Libros sobre el tema "Renewable gase"

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1

(Firm), Knovel, ed. Urban energy transition: From fossil fuels to renewable power. Amsterdam: Elsevier, 2008.

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2

Rosío, Vargas y Valdés-Ugalde José Luis, eds. Alternativas energéticas para el siglo XXI. México: Universidad Nacional Autónoma de México, Coordinación de Humanidades, Centro de Investigación sobre América del Norte, 2006.

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3

Gas pipeline renewal: Insertion technology. Houston,Tex: Gulf Pub. Co., 1990.

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4

service), ScienceDirect (Online, ed. Urban energy transition: From fossil fuels to renewable power. Amsterdam: Elsevier, 2008.

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5

editor, Mastny Lisa y Worldwatch Institute, eds. Powering the low-carbon economy: The once and future roles of renewable energy and natural gas. Washington, D.C: WorldWatch Institute, 2010.

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6

1974-, Griffin James y Lempert Robert J, eds. Impacts on U.S. energy expenditures and greenhouse-gas emissions of increasing renewable-energy use. Santa Monica, CA: Rand, 2008.

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7

Prévot, Henri. Moins de CO2 pour pas trop cher: Propositions pour une politique de l'énergie. Paris: L'Harmattan, 2012.

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8

California Energy Commission. Fuels & Transportation Division., KEMA (Firm) y Bates White LLC, eds. Challenges and opportunities to deliver renewable energy from Baja California Norte to California. [Sacramento, Calif.]: California Energy Commission, 2008.

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9

Robert, Motta y National Renewable Energy Laboratory (U.S.), eds. Alternative fuel transit buses: Final results from the National Renewable Energy Laboratory (NREL) vehicle evaluation program. Golden, CO: National Renewable Energy Laboratory, 1996.

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10

National Renewable Energy Laboratory (U.S.), ed. Western renewable energy zones: Meeting transmission challenges in the Rocky Mountain Region. Golden, Colo.]: National Renewable Energy Laboratory, 2011.

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11

The healing game: A story of loss and renewal. Bloomington, IN: Abbott Press, 2012.

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12

Monteith, Mark C. Faces of Alaska: Land cover, renewable energy, and natural gas issues. Hauppauge, N.Y: Nova Science Publishers, 2011.

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13

The grand energy transition: The rise of energy gases, sustainable life and growth, and the next great economic expansion. Hoboken, N.J: Wiley, 2009.

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14

Jennifery, Sumner y National Renewable Energy Laboratory (U.S.), eds. Using renewable energy purchases to achieve institutional carbon goals: A review of current practices and considerations. Golden, Colo: National Renewable Energy Laboratory, 2011.

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15

Prindle, William R. Impacts of energy efficiency and renewable energy on natural gas markets in the Pacific Northwest. Washington, D.C: American Council for an Energy-Efficient Economy, 2006.

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16

Petak, Kevin. The value of natural gas storage and the impact of renewable generation on California's natural gas infrastructure. Fairfax, VA: ICF International, 2009.

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17

Ten technologies to save the planet: Energy options for a low-carbon future. Vancouver [B.C.]: Greystone Books, 2010.

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18

Petrolio e dopo?: Contro le false tesi sulla fine dell'oro nero. [Milano]: ETAS, 2007.

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19

Riccardo, Varvelli. Petrolio e dopo?: Contro le false tesi sulla fine dell'oro nero. [Milano]: ETAS, 2007.

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20

Elliott, R. Neal. Impacts of energy efficiency and renewable energy on natural gas markets : updated and expanded analysis. Washington, D.C: American Council for an Energy-Efficient Economy, 2005.

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21

Tuhkanen, Sami. Uusiutuvien energialähteiden edistämisohjelman ympäristövaikutusten arviointi. Helsinki: Kauppa- ja teollisuusministeriö, 1999.

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22

Bergthaler, Wilhelm. Europäisches Klimaschutzrecht und erneuerbare Energien. Wien: Manzsche Verlags- und Universitätsbuchhandlung, 2014.

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23

Hefner, Robert A. The grand energy transition: The rise of energy gases, sustainable life and growth, and the next great economic expansion. Hoboken, N.J: Wiley, 2009.

