Sustainable Development and Innovation in the Energy SectorSpringer Science & Business Media, 2005 - 267 pages Almost every energy scenario assumes an enormous growth in the demand for energy in the coming decades. Meanwhile, at international conferences and other venues, the primary concern is massive reduction of greenhouse gas emissions, especially of the CO2 produced by fossil-fuel energy consumption. Experts also point out the political risk of depending on petroleum and remind us of the fact that resources are not inexhaustible. This timely book explores: how these conflicting scenarios could be reconciled; how can we shape a more sustainable energy system from the existing one; and possible technological progress and innovations to enable a brighter future. It also addresses the reality that there exists no consensus on the extent to which innovations can really contribute to reconciling ever-growing energy consumption, availability of resources and the environment, and the structural demands on any energy system. |
From inside the book
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... question addressed by the interdisciplinary project group , " Sustainable development and innovation in the energy sector " , which was established by the Europäische Akademie ( european academy ) in September 2000 , was therefore ...
... question of how such con- flicts can be overcome through a more comprehensive , incentive - based mix of instruments tailored to the specific substance of an innovation . Terminological and conceptional foundations Since a sound ...
... question which concrete conclusions follow for the central research question of our investigation for each case . This path is taken in neoclassical environmental economics on the one hand and on the other hand espe- cially by ...
... questions we are concerned with . Are intertemporal pareto- improvements not possible in a particular case , one must look for justifications for the trade - offs ( balances ) between different options . The question whether issues of ...
... question if such an improvement can be achieved in the future too . By citing representative examples ( energy consumption for residential heating , cars , electricity production and selected industrial processes ) , we show that the ...
Contents
II | 17 |
III | 19 |
IV | 20 |
V | 23 |
VI | 24 |
VII | 27 |
VIII | 30 |
IX | 31 |
LVI | 141 |
LVII | 142 |
LVIII | 143 |
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LXI | 149 |
LXII | 155 |
LXIII | 158 |
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XV | 45 |
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XIX | 56 |
XX | 57 |
XXI | 60 |
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XXIV | 62 |
XXV | 65 |
XXVI | 71 |
XXVII | 75 |
XXVIII | 76 |
XXIX | 77 |
XXX | 79 |
XXXI | 81 |
XXXII | 82 |
XXXIII | 85 |
XXXIV | 89 |
XXXV | 96 |
XXXVI | 99 |
XXXVII | 101 |
XXXVIII | 105 |
XL | 106 |
XLI | 112 |
XLII | 117 |
XLIII | 124 |
XLIV | 126 |
XLV | 127 |
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XLVIII | 131 |
LI | 135 |
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LIII | 137 |
LIV | 139 |
LV | 140 |
LXIV | 159 |
LXV | 160 |
LXVI | 161 |
LXIX | 163 |
LXX | 167 |
LXXI | 171 |
LXXII | 173 |
LXXIV | 175 |
LXXV | 176 |
LXXVI | 178 |
LXXVII | 179 |
LXXVIII | 180 |
LXXIX | 183 |
LXXX | 185 |
LXXXI | 187 |
LXXXII | 188 |
LXXXIII | 190 |
LXXXIV | 193 |
LXXXV | 200 |
LXXXVI | 203 |
LXXXVII | 206 |
LXXXVIII | 211 |
LXXXIX | 212 |
XC | 214 |
XCI | 217 |
XCII | 218 |
XCIII | 221 |
XCIV | 223 |
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XCVI | 225 |
XCVII | 233 |
XCVIII | 239 |
XCIX | 241 |
C | 242 |
CI | 245 |
CII | 249 |
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CIV | 263 |
CV | 265 |