том 207-208 страницы 577-586

Monolith and foam catalysts performances in ATR of liquid and gaseous fuels

Тип публикацииJournal Article
Дата публикации2012-10-01
scimago Q1
wos Q1
БС1
SJR2.696
CiteScore20.6
Impact factor13.2
ISSN13858947, 18733212
General Chemistry
General Chemical Engineering
Industrial and Manufacturing Engineering
Environmental Chemistry
Краткое описание
Hydrogen fuel cells seem the most viable solution to the pollution reduction and the energy growing demand. Very compact and small size production plant for distribute production may reduce hydrogen transport and storage difficulties. Due to the high reactor compactness and thermal self-sustainability, the auto-thermal reforming (ATR) reaction of gaseous and liquid hydrocarbons can be the optimal solution. Fossil hydrocarbons like methane, gasoline and diesel still remain the favourite feed for catalytic auto-thermal reformer, due to the widespread existing delivery pipelines and the high energy density. Unfortunately, due to the different characteristics of liquid and gaseous fuels, it is very difficult to realize a multi-fuel processor characterized by high performances in terms of thermal efficiency and hydrogen yield, and, up to now, very low number of papers dealing with multi-fuel reformers is present in the literature. In this work, a catalytic reactor for the auto-thermal reforming of gaseous and liquid hydrocarbons was developed. An high pressure feed system, based on the ‘‘common rail’’ technology was adopted for liquid fuel, allowing the formation of micro-droplets, assuring a very quick liquid fuel vaporization, an uniform mixing with other reactants, avoiding the coke formation, and improving the hydrogen yield and thermal efficiency. A commercial monolith structured catalysts was used: the influence of catalyst configuration was analysed. In order to obtain a total self-sustainable process and a very compact system, a heat exchanger was integrated in the reactor to preheat water and air streams by exploiting the heat from exhaust stream. Process control is assured by monitoring temperatures and composition in up to 6 point along the catalytic bed. Preliminary tests showed high thermal system efficiency, with a good hydrocarbon conversion at different operating conditions. The low start-up times makes the system extremely versatile, and suitable for batch operations.
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Palma V., Ricca A., Ciambelli P. Monolith and foam catalysts performances in ATR of liquid and gaseous fuels // Chemical Engineering Journal. 2012. Vol. 207-208. pp. 577-586.
ГОСТ со всеми авторами (до 50) Скопировать
Palma V., Ricca A., Ciambelli P. Monolith and foam catalysts performances in ATR of liquid and gaseous fuels // Chemical Engineering Journal. 2012. Vol. 207-208. pp. 577-586.
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TY - JOUR
DO - 10.1016/j.cej.2012.07.018
UR - https://doi.org/10.1016/j.cej.2012.07.018
TI - Monolith and foam catalysts performances in ATR of liquid and gaseous fuels
T2 - Chemical Engineering Journal
AU - Palma, Vincenzo
AU - Ricca, Antonio
AU - Ciambelli, P.
PY - 2012
DA - 2012/10/01
PB - Elsevier
SP - 577-586
VL - 207-208
SN - 1385-8947
SN - 1873-3212
ER -
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@article{2012_Palma,
author = {Vincenzo Palma and Antonio Ricca and P. Ciambelli},
title = {Monolith and foam catalysts performances in ATR of liquid and gaseous fuels},
journal = {Chemical Engineering Journal},
year = {2012},
volume = {207-208},
publisher = {Elsevier},
month = {oct},
url = {https://doi.org/10.1016/j.cej.2012.07.018},
pages = {577--586},
doi = {10.1016/j.cej.2012.07.018}
}