11.07.2015 Views

Lal, Carbon Sequestration, PhilTransRoySoc 2008

Lal, Carbon Sequestration, PhilTransRoySoc 2008

Lal, Carbon Sequestration, PhilTransRoySoc 2008

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

Downloaded from rstb.royalsocietypublishing.org on April 14, 2010<strong>Carbon</strong> sequestration R. <strong>Lal</strong> 829Marion, G. M., Schlesinger, W. H. & Fonteyn, P. J. 1985CALDEP: a regional model for soil CaCO 3 (caliche)deposition in southwestern deserts. Soil Sci. 139, 468–481.(doi:10.1097/00010694-198505000-00014)Martin, J. H. & Fitzwater, S. E. 1988 Iron deficiency limits ofphytoplankton growth in the north-east Pacific sub-arctic.Nature 331, 341–343. (doi:10.1038/331341a0)Martin, J. H. K. H. et al. 2002 Testing the iron hypothesis inecosystems of the equatorial Pacific Ocean. Nature 371,123–129. (doi:10.1038/371123a0)McCarl, B. A. & Schneider, U. A. 2001 Greenhouse gasmitigation in U.S. agriculture and forestry. Science 294,2481–2482. (doi:10.1126/science.1064193)McGowan, E. 2007 WM joins carbon market modeldiscussion. Waste News 22 January 2007, 23.Mermut, A. R. & Landi, A. 2006 Secondary/pedogeniccarbonates. In Encyclopedia of soil science (ed. R. <strong>Lal</strong>),pp. 1551–1554. Boca Raton, FL: Taylor and Francis.Milne, R. & Brown, T. A. 1997 <strong>Carbon</strong> in the vegetation andsoils of Great Britain. J. Environ. Manage. 49, 413–433.(doi:10.1006/jema.1995.0118)Monger, H. C. 2002 Pedogenic carbonate: links betweenbiotic and abiotic CaCO 3 . Presented at the 17th WorldCong. Soil Science, 14–21 August 2002, Bangkok,Thailand.Monger, H. C. & Gallegos, R. A. 2000 Biotic and abioticprocesses and rates of pedogeniccarbonate accumulationin the southwestern U.S., relationship to atmospheric CO 2sequestration. In Global climate change and pedogeniccarbonates (eds R. <strong>Lal</strong>, J. M. Kimble & B. A. Stewart),pp. 273–290. Boca Raton, FL: CRC Lewis Publishers.Morris, E. 2006 Putting the carbon back: black is the newgreen. Nature 442, 624–626. (doi:10.1038/442624a)Nilsson, L. G. 1986 Data of yield and soil analysis in the longtermsoil fertility experiments. J. R. Swed. Acad. Agr.Forestery. Suppl. 18, 32–70.Nordt, L. C., Wilding, L. P. & Drees, L. R. 2000 Pedogeniccarbonate transformations in leaching soil systems. InGlobal climate change and pedogenic carbonate (eds R. <strong>Lal</strong>,J. M. Kimble & B. A. Stewart), pp. 43–64. Boca Raton,FL: CRC Lewis Publishers.O’Connor, W. K., Dahlin, D. C., Turner, P. C. & Walters,R. P. 2000 <strong>Carbon</strong> dioxide sequestration by ex-situ mineralcarbonation. Technology 75, 115–123.O’Connor, W. K., Dahlin, D. C., Nilsen, D. N., Rush, G. E.,Walters, R. P. & Turner, P. C. 2001 <strong>Carbon</strong> dioxidesequestration by direct mineral carbonation: results fromrecent studies and current status. See. www.netl.doe.gov/publications/proceedings/o1/carbon_seq/bC2.pdf.Orr, J. C. et al. 2001 Estimates of anthropogenic carbonuptake from four three-dimensional global ocean models.Global Biogeochem. Cycles 15, 43–60. (doi:10.1029/2000GB001273)Paavilainen, E. & Paivanen, J. 1995 Peatland forestry: ecologyand principles. New York, NY: Springer.Pacala, S. W. 2001 Consistent land and atmosphere-basedU.S. carbon sink estimates. Science 292, 2316–2320.(doi:10.1126/science.1057320)Pacala, S. & Socolow, R. 2004 Stabilization wedges: solvingthe climate problem for the next 50 years with currenttechnologies. Science 305, 968–972. (doi:10.1126/science.1100103)Pacala, S. W. et al. 2001 Consistent land- and atmospherebasedU.S. carbon sink estimates. Science 292, 2316–2319.