Books on the topic 'Carbon dioxide flux'

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1

Sugimoto, Hiroyuki. A method forestimating the sea-air CO2 flux in the Pacific Ocean. Tsukuba-shi: Meteorological Research Institute, 2012.

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2

Knoepp, Jennifer D. Quantitative comparison of in situ soil CO₂ flux measurement methods. Asheville, NC: U.S. Dept. of Agriculture, Forest Service, Southern Research Station, 2002.

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3

Park, Geun-Ha. Procedures to create near real-time seasonal air-sea CO₂ flux maps. Miami, Fla: United States Dept. of Commerce, National Oceanic and Atmospheric Administration, Office of Oceanic and Atmospheric Research, 2010.

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4

Crawford, G. B. On the contribution of bubbles and waves to air-sea COb2s flux, with implications for remote sensing. Boulder, Colo: National Oceanic and Atmospheric Administration, Environmental Research Laboratories, 1987.

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5

Preiss, David Alan. A new method for measurement of carbon dioxide flux in the lungs during breathing. Ottawa: National Library of Canada, 2003.

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6

Savage, Kathleen. BOREAS TGB-1 [i.e. TGB-3] CH4 and CO2 chamber flux data over NSA upland sites. Greenbelt, Md: NASA Goddard Space Flight Center, 2000.

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7

Savage, Kathleen. BOREAS TGB-1 [i.e. TGB-3] CH4 and CO2 chamber flux data over NSA upland sites. Greenbelt, Md: NASA Goddard Space Flight Center, 2000.

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8

Carbon dioxide removal from coal-fired power plants. Dordrecht [Netherlands]: Kluwer Academic Publishers, 1994.

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9

Oxy-fuel combustion for power generation and carbon dioxide (CO2) capture. Oxford: Woodhead Pub., 2011.

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10

Anthoni, Peter M. Carbon dioxide eddy flux measurements in complex terrain from a coniferous forest under the influence of marine air. 1996.

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11

R, Moore Tim, and Goddard Space Flight Center, eds. BOREAS TGB-1 [i.e. TGB-3] CH4 and CO2 chamber flux data over NSA upland sites. Greenbelt, Md: NASA Goddard Space Flight Center, 2000.

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12

J, Arkebauer Timothy, and United States. National Aeronautics and Space Administration., eds. Field micrometeorological measurements, process-level studies and modeling of methane and carbon dioxide fluxes in a boreal wetland ecosystem: Final technical report ... grant # NAG 5-2585. [Washington, DC: National Aeronautics and Space Administration, 1998.

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13

Society, American Welding. AWS B2.1-1-234 : 2020-AMD1, Standard Welding Procedure Specification for 75% Argon Plus 25% Carbon Dioxide Shielded Flux Cored Arc Welding of Carbon Steel , 1/8 Inch [3 Mm] Through 1-1/2 Inch [38 Mm] Thick, E7XT-X, in the As-Welded or PWHT Condition, Primarily Pipe Applications : AWS B2.1-1-234: 2020-AMD1, Standard Welding Procedure Specification for 75% Argon Plus 25% Carbon Dioxide Shielded Flux Cored Arc Welding of Carbon Steel , 1/8 Inch [3 Mm] Through 1-1/2 Inch [38 Mm] Thick, E7XT-X, in the As-Welded or PWHT Condition, Primarily Pipe Applications. American Welding Society, 2022.

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14

American Welding Society. AWS B2.1-1-234 : 2020-AMD1, Standard Welding Procedure Specification for 75% Argon Plus 25% Carbon Dioxide Shielded Flux Cored Arc Welding of Carbon Steel , 1/8 Inch [3 Mm] Through 1-1/2 Inch [38 Mm] Thick, E7XT-X, in the As-Welded or PWHT Condition, Primarily Pipe Applications : AWS B2.1-1-234: 2020-AMD1, Standard Welding Procedure Specification for 75% Argon Plus 25% Carbon Dioxide Shielded Flux Cored Arc Welding of Carbon Steel , 1/8 Inch [3 Mm] Through 1-1/2 Inch [38 Mm] Thick, E7XT-X, in the As-Welded or PWHT Condition, Primarily Pipe Applications. American Welding Society, 2022.

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15

Cook, Peter J. Clean Energy, Climate and Carbon. CSIRO Publishing, 2012. http://dx.doi.org/10.1071/9780643106826.

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With the general reader in mind, Clean Energy, Climate and Carbon outlines the global challenge of decreasing greenhouse gas emissions. It covers the changing concentration of atmospheric carbon dioxide through time and its causes, before considering the promise and the limitations of a wide range of energy technologies for decreasing carbon dioxide emissions. Despite the need to decrease carbon dioxide, the fact is that the global use of fossil fuels is increasing and is likely to continue to do so for some decades to come. With this in mind, the book considers in detail, what for many people is the unfamiliar clean energy technology of carbon capture and storage (CCS). How can we capture carbon dioxide from flue gases? How do we transport it? How do we store it in suitable rocks? What are suitable rocks and where do we find them? How do we know the carbon dioxide will remain trapped once it is injected underground? What does CCS cost and how do those costs compare with other technology options? The book also explores the political environment in which the discussion on clean energy technology options is occurring. What will a price on carbon do for technology uptake and what are the prospects of cutting our emissions by 2020 and of making even deeper cuts by 2050? What will the technology mix look like by that time? For people who are concerned about climate change, or who want to learn more about clean energy technologies, including CCS, this is the definitive view of the opportunities and the challenges we face in decreasing emissions despite a seemingly inexorable global increase in energy demand.
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16

Zheng, L., and Ligang Zheng. Oxy-Fuel Combustion for Power Generation and Carbon Dioxide (Co2) Capture. Elsevier Science & Technology, 2016.

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17

Canada. Environmental Protection Directorate. Industrial Programs Branch., Monserco Limited, and Radian Corporation, eds. Cost analysis of controlling carbon dioxide flue gas emissions from Canadian power utilities. Ottawa: Environment Canada, 1992.

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18

Canada. Technology Development and Technical Services Branch. Pollution Management Division., Canada Environment Canada, and River Road Environmental Technology Centre. Pollution Measurement Division., eds. Reference method for the monitoring of gaseous emissions from fossil fuel-fired boilers. [Ottawa]: Environment Canada, 1990.

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19

DuPont, André. An American Solution For Reducing Carbon Emissions: Averting Global Warning Creating Green Energy and Sustainable Employment. Andy DuPont, 2009.

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