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nicola.verdone@uniroma1.it
Nicola Verdone
Professore Ordinario
Struttura:
DIPARTIMENTO DI INGEGNERIA CHIMICA, MATERIALI, AMBIENTE
E-mail:
nicola.verdone@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Publications
Title
Published on
Year
The electrification of conventional industrial processes. The use of mechanical vapor compression in an EtOH–water distillation tower
ENERGIES
2021
Validazione sperimentale dei modelli cinetici descrittivi dei sistemi termochimici selezionati e progettazione di massima dell’unità di stoccaggio per integrazione con utenze reali; densità di accumulo effettiva e stima preliminare dei costi
2021
Nitrate green removal by fixed-bed columns packed with waste biomass. Modelling and friction parameter estimation
CHEMICAL ENGINEERING RESEARCH & DESIGN
2020
Intensified water denitrification by means of a spinning disk reactor and stirred tank in series. Kinetic modelling and computational fluid dynamics
JOURNAL OF WATER PROCESS ENGINEERING
2020
Modeling and economic evaluation of carbon capture and storage technologies integrated into synthetic natural gas and power-to-gas plants
APPLIED ENERGY
2020
Production of metallic iron nanoparticles in a baffled stirred tank reactor. Optimization via computational fluid dynamics simulation
PARTICUOLOGY
2020
Fenton oxidation of primary municipal wastewater treatment plant sludge. Process modelling and reactor scale-up
PROCESS SAFETY AND ENVIRONMENTAL PROTECTION
2020
Exergy and energy analysis of three biogas upgrading processes
ENERGY CONVERSION AND MANAGEMENT
2020
Exergy and energy analysis of biogas upgrading by pressure swing adsorption. Dynamic analysis of the process
ENERGY CONVERSION AND MANAGEMENT
2020
Fixed-bed reactor scale-up and modelling for Cr(VI) removal using nano iron-based coated biomass as packing material
CHEMICAL ENGINEERING JOURNAL
2019
A physical-based interpretation of mechanism and kinetics of Cr(VI) reduction in aqueous solution by zero-valent iron nanoparticles
CHEMOSPHERE
2019
Simultaneous aggregation and oxidation of nZVI in Rushton equipped agitated vessel. Experimental and modelling
POWDER TECHNOLOGY
2019
CFD model of agitated vessel for the removal of Cr(VI) by nano-hematite particles
CHEMICAL ENGINEERING TRANSACTIONS
2019
Metallic iron nanoparticles intensified production by spinning disk reactor. Optimization and fluid dynamics modelling
CHEMICAL ENGINEERING AND PROCESSING
2019
Heavy metals adsorption by banana peels micro-powder: Equilibrium modeling by non-linear models
CHINESE JOURNAL OF CHEMICAL ENGINEERING
2018
Heterogeneous nZVI-induced Fenton oxidation process to enhance biodegradability of excavation by-products
CHEMICAL ENGINEERING JOURNAL
2018
On the critical use of zero valent iron nanoparticles and Fenton processes for the treatment of tannery wastewater
JOURNAL OF WATER PROCESS ENGINEERING
2018
Nanomaterials application for heavy metals recovery from polluted water: The combination of nano zero-valent iron and carbon nanotubes. Competitive adsorption non-linear modeling
CHEMOSPHERE
2018
On the removal of hexavalent chromium by olive stones coated by iron-based nanoparticles: Equilibrium study and chromium recovery
JOURNAL OF CLEANER PRODUCTION
2018
Large Laboratory-Plant application for the treatment of a Tannerywastewater by Fenton oxidation: Fe(II) and nZVI catalysts comparisonand kinetic modelling
PROCESS SAFETY AND ENVIRONMENTAL PROTECTION
2018
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ERC
PE8_2
PE8_10
KET
Advanced manufacturing & processing
Sustainable technologies & development
Interessi di ricerca
Keywords
biomass conversion
process intensification
hydrogen production
process simulation
Progetti di Ricerca
Carbon Capture Storage and Utilization: recovery of carbon dioxide from power plant flue gas and re-utilization in the same cycle. Simulation and experimental activities using porous adsorbents for CO2 sequestration
Computational fluid dynamics study of rotating reactive liquid in spinning disk reactor and stirred tank reactor: influence of hydrodynamic fields on nanoparticles production
Gruppi di ricerca
DRACONS (DecaRbonisAtion and CO2 NanoSequestration)
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