Streams straight from the publisher. podnod never proxies or re-hosts episode audio.
Guest: Peter Psarras Host: Markus Völter Shownoter: Simon Bretschneider
The climate situatation is getting more and more dire, and in order to reach the goals the international community has set for themselves, engineering solutions seem increasingly necessary. After talking about solar geoengineering in episode 385, we will look at direct air capture in this episode. Direct Air Capture is a family of technologies that allow the extraction of CO2 from the atmosphere. My guest Peter Psarras explains the technology, the economics and also the political and moral challenges associated with the technology.
Peter Psarras is introducing himself
00:02:10DAC
00:03:56DAC (direct air capture) | CCS (carbon capture and storage) | Point source capture | CO2 | Lithosphere | Life cycle emission | Carbon neutral | Climate crisis
How does it work? Physical mechanism, chemical processes
00:11:15Concentration of CO2 in air | Physisorption | Desorption | Energy demand for DAC | Sorbent for CO2 capture
Representative Example of chemical/physical processes to bind CO2 in the sorbent
00:19:12Climeworks | Amine absorber CO2 | TRL (Technology readiness level) | LCA (Life cycle analysis) | Carbon engineering | Solvent based carbon capture approach | Overview absorber materials | Direct air mineralization | IPCC Report | Reforestation | Orca plant | Electric swing approach
Economics of CO2
00:56:30Regenerative agriculture | Ocean alkalinity enhancement | Heirloom CO2 DAC | Advanced market commitment for CO2 | Cost Curve DAC | Carbon Credit | X Price Carbon Removal | Carbon Storage in Concrete: | Moral hazard | Scaling of carbon removal | Short and longterm cost of climate change
Other solutions
01:24:52BECCS (Bioenergy with carbon capture and storage) | Biomass | Waste biomass | Carbon mineralization | Enhanced weathering | Ocean acidification | Carbonate and bicarbonate cycle | Blue carbon | CO2 concentration in seawater | Electrochemical CO2 capture
Wrap up and conclusion
01:34:41
Peter Psarras
vwl.uni-mannheim.desolar geoengineering in episode 385
omegataupodcast.netPeter Psarras
linkedin.comCarbon Direct
carbon-direct.comDAC (direct air capture)
en.wikipedia.orgCCS (carbon capture and storage)
en.wikipedia.orgPoint source capture
energy.govCO2
en.wikipedia.orgLithosphere
en.wikipedia.orgLife cycle emission
en.wikipedia.orgCarbon neutral
en.wikipedia.orgClimate crisis
en.wikipedia.orgConcentration of CO2 in air
en.wikipedia.orgPhysisorption
en.wikipedia.orgDesorption
en.wikipedia.orgEnergy demand for DAC
iea.orgSorbent for CO2 capture
en.wikipedia.orgClimeworks
climeworks.comAmine absorber CO2
en.wikipedia.orgTRL (Technology readiness level)
en.wikipedia.orgLCA (Life cycle analysis)
en.wikipedia.orgCarbon engineering
carbonengineering.comSolvent based carbon capture approach
netl.doe.govOverview absorber materials
pubs.acs.orgDirect air mineralization
zurich-cma.orgIPCC Report
ipcc.chReforestation
en.wikipedia.orgOrca plant
climeworks.comElectric swing approach
energypost.euRegenerative agriculture
en.wikipedia.orgOcean alkalinity enhancement
american.eduHeirloom CO2 DAC
heirloomcarbon.comAdvanced market commitment for CO2
frontierclimate.comCost Curve DAC
sciencedirect.comCarbon Credit
en.wikipedia.orgX Price Carbon Removal
xprize.orgCarbon Storage in Concrete:
carboncure.comMoral hazard
climatecentral.orgScaling of carbon removal
c2es.orgShort and longterm cost of climate change
mckinsey.comBECCS (Bioenergy with carbon capture and storage)
en.wikipedia.orgBiomass
en.wikipedia.orgWaste biomass
eia.govCarbon mineralization
usgs.govEnhanced weathering
en.wikipedia.orgOcean acidification
en.wikipedia.orgCarbonate and bicarbonate cycle
pubs.acs.orgBlue carbon
en.wikipedia.orgCO2 concentration in seawater
en.wikipedia.orgElectrochemical CO2 capture
tlo.mit.edu