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Books on the topic 'Solar fuel production'

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1

Giménez, Sixto, and Juan Bisquert, eds. Photoelectrochemical Solar Fuel Production. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-29641-8.

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2

Viswanathan, B., and Ravi Subramanian. Materials and processes for solar fuel production. New York: Springer, 2014.

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3

Viswanathan, Balasubramanian, Vaidyanathan Subramanian, and Jae Sung Lee, eds. Materials and Processes for Solar Fuel Production. New York, NY: Springer New York, 2014. http://dx.doi.org/10.1007/978-1-4939-1628-3.

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4

Figueroa, Isaac Pilatowsky. Cogeneration fuel cell-sorption air conditioning systems. London: Springer-Verlag, 2011.

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5

Dunn, Seth. Micropower: The next electrical era. Washington, DC: Worldwatch Institute, 2000.

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6

Ottone, Carminna, Simelys Hernández, Marco Armandi, and Barbara Bonelli. Testing Novel Water Oxidation Catalysts for Solar Fuels Production. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-12712-1.

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7

Office, General Accounting. Electricity supply: Efforts under way to develop solar and wind energy : report to the Chairman, Subcommittee on Investigations and Oversight, Committee on Science, Space, and Technology, House of Representatives. Washington, D.C: The Office, 1993.

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8

Office, General Accounting. Electricity supply: Consideration of environmental costs in selecting fuel sources : report to the Ranking Minority Member, Committee on Science, House of Representatives. Washington, D.C: U.S. General Accounting Office, 1995.

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9

Office, General Accounting. Electricity supply: Efforts under way to improve federal electrical disruption preparedness : report to the Chairman, Subcommittee on Oversight and Investigations, Committee on Energy and Commerce. Washington, D.C: The Office, 1992.

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10

Office, General Accounting. Electricity supply: Utility demand-side management programs can reduce electricity use : report to the chairman, Environment, Energy, and Natural Resources Subcommittee, Committee on Government Operations, House of Representatives. Washington, D.C: GAO, 1991.

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11

Office, General Accounting. Electricity supply: What can be done to revive the nuclear option? : report to the Chairman, Environment, Energy, and Natural Resources Subcommittee, Committee on Government Operations, House of Representatives. Washington, D.C: The Office, 1989.

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12

Office, General Accounting. Electricity supply: Regulating utility holding companies in a changing electric industry : report to the chairman, Subcommittee on Telecommunications and Finance, Committee on Energy and Commerce, House of Representatives. Washington, D.C: GAO, 1992.

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13

Office, General Accounting. Electricity supply: Older plants' impact on reliability and air quality : report to the chairman, Subcommittee on Oversight and Investigations, Committee on Energy and Commerce, House of Representatives. Washington, D.C: GAO, 1990.

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14

Office, General Accounting. Electricity supply: Potential effects of amending the Public Utility Holding Company Act : report to the chairman, Subcommittee on Energy and Power, Committee on Energy and Commerce, House of Representatives. Washington, D.C: GAO, 1992.

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15

Dincer, Ibrahim, and Anand S. Joshi. Solar Based Hydrogen Production Systems. Springer London, Limited, 2013.

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16

Dincer, Ibrahim, and Anand S. Joshi. Solar Based Hydrogen Production Systems. Springer London, Limited, 2013.

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17

Viswanathan, Balasubramanian, Vaidyanathan (Ravi) Subramanian, and Jae Sung Lee. Materials and Processes for Solar Fuel Production. Springer, 2016.

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18

Viswanathan, Balasubramanian, Vaidyanathan (Ravi) Subramanian, and Jae Sung Lee. Materials and Processes for Solar Fuel Production. Springer London, Limited, 2014.

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19

Calise, Francesco, and Massimo Dentice D'Accadia. Solar Hydrogen Production: Processes, Systems and Technologies. Elsevier Science & Technology, 2019.

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20

Solar Hydrogen Production: Processes, Systems and Technologies. Academic Press, 2019.

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21

Giménez, Sixto, and Juan Bisquert. Photoelectrochemical Solar Fuel Production: From Basic Principles to Advanced Devices. Springer London, Limited, 2016.

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22

Giménez, Sixto, and Juan Bisquert. Photoelectrochemical Solar Fuel Production: From Basic Principles to Advanced Devices. Springer, 2018.

