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134. Twomey SA (1977) The influence of pollution on the
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135. Latham J (1990) Control of global warming? Nature
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of low-level maritime clouds. Atmos Sci Lett
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137. Webb M (2010) Clouds in the perturbed climate
system: their relationship to energy balance, atmospheric dynamics and precipitation, edited by Jost
Heintzenberg and Robert J. Charlson. Strüngmann
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139. Seifritz W (1989) Mirrors to halt global warming?
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143. Chaturvedi R, Chaturvedi R, Murthy I (2008) Forest
conservation, afforestation and reforestation in India:
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95(2):216–222
144. Ruddiman WF (2003) The anthropogenic greenhouse era began thousands of years ago. Clim
Chang 61:261–293
145. O’Connor D, Ford J (2014) Increasing the effectiveness of the “Great Green Wall” as an adaptation to the
effects of climate change and desertification in the
Sahel. Sustainability 6(10):7142–7154
146. Kheshgi HS (1995) Sequestering atmospheric carbon
dioxide by increasing ocean alkalinity. Energy
20(9):915–922
147. Kruger T, Cquestrate O (2010) Increasing the Alkalinity of the Ocean to Enhance its Capacity to Act as a
Carbon Sink and to Counteract the Effect of Ocean
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148. Henderson G, Rickaby R, Bouman H (2008)
Decreasing atmosphere CO 2 by increasing ocean
alkalinity. University of Oxford, Department of
Earth Sciences and The James Martin 21st Century
Ocean Institute
149. Strong A, Cullen J, Chisholm SW (2009) Ocean
fertilization: science, policy, and commerce. Oceanography 22(3):236–261
150. Smetacek V et al (2012) Deep carbon export from a
Southern Ocean iron-fertilized diatom bloom. Nature
487(7407):313–319
151. Gosseries A, Meyer LH (2009) Intergenerational justice. Oxford University Press, Oxford, UK
322
Air Pollution and Climate Change: Sustainability, Restoration, and Ethical Implications
Wright A, van der Zwaan B (2012) The urgency of
the development of CO 2 capture from ambient air.
Proc Natl Acad Sci 109(33):13156–13162
121. Irfan U. Methane proves hard to capture. [Online].
Available: https://www.scientificamerican.com/article/
methane-proves-hard-to-capture/?fbclid¼IwAR0MYa
q2S0_YxxrKy0fHl1eDyoItNUR7OEaYBFhp1TtgW
VkFRKOFlpYcXVM. Accessed 25 Mar 2019
122. Rogelj J et al (2016) Paris agreement climate proposals need a boost to keep warming well below
2
C. Nature 534(7609):631
123. Kesicki F, Strachan N (2011) Marginal abatement
cost (MAC) curves: confronting theory and practice.
J Environ Sci Policy 14:1195–1204
124. Barthel C, Bunse M, Irrek W, Thomas S (2006)
Options and potentials for energy end-use efficiency
and energy services. Wuppertal Institute for Climate,
Environment and Energy, Wuppertal
125. Nolt J (2011) How harmful are the average American’s greenhouse gas emissions? Ethics Policy Environ 14:3–10
126. Nolt J (2011) Greenhouse gas emission and the domination of posterity. In: The ethics of global climate
change. Cambridge University Press, Cambridge
127. Füssel H-M (2007) Adaptation planning for climate
change: concepts, assessment approaches and key
lessons. Sustain Sci 2(2):265–275
128. Edenhofer O, Pichs-Madruga R, Sokona Y, Agrawala
S, Bashmakov IA, Blanco G, Broome J, Bruckner T,
et al. (2014) Summary for policymakers. In: Climate
Change 2014: Mitigation of Climate Change. IPCC
Working Group III Contribution to AR5. Cambridge
University Press
129. Stocker, Thomas F., et al. (2013) “Technical summary.” Climate change 2013: the physical science
basis. Contribution of Working Group I to the Fifth
Assessment Report of the Intergovernmental Panel on
Climate Change. Cambridge University Press 33–115
130. Wang J, Huang J, Yang J (2014) Overview of impacts
of climate change and adaptation in China’s agriculture. J Integr Agric 13(1):1–17
131. Schilling J, Freier K, Hertig E, Scheffran J (2012)
Climate change, vulnerability and adaptation in
North Africa with focus on Morocco. Agric Ecosyst
Environ 156:12–26
132. Lenton TM, Vaughan N (2009) The radiative forcing
potential of different climate engineering options.
