Muutke küpsiste eelistusi

E-raamat: Power of Change: Innovation for Development and Deployment of Increasingly Clean Electric Power Technologies

  • Formaat: 340 pages
  • Ilmumisaeg: 30-Aug-2016
  • Kirjastus: National Academies Press
  • Keel: eng
  • ISBN-13: 9780309371452
  • Formaat - EPUB+DRM
  • Hind: 90,99 €*
  • * hind on lõplik, st. muud allahindlused enam ei rakendu
  • Lisa ostukorvi
  • Lisa soovinimekirja
  • See e-raamat on mõeldud ainult isiklikuks kasutamiseks. E-raamatuid ei saa tagastada.
  • Formaat: 340 pages
  • Ilmumisaeg: 30-Aug-2016
  • Kirjastus: National Academies Press
  • Keel: eng
  • ISBN-13: 9780309371452

DRM piirangud

  • Kopeerimine (copy/paste):

    ei ole lubatud

  • Printimine:

    ei ole lubatud

  • Kasutamine:

    Digitaalõiguste kaitse (DRM)
    Kirjastus on väljastanud selle e-raamatu krüpteeritud kujul, mis tähendab, et selle lugemiseks peate installeerima spetsiaalse tarkvara. Samuti peate looma endale  Adobe ID Rohkem infot siin. E-raamatut saab lugeda 1 kasutaja ning alla laadida kuni 6'de seadmesse (kõik autoriseeritud sama Adobe ID-ga).

    Vajalik tarkvara
    Mobiilsetes seadmetes (telefon või tahvelarvuti) lugemiseks peate installeerima selle tasuta rakenduse: PocketBook Reader (iOS / Android)

    PC või Mac seadmes lugemiseks peate installima Adobe Digital Editionsi (Seeon tasuta rakendus spetsiaalselt e-raamatute lugemiseks. Seda ei tohi segamini ajada Adober Reader'iga, mis tõenäoliselt on juba teie arvutisse installeeritud )

    Seda e-raamatut ei saa lugeda Amazon Kindle's. 

Electricity, supplied reliably and affordably, is foundational to the U.S. economy and is utterly indispensable to modern society. However, emissions resulting from many forms of electricity generation create environmental risks that could have significant negative economic, security, and human health consequences. Large-scale installation of cleaner power generation has been generally hampered because greener technologies are more expensive than the technologies that currently produce most of our power. Rather than trade affordability and reliability for low emissions, is there a way to balance all three?





The Power of Change: Innovation for Development and Deployment of Increasingly Clean Energy Technologies considers how to speed up innovations that would dramatically improve the performance and lower the cost of currently available technologies while also developing new advanced cleaner energy technologies. According to this report, there is an opportunity for the United States to continue to lead in the pursuit of increasingly clean, more efficient electricity through innovation in advanced technologies. The Power of Change: Innovation for Development and Deployment of Increasingly Clean Energy Technologies makes the case that America's advantagesworld-class universities and national laboratories, a vibrant private sector, and innovative states, cities, and regions that are free to experiment with a variety of public policy approachesposition the United States to create and lead a new clean energy revolution. This study focuses on five paths to accelerate the market adoption of increasing clean energy and efficiency technologies: (1) expanding the portfolio of cleaner energy technology options; (2) leveraging the advantages of energy efficiency; (3) facilitating the development of increasing clean technologies, including renewables, nuclear, and cleaner fossil; (4) improving the existing technologies, systems, and infrastructure; and (5) leveling the playing field for cleaner energy technologies.





The Power of Change: Innovation for Development and Deployment of Increasingly Clean Energy Technologies is a call for leadership to transform the United States energy sector in order to both mitigate the risks of greenhouse gas and other pollutants and to spur future economic growth. This study's focus on science, technology, and economic policy makes it a valuable resource to guide support that produces innovation to meet energy challenges now and for the future.

Table of Contents



Front Matter Summary 1 Introduction 2 Assessment of Current Technologies for and Policies Supporting Increasingly Clean Electric Power Generation 3 Supporting and Strengthening the Energy Innovation Process to Expand the Technological Base for Increasingly Clean Electric Power 4 The Role of Energy Efficiency in Increasingly Clean Electricity 5 Addressing the Unique Challenges to the Development and Deployment of Nuclear Power, Carbon Capture and Storage, and Renewable Fuel Power Technologies 6 Modernizing the Electric Power System to Support the Development and Deployment of Increasingly Clean Technologies 7 Policies Supporting Increasingly Clean Electric Power Technologies References Appendix A: Committee Biographies Appendix B: Benchmark Levelized Cost of Electricity Estimates Appendix C: The Role of Research, Learning, and Technology Deployment in Clean Energy Innovation Appendix D: Technology Readiness Appendix E: Glossary of Acronyms and Abbreviations
Summary 1(14)
Overarching Recommendations
3(2)
Key Findings and Recommendations
5(10)
1 Introduction
15(4)
Statement of Task
16(1)
Study Scope
16(1)
Study Approach
17(1)
Organization of the Report
17(2)
2 Assessment of Current Technologies for and Policies Supporting Increasingly Clean Electric Power Generation
19(30)
Technologies for Electric Power Generation and Energy Efficiency
20(4)
Impact of the Mix of Electricity Generation Sources on Emissions Over Time
24(2)
Technology Readiness and Cost of Currently Available Cleaner Technologies
26(14)
Will Expanded Deployment Make Increasingly Clean Technologies More Economically Competitive?
40(6)
Conclusion
46(3)
3 Supporting and Strengthening the Energy Innovation Process to Expand the Technological Base for Increasingly Clean Electric Power
49(38)
The Importance of Innovation in Increasingly Clean Power Technologies
50(1)
Stages of the Energy Innovation Process
50(4)
Obstacles to Accelerated Innovation
54(3)
Strategies for Overcoming the Obstacles to Accelerated Innovation
57(28)
Conclusion
85(2)
4 The Role of Energy Efficiency in Increasingly Clean Electricity
87(26)
Potential Electricity Savings through Energy Efficiency
89(1)
Barriers to the Development and Adoption of Cost-Effective Energy-Efficiency Technologies
90(7)
Energy-Efficiency Policies in the United States
97(15)
Conclusion
112(1)
5 Addressing the Unique Challenges to the Development and Deployment of Nuclear Power, Carbon Capture and Storage, and Renewable Fuel Power Technologies
113(40)
Nuclear Power
114(13)
Carbon Capture and Storage
127(10)
Renewable Fuel Power-Generating Technologies
137(16)
6 Modernizing the Electric Power System to Support the Development and Deployment of Increasingly Clean Technologies
153(42)
Challenges and Opportunities for the Electric Power Industry
154(5)
Description of the Current Electric Power System
159(6)
A Modem Power System That Would Support the Development and Deployment of Increasingly Clean Energy and Energy-Efficiency Technologies
165(30)
7 Policies Supporting Increasingly Clean Electric Power Technologies
195(16)
History of Government Support for New Electricity Sources
196(6)
Lowering the Costs and Risks of Financing the Deployment of Increasingly Clean Energy Technologies
202(4)
Addressing Barriers That Remain at the Deployment Stage
206(5)
REFERENCES
211(34)
APPENDIXES
A Committee Biographies
245(10)
B Benchmark Levelized Cost of Electricity Estimates
255(10)
C The Role of Research, Learning, and Technology Development in Clean Energy Innovation
265(24)
D Technology Readiness
289(26)
E Glossary of Acronyms and Abbreviations
315