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1

Behr, Arno. Carbon dioxide activation by metal complexes. Weinheim: VCH, 1988.

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2

Inamuddin, Abdullah M. Asiri, and Eric Lichtfouse, eds. Conversion of Carbon Dioxide into Hydrocarbons Vol. 1 Catalysis. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-28622-4.

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3

-E, Park S., Chang Jong-San, and Lee Kyu-Wan, eds. Carbon dioxide utilization for global sustainability: Proceedings of the 7th International Conference on Carbon Dioxide Utilization, Seoul, Korea, 12-16 October 2003. Boston: Elsevier, 2004.

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4

Ciric, Ana. How to utilize CO₂?: Studies of novel CO₂ reduction catalysts. [Sweet Briar, Va: Sweet Briar College], 2005.

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5

Ciric, Ana. How to utilize COb2s?: Studies of novel COb2 sreduction catalysts. [Sweet Briar, Va: Sweet Briar College], 2005.

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6

Schryer, David R. Low-temperature CO-oxidation catalysts for long-life CO2 lasers: Collected papers from an international conference sponsored by the National Aeronautics and Space Administration, Washington, D.C. and the Royal Signals and Radar Establishment, Malvern, United Kingdom, and held at Langley Research Center, Hampton, Virginia, October 17-19, 1989. Hampton, Va: Langley Research Center, 1990.

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7

Qing-Wen, Song, He Liang-Nian, and SpringerLink (Online service), eds. Capture and Utilization of Carbon Dioxide with Polyethylene Glycol. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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8

Koch, Daniel. Übergangsmetallkatalysierte Synthesen in überkritischem Kohlendioxid (scCO₂). Aachen: Mainz, 1999.

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9

The long thaw: How humans are changing the next 100,000 years of Earth's climate. Princeton: Princeton University Press, 2009.

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10

Meeting, American Chemical Society, and American Chemical Society. Division of Industrial and Engineering Chemistry, eds. Gas-expanded liquids and near-critical media: Green chemistry and engineering. Washington, D.C: American Chemical Society, 2009.

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11

Reeve, D. A. The capture and storage of carbon dioxide emissions : a significant opportunity to help Canada meet its Kyoto targets =: Captage et le stockage des émissions de dioxyde de carbone : un outil précieux pour le Canada dans le contexte du Protocole de Kyoto. Ottawa, Ont: Office of Energy Research and Development = Bureau de recherche et de développement énergétiques, 2000.

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12

Kohn, Christofer. Centralisation of distribution systems and its environmental effects. Linko ping: Linko ping University, 2005.

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13

Kicking the carbon habit: Global warming and the case for renewable and nuclear energy. New York: Columbia University Press, 2006.

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14

Schneider, Stephen Henry. Global warming: Are we entering the greenhouse century? San Francisco: Sierra Club Books, 1990.

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15

Schneider, Stephen Henry. Global warming: Are we entering the greenhouse century? San Francisco: Sierra Club Books, 1989.

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16

Schneider, Stephen Henry. Global warming: Are we entering the greenhouse century? New York: Vintage Books, 1990.

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17

Giddens, Anthony. The politics of climate change. Cambridge: Polity, 2009.

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18

The politics of climate change. Cambridge: Polity, 2009.

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19

Giddens, Anthony. The politics of climate change. Cambridge: Polity, 2009.

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20

1924-, Steinberg Meyer, ed. Greenhouse gas carbon dioxide mitigation: Science and technology. Boca Raton, Fla: Lewis Publishers, 1999.

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21

Catalytic activation of carbon dioxide. Washington, DC: American Chemical Society, 1988.

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22

Carbon Dioxide Electrochemistry: Homogeneous and Heterogeneous Catalysis. Royal Society of Chemistry, The, 2020.

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23

Robert, Marc, Cyrille Costentin, and Kim Daasbjerg. Carbon Dioxide Electrochemistry: Homogeneous and Heterogeneous Catalysis. Royal Society of Chemistry, The, 2020.

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24

Robert, Marc, Cyrille Costentin, and Kim Daasbjerg. Carbon Dioxide Electrochemistry: Homogeneous and Heterogeneous Catalysis. Royal Society of Chemistry, The, 2020.

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25

Monolith catalysts for closed-cycle carbon dioxide lasers. [Washington, DC: National Aeronautics and Space Administration, 1994.

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26

Ajay, Badlani, and Langley Research Center, eds. Monolith catalysts for closed-cycle carbon dioxide lasers. Hampton, Va: NASA Langley Research Center, 1991.

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27

United States. National Aeronautics and Space Administration., ed. Monolith catalysts for closed-cycle carbon dioxide lasers. [Washington, DC: National Aeronautics and Space Administration, 1994.