Atmos Chem Phys 9(1):5539–5561
133. Latham J et al (2008) Global temperature stabilization via controlled albedo enhancement of low-level
maritime clouds. Philos Trans R Soc Math Phys Eng
Sci 366(1882):3969–3987
134. Twomey SA (1977) The influence of pollution on the
shortwave albedo of clouds. J Atmos Sci 34(7):1149–1154
135. Latham J (1990) Control of global warming? Nature
347(6291):339–340
136. Latham J (2002) Amelioration of global warming by
controlled enhancement of the albedo and longevity
of low-level maritime clouds. Atmos Sci Lett
3(2–4):52–58
137. Webb M (2010) Clouds in the perturbed climate
system: their relationship to energy balance, atmospheric dynamics and precipitation, edited by Jost
Heintzenberg and Robert J. Charlson. Strüngmann
Forum Reports. MIT Press, May 2009. ISBN 978
0 262 01287 4. Quarterly Journal of the Royal
Meteorological Society: A journal of the atmospheric sciences, applied meteorology and physical
oceanography 136(648):827–828
138. Building Media Inc. CE Center - Cool Roofs for a
Hot Planet. Continuing Education Center, https://
continuingeducation.bnpmedia.com/courses/durolastinc/cool-roofs-for-a-hot-planet/2/
139. Seifritz W (1989) Mirrors to halt global warming?
Nature 340:6235
140. Humphreys D (2011) Smoke and mirrors: some
reflections on the science and politics of
geoengineering. J Environ Dev 20(2):99–120
141. MacCracken M (2006) Geoengineering: worthy of
cautious evaluation? Clim Chang 77(3):235–243
142. Kammann C et al (2017) Biochar as a tool to reduce
the agricultural greenhouse-gas burden – knowns,
unknowns and future research needs. J Environ Eng
Landsc Manag 25(2):114–139
143. Chaturvedi R, Chaturvedi R, Murthy I (2008) Forest
conservation, afforestation and reforestation in India:
implications for forest carbon stocks. Curr Sci
95(2):216–222
144. Ruddiman WF (2003) The anthropogenic greenhouse era began thousands of years ago. Clim
Chang 61:261–293
145. O’Connor D, Ford J (2014) Increasing the effectiveness of the “Great Green Wall” as an adaptation to the
effects of climate change and desertification in the
Sahel. Sustainability 6(10):7142–7154
146. Kheshgi HS (1995) Sequestering atmospheric carbon
dioxide by increasing ocean alkalinity. Energy
20(9):915–922
147. Kruger T, Cquestrate O (2010) Increasing the Alkalinity of the Ocean to Enhance its Capacity to Act as a
Carbon Sink and to Counteract the Effect of Ocean
Acidification[J]. https://cseg.ca/assets/files/resources/
abstracts/2010/1067_GC2010_Increasing_the_Alka
linity_of_the_Ocean.pdf
148. Henderson G, Rickaby R, Bouman H (2008)
Decreasing atmosphere CO 2 by increasing ocean
alkalinity. University of Oxford, Department of
Earth Sciences and The James Martin 21st Century
Ocean Institute
149. Strong A, Cullen J, Chisholm SW (2009) Ocean
fertilization: science, policy, and commerce. Oceanography 22(3):236–261
150. Smetacek V et al (2012) Deep carbon export from a
Southern Ocean iron-fertilized diatom bloom. Nature
487(7407):313–319
151. Gosseries A, Meyer LH (2009) Intergenerational justice. Oxford University Press, Oxford, UK
322
Air Pollution and Climate Change: Sustainability, Restoration, and Ethical Implications
