152. Meyer LH, Roser D (2012) Enough for the future. In:
Intergenerational justice. Oxford University Press,
Oxford, UK, pp 219–248
153. Nolt J (2017) Future generations in environmental
ethics. In: The Oxford handbook of environmental
ethics. Oxford handbooks. Oxford University Press,
New York
154. Gleeson B, Low N (2002) Justice, society and nature:
an exploration of political ecology. Routledge,
London
155. Schlosberg D (2007) Defining environmental justice:
theories, movements, and nature. Oxford University
Press, Oxford
156. Thompson A, Light A, Higgs ES (2013) Valuing
novel ecosystems. In: Novel ecosystems: intervening
in the new ecological world order. Wiley-Blackwell,
Chichester, pp 192–204
157. Knauss S (2018) Conceptualizing human stewardship in the Anthropocene: the rights of nature in
Ecuador, New Zealand and India. J Agric Environ
Ethics 31(6):703–722
158. Jamieson D (2008) The rights of animals and the
demands of nature. Environ Values 17(2):181–199
159. Feinberg J (1970) The nature and value of rights.
J Value Inq 4(4):243–260
160. Jamieson D (2011) Energy, ethics, and the transformation of nature. In: The ethics of global climate
change. Cambridge University Press, Cambridge
161. Main sources of carbon dioxide emissions. What’s
your impact?, 25 June 2019. [Online]. Available:
https://whatsyourimpact.org/greenhouse-gases/carbondioxide-emissions
162. Waters CN et al (2016) The Anthropocene is functionally and stratigraphically distinct from the Holocene. Science 351(6269):aad2622
163. Crutzen PJ (2006) The “Anthropocene”. In: Ehlers E,
Krafft T (eds) Earth system science in the
Anthropocene. Springer Berlin Heidelberg, Berlin/
Heidelberg, pp 13–18
164. Urbano L. The thermal difference between land and
water. Montessori Muddle, 25 June 2019. [Online].
Available: http://montessorimuddle.org/2011/08/31/
the-thermal-difference-between-land-and-water/
165. NOAA’s
Annual
Greenhouse
Gas
Index
(An Introduction). Earth System Research Laboratory
Global Monitoring Division, 25 June 2019. [Online].
Available: https://www.esrl.noaa.gov/gmd/aggi/
166. Scheffers BR et al (2016) The broad footprint of
climate change from genes to biomes to people. Science 354(6313):aaf7671
167. 17 Goals to Transform Our World. Sustainable
Development Goals, 25 June 2019. [Online]. Available: https://www.un.org/sustainabledevelopment/
168. Sustainable Development Goals: Sustainable Development Knowledge Platform. United Nations, United
Nations, https://sustainabledevelopment.un.org/
169. Interagency Working Group on Climate Change,
Health (US) (2010) National Institute of Environmental Health Sciences, Centers for Disease Control,
Prevention (US), United States. National Oceanic,
and Atmospheric Administration. A Human Health
Perspective on Climate Change: A Report Outlining
the Research Needs on the Human Health Effects of
Climate Change. National Institute of Environmental
Health Sciences
170. Buchanan JM, Stubblebine WC (1962) Externality.
Economica 29(116):371–384
171. Mingle J (2019) The methane detectives: on the trail of
a global warming mystery. Undark, Mar 2019. https://
undark.org/article/methane-global-warming-climatechange-mystery/
172. Allan RP, Soden BJ, John VO, Ingram W, Good
P (2010) Current changes in tropical precipitation.
Environ Res Lett 5:025205
173. Burney J, Ramanathan V (2014) Recent climate and
air pollution impacts on Indian agriculture. Proc Natl
Acad Sci 111(46):16319–16324
174. Callicott JB, Nelson MP (1998) The great new wilderness debate. Athens: University of Georgia Press
175. Woods M (2017) Rethinking wilderness. Canada:
Broadview Press
176. Leopold A (1925) A plea for wilderness hunting
grounds. Outdoor Life 56(5):348–350
177. Leopold A (1948) A Sand County Almanac. Oxford
University Press, New York
178. Rolston H (1991) Environmental ethics: values in
and duties to the natural world. In: Bormann FH,
Kellert SR, (eds) Ecology, economics, ethics: the
broken circle. USA: Yale University, pp 73–96
179. Noss RF, LaRoe ET, Scott JM (1995) Endangered
ecosystems of the United States: a preliminary
assessment of loss and degradation, vol 28. US
Department of the Interior, National Biological Service, Washington, DC, pp 1–58
180. Parfit D (1984) Reasons and persons. Clarendon
Press, Oxford
181. Norton BG (1984) Environmental ethics and weak
anthropocentrism. Environ Ethics 6(2):131–148
182. Nolt J (2017) Future generations in environmental
ethics. In: Gardiner SM, Allen T (eds) The Oxford
handbook of environmental ethics. Oxford handbooks. Oxford University Press, New York
183. Nolt J (2013) Response to critics of “how harmful are
the average American’s greenhouse gas emissions?”.
