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Dive into the research topics where Javier Ábrego is active.

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Featured researches published by Javier Ábrego.


Waste Management | 2017

Co-pyrolysis of sewage sludge and manure.

Nadia Ruiz-Gómez; Violeta Quispe; Javier Ábrego; María Atienza-Martínez; M.B. Murillo; Gloria Gea

The management and valorization of residual organic matter, such as sewage sludge and manure, is gaining interest because of the increasing volume of these residues, their localized generation and the related problems. The anaerobic digestion of mixtures of sewage sludge and manure could be performed due to the similarities between both residues. The purpose of this study is to evaluate the feasibility of the co-pyrolysis of sewage sludge (SS) and digested manure (DM) as a potential management technology for these residues. Pyrolysis of a sewage sludge/manure blend (50:50%) was performed at 525°C in a stirred batch reactor under N2 atmosphere. The product yields and some characteristics of the product were analyzed and compared to the results obtained in the pyrolysis of pure residues. Potential synergetic and antagonist effects during the co-pyrolysis process were evaluated. Although sewage sludge and manure seem similar in nature, there are differences in their pyrolysis product properties and distribution due to their distinct ash and organic matter composition. For the co-pyrolysis of SS and DM, the product yields did not show noticeable synergistic effects with the exception of the yields of organic compounds, being slightly higher than the predicted average, and the H2 yield, being lower than expected. Co-pyrolysis of SS and DM could be a feasible management alternative for these residues in locations where both residues are generated, since the benefits and the drawbacks of the co-pyrolysis are similar to those of the pyrolysis of each residue.


Archive | 2015

Hydrogen Production from Catalytic Biomass Pyrolysis

L. García; Javier Ábrego; F. Bimbela; José Luis Sánchez

An overview is presented on different catalytic routes for producing hydrogen from biomass via pyrolysis processes. Fundamentals of biomass pyrolysis along with general aspects related to the types of processes and catalysts are discussed. Processes that allow hydrogen production in this field have been divided into single-step and multi-step processes. These processes are reviewed in this chapter, showing the state of the art. In both strategies, a hydrogen-rich product gas is obtained which, conveniently conditioned and purified, may serve for various purposes.


Fuel | 2006

Influence of gas residence time and air ratio on the air gasification of dried sewage sludge in a bubbling fluidised bed

Joan J. Manyà; José Luis Sánchez; Javier Ábrego; Alberto Gonzalo; J. Arauzo


Industrial & Engineering Chemistry Research | 2009

Structural Changes of Sewage Sludge Char during Fixed-Bed Pyrolysis

Javier Ábrego; J. Arauzo; José Luis Sánchez; Alberto Gonzalo; Tomàs Cordero; José Rodríguez-Mirasol


Chemical Engineering Journal | 2013

Sewage sludge torrefaction in a fluidized bed reactor

María Atienza-Martínez; I. Fonts; Javier Ábrego; J. Ceamanos; Gloria Gea


Chemical Engineering Journal | 2013

Influence of feedstock composition in fluidised bed co-gasification of mixtures of lignite, bituminous coal and sewage sludge

G. García; J. Arauzo; Alberto Gonzalo; José Luis Sánchez; Javier Ábrego


Applied Catalysis B-environmental | 2017

Catalytic steam reforming of the aqueous fraction of bio-oil using Ni-Ce/Mg-Al catalysts

F. Bimbela; Javier Ábrego; R. Puerta; L. García; J. Arauzo


Energy & Fuels | 2015

Sewage Sludge Torrefaction in an Auger Reactor

María Atienza-Martínez; J.F. Mastral; Javier Ábrego; J. Ceamanos; Gloria Gea


Energy & Fuels | 2013

Technical and Energetic Assessment of a Three-Stage Thermochemical Treatment for Sewage Sludge

Javier Ábrego; José Luis Sánchez; J. Arauzo; I. Fonts; Noemí Gil-Lalaguna; María Atienza-Martínez


Chemical Engineering Journal | 2009

Product distribution and kinetic scheme for the fixed bed thermal decomposition of sewage sludge.

C. Casajus; Javier Ábrego; F. Marias; Jean Vaxelaire; J.L. Sánchez; A. Gonzalo

Collaboration


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Gloria Gea

University of Zaragoza

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J. Arauzo

University of Zaragoza

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J. Ceamanos

University of Zaragoza

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F. Bimbela

University of Zaragoza

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I. Fonts

University of Zaragoza

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