Global Change Abstracts The Swiss Contribution - SCNAT
Global Change Abstracts The Swiss Contribution - SCNAT
Global Change Abstracts The Swiss Contribution - SCNAT
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<strong>Global</strong> <strong>Change</strong> <strong>Abstracts</strong> – <strong>The</strong> <strong>Swiss</strong> <strong>Contribution</strong> | Short List of all <strong>Abstracts</strong><br />
Towards multi-source multi-product energy systems (08.1-421)<br />
Hemmes K, Zachariah Wolff J L, Geidl M, Andersson G<br />
An energy management method for the food industry (08.1-422)<br />
Müller D C A, Marechal F M A, Wolewinski T, Roux P J<br />
H 2O-splitting thermochemical cycle based on ZnO/Zn-redox: Quenching the effluents from the ZnO<br />
dissociation (08.1-423)<br />
Müller R, Steinfeld A<br />
Towards an improved architectural quality of building integrated solar thermal systems (BIST)<br />
(08.1-424)<br />
Munari Probst M C , Roecker C<br />
Biofuels must deliver on their promise of sustainability (08.1-425)<br />
Opal C<br />
A methodology for thermo-economic modeling and optimization of solid oxide fuel cell systems<br />
(08.1-426)<br />
Palazzi F, Autissier N, Marechal F M A, Favrat D<br />
Dynamics of a solar thermochemical reactor for steam-reforming of methane (08.1-427)<br />
Petrasch J, Steinfeld A<br />
Development steps for parabolic trough solar power technologies with maximum impact on cost<br />
reduction (08.1-428)<br />
Pitz P R, Dersch J, Milow B, Tellez F, Ferriere A, Langnickel U, Steinfeld A, Karni J, Zarza E, Popel O<br />
Optimum battery size for fuel cell hybrid electric vehicle - Part I (08.1-429)<br />
Sundstrom O, Stefanopoulou A<br />
Optimum Battery Size for Fuel Cell Hybrid Electric Vehicle With Transient Loading Consideration—<br />
Part II (08.1-430)<br />
Sundstrom O, Stefanopoulou A<br />
5 General Topics<br />
What is a green solvent? A comprehensive framework for the environmental assessment of solvents<br />
(08.1-431)<br />
Capello C, Fischer U, Hungerbühler K<br />
Effect of solar water disinfection (SODIS) on model microorganisms under improved and field SODIS<br />
conditions (08.1-432)<br />
Dejung S, Fuentes I, Almanza G, Jarro R, Navarro L, Arias G, Urquieta E, Torrico A, Fenandez W, Iriarte M, Birrer<br />
C, Stahel W A, Wegelin M<br />
Cumulative energy extraction from the natural environment (CEENE): a comprehensive life cycle<br />
impact assessment method for resource accounting (08.1-433)<br />
Dewulf J, Bosch M E, de Meester B, van der Vorst G, van Langenhove H, Hellweg S, Huijbregts M A J<br />
<strong>The</strong> environmental relevance of capital goods in life cycle assessments of products and services<br />
(08.1-434)<br />
Frischknecht R, Althaus H J, Bauer C, Doka G, Heck T, Jungbluth N, Kellenberger D, Nemecek T<br />
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