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28

Lichtfouse, Eric, Inamuddin, and Abdullah M. Asiri. Conversion of Carbon Dioxide into Hydrocarbons Vol. 1 Catalysis. Springer, 2020.

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29

DeSimone, Joseph M., and William Tumas, eds. Green Chemistry Using Liquid and Supercritical Carbon Dioxide. Oxford University Press, 2004. http://dx.doi.org/10.1093/oso/9780195154832.001.0001.

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Chemists have been researching the potential of liquid and supercritical carbon dioxide for environmentally safe applications. This edited volume will cover the various applications of using these forms of carbon dioxide. The three main areas of focus are catalysis and chemical synthesis in CO2, polymers in CO2, and industrial processes and applications utilizing CO2. The book is aimed at researchers in academia and industry, and the contributors are all experts in the field.
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30

Carbon Dioxide Utilization for Global Sustainability: Proceedings of the 7th International Conference on Carbon Dioxide Utilization, Seoul, Korea, October ... (Studies in Surface Science and Catalysis). Elsevier Science, 2004.

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31

Gardner, Steven Dwayne. High-performance CO oxidation catalysts engineered for CO2 Lasers. 1990.

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32

Suib, Steven L. New and Future Developments in Catalysis: Activation of Carbon Dioxide. Elsevier Science & Technology Books, 2013.

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33

Basile, Angelo, and Adolfo Iulianelli. Current Trends and Future Developments on Membranes: New Perspectives on Hydrogen Production, Separation, and Utilization. Elsevier, 2020.

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34

Basile, Angelo, and Antonio Comite. Current Trends and Future Developments on Membranes: Membrane Technology for Water and Wastewater Treatment - Advances and Emerging Processes. Elsevier, 2020.

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35

Basile, Angelo, and Giuseppe Spazzafumo. Current Trends and Future Developments on Membranes: Co-Generation Systems and Membrane Technology. Elsevier, 2020.

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36

Basile, Angelo, and Teko W. Napporn. Current Trends and Future Developments on Membranes: Membrane Systems for Hydrogen Production. Elsevier, 2020.

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37

Basile, Angelo, Alberto Figoli, and Alfredo Cassano. Current Trends and Future Developments on Membranes: Renewable Energy Integrated with Membrane Operations. Elsevier, 2018.

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38

Basile, Angelo, and Teko W. Napporn. Current Trends and Future Developments on Membranes: Membrane Systems for Electrochemical Hydrogen Conversion. Elsevier, 2020.

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39

Basile, Angelo, and Giuseppe Spazzafumo. Current Trends and Future Developments on Membranes: Cogeneration Systems and Membrane Technology. Elsevier, 2020.

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40

Current Trends and Future Developments on Membranes: Photocatalytic Membranes and Photocatalytic Membrane Reactors. Elsevier, 2018.

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41

Basile, Angelo, and Fausto Gallucci. Current Trends and Future Developments on Membranes: Recent Advances in Metallic Membranes. Elsevier, 2020.

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42

Basile, Angelo, and Evangelos P. Favvas. Current Trends and Future Developments on Membranes: Carbon Dioxide Separation/Capture by Using Membranes. Elsevier, 2018.

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43

Basile, Angelo, and Kamran Ghasemzadeh. Current Trends and Future Developments on Membranes: Recent Achievements in Wastewater and Water Treatments. Elsevier, 2020.

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44

Basile, Angelo, and Fausto Gallucci. Current Trends and Future Developments on Membranes: Recent Advances in Metallic Membranes. Elsevier, 2020.

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45

Basile, Angelo, and Adolfo Iulianelli. Current Trends and Future Developments on Membranes: New Perspectives on Hydrogen Production, Separation, and Utilization. Elsevier, 2020.

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46

David S.A. S.A. Simakov. Renewable Synthetic Fuels and Chemicals from Carbon Dioxide: Fundamentals, Catalysis, Design Considerations and Technological Challenges. Springer, 2017.

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47

Modeling of carbon monoxide oxidation kinetics over NASA carbon dioxide laser catalysts: Final project report. [Washington, DC: National Aeronautics and Space Administration, 1989.

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48

Capture And Utilization Of Carbon Dioxide With Polyethylene Glycol. Springer, 2012.

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49

Low-temperature CO-oxidation catalysts for long-life CO₂ lasers: Collected papers from an international conference sponsored by the National Aeronautics and Space Administration, Washington, D.C., and the Royal Signals and Radar Establishment, Malvern, United Kingdom, and held at Langley Research Center, Hampton, Virginia, October 17-19, 1989. Washington, D.C: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1990.

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50

Suib, Steven L. New and Future Developments in Catalysis: Catalysis by Nanoparticles. Elsevier Science & Technology Books, 2013.

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