215
© Springer Nature Switzerland AG 2021
J. Cays, An Environmental Life Cycle Approach to Design,
https://doi.org/10.1007/978-3-030-63802-3
A
American dream, 1
American Way of Life, 2, 3
Anthropogenic, 15, 30, 56, 134
Athena, 118, 123, 124, 127, 139–146, 166,
171, 177, 179, 181, 182, 186
Automobile, 16
B
Biogenic, 151, 152
Boundaries, 13, 15
Brundtland, 12
Building, 12
Burn, 30, 35, 44, 45, 51, 56
Burnable, 21
Burning, 7, 8, 16, 17, 28, 90, 108
C
Carbon, 12, 17, 105
Change, 7
Circular industrial economy, 40
Coal, 16, 22, 33, 34, 36, 45, 48, 56, 86, 91
Consuming, 1, 3, 69
D
Demand, 12, 13
E
Ecological impact, 10
Economics, 13
Ecosphere, 4
Embodied energy, 6, 16,
35–36, 192
Emergy, 35
Energy, 15–37
Entropy, 19–20, 24
Environment, 13
Environmental footprints, 10
Environmental impact, 12, 13, 16, 18, 25, 35,
44, 70–75, 81–83, 86–92, 96–98, 100,
105, 112, 116–118, 122, 123, 134–137,
139, 140, 145–147, 151, 153, 158, 161,
163–165, 169–171, 182, 188, 189,
192, 193
Environmental product declarations (EPDs),
84, 100, 117, 128–130, 133, 140,
186, 195
EPA, 43, 71, 72, 75, 76, 91, 107,
137, 170
Evidence, 11
Exergy, 19–20
Experience, 12
Extracting, 7
F
Fava, J., 117, 118
Fossil fuel, 16
G
GaBi, 123–126, 128, 129
Goal and scope, 81, 83, 85, 90–95, 97–99,
111, 114, 117, 121, 134–136,
141, 146, 151, 155, 158, 159, 171,
186, 192
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