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24

Hefner, Robert A. The grand energy transition: The rise of energy gases, sustainable life and growth, and the next great economic expansion. Hoboken, N.J: Wiley, 2009.

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25

Hefner, Robert A. The grand energy transition: The rise of energy gases, sustainable life and growth, and the next great economic expansion. Hoboken, N.J: Wiley, 2009.

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26

Demirbas, Ayhan. Methane gas hydrate. London: Springer, 2010.

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27

Helga-Jane, Scarwell, Leducq Divya, Groux Annette y Université de Lille 1, sciences et technologies, eds. Transitions énergétiques: Quelles dynamiques de changement. Paris: Harmattan, 2015.

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28

France) Colloque "Réussir la transition energetique: quelles dynamiques de changement?" (2015 Lille. Réussir la transition energetique. Villeneuve d'Acsq, France: Presses universitaries du Septentrion, 2015.

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29

Elliott, R. Neal. Natural gas price effects of energy efficiency and renewable energy practices and policies. Washington, D.C: American Council for an Energy-Efficient Economy, 2003.

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30

National Petroleum Council. Committee on Global Oil and Gas., ed. Hard truths: Facing the hard truths about energy : a comprehensive view to 2030 of global oil and natural gas. Washington, DC: National Petroleum Council, 2007.

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31

European Conference of Ministers of Transport., ed. Cleaner cars: Fleet renewal and scrappage schemes : guide to good practice. Paris, France: ECMT, 1999.

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32

Center for Environmental Information. Conference. Global energy strategies: Living with restricted greenhouse gas emissions. New York: Plenum, 1993.

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33

G, Wilson Gerald, ed. Attention prioritizing and pipe replacement/renewal decisions: A technical report. [United States]: American Gas Association, 1990.

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34

(Japan), Saitama-ken. Saitama-ken hainetsu enerugī kaihatsu riyō jigyōka kanōsei chōsa hōkokusho. [Urawa-shi]: Saitama-ken, 1986.

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35

Richards, K. M. Landfill gas: Working with Gaia. Wallingford, Oxon: CAB International, 1989.

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36

United, States Congress Senate Committee on Agriculture Nutrition and Forestry. Many ways renewable fuels could aid in decreasing greenhouse gas emissions and increasing energy security: Hearing before the Committee on Agriculture, Nutrition, and Forestry, United States Senate, One Hundred Fifth Congress, first session ... November 13, 1997. Washington: U.S. G.P.O., 1999.

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37

United States. Congress. Senate. Committee on Agriculture, Nutrition, and Forestry. Many ways renewable fuels could aid in decreasing greenhouse gas emissions and increasing energy security: Hearing before the Committee on Agriculture, Nutrition, and Forestry, United States Senate, One Hundred Fifth Congress, first session ... November 13, 1997. Washington: U.S. G.P.O., 1999.

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38

Many ways renewable fuels could aid in decreasing greenhouse gas emissions and increasing energy security: Hearing before the Committee on Agriculture, Nutrition, and Forestry, United States Senate, One Hundred Fifth Congress, first session ... November 13, 1997. Washington: U.S. G.P.O., 1999.

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39

Dr, Singh K. K., Mathur A. N. 1945-, Rathore N. S. 1960- y India. Dept. of Non-Conventional Energy Sources., eds. Advances in biomass gasification technology: Proceeding of IInd national MEET/PICCOP meet, December 20-21, 1990. Udaipur, Rajasthan: Himanshu Publications, 1991.

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40

Buchholz, Wolfgang. Die Zukunft der Energiemärkte: Ökonomische Analyse und Bewertung von Potenzialen und Handlungsmöglichkeiten : Studie. München: Ifo-Institut, Leibniz-Institut für Wirtschaftsforschung an der Universität München e.V., Forschungsbereich--Energie, Umwelt und Erschöpfbare Ressourcen, 2012.

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41

Bredow, Hartwig Freiherr von. Biogasanlagen im EEG. 2a ed. Berlin: E. Schmidt, 2011.

