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| 110 | 2 | ▼aNational Academies of Sciences, Engineering, and Medicine (U.S.).▼bCommittee on Developing a Research Agenda for Carbon Dioxide Removal and Reliable Sequestration,▼eorganizer.▲ | |
| 245 | 1 | 0 | ▼aNegative emissions technologies and reliable sequestration :▼ba research agenda /▼cCommittee on Developing a Research Agenda for Carbon Dioxide Removal and Reliable Sequestration; Board on Atmospheric Sciences and Climate; Board on Energy and Envionmrntal Systems; Board on Agriculture and Natural Resources; Board of Earth Sciences and Resources; Board on Chemical Sciences and Technoogy; Ocean Studies Board; Division on Earth and Life Studies.▼h[electronic resource]▲ |
| 257 | ▼aUnited States.▼2naf▲ | ||
| 260 | 1 | ▼aWashington, D.C. :▼bNational Academies Press,▼c[2019]▲ | |
| 300 | ▼a1 online resource (xiii, 495 pages) :▼billustrations (some color), maps▲ | ||
| 336 | ▼atext▼2rdacontent▲ | ||
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| 338 | ▼aonline resource▼2rdacarrier▲ | ||
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| 490 | 1 | ▼aA consensus study report of the Natonal Academies of Sciences, Engineering, Medicine▲ | |
| 504 | ▼aIncludes bibliographical references (pages 413-455).▲ | ||
| 505 | 0 | ▼aIntroduction -- Coastal blue carbon -- Terrestrial carbon removal and sequestration -- Bioenergy with carbon capture and sequestration -- Direct air capture -- Carbon mineralization of CO2 -- Sequestration of supercritical CO2 in deep sedimentary geological formations -- Synthesis -- Glossary -- Acronyms and abbreviations -- References -- Appendices▲ | |
| 520 | ▼a"Humans started adding fossil CO2 to the atmosphere about 300 years ago and accelerated land use emissions by expanding croplands and pastures. The unintended consequence of these activities is a 120 ppm increase in atmospheric concentration of CO2, which is now changing our climate. In response, international action is being taken to reduce net greenhouse gas emissions and limit global warming below 2°C. Most climate mitigation technologies are intended to decrease the rate at which we take additional carbon from fossil fuel reservoirs and ecosystems and add it to the atmosphere as CO2. These include renewable electricity, increased energy efficiency, and carbon capture and storage of emissions from fossil power plants. This report focuses on the reverse: technologies that take CO2 out of the atmosphere and put it back into geologic reservoirs and terrestrial ecosystems. These negative emissions technologies, or NETs, have received much less attention by researchers than traditional mitigation technologies"--Preface.▲ | ||
| 588 | 0 | ▼aOnline resource; title from PDF title page (National Academies Press, viewed Mar. 19, 2019)▲ | |
| 590 | ▼aAdded to collection customer.56279.3▲ | ||
| 650 | 0 | ▼aCarbon dioxide mitigation.▲ | |
| 650 | 0 | ▼aCarbon sequestration.▲ | |
| 650 | 0 | ▼aEnvironmental engineering▼xResearch.▲ | |
| 650 | 0 | ▼aClimate change mitigation.▲ | |
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| 710 | 2 | ▼aNational Academies of Sciences, Engineering, and Medicine (U.S.).▼bDivision on Earth and Life Studies,▼eresearcher.▲ | |
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| 830 | 0 | ▼aConsensus study report.▲ | |
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Negative emissions technologies and reliable sequestration : a research agenda
자료유형
국외eBook
서명/책임사항
Negative emissions technologies and reliable sequestration : a research agenda / Committee on Developing a Research Agenda for Carbon Dioxide Removal and Reliable Sequestration; Board on Atmospheric Sciences and Climate; Board on Energy and Envionmrntal Systems; Board on Agriculture and Natural Resources; Board of Earth Sciences and Resources; Board on Chemical Sciences and Technoogy; Ocean Studies Board; Division on Earth and Life Studies. [electronic resource]
단체저자
National Academies of Sciences, Engineering, and Medicine (U.S.). Committee on Developing a Research Agenda for Carbon Dioxide Removal and Reliable Sequestration
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Atmospheric Sciences and Climate
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Energy and Environmental Systems
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Agriculture and Natural Resources
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Earth Sciences and Resources
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Chemical Sciences and Technology
National Academies of Sciences, Engineering, and Medicine (U.S.). Ocean Studies Board
National Academies of Sciences, Engineering, and Medicine (U.S.). Division on Earth and Life Studies
National Academies Press (U.S.)
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Atmospheric Sciences and Climate
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Energy and Environmental Systems
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Agriculture and Natural Resources
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Earth Sciences and Resources
National Academies of Sciences, Engineering, and Medicine (U.S.). Board on Chemical Sciences and Technology
National Academies of Sciences, Engineering, and Medicine (U.S.). Ocean Studies Board
National Academies of Sciences, Engineering, and Medicine (U.S.). Division on Earth and Life Studies
National Academies Press (U.S.)
발행사항
Washington, D.C. : National Academies Press , [2019]
형태사항
1 online resource (xiii, 495 pages) : illustrations (some color), maps
총서사항
서지주기
Includes bibliographical references (pages 413-455).
내용주기
Introduction -- Coastal blue carbon -- Terrestrial carbon removal and sequestration -- Bioenergy with carbon capture and sequestration -- Direct air capture -- Carbon mineralization of CO2 -- Sequestration of supercritical CO2 in deep sedimentary geological formations -- Synthesis -- Glossary -- Acronyms and abbreviations -- References -- Appendices
요약주기
"Humans started adding fossil CO2 to the atmosphere about 300 years ago and accelerated land use emissions by expanding croplands and pastures. The unintended consequence of these activities is a 120 ppm increase in atmospheric concentration of CO2, which is now changing our climate. In response, international action is being taken to reduce net greenhouse gas emissions and limit global warming below 2°C. Most climate mitigation technologies are intended to decrease the rate at which we take additional carbon from fossil fuel reservoirs and ecosystems and add it to the atmosphere as CO2. These include renewable electricity, increased energy efficiency, and carbon capture and storage of emissions from fossil power plants. This report focuses on the reverse: technologies that take CO2 out of the atmosphere and put it back into geologic reservoirs and terrestrial ecosystems. These negative emissions technologies, or NETs, have received much less attention by researchers than traditional mitigation technologies"--Preface.
주제
ISBN
9780309484534 0309484537 9780309484558 0309484553
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