARVALHO, ANA K. F.; DE CASTRO, HEIZIR F. Vinasse Treatment within the Sugarcane-Ethanol Industry Using Ozone Combined with Anaerobic and Aerobic Microbial Processes. ENVIRONMENTS, v. 6, n. 1 JAN 2019. Web of Science Citations: 1.
CARVALHO, ANA KARINE F.; BENTO, HEITOR B. S.; RIVALDI, JUAN D.; DE CASTRO, HEIZIR F. Direct transesterification of Mucor circinelloides biomass for biodiesel production: Effect of carbon sources on the accumulation of fungal lipids and biofuel properties. FUEL, v. 234, p. 789-796, DEC 15 2018. Web of Science Citations: 4.
BOAS, RENATA N. VILAS; CERON, ANNIE A.; BENTO, HEITOR B. S.; DE CASTRO, HEIZIR F. Application of an immobilized Rhizopus oryzae lipase to batch and continuous ester synthesis with a mixture of a lauric acid and fusel oil. BIOMASS & BIOENERGY, v. 119, p. 61-68, DEC 2018. Web of Science Citations: 1.
CERON, ANNIE A.; VILAS BOAS, RENATA N.; BIAGGIO, FRANCISCO C.; DE CASTRO, HEIZIR F. Synthesis of biolubricant by transesterification of palm kernel oil with simulated fusel oil: Batch and continuous processes. BIOMASS & BIOENERGY, v. 119, p. 166-172, DEC 2018. Web of Science Citations: 2.
RODRIGUES REIS, CRISTIANO E.; D'OTAVIANO, LARISSA OGERO; RAJENDRAN, ARAVINDAN; HU, BO. Co-Culture of Filamentous Feed-Grade Fungi and Microalgae as an Alternative to Increase Feeding Value of Ethanol Coproducts. FERMENTATION-BASEL, v. 4, n. 4 DEC 2018. Web of Science Citations: 1.
FERREIRA, MARCELA CRAVO; BESSA, LARISSA C. B. A.; ABREU, CHARLES R. A.; MEIRELLES, ANTONIO J. A.; CALDAS BATISTA, EDUARDO AUGUSTO. Liquid-liquid equilibrium of systems containing triolein plus (fatty acid/partial acylglycerols/ester) plus ethanol: Experimental data and UNIFAC modeling. Fluid Phase Equilibria, v. 476, n. B, p. 186-192, NOV 25 2018. Web of Science Citations: 2.
AMARAL-FONSECA, MURILO; KOPP, WILLIAN; CAMARGO GIORDANO, RAQUEL DE LIMA; FERNANDEZ-LAFUENTE, ROBERTO; TARDIOLI, PAULO WALDIR. Preparation of Magnetic Cross-Linked Amyloglucosidase Aggregates: Solving Some Activity Problems. CATALYSTS, v. 8, n. 11 NOV 2018. Web of Science Citations: 4.
COUTINHO, THAMARA C.; ROJAS, MAYERLENIS J.; TARDIOLI, PAULO W.; PARIS, ELAINE C.; FARINAS, CRISTIANE S. Nanoimmobilization of beta-glucosidase onto hydroxyapatite. International Journal of Biological Macromolecules, v. 119, p. 1042-1051, NOV 2018. Web of Science Citations: 3.
GUIMARAES, JOSE RENATO; GIORDANO, RAQUEL DE LIMA CAMARGO; FERNANDEZ-LAFUENTE, ROBERTO; TARDIOLI, PAULO WALDIR. Evaluation of Strategies to Produce Highly Porous Cross-Linked Aggregates of Porcine Pancreas Lipase with Magnetic Properties. Molecules, v. 23, n. 11 NOV 2018. Web of Science Citations: 3.
KLAIC, RODRIGO; GIROTO, AMANDA S.; GUIMARAES, GELTON G. F.; PLOTEGHER, FABIO; RIBEIRO, CAUE; ZANGIROLAMI, TERESA C.; FARINAS, CRISTIANE S. Nanocomposite of starch-phosphate rock bioactivated for environmentally-friendly fertilization. MINERALS ENGINEERING, v. 128, p. 230-237, NOV 2018. Web of Science Citations: 1.
