allow copperplated carbon capture to be distributed freely to co2 stores
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cd99089628
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d58a7f86a4
@ -1748,12 +1748,13 @@ def add_industry(n, costs):
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efficiency=1.
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)
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n.add("Link",
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"solid biomass for industry CC",
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n.madd("Link",
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spatial.co2.locations,
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suffix=" solid biomass for industry CC",
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bus0="EU solid biomass",
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bus1="solid biomass for industry",
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bus2="co2 atmosphere",
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bus3="co2 stored", # TODO co2: where to allocate if co2 is spatially resolved?
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bus3=spatial.co2.nodes,
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carrier="solid biomass for industry CC",
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p_nom_extendable=True,
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capital_cost=costs.at["cement capture", "fixed"] * costs.at['solid biomass', 'CO2 intensity'],
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@ -1786,12 +1787,13 @@ def add_industry(n, costs):
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efficiency2=costs.at['gas', 'CO2 intensity']
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)
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n.add("Link",
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"gas for industry CC",
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n.madd("Link",
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spatial.co2.locations,
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suffix=" gas for industry CC",
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bus0="EU gas",
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bus1="gas for industry",
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bus2="co2 atmosphere",
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bus3="co2 stored", # TODO co2: where to allocate if co2 is spatially resolved?
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bus3=spatial.co2.nodes,
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carrier="gas for industry CC",
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p_nom_extendable=True,
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capital_cost=costs.at["cement capture", "fixed"] * costs.at['gas', 'CO2 intensity'],
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@ -1963,11 +1965,12 @@ def add_industry(n, costs):
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)
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#assume enough local waste heat for CC
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n.add("Link",
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"process emissions CC",
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n.madd("Link",
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spatial.co2.locations,
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suffix=" process emissions CC",
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bus0="process emissions",
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bus1="co2 atmosphere",
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bus2="co2 stored", # TODO co2: where to allocate if co2 is spatially resolved?
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bus2=spatial.co2.nodes,
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carrier="process emissions CC",
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p_nom_extendable=True,
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capital_cost=costs.at["cement capture", "fixed"],
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