Insurance and geoengineering 23
HNRG 2020, ‘The promise of regenerative agriculture: Environmental and conservation benefits of conservation tillage and cover cropping’, Hancock Natural
Resource Group,
Conservation-Tillage-and-Cover-Crops.pdf>.
Horton, J.B & Keith, D.W 2019, ‘Multilateral parametric climate risk insurance: A
tool to facilitate agreement about deployment of solar geoengineering?’, Climate
Policy, vol. 19, pp. 820–826.
Horton, J.B, Lefale, P & Keith, D 2020, ‘Parametric insurance for solar geoengineering: Insights from the Pacific catastrophe risk assessment and financing
initiative’, Global Policy, vol. 12, Suppl. 1, pp. 97–107.
Jørgensen, S.L, Termansen, M & Pascual, U 2020, ‘Natural insurance as condition for market insurance: Climate change adaptation in agriculture’, Ecological
Economics, vol. 169, p. 106489.
Kane, D.A, Bradford, M.A, Fuller, E, Oldfield, E.E & Wood, S.A 2021, ‘Soil
organic matter protects US maize yields and lowers crop insurance payouts under
drought’, Environmental Research Letters, vol. 16, p. 044018.
Kearnes, M & Rickards, L 2020, ‘Knowing earth, knowing soil: Epistemological
work and the political aesthetics of regenerative agriculture’, In Salazar, J,
Kearnes, M, Granjou, C, Krzywoszynska, A, Tironi, M (Eds.) Thinking with
Soils: Social Theory and Material Politics, Bloomsbury Publishing, London,
pp. 71–88.
Kiehl, J.T 2006, ‘Geoengineering climate change: Treating the symptom over the
cause?’ Climatic Change, vol. 77, pp. 227–228.
Krzywoszynska, A 2020, ‘Nonhuman labor and the making of resources: Making
soils a resource through microbial labor’, Environmental Humanities, vol. 12,
pp. 227–249.
Latour, B 2018, Down to Earth: Politics in the New Climatic Regime, John Wiley &
Sons, New Jersey.
Lederer, M & Kreuter, J 2018, ‘Organising the unthinkable in times of crises: Will
climate engineering become the weapon of last resort in the Anthropocene?’,
Organization, vol. 25, pp. 472–490.
Markusson, N, Ginn, F, Singh Ghaleigh, N & Scott, V 2014 ‘‘In case of emergency
press here’: Framing geoengineering as a response to dangerous climate change’,
Wiley Interdisciplinary Reviews: Climate Change, vol. 5, pp. 281–290.
Masih, A 2018, ‘An enhanced seismic activity observed due to climate change:
Preliminary results from Alaska’, IOP Conference Series: Earth and Environmental
Science, IOP Publishing.
Masson-Delmotte, V et al. 2018, ‘Global warming of 1.5°C’, IPCC, Geneva. https://
www.ipcc.ch/sr15/.
McCracken, M 2009, Geoengineering: A Possible Climate Change Insurance Policy,
World Bank,.
Mechler, R, Singh, C, Ebi, K, Djalante, R, Thomas, A, James, R, Tschakert, P,
Wewerinke-Singh, M, Schinko, T & Ley, D 2020, ‘Loss and damage and limits
to adaptation: Recent IPCC insights and implications for climate science and
policy’, Sustainability Science, vol. 15, pp. 1245–1251.
Ouma, S 2020, ‘This can(‘t) be an asset class: The world of money management,
‘society’, and the contested morality of farmland investments’, Environment and
Planning A: Economy and Space, vol. 52, pp. 66–87.
HNRG 2020, ‘The promise of regenerative agriculture: Environmental and conservation benefits of conservation tillage and cover cropping’, Hancock Natural
Resource Group,
Horton, J.B & Keith, D.W 2019, ‘Multilateral parametric climate risk insurance: A
tool to facilitate agreement about deployment of solar geoengineering?’, Climate
Policy, vol. 19, pp. 820–826.
Horton, J.B, Lefale, P & Keith, D 2020, ‘Parametric insurance for solar geoengineering: Insights from the Pacific catastrophe risk assessment and financing
initiative’, Global Policy, vol. 12, Suppl. 1, pp. 97–107.
Jørgensen, S.L, Termansen, M & Pascual, U 2020, ‘Natural insurance as condition for market insurance: Climate change adaptation in agriculture’, Ecological
Economics, vol. 169, p. 106489.
Kane, D.A, Bradford, M.A, Fuller, E, Oldfield, E.E & Wood, S.A 2021, ‘Soil
organic matter protects US maize yields and lowers crop insurance payouts under
drought’, Environmental Research Letters, vol. 16, p. 044018.
Kearnes, M & Rickards, L 2020, ‘Knowing earth, knowing soil: Epistemological
work and the political aesthetics of regenerative agriculture’, In Salazar, J,
Kearnes, M, Granjou, C, Krzywoszynska, A, Tironi, M (Eds.) Thinking with
Soils: Social Theory and Material Politics, Bloomsbury Publishing, London,
pp. 71–88.
Kiehl, J.T 2006, ‘Geoengineering climate change: Treating the symptom over the
cause?’ Climatic Change, vol. 77, pp. 227–228.
Krzywoszynska, A 2020, ‘Nonhuman labor and the making of resources: Making
soils a resource through microbial labor’, Environmental Humanities, vol. 12,
pp. 227–249.
Latour, B 2018, Down to Earth: Politics in the New Climatic Regime, John Wiley &
Sons, New Jersey.
Lederer, M & Kreuter, J 2018, ‘Organising the unthinkable in times of crises: Will
climate engineering become the weapon of last resort in the Anthropocene?’,
Organization, vol. 25, pp. 472–490.
Markusson, N, Ginn, F, Singh Ghaleigh, N & Scott, V 2014 ‘‘In case of emergency
press here’: Framing geoengineering as a response to dangerous climate change’,
Wiley Interdisciplinary Reviews: Climate Change, vol. 5, pp. 281–290.
Masih, A 2018, ‘An enhanced seismic activity observed due to climate change:
Preliminary results from Alaska’, IOP Conference Series: Earth and Environmental
Science, IOP Publishing.
Masson-Delmotte, V et al. 2018, ‘Global warming of 1.5°C’, IPCC, Geneva. https://
www.ipcc.ch/sr15/.
McCracken, M 2009, Geoengineering: A Possible Climate Change Insurance Policy,
World Bank,
Mechler, R, Singh, C, Ebi, K, Djalante, R, Thomas, A, James, R, Tschakert, P,
Wewerinke-Singh, M, Schinko, T & Ley, D 2020, ‘Loss and damage and limits
to adaptation: Recent IPCC insights and implications for climate science and
policy’, Sustainability Science, vol. 15, pp. 1245–1251.
Ouma, S 2020, ‘This can(‘t) be an asset class: The world of money management,
‘society’, and the contested morality of farmland investments’, Environment and
Planning A: Economy and Space, vol. 52, pp. 66–87.
