logo

CARBON DIOXIDE CAPTURE AND STORAGE

PDF Publication Title:

CARBON DIOXIDE CAPTURE AND STORAGE ( carbon-dioxide-capture-and-storage )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 329

Chapter 6: Ocean storage 317 Song, Y., B. Chen, M. Nishio, and M. Akai, 2005: The study on density change of carbon dioxide seawater solution at high pressure and low temperature. Energy, 30(11-12) 2298-2307. Sorai, M. and T. Ohsumi, 2005: Ocean uptake potential for carbon dioxide sequestration. Geochemical Journal, 39(1) 29-45. Steinberg, M., 1985: Recovery, disposal, and reuse of CO2 for atmospheric control. Environmental Progress, 4, 69-77. Stramma, L., D. Kieke, M. Rhein, F. Schott, I. Yashayaev, and K. P. Koltermann, 2004: Deep water changes at the western boundary of the subpolar North Atlantic during 1996 to 2001. Deep-Sea Research Part I, 51(8), 1033-1056. Sundfjord, A., A. Guttorm, P.M. Haugan, and L. Golmen, 2001: Oceanographic criteria for selecting future sites for CO2 sequestration. Proceedings of the 5th International Conference on Greenhouse Gas Control Technologies, August 13th-16th 2000, Cairns Australia, CSIRO pp. 505-510. Swett, P., D. Golumn, E. Barry, D. Ryan and C. Lawton, 2005: Liquid carbon dioxide/pulverized limestone globulsion delivery system for deep ocean storage. Proceedings, Seventh International Conference on Greenhouse Gas Control Technologies. tamburri, M.N., E.T. Peltzer, G.E. Friederich, I. Aya, K. Yamane, and P.G. Brewer, 2000: A field study of the effects of CO2 ocean disposal on mobile deep-sea animals. Marine Chemistry, 72(2-4), 95-101. teng, H., A. Yamasaki, and Y. Shindo, 1996: The fate of liquid CO2 disposed in the ocean. International Energy, 21(9), 765-774. teng, H., A. Yamasaki, and Y. Shindo, 1999: The fate of CO2 hydrate released in the ocean. International Journal of Energy Research, 23(4), 295-302. thistle, D., K.R. Carman, L. Sedlacek, P.G. Brewer, J.W. Fleeger, and J.P. Barry, 2005: Deep-ocean, sediment-dwelling animals are sensitive to sequestered carbon dioxide. Marine Ecology Progress Series, 289, 1-4. train, R.E., 1979: Quality criteria for water, Publ Castlehouse Publications Ltd. UK. 256pp tsouris, C., P.G. Brewer, E. Peltzer, P. Walz, D. Riestenberg, L. Liang, and O.R. West, 2004: Hydrate composite particles for ocean carbon sequestration: field verification. Environmental Science and Technology, 38(8), 2470-2475. tsushima, S., S. Hirai, H. Sanda, and S. Terada, 2002: Experimental studies on liquid CO2 injection with hydrate film and highly turbulent flows behind the releasing pipe, In Proceedings of the Sixth International Conference on Greenhouse Gas Control Technologies, Kyoto, pp. 137. van Cappellen, P., E. Viollier, A. Roychoudhury, L. Clark, E. Ingall, K. Lowe, and T. Dichristina, 1998: Biogeochemical cycles of manganese and iron at the oxic-anoxic transition of a stratified marine basin (Orca Basin, Gulf of Mexico). Environmental Science and Technology, 32(19), 2931-2939. vetter, E.W. and C.R. Smith, 2005: Ecological effects of deep-ocean CO2 enrichment: Insights from natural high-CO2 habitats. Journal of Geophysical Research, 110. Wannamaker, E.J. and E.E. Adams, 2002: Modelling descending carbon dioxide injections in the ocean. Proceedings of the 6th International Conference on Greenhouse Gas Control Technologies, 30th September-4th October, Kyoto, Japan. West, O.R., C. Tsouris, S. Lee, S.D. Mcallum, and L. Liang, 2003: Negatively buoyant CO2-hydrate composite for ocean carbon sequestration. AIChE Journal, 49(1), 283-285. Wheatly, M.G. and R.P. Henry, 1992: Extracellular and intracellular acid–base regulation in crustaceans. Journal of Experimental Zoology, 263(2): 127-142. Wickett, M.E., K. Caldeira, and P.B. Duffy, 2003: Effect of horizontal grid resolution on simulations of oceanic CFC-11 uptake and direct injection of anthropogenic CO2. Journal of Geophysical Research, 108. Wigley, T.M.L., R. Richels, and J.A. Edmonds, 1996: Economic and environmental choices in the stabilization of atmospheric CO2 concentrations. Nature, 379, 240-243. Wolff, E.W., J. Seager, V.A. Cooper, and J. Orr, 1988: Proposed environmental quality standards for list II substances in water: pH. Report ESSL TR259 Water Research Centre, Medmenham, UK. 66 pp. xu, Y., J. Ishizaka, and S. Aoki, 1999: Simulations of the distributions of sequestered CO2 in the North Pacific using a regional general circulation model. Energy Conversion and Management, 40(7), 683-691. yamashita, S., R.E. Evans, and T.J. Hara, 1989: Specificity of the gustatory chemoreceptors for CO2 and H+ in rainbow trout (Oncorhynchus mykiss). Canadian Special Publication of Fisheries and Aquatic Sciences, 46(10), 1730-1734. Zeebe, R.E. and D. Wolf-Gladrow, 2001: CO2 in Seawater Equilibrium, Kinetics, Isotopes. Elsevier Oceanography Series, 65, Amsterdam, 346 pp. Zondervan, I., R.E. Zeebe, B. Rost, and U. Riebesell, 2001: Decreasing marine biogenic calcification: A negative feedback on rising atmospheric pCO2. Global Biogeochemical Cycles, 15.