SILVA, MATEUS V. C.; AGUIAR, LEANDRO G.; DE CASTRO, HEIZIR F.; FREITAS, LARISSA. Optimization of the parameters that affect the synthesis of magnetic copolymer styrene-divinilbezene to be used as efficient matrix for immobilizing lipases. WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, v. 34, n. 11 NOV 2018. Web of Science Citations: 2.
FERREIRA, MARCELA CRAVO; BESSA, LARISSA C. B. A.; MEIRELLES, ANTONIO J. A.; CALDAS BATISTA, EDUARDO AUGUSTO. Liquid-liquid equilibrium during ethanolysis of soybean oil. Fluid Phase Equilibria, v. 473, p. 286-293, OCT 15 2018. Web of Science Citations: 5.
CORRADINI, FELIPE A. S.; BALDEZ, THAIS O.; MILESSI, THAIS S. S.; TARDIOLI, PAULO W.; FERREIRA, ANTONIO G.; GIORDANO, ROBERTO DE CAMPOS; GIORDANO, RAQUEL DE L. C. Eucalyptus xylan: An in-house-produced substrate for xylanase evaluation to substitute birchwood xylan. Carbohydrate Polymers, v. 197, p. 167-173, OCT 1 2018. Web of Science Citations: 2.
MEIRELLES, ANTONIO J. A.; BIASI, LILIAN C. K.; BATISTA, FABIO R. M.; BATISTA, EDUARDO A. C. A simplified and general approach to absorption and stripping with parallel streams. Separation and Purification Technology, v. 203, p. 93-110, SEP 12 2018. Web of Science Citations: 1.
CARVALHO, ANA KARINE F.; BENTO, HEITOR B. S.; IZARIO FILHO, HELD J.; DE CASTRO, HEIZIR F. Approaches to convert Mucor circinelloides lipid into biodiesel by enzymatic synthesis assisted by microwave irradiations. RENEWABLE ENERGY, v. 125, p. 747-754, SEP 2018. Web of Science Citations: 7.
KLAIC, RODRIGO; PLOTEGHER, FABIO; RIBEIRO, CAUE; ZANGIROLAMI, TERESA C.; FARINAS, CRISTIANE S. A Fed-Batch Strategy Integrated with Mechanical Activation Improves the Solubilization of Phosphate Rock by Aspergillus niger. ACS SUSTAINABLE CHEMISTRY & ENGINEERING, v. 6, n. 9, p. 11326-11334, SEP 2018. Web of Science Citations: 1.
LONGATI, ANDREZA A.; LINO, ANDERSON R. A.; GIORDANO, ROBERTO C.; FURLAN, FELIPE F.; CRUZ, ANTONIO J. G. Defining research & development process targets through retro-technoeconomic analysis: The sugarcane biorefinery case. Bioresource Technology, v. 263, p. 1-9, SEP 2018. Web of Science Citations: 2.
BONDANCIA, THALITA J.; CORREA, LUCIANO J.; CRUZ, ANTONIO J. G.; BADINO, ALBERTO C.; MATTOSO, LUIZ HENRIQUE C.; MARCONCINI, JOSE MANOEL; FARINAS, CRISTIANE S. Enzymatic production of cellulose nanofibers and sugars in a stirred-tank reactor: determination of impeller speed, power consumption, and rheological behavior. Cellulose, v. 25, n. 8, p. 4499-4511, AUG 2018. Web of Science Citations: 2.
RAMOS, MARGARITA D.; MIRANDA, LETICIA P.; GIORDANO, RAQUEL L. C.; FERNANDEZ-LAFUENTE, ROBERTO; KOPP, WILLIAM; TARDIOLI, PAULO W. 1,3-Regiospecific Ethanolysis of Soybean Oil Catalyzed by Crosslinked Porcine Pancreas Lipase Aggregates. BIOTECHNOLOGY PROGRESS, v. 34, n. 4, p. 910-920, JUL-AUG 2018. Web of Science Citations: 6.
MARTIN, LUCAS S.; CERON, ANNIE; OLIVEIRA, PEDRO C.; ZANIN, GISELLA M.; DE CASTRO, HEIZIR F. Different organic components on silica hybrid matrices modulate the lipase inhibition by the glycerol formed in continuous transesterification reactions. JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, v. 62, p. 462-470, JUN 25 2018. Web of Science Citations: 6.
