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Dive into the research topics where Vito Valerio is active.

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Featured researches published by Vito Valerio.


Biotechnology Reports | 2016

Evaluation of a pilot-scaled paddle dryer for the production of ethanol from lignocellulose including inhibitor removal and high-solids enzymatic hydrolysis

Egidio Viola; Giuseppe Arcieri; Francesco Zimbardi; Vito Valerio; Nadia Cerone; Ugo De Corato

Highlights • The use of a paddle dryer system in the bioethanol process from straw is proposed.• Paddle dryer was employed to detoxify a pretreated substrate by steam explosion.• Paddle dryer is resulted an efficient system to improve enzymatic hydrolysis.


Waste Management | 2017

Pyrolysis of automotive shredder residue in a bench scale rotary kiln

Michele Notarnicola; Giacinto Cornacchia; Sabino De Gisi; Francesco Di Canio; Cesare Freda; Pietro Garzone; Maria Martino; Vito Valerio; Antonio Villone

Automotive shredder residue (ASR) can create difficulties when managing, with its production increasing. It is made of different type of plastics, foams, elastomers, wood, glasses and textiles. For this reason, it is complicated to dispose of in a cost effective way, while also respecting the stringent environmental restrictions. Among thermal treatments, pyrolysis seems to offer an environmentally attractive method for the treatment of ASR; it also allows for the recovery of valuable secondary materials/fuels such as pyrolysis oils, chars, and gas. While, there is a great deal of significant research on ASR pyrolysis, the literature on higher scale pyrolysis experiments is limited. To improve current literature, the aim of the study was to investigate the pyrolysis of ASR in a bench scale rotary kiln. The Italian ASR was separated by dry-sieving into two particle size fractions: d<30mm and d>30mm. Both the streams were grounded, pelletized and then pyrolyzed in a continuous bench scale rotary kiln at 450, 550 and 650°C. The mass flow rate of the ASR pellets was 200-350g/h and each test ran for about 4-5h. The produced char, pyrolysis oil and syngas were quantified to determine product distribution. They were thoroughly analyzed with regard to their chemical and physical properties. The results show how higher temperatures increase the pyrolysis gas yield (44wt% at 650°C) as well as its heating value. The low heating value (LHV) of syngas ranges between 18 and 26MJ/Nm3dry. The highest pyrolysis oil yield (33wt.%) was observed at 550°C and its LHV ranges between 12.5 and 14.5MJ/kg. Furthermore, only two out of the six produced chars respect the LHV limit set by the Italian environmental regulations for landfilling. The obtained results in terms of product distribution and their chemical-physical analyses provide useful information for plant scale-up.


Catalysis Today | 2012

Biodiesel from fried vegetable oils via transesterification by heterogeneous catalysis

Egidio Viola; Alessandro Blasi; Vito Valerio; Ivan Guidi; Francesco Zimbardi; Giacobbe Braccio; G. Giordano


Fuel Processing Technology | 2016

Steam/oxygen biomass gasification at pilot scale in an internally circulating bubbling fluidized bed reactor

Donatella Barisano; Giuseppe Canneto; F. Nanna; E. Alvino; G. Pinto; Antonio Villone; M. Carnevale; Vito Valerio; A. Battafarano; G. Braccio


Applied Energy | 2013

Use of a two-chamber reactor to improve enzymatic hydrolysis and fermentation of lignocellulosic materials

Egidio Viola; Francesco Zimbardi; Vito Valerio; F. Nanna; A. Battafarano


Crop Protection | 2014

Antifungal activity of liquid waste obtained from the detoxification of steam-exploded plant biomass against plant pathogenic fungi.

Ugo De Corato; Egidio Viola; Giuseppe Arcieri; Vito Valerio; Fernando Antonio Cancellara; Francesco Zimbardi


European Journal of Lipid Science and Technology | 2011

Graphical method to select vegetable oils as potential feedstock for biodiesel production

Egidio Viola; Francesco Zimbardi; Vito Valerio


Scientia Horticulturae | 2016

Use of composted agro-energy co-products and agricultural residues against soil-borne pathogens in horticultural soil-less systems

Ugo De Corato; Egidio Viola; Giuseppe Arcieri; Vito Valerio; Francesco Zimbardi


Fuel | 2018

Sewage sludge gasification in a bench scale rotary kiln

Cesare Freda; Giacinto Cornacchia; Assunta Romanelli; Vito Valerio; Massimiliano Grieco


Fuel Processing Technology | 2017

Air-steam and oxy-steam gasification of hydrolytic residues from biorefinery

Nadia Cerone; Francesco Zimbardi; Luca Contuzzi; Mauro Prestipino; M. Carnevale; Vito Valerio

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