Potential and costs of carbon dioxide removal by enhanced weathering of rocks

Потенциал и затраты на удаление углекислого газа посредством усиленного выветривания горных пород
Jessica Strefler, Thorben Amann, Nico Bauer, Elmar Kriegler, Jens Hartmann
2018-01-23

carbon dioxide removaldunite and basaltenhanced rock weatheringtechno-economic assessmentweathering rates
The chemical weathering of rocks currently absorbs about 1.1 Gt CO 2 a −1 being mainly stored as bicarbonate in the ocean. An enhancement of this slow natural process could remove substantial amounts of CO 2 from the atmosphere, aiming to offset some unavoidable anthropogenic emissions in order to comply with the Paris Agreement, while at the same time it may decrease ocean acidification. We provide the first comprehensive assessment of economic costs, energy requirements, technical parameterization, and global and regional carbon removal potential. The crucial parameters defining this potential are the grain size and weathering rates. The main uncertainties about the potential relate to weathering rates and rock mass that can be integrated into the soil. The discussed results do not specifically address the enhancement of weathering through microbial processes, feedback of geogenic nutrient release, and bioturbation. We do not only assess dunite rock, predominantly bearing olivine (in the form of forsterite) as the mineral that has been previously proposed to be best suited for carbon removal, but focus also on basaltic rock to minimize potential negative side effects. Our results show that enhanced weathering is an option for carbon dioxide removal that could be competitive already at 60 US $ t −1 CO 2 removed for dunite, but only at 200 US $ t −1 CO 2 removed for basalt. The potential carbon removal on cropland areas could be as large as 95 Gt CO 2 a −1 for dunite and 4.9 Gt CO 2 a −1 for basalt. The best suited locations are warm and humid areas, particularly in India, Brazil, South-East Asia and China, where almost 75% of the global potential can be realized. This work presents a techno-economic assessment framework, which also allows for the incorporation of further processes.
1
Carbon-removal potential is governed primarily by rock grain size and weathering rates; major uncertainties concern weathering rates and the rock mass incorporable into soils.
2
Dunite-based enhanced weathering could become competitive at approximately US$60 per tonne of CO₂ removed, whereas basalt requires approximately US$200 per tonne.
3
Enhanced rock weathering could remove substantial atmospheric CO₂ while potentially reducing ocean acidification by storing carbon mainly as oceanic bicarbonate.
4
Estimated cropland removal potentials reach up to 95 Gt CO₂ annually for dunite and 4.9 Gt CO₂ annually for basalt.
5
Warm, humid regions—especially India, Brazil, Southeast Asia, and China—could realize nearly 75% of the global cropland-based potential.

enhanced weathering of dunite and basalt rocks applied to cropland for atmospheric carbon dioxide removal

the carbon-removal potential, economic costs, energy requirements, and controlling factors of enhanced rock weathering, including grain size and weathering rates

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2018-01-23
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Jessica Strefler
Thorben Amann
Nico Bauer
Elmar Kriegler
Jens Hartmann
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