MAEHARA, LARISSA; PEREIRA, SANDRA C.; SILVA, ADILSON J.; FARINAS, CRISTIANE S. One-pot strategy for on-site enzyme production, biomass hydrolysis, and ethanol production using the whole solid-state fermentation medium of mixed filamentous fungi. BIOTECHNOLOGY PROGRESS, v. 34, n. 3, p. 671-680, MAY-JUN 2018. Web of Science Citations: 1.
SAMPAIO NETO, OSCAR ZALLA; CALDAS BATISTA, EDUARDO AUGUSTO; DE ALMEIDA MEIRELLES, ANTONIO JOSE. The employment of ethanol as solvent to extract Brazil nut oil. JOURNAL OF CLEANER PRODUCTION, v. 180, p. 866-875, APR 10 2018. Web of Science Citations: 1.
DE LIMA, LIONETE NUNES; MENDES, ADRIANO AGUIAR; FERNANDEZ-LAFUENTE, ROBERTO; TARDIOLI, PAULO WALDIR; CAMARGO GIORDANO, RAQUEL DE LIMA. Performance of Different Immobilized Lipases in the Syntheses of Short- and Long-Chain Carboxylic Acid Esters by Esterification Reactions in Organic Media. Molecules, v. 23, n. 4 APR 2018. Web of Science Citations: 2.
MAROLDI, M. M. C.; VASCONCELLOS, V. M.; LACAVA, P. T.; FARINAS, C. S. Potential of Mangrove-Associated Endophytic Fungi for Production of Carbohydrolases with High Saccharification Efficiency. Applied Biochemistry and Biotechnology, v. 184, n. 3, p. 806-820, MAR 2018. Web of Science Citations: 2.
FARINAS, CRISTIANE S.; MARCONCINI, JOSE MANOEL; MATTOSO, LUIZ HENRIQUE C. Enzymatic Conversion of Sugarcane Lignocellulosic Biomass as a Platform for the Production of Ethanol, Enzymes and Nanocellulose. JOURNAL OF RENEWABLE MATERIALS, v. 6, n. 2, p. 203-216, FEB 2018. Web of Science Citations: 2.
PINTO, ARIANE S. S.; RIBEIRO, MARCELO P. A.; FARINAS, CRISTIANE S. Fast spectroscopic monitoring of inhibitors in the 2G ethanol process. Bioresource Technology, v. 250, p. 148-154, FEB 2018. Web of Science Citations: 6.
SQUINCA, PAULA; BADINO, ALBERTO C.; FARINAS, CRISTIANE S. A closed-loop strategy for endoglucanase production using sugarcane bagasse liquefied by a home-made enzymatic cocktail. Bioresource Technology, v. 249, p. 976-982, FEB 2018. Web of Science Citations: 1.
FREITAS, JULIANA V.; FARINAS, CRISTIANE S. Sugarcane Bagasse Fly Ash as a No-Cost Adsorbent for Removal of Phenolic Inhibitors and Improvement of Biomass Saccharification. ACS SUSTAINABLE CHEMISTRY & ENGINEERING, v. 5, n. 12, p. 11727-11736, DEC 2017. Web of Science Citations: 4.
DEZAM, A. P. G.; VASCONCELLOS, V. M.; LACAVA, P. T.; FARINAS, C. S. Microbial production of organic acids by endophytic fungi. BIOCATALYSIS AND AGRICULTURAL BIOTECHNOLOGY, v. 11, p. 282-287, JUL 2017. Web of Science Citations: 4.
CAMILA FLORENCIO; ALBERTO COLLI BADINO; CRISTIANE SANCHEZ FARINAS. DESAFIOS RELACIONADOS À PRODUÇÃO E APLICAÇÃO DAS ENZIMAS CELULOLÍTICAS NA HIDRÓLISE DA BIOMASSA LIGNOCELULÓSICA. Química Nova, v. 40, n. 9, p. -, Set. 2017.
VESCOVI, VINICIUS; CARMELLO DOS SANTOS, JESSICA BRAVIN; TARDIOLI, PAULO WALDIR. Porcine pancreatic lipase hydrophobically adsorbed on octyl-silica: A robust biocatalyst for syntheses of xylose fatty acid esters. BIOCATALYSIS AND BIOTRANSFORMATION, v. 35, n. 4, p. 298-305, 2017. Web of Science Citations: 2.
Academic Publications
(References retrieved automatically from State of São Paulo Research Institutions)

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