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23

Giménez, Sixto, and Juan Bisquert. Photoelectrochemical Solar Fuel Production: From Basic Principles to Advanced Devices. Springer, 2016.

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24

Rakwichīan, Watthanaphong, and Mahāwitthayālai Narēsūan. Phāk Wichā Fisik., eds. Rāingān kānwičhai rư̄ang kānphatthanā ʻilekthrōlaisœ̄ phư̄a kānphalit haidrōgēn pen chư̄aphlœ̄ng saʻāt čhāk sēn sǣngʻāthit: Development of the hydrogen electrolyzer for clean fuel production from solar cell. [Bangkok?]: Phāk Wichā Fisik, Khana Witthayāsāt, Mahāwitthayālai Narēsūan, 1996.

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25

Bonelli, Barbara, Carminna Ottone, Simelys Hernández, and Marco Armandi. Testing Novel Water Oxidation Catalysts for Solar Fuels Production. Springer International Publishing AG, 2019.

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26

Bonelli, Barbara, Carminna Ottone, Simelys Hernández, and Marco Armandi. Testing Novel Water Oxidation Catalysts for Solar Fuels Production. Springer, 2020.

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27

All Electric America: A Climate Solution and the Hopeful Future. Solar Flare Press, 2016.

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28

Electricity supply: Efforts under way to develop solar and wind energy : report to the Chairman, Subcommittee on Investigations and Oversight, Committee on Science, Space, and Technology, House of Representatives. Washington, D.C: The Office, 1993.

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29

Electricity supply: Efforts under way to develop solar and wind energy : report to the Chairman, Subcommittee on Investigations and Oversight, Committee on Science, Space, and Technology, House of Representatives. Washington, D.C: The Office, 1993.

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30

Avery, William H., and Chih Wu. Renewable Energy from the Ocean. Oxford University Press, 1994. http://dx.doi.org/10.1093/oso/9780195071993.001.0001.

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Scientists and engineers around the world are striving to develop new sources of energy. One source, ocean thermal energy conversion, has virtually unlimited potential. It is based on techniques that exploit heat produced by solar energy that may, in turn, be used to produce fuel and electricity. This book reviews the status and background of this promising technology. William H. Avery is the leading expert in this field, and his co-author Chih Wu is an authority on heat engine performance. Together they describe the workings of an OTEC power plant and how such a system might be implemented as part of a futuristic national energy strategy. The book is the only detailed presentation of basic OTEC technology, its testing and improvement. It is based on extensive development initiatives undertaken internationally during the period from 1974 through 1985. The book offers a thorough assessment of the economics of OTEC in comparison with other energy production methods. It will be of interest to a wide range of professionals in energy research, power and mechanical engineering, and to upper-level undergraduate students taking courses in these fields.
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31

Fox, Michael H. Why We Need Nuclear Power. Oxford University Press, 2014. http://dx.doi.org/10.1093/oso/9780199344574.001.0001.

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Nuclear power may just be the most important solution to our search for clean, sustainable energy sources. Although wind and solar can contribute to our energy mix, we need a reliable source to meet large-scale energy demands and break our dependence on fossil fuels. However, most people are wary, if not downright afraid, of nuclear power. Given nuclear disasters such as Chernobyl and Fukushima, it's not difficult to see why. In the wake of these events, fear has clouded the public's understanding of the facts. It's time to clear up those misconceptions and examine the science behind nuclear power, in order to determine what role it could and should play in our future. In Why We Need Power: The Environmental Case, radiation biologist Michael H. Fox argues that nuclear power is essential to slowing down the impact of global warming. He examines the issue from every angle, relying on thirty-five years of research spent studying the biological effects of radiation. Fox begins with the problem, carefully laying out how our current energy uses and projections for the future will affect greenhouse gases and global warming. The book then evaluates each major energy source and demonstrates the limits of renewable energy sources, concluding that nuclear power is the best solution to our environmental crisis. Fox then delves into nuclear power, looking at the effects of radiation, the potential for nuclear accidents, and the best methods to dispose of nuclear waste. By systematically analyzing each aspect of the nuclear issue, Fox clarifies which concerns have a scientific basis and which remain unsupported. His in-depth exploration of the facts persuasively demonstrates that nuclear power is critical to reducing the effects of energy production on the global climate. Written in an engaging and accessible style, Why We Need Nuclear Power is an invaluable resource for both general readers and scientists interested in the facts behind nuclear energy.
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