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42

Organization, Asian Productivity y Study Meeting on "the Applications of Alternative Energy Sources" (1986 : Tokyo, Japan), eds. Applications of alternative energy sources: Selected experiences : report of the Study Meeting held in Japan, 1986. Tokyo: Asian Productivity Organization, 1986.

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43

1916-, White James C., Center for Environmental Information (U.S.) y International Conference on Global Energy Strategies: Living with Restricted Greenhouse Gas Emissions (9th : 1992 : Washington, D.C.), eds. Global energy strategies: Living with restricted greenhouse gas emissions. New York: Plenum Press, 1993.

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44

Fa da guo jia xin neng yuan fa lü yu zheng ce yan jiu. [Wuhan]: Wuhan da xue chu ban she, 2011.

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45

State leadership towards a low-carbon energy future: Hearing before the Select Committee on Energy Independence and Global Warming, House of Representatives, One Hundred Tenth Congress, first session, November 14, 2007. Washington: U.S. G.P.O., 2010.

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46

Natural gas supply: Hearing before the Committee on Energy and Natural Resources, United States Senate, One Hundred Sixth Congress, second session to discuss America's natural gas supply, July 26, 2000. Washington: U.S. G.P.O., 2001.

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47

Indirasardjana, Pria. Minyak untuk presiden. Jakarta: PT. Grasindo, 2014.

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48

Roggenkamp, Martha, Jacob Sandholt y Daisy G. Tempelman. Innovation in the EU Gas Sector. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198822080.003.0015.

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The EU natural gas system has been developed since the 1960s, following discovery of the Groningen gas field. Climate change and security of supply challenges are affecting the natural gas market, provoking greener innovation including the introduction of renewable gases, such as biogas, which needs to be converted to biomethane (natural gas quality) before injection into the natural gas system and transported cross-border. This chapter examines the legal framework on EU and national level. Special attention is paid to: the extent to which biogas/biomethane is considered a renewable energy source; safety and quality standards; access and connection rules. National gas quality standards may, however, prove to be an obstacle for transportation cross-border. In addition, there is a trend towards cross-border contractual trade in biomethane and slowly emerging organizational developments facilitating cross-border trade in biomethane.
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49

Glazewski, Jan, Lee-Ann Steenkamp y Peter Kayode Oniemola. Promoting Renewable Energy in African Countries. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198819837.003.0013.

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This chapter reviews the development and role of financial mechanisms and fiscal incentives in two African economic powerhouses, South Africa and Nigeria, and the two largest emitters of greenhouse gases on the continent. Inoutlining both countries’ financial and fiscal policy response to promoting renewable energy, the term ‘financial mechanisms or incentives’ refers to macro-economic instruments such as feed-in tariffs; while ‘fiscal incentive’ refers to narrower revenue incentives including disincentives such as a carbon tax. In South Africa, a shift from traditional carbon-based energy sources towards renewables is encouraged by both financial mechanisms and fiscal incentives . In Nigeria, fiscal incentives are promoted by focusing on measures to increase non-oil revenues, primarily through improved tax policy and administration The chapter reveals that while significant strides have been made in both countries to invoke fiscal and financial incentives to promote renewable energy many challenges remain before this ideal becomes a reality.
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50

de Alencar Xavier, Yanko Marcius y Anderson Souza da Silva Lanzillo. Financing Renewable Energy in Brazil. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198822080.003.0019.

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This chapter analyses Brazilian public policy on financing renewable energy to address climate change. Conditions in Brazil favour adoption of an increasingly clean energy matrix: with significant innovation in energy policy and technology much of the country’s energy production now comes from renewable sources. The chapter examines the National Policy on Climate Change (Federal Law no. 12.187/2009), the National Fund for Climate Change (Federal Law no. 12.114/2009). Yet, energy for Brazil’s transportation system remains largely fossil fuel-based, and the oil and gas industry is economically important. The chapter discusses the intergration of renewable energy into climate change policy and adoption of climate policy in energy legislation, together with measures such as taxation that support renewable energy. The chapter examines the oil and gas industry economic crisis and the ramifications for financing renewable energy given historic reliance on the fossil fuel sector to fund innovations in renewable energy technologies.
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