05.04.2013 Views

Intégration des paramètres spatio-temporels et des risques d ...

Intégration des paramètres spatio-temporels et des risques d ...

Intégration des paramètres spatio-temporels et des risques d ...

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

tel-00783708, version 1 - 1 Feb 2013<br />

<strong>Intégration</strong> <strong>des</strong> <strong>paramètres</strong> <strong>spatio</strong>-<strong>temporels</strong> <strong>et</strong> <strong>des</strong> <strong>risques</strong> d'accident à l'Analyse du Cycle de Vie<br />

ROSYID O.A. <strong>et</strong> al. Risk analysis for the infrastructure of a hydrogen economy. International<br />

Journal of Hydrogen Energy. 2007, Article in press, 7 p.<br />

ROUSSEAUX P. Evaluation comparative de l’impact environnemental global (ECIEG) du<br />

cycle de vie <strong>des</strong> produits. Thèse. Lyon : Institut National <strong>des</strong> Sciences Appliquées de Lyon,<br />

1993, 276 p.<br />

ROUSSEAUX P. Analyse du cycle de vie – Evaluation <strong>des</strong> impacts. Techniques de<br />

l’Ingénieur, Traité Environnement. 1998, G 5605, 13 p.<br />

ROUSSEAUX P. <strong>et</strong> APOSTOL T. Valeur environnementale de l’énergie. Presses<br />

Polytechniques <strong>et</strong> Universitaires roman<strong>des</strong>. Collection <strong>des</strong> sciences appliquées de l’INSA de<br />

Lyon. 2000, 186 p.<br />

ROUSSEAUX P. Analyse du Cycle de Vie (ACV). Techniques de l’Ingénieur, Traité<br />

Environnement. 2005, G 5500, 4 p.<br />

SCHJOLBERG I. <strong>et</strong> OSTDAHL A.B. Security and tolerable risk for hydrogen service<br />

stations. Technology in Soci<strong>et</strong>y. 2008, vol. 30, p. 64-70<br />

SCHULTE I. <strong>et</strong> al. Issues affecting the acceptance of hydrogen fuel. International Journal of<br />

Hydrogen Energy. 2004, vol. 29, p 677-685<br />

SETAC. Guidelines for life cycle assessment : a code of practice – Goal and definition<br />

scoping. SETAC. 1993, 69 p.<br />

SONNEMANN G. Environmental damage estimations in industrial process chain –<br />

M<strong>et</strong>hodology development with a case study on waste incineration and a special focus on<br />

human health. International Journal of Life Cycle Assessment. 2004, vol. 9, p. 206-207<br />

SORENSEN B. Total life-cycle assessment of PEM fuel cell car. Paper 3-1189 in Proc. 15th<br />

World Hydrogen Energy Conf., Yokohama. CDROM, World Hydrogen Energy Association.<br />

2004, 8 p.<br />

SPATH P. <strong>et</strong> MANN M. Life cycle assessment of renewable hydrogen production via wind<br />

electrolysis. NREL/MP-560-35404. Milestone compl<strong>et</strong>ion report, National Renewable Energy<br />

Laboratory. 2004, 9 p.<br />

STEEN <strong>et</strong> al. A systematic approach to environmental priority strategies in product<br />

development (EPS). Version 2000 – General system characteristics. CPM report 1999:4,<br />

Chalmers University of Technology, Göteborg, Sweden. 1999, 67 p.<br />

SUH Y.J. Elaboration d’un guide pour l’amélioration <strong>et</strong> l’évaluation de la qualité d’inventaire<br />

de l’ACV – Application aux filières de traitement <strong>des</strong> eaux usées. Thèse en chimie. Lyon :<br />

Institut National <strong>des</strong> Sciences Appliquées de Lyon, 2002, 190 p.<br />

SUN L. <strong>et</strong> MEUNIER F. Adsorption – Aspects théoriques. Techniques de l’Ingénieur, Traité<br />

Chimie <strong>et</strong> Bio. 2003, J 2730, 16 p.<br />

304

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!