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XVI List of Figures Figure 6.4 – ICE GAS (1 MWel): efficiencies as a function of biomass drying ....201 Figure 6.5 – GT EXT CER (100 kWel): electric power in the three drying scenarios ................................................................................................................................ 206 Figure 6.6 – GT EXT CER (100 kWel): thermal power in the three drying scenarios ................................................................................................................................ 206 Figure 6.7 – GT EXT CER (100 kWel): fuel power in the three drying scenarios.206 Figure 6.8 – GT EXT CER (100 kWel): electrical efficiency in the three drying scenarios ................................................................................................................. 207 Figure 6.9 – GT EXT CER (100 kWel): thermal efficiency in the three drying scenarios ................................................................................................................. 207 Figure 6.10 – GT EXT CER (100 kWel): first law efficiency in the three drying scenarios ................................................................................................................. 207 Figure 6.11 – ICE GAS (1 MWel): electric power in the three drying scenarios...211 Figure 6.12 – ICE GAS (1 MWel): thermal power in the three drying scenarios...211 Figure 6.13 – ICE GAS (1 MWel): fuel power in the three drying scenarios.........211 Figure 6.14 – ICE GAS (1 MWel): electrical efficiency in the three drying scenarios ................................................................................................................................ 212 Figure 6.15 – ICE GAS (1 MWel): thermal efficiency in the three drying scenarios ................................................................................................................................ 212 Figure 6.16 – ICE GAS (1 MWel): first law efficiency in the three drying scenarios ................................................................................................................................ 212 Figure 6.17 – Biomass cost as a function of moisture content...............................215 Figure 6.18 – GT EXT CER (100 kWel): PayBack Time in the three drying scenarios ................................................................................................................. 217 Figure 6.19 – ICE GAS (1 MWel): PayBack Time in the three drying scenarios .. 217 Figure 6.20 – GT EXT CER (100 kWel): Net Present Value in the three drying scenarios ................................................................................................................. 218 Figure 6.21 – ICE GAS (1 MWel): Net Present Value in the three drying scenarios ................................................................................................................................ 218PDF Image | SMALL-SCALE BIOMASS POWER GENERATION
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