(doi:10.1126/science.1057320)Paustian, K., Collins, H. P. & Paul, E. A. 1997 Managementcontrols on soil carbon. In Soil organic matter in temperateagroecosystems: long-term experiments in North America (edsE. A. Paul, K. Paustian, T. Elliott & C. V. Cole),pp. 15–49. Boca Raton, FL: CRC Press.Prather, M. et al. 2001 Atmospheric chemistry and greenhousegases. In Climate change 2001: the scientific basis,(eds J. T. Houghton, Y. Ding, D. J. Griggs, M. Noguer,P. J. van der Linden & D. Xiaosu), pp. 239–287.Cambridge, UK: IPCC, Cambridge University Press.Rabenhorst, M. C. & Wilding, L. P. 1986 Pedogenesis on theEdwards Plateau, Tesas. III. A new model for theformation of Petrocalcic horizon. Soil Sci. Soc. Am. J. 50,693–699.Ramaswamy, V., Boucher, O., Haigh, J., Hauglustaine, D.,Haywood, J., Myhre, G., Nakajima, T., Shi, G. Y. &Solomon, S. 2001 Radiative forcing of climate change. InClimate change 2001: the scientific basis, pp. 349–416.Cambridge, UK: IPCC, Cambridge University Press.Rasmussen, P. E., Albrecht, S. L. & Smiley, R. W. 1998 Soil Cand N changes under tillage and cropping systems insemiarid Pacific Northwest agriculture. Soil Till. Res. 47,197–205. (doi:10.1016/S0167-1987(98)00106-8)Raven, J. A. & Falkowski, P. G. 1999 Oceanic sinks foratmospheric CO 2 . Plant Cell Environ. 22, 741–755.(doi:10.1046/j.1365-3040.1999.00419.x)Ridley, A. M., Slattery, W. J., Helyer, K. R. & Cowling, A.1990 The importance of the carbon cycle to acidificationof a grazed pasture. Aust. J. Exp. Agr. 30, 539–544.(doi:10.1071/EA9900539)Rivkin, R. B. & Legendre, L. 2001 Biogenic carbon cycling inthe upper ocean: effects of microbial respiration. Science291, 2398–2400. (doi:10.1126/science.291.5512.2398)Rojstaczer, S. & Deverel, S. J. 1995 Land subsidence indrained Histosols and highly organic mineral soils ofCalifornia. Soil Sci. Soc. Am. J. 59, 11 162–11 167.Running, S. M. 2006 Is global warming causing more largewildfires? Science 313, 927–928. (doi:10.1126/science.1130370)Sauerbeck, D. R. 2001 CO 2 emissions and C sequestration byagriculture—perspectives and limitations. Nutr. Cycl.Agroecosyst. 60, 253–266. (doi:10.1023/A:1012617516477)Schjonning, P., Christensen, B. T. & Christensen, B. 1994Physical and chemical properties of a sandy loam receivinganimal manure, mineral fertilizer of no fertilizer for 90years. Eur. J. Soil Sci. 45, 257–268. (doi:10.1111/j.1365-2389.1994.tb00508.x)Schlesinger, W. H. 1985 The formation of caliche in soils ofMojave Desert, California. Geeocheem. Cosmochim. ACTA49, 57–66. (doi:10.1016/0016-7037(85)90191-7)Schlesinger, W. H. 1999 <strong>Carbon</strong> sequestration in soils.Science 284, 2095. (doi:10.1126/science.284.5423.2095)Schlesinger, W. H. 2006 <strong>Carbon</strong> trading. Science 314, 1217.(doi:10.1126/science.1137177)Scholes, R. J. & Noble, I. R. 2001 Storing carbon on land.Science 294, 1012–1013. (doi:10.1126/science.1065307)Schnitzer, M. 1991 Soil organic mater—the next 75 years.Soil Sci. 151, 41–58. (doi:10.1097/00010694-199101000-00008)Schrag, D. P. 2007 Preparing to capture carbon. Science 315,812–813. (doi:10.1126/science.1137632)Seibel, B. A. & Walsh, P. J. 2001 Potential impacts of CO 2injection on deep-sea biota. Science 294, 319–320. (doi:10.1126/science.1065301)Service, R. F. 2007 Cellulosic ethanol: biofuel researchersprepare to reap a new harvest. Science 315, 1488–1491.(doi:10.1126/science.315.5818.1488)Six, J. T., Conant, R. T., Paul, E. A. & Paustian, K. 2002Stabilization mechanisms of soil organic matter: implicationsfor C-saturation of soils. Plant Soil 241, 155–176.(doi:10.1023/A:1016125726789)Smith, P., Powlson, S. D. S., Glendining, M. J. & Smith, J. U.1997 Potential for carbon sequestration in European soils:Phil. Trans. R. Soc. B (<strong>2008</strong>)

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!