PDF Image | CARBON DIOXIDE CAPTURE AND STORAGE

carbon-dioxide-capture-and-storage-329

PDF Search Title:

CARBON DIOXIDE CAPTURE AND STORAGE

Original File Name Searched:

srccs_wholereport.pdf

DIY PDF Search: Google It | Yahoo | Bing

NFT (Non Fungible Token): Buy our tech, design, development or system NFT and become part of our tech NFT network... More Info

IT XR Project Redstone NFT Available for Sale: NFT for high tech turbine design with one part 3D printed counter-rotating energy turbine. Be part of the future with this NFT. Can be bought and sold but only one design NFT exists. Royalties go to the developer (Infinity) to keep enhancing design and applications... More Info

Infinity Turbine IT XR Project Redstone Design: NFT for sale... NFT for high tech turbine design with one part 3D printed counter-rotating energy turbine. Includes all rights to this turbine design, including license for Fluid Handling Block I and II for the turbine assembly and housing. The NFT includes the blueprints (cad/cam), revenue streams, and all future development of the IT XR Project Redstone... More Info

Infinity Turbine ROT Radial Outflow Turbine 24 Design and Worldwide Rights: NFT for sale... NFT for the ROT 24 energy turbine. Be part of the future with this NFT. This design can be bought and sold but only one design NFT exists. You may manufacture the unit, or get the revenues from its sale from Infinity Turbine. Royalties go to the developer (Infinity) to keep enhancing design and applications... More Info

Infinity Supercritical CO2 10 Liter Extractor Design and Worldwide Rights: The Infinity Supercritical 10L CO2 extractor is for botanical oil extraction, which is rich in terpenes and can produce shelf ready full spectrum oil. With over 5 years of development, this industry leader mature extractor machine has been sold since 2015 and is part of many profitable businesses. The process can also be used for electrowinning, e-waste recycling, and lithium battery recycling, gold mining electronic wastes, precious metals. CO2 can also be used in a reverse fuel cell with nafion to make a gas-to-liquids fuel, such as methanol, ethanol and butanol or ethylene. Supercritical CO2 has also been used for treating nafion to make it more effective catalyst. This NFT is for the purchase of worldwide rights which includes the design. More Info

NFT (Non Fungible Token): Buy our tech, design, development or system NFT and become part of our tech NFT network... More Info

Infinity Turbine Products: Special for this month, any plans are $10,000 for complete Cad/Cam blueprints. License is for one build. Try before you buy a production license. May pay by Bitcoin or other Crypto. Products Page... More Info

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com | RSS | AMP