Cataldo De Blasio
Cataldo De Blasio
Researcher/Teacher Aalto University
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Cited by
Cited by
A novel biorefinery integration concept for lignocellulosic biomass
K Özdenkçi, C De Blasio, HR Muddassar, K Melin, P Oinas, J Koskinen, ...
Energy Conversion and Management 149, 974-987, 2017
A study on supercritical water gasification of black liquor conducted in stainless steel and nickel‐chromium‐molybdenum reactors
C De Blasio, G Lucca, K Özdenkci, M Mulas, K Lundqvist, J Koskinen, ...
Journal of Chemical Technology & Biotechnology 91 (10), 2664-2678, 2016
Modeling limestone reactivity and sizing the dissolution tank in wet flue gas desulfurization scrubbers
C Carletti, F Bjondahl, C De Blasio, J Ahlbeck, L Järvinen, T Westerlund
Environmental Progress & Sustainable Energy 32 (3), 663-672, 2013
Use of carbonate rocks for flue gas desulfurization: Reactive dissolution of limestone particles
C De Blasio, E Mäkilä, T Westerlund
Applied energy 90 (1), 175-181, 2012
Concerning operational aspects in supercritical water gasification of kraft black liquor
C De Blasio, S De Gisi, A Molino, M Simonetti, M Santarelli, ...
Renewable energy 130, 891-901, 2019
Liquid mixing dynamics in slurry stirred tanks based on electrical resistance tomography
C Carletti, G Montante, C De Blasio, A Paglianti
Chemical Engineering Science 152, 478-487, 2016
The BioSCWG project: Understanding the trade-offs in the process and thermal design of hydrogen and synthetic natural gas production
M Magdeldin, T Kohl, C De Blasio, M Järvinen, S Won Park, R Giudici
Energies 9 (10), 838, 2016
Optimization of a wet flue gas desulfurization scrubber through mathematical modeling of limestone dissolution experiments
C Carletti, CD Blasio, E Mäkilä, J Salonen, T Westerlund
Industrial & Engineering Chemistry Research 54 (40), 9783-9797, 2015
A Novel Approach for Numerical Modeling of the CAS-OB Process: Process Model for the Heat-Up Stage
M Järvinen, A Kärnä, VV Visuri, P Sulasalmi, EP Heikkinen, K Pääskylä, ...
ISIJ International 54 (10), 2263-2272, 2014
Supercritical water gasification of biomass
C De Blasio, M Järvinen
Elsevier, 2017
Revisiting the dissolution kinetics of limestone–experimental analysis and modeling
C Carletti, H Grénman, C De Blasio, E Mäkilä, J Salonen, DY Murzin, ...
Journal of Chemical Technology & Biotechnology 91 (5), 1517-1531, 2016
Law of mass action based kinetic approach for the modelling of parallel mass transfer limited reactions: application to metallurgical systems
M Järvinen, VV Visuri, EP Heikkinen, A Kärnä, P Sulasalmi, C De Blasio, ...
ISIJ International, ISIJINT-2016-241, 2016
Ultrasonic enhanced limestone dissolution: Experimental and mathematical modeling
C Carletti, C De Blasio, M Miceli, R Pirone, T Westerlund
Chemical Engineering and Processing: Process Intensification 118, 26-36, 2017
On modeling the dissolution of sedimentary rocks in acidic environments. An overview of selected mathematical methods with presentation of a case study
C De Blasio, C Carletti, T Westerlund, M Järvinen
Journal of Mathematical Chemistry 51 (8), 2120-2143, 2013
Modeling the Hydrodynamics and Mass-Transfer Phenomena for Sedimentary Rocks Used for Flue Gas Desulfurization. The Effect of Temperature.
C De Blasio, J Ahlbeck, T Westerlund
Computer Aided Chemical Engineering 27, 411-416, 2009
Techno-economic feasibility of supercritical water gasification of black liquor
K Özdenkçi, C De Blasio, G Sarwar, K Melin, J Koskinen, V Alopaeus
Energy 189, 116284, 2019
Fundamentals of Biofuels Engineering and Technology
C De Blasio
Springer, 2019
Employing a step-wise titration method under semi-slow reaction regime for evaluating the reactivity of limestone and dolomite in acidic environment
C De Blasio, C Carletti, A Lundell, VV Visuri, T Kokkonen, T Westerlund, ...
Minerals Engineering 86, 43-58, 2016
Thermogravimetric Analysis (TGA)
C De Blasio
Fundamentals of Biofuels Engineering and Technology, 91-102, 2019
Reactive dissolution of sedimentary rocks in flue gas desulfurization: modeling and experimental investigation
C De Blasio
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