Ethics Policy Environ 16(1):1–9
184. Goodpaster KE (1978) On being morally considerable. J Philos 75(6):308–325
185. Taylor PW (1986) Respect for nature: a theory of
environmental ethics. Princeton University Press,
Princeton
186. Pithan F, Mauritsen T (2014) Arctic amplification
dominated by temperature feedbacks in contemporary climate models. Nat Geosci 7(3):181–184
187. Taylor PC, Cai M, Hu A, Meehl J, Washington W,
Zhang GJ (2013) A decomposition of feedback contributions to polar warming amplification. J Clim
26:7023–7043. https://doi.org/10.1175/JCLI-D-1200696.1
Air Pollution and Climate Change: Sustainability, Restoration, and Ethical Implications
323
Intergenerational justice. Oxford University Press,
Oxford, UK, pp 219–248
153. Nolt J (2017) Future generations in environmental
ethics. In: The Oxford handbook of environmental
ethics. Oxford handbooks. Oxford University Press,
New York
154. Gleeson B, Low N (2002) Justice, society and nature:
an exploration of political ecology. Routledge,
London
155. Schlosberg D (2007) Defining environmental justice:
theories, movements, and nature. Oxford University
Press, Oxford
156. Thompson A, Light A, Higgs ES (2013) Valuing
novel ecosystems. In: Novel ecosystems: intervening
in the new ecological world order. Wiley-Blackwell,
Chichester, pp 192–204
157. Knauss S (2018) Conceptualizing human stewardship in the Anthropocene: the rights of nature in
Ecuador, New Zealand and India. J Agric Environ
Ethics 31(6):703–722
158. Jamieson D (2008) The rights of animals and the
demands of nature. Environ Values 17(2):181–199
159. Feinberg J (1970) The nature and value of rights.
J Value Inq 4(4):243–260
160. Jamieson D (2011) Energy, ethics, and the transformation of nature. In: The ethics of global climate
change. Cambridge University Press, Cambridge
161. Main sources of carbon dioxide emissions. What’s
your impact?, 25 June 2019. [Online]. Available:
https://whatsyourimpact.org/greenhouse-gases/carbondioxide-emissions
162. Waters CN et al (2016) The Anthropocene is functionally and stratigraphically distinct from the Holocene. Science 351(6269):aad2622
163. Crutzen PJ (2006) The “Anthropocene”. In: Ehlers E,
Krafft T (eds) Earth system science in the
Anthropocene. Springer Berlin Heidelberg, Berlin/
Heidelberg, pp 13–18
164. Urbano L. The thermal difference between land and
water. Montessori Muddle, 25 June 2019. [Online].
Available: http://montessorimuddle.org/2011/08/31/
the-thermal-difference-between-land-and-water/
165. NOAA’s
Annual
Greenhouse
Gas
Index
(An Introduction). Earth System Research Laboratory
Global Monitoring Division, 25 June 2019. [Online].
Available: https://www.esrl.noaa.gov/gmd/aggi/
166. Scheffers BR et al (2016) The broad footprint of
climate change from genes to biomes to people. Science 354(6313):aaf7671
167. 17 Goals to Transform Our World. Sustainable
Development Goals, 25 June 2019. [Online]. Available: https://www.un.org/sustainabledevelopment/
168. Sustainable Development Goals: Sustainable Development Knowledge Platform. United Nations, United
Nations, https://sustainabledevelopment.un.org/
169. Interagency Working Group on Climate Change,
Health (US) (2010) National Institute of Environmental Health Sciences, Centers for Disease Control,
Prevention (US), United States. National Oceanic,
and Atmospheric Administration. A Human Health
Perspective on Climate Change: A Report Outlining
the Research Needs on the Human Health Effects of
Climate Change. National Institute of Environmental
Health Sciences
170. Buchanan JM, Stubblebine WC (1962) Externality.
Economica 29(116):371–384
171. Mingle J (2019) The methane detectives: on the trail of
a global warming mystery. Undark, Mar 2019. https://
undark.org/article/methane-global-warming-climatechange-mystery/
172. Allan RP, Soden BJ, John VO, Ingram W, Good
P (2010) Current changes in tropical precipitation.
Environ Res Lett 5:025205
173. Burney J, Ramanathan V (2014) Recent climate and
air pollution impacts on Indian agriculture. Proc Natl
Acad Sci 111(46):16319–16324
174. Callicott JB, Nelson MP (1998) The great new wilderness debate. Athens: University of Georgia Press
175. Woods M (2017) Rethinking wilderness. Canada:
Broadview Press
176. Leopold A (1925) A plea for wilderness hunting
grounds. Outdoor Life 56(5):348–350
177. Leopold A (1948) A Sand County Almanac. Oxford
University Press, New York
178. Rolston H (1991) Environmental ethics: values in
and duties to the natural world. In: Bormann FH,
Kellert SR, (eds) Ecology, economics, ethics: the
broken circle. USA: Yale University, pp 73–96
179. Noss RF, LaRoe ET, Scott JM (1995) Endangered
ecosystems of the United States: a preliminary
assessment of loss and degradation, vol 28. US
Department of the Interior, National Biological Service, Washington, DC, pp 1–58
180. Parfit D (1984) Reasons and persons. Clarendon
Press, Oxford
181. Norton BG (1984) Environmental ethics and weak
anthropocentrism. Environ Ethics 6(2):131–148
182. Nolt J (2017) Future generations in environmental
ethics. In: Gardiner SM, Allen T (eds) The Oxford
handbook of environmental ethics. Oxford handbooks. Oxford University Press, New York
183. Nolt J (2013) Response to critics of “how harmful are
the average American’s greenhouse gas emissions?”.
Ethics Policy Environ 16(1):1–9
184. Goodpaster KE (1978) On being morally considerable. J Philos 75(6):308–325
185. Taylor PW (1986) Respect for nature: a theory of
environmental ethics. Princeton University Press,
Princeton
186. Pithan F, Mauritsen T (2014) Arctic amplification
dominated by temperature feedbacks in contemporary climate models. Nat Geosci 7(3):181–184
187. Taylor PC, Cai M, Hu A, Meehl J, Washington W,
Zhang GJ (2013) A decomposition of feedback contributions to polar warming amplification. J Clim
26:7023–7043. https://doi.org/10.1175/JCLI-D-1200696.1
Air Pollution and Climate Change: Sustainability, Restoration, and Ethical Implications
323
