haber-bosch: use DECHEMA source for electricity input
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@ -548,7 +548,7 @@ industry:
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MWh_CH4_per_tNH3_SMR: 10.8
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MWh_elec_per_tNH3_SMR: 0.7
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MWh_H2_per_tNH3_electrolysis: 5.93
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MWh_elec_per_tNH3_electrolysis: 1.17
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MWh_elec_per_tNH3_electrolysis: 0.2473
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MWh_NH3_per_MWh_H2_cracker: 1.46 # https://github.com/euronion/trace/blob/44a5ff8401762edbef80eff9cfe5a47c8d3c8be4/data/efficiencies.csv
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NH3_process_emissions: 24.5
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petrochemical_process_emissions: 25.5
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@ -796,10 +796,6 @@ def add_ammonia(n, costs):
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"Bus", spatial.ammonia.nodes, location=spatial.ammonia.locations, carrier="NH3"
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)
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MWh_elec_per_MWh_NH3 = (
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cf_industry["MWh_elec_per_tNH3_electrolysis"] / cf_industry["MWh_NH3_per_tNH3"]
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)
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n.madd(
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"Link",
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nodes,
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@ -809,9 +805,9 @@ def add_ammonia(n, costs):
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bus2=nodes + " H2",
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p_nom_extendable=True,
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carrier="Haber-Bosch",
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efficiency=1 / MWh_elec_per_MWh_NH3,
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efficiency2=-costs.at["Haber-Bosch", "hydrogen-input"] / MWh_elec_per_MWh_NH3,
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capital_cost=costs.at["Haber-Bosch", "fixed"] / MWh_elec_per_MWh_NH3,
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efficiency=1 / costs.at["Haber-Bosch", "electricity-input"],
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efficiency2=-costs.at["Haber-Bosch", "hydrogen-input"] / costs.at["Haber-Bosch", "electricity-input"],
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capital_cost=costs.at["Haber-Bosch", "fixed"] / costs.at["Haber-Bosch", "electricity-input"],
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lifetime=costs.at["Haber-Bosch", "lifetime"],
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)
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