Correct costs of BtL and BioSNG
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@ -2475,8 +2475,8 @@ def add_biomass(n, costs):
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efficiency2=-costs.at["solid biomass", "CO2 intensity"]
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+ costs.at["BtL", "CO2 stored"],
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p_nom_extendable=True,
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capital_cost=costs.at["BtL", "fixed"],
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marginal_cost=costs.at["BtL", "efficiency"] * costs.at["BtL", "VOM"],
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capital_cost=costs.at["BtL", "fixed"] * costs.at["BtL", "efficiency"],
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marginal_cost=costs.at["BtL", "VOM"] * costs.at["BtL", "efficiency"],
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)
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# Assuming that acid gas removal (incl. CO2) from syngas i performed with Rectisol
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@ -2496,9 +2496,9 @@ def add_biomass(n, costs):
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+ costs.at["BtL", "CO2 stored"] * (1 - costs.at["BtL", "capture rate"]),
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efficiency3=costs.at["BtL", "CO2 stored"] * costs.at["BtL", "capture rate"],
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p_nom_extendable=True,
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capital_cost=costs.at["BtL", "fixed"]
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capital_cost=costs.at["BtL", "fixed"] * costs.at["BtL", "efficiency"]
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+ costs.at["biomass CHP capture", "fixed"] * costs.at["BtL", "CO2 stored"],
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marginal_cost=costs.at["BtL", "efficiency"] * costs.at["BtL", "VOM"],
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marginal_cost=costs.at["BtL", "VOM"] * costs.at["BtL", "efficiency"],
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)
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# BioSNG from solid biomass
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@ -2516,8 +2516,8 @@ def add_biomass(n, costs):
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efficiency3=-costs.at["solid biomass", "CO2 intensity"]
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+ costs.at["BioSNG", "CO2 stored"],
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p_nom_extendable=True,
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capital_cost=costs.at["BioSNG", "fixed"],
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marginal_cost=costs.at["BioSNG", "efficiency"] * costs.at["BioSNG", "VOM"],
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capital_cost=costs.at["BioSNG", "fixed"] * costs.at["BioSNG", "efficiency"],
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marginal_cost=costs.at["BioSNG", "VOM"] * costs.at["BioSNG", "efficiency"],
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)
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# Assuming that acid gas removal (incl. CO2) from syngas i performed with Rectisol
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@ -2539,10 +2539,10 @@ def add_biomass(n, costs):
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+ costs.at["BioSNG", "CO2 stored"]
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* (1 - costs.at["BioSNG", "capture rate"]),
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p_nom_extendable=True,
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capital_cost=costs.at["BioSNG", "fixed"]
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capital_cost=costs.at["BioSNG", "fixed"] * costs.at["BioSNG", "efficiency"]
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+ costs.at["biomass CHP capture", "fixed"]
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* costs.at["BioSNG", "CO2 stored"],
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marginal_cost=costs.at["BioSNG", "efficiency"] * costs.at["BioSNG", "VOM"],
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marginal_cost=costs.at["BioSNG", "VOM"] * costs.at["BioSNG", "efficiency"],
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)
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