add extra bus for HVC, which can either go to air or waste CHP
Here we explicitly add the option to generate energy and/or capture the CO2 from HVC (i.e. plastics). NB: Since waste CHP is expensive, it's not built.
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@ -668,6 +668,7 @@ industry:
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2045: 0.16
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2050: 0.20
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HVC_environment_sequestration_fraction: 0.
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waste_to_energy: false
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sector_ratios_fraction_future:
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2020: 0.0
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2025: 0.1
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@ -1152,3 +1153,6 @@ plotting:
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DC-DC: "#8a1caf"
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DC link: "#8a1caf"
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load: "#dd2e23"
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waste CHP: '#e3d37d'
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waste CHP CC: '#e3d3ff'
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HVC to air: 'k'
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@ -2905,18 +2905,90 @@ def add_industry(n, costs):
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investment_year,
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)
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n.madd(
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"Link",
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spatial.oil.naphtha,
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bus0=spatial.oil.nodes,
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bus1=spatial.oil.naphtha,
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bus2="co2 atmosphere",
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bus3=spatial.co2.process_emissions,
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carrier="naphtha for industry",
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p_nom_extendable=True,
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efficiency2=emitted_co2_per_naphtha * non_sequestered,
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efficiency3=process_co2_per_naphtha,
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)
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if snakemake.config["industry"]["waste_to_energy"] and options["regional_oil_demand"]:
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n.madd(
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"Bus",
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spatial.oil.demand_locations + " non-sequestered HVC",
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location=spatial.oil.demand_locations,
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carrier="non-sequestered HVC",
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unit="MWh_LHV",
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)
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n.madd(
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"Link",
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spatial.oil.naphtha,
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bus0=spatial.oil.nodes,
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bus1=spatial.oil.naphtha,
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bus2=spatial.oil.demand_locations + " non-sequestered HVC",
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bus3=spatial.co2.process_emissions,
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carrier="naphtha for industry",
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p_nom_extendable=True,
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efficiency2=non_sequestered*emitted_co2_per_naphtha/costs.at["oil", "CO2 intensity"],
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efficiency3=process_co2_per_naphtha,
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)
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n.madd(
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"Link",
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spatial.oil.demand_locations + " HVC to air",
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bus0=spatial.oil.demand_locations + " non-sequestered HVC",
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bus1="co2 atmosphere",
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carrier="HVC to air",
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p_nom_extendable=True,
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efficiency=costs.at["oil", "CO2 intensity"],
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)
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#TODO add heat
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n.madd(
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"Link",
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spatial.oil.demand_locations + " waste CHP",
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bus0=spatial.oil.demand_locations + " non-sequestered HVC",
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bus1=spatial.oil.demand_locations,
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bus2="co2 atmosphere",
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carrier="waste CHP",
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p_nom_extendable=True,
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# p_nom=biomass_potential['municipal solid waste'] / 8760,
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capital_cost=costs.at['waste CHP', 'fixed'] * costs.at['waste CHP', 'efficiency'],
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marginal_cost=costs.at['waste CHP', 'VOM'],
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efficiency=costs.at['waste CHP', 'efficiency'],
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#efficiency4=costs.at['waste CHP', 'efficiency-heat'],
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efficiency2=costs.at['oil', 'CO2 intensity'],
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lifetime=costs.at['waste CHP', 'lifetime'])
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#TODO add heat
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n.madd(
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"Link",
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spatial.oil.demand_locations + " waste CHP CC",
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bus0=spatial.oil.demand_locations + " non-sequestered HVC",
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bus1=spatial.oil.demand_locations,
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bus2="co2 atmosphere",
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bus3=spatial.co2.nodes,
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carrier="waste CHP CC",
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p_nom_extendable=True,
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# p_nom=biomass_potential['municipal solid waste'] / 8760,
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capital_cost=costs.at['waste CHP CC', 'fixed'] * costs.at['waste CHP CC', 'efficiency'],
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marginal_cost=costs.at['waste CHP CC', 'VOM'],
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efficiency=costs.at['waste CHP CC', 'efficiency'],
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#efficiency4=costs.at['waste CHP', 'efficiency-heat'],
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efficiency2=costs.at['oil', 'CO2 intensity']*(1 - options["cc_fraction"]),
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efficiency3=costs.at['oil', 'CO2 intensity']*options["cc_fraction"],
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lifetime=costs.at['waste CHP CC', 'lifetime'])
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else:
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n.madd(
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"Link",
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spatial.oil.naphtha,
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bus0=spatial.oil.nodes,
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bus1=spatial.oil.naphtha,
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bus2="co2 atmosphere",
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bus3=spatial.co2.process_emissions,
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carrier="naphtha for industry",
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p_nom_extendable=True,
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efficiency2=emitted_co2_per_naphtha*non_sequestered,
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efficiency3=process_co2_per_naphtha,
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)
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# aviation
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demand_factor = options.get("aviation_demand_factor", 1)
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