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Transportation Trends

Post-Oil Energy Technology After the Age of Fossil Fuels [Pg.46]


Walmsley, A. R., 1988. The dynamics of die glucose transporter. Trends in Biochemical Sciences 13 226—231. [Pg.326]

Giros, B and Caron, MG (1993) Molecular characterization of the dopamine transporter. Trends Pharmacol. Sci. 14 43-49. [Pg.160]

Fig. 4.14. Tracing climate change in the Miocene. Shown here are records of ice volume and temperature (based on foraminiferal S 0) and relative organic carbon burial (based on foraminiferal S C), compared with the CO2 estimates of Pagani et al. (1999), and tectonic events that may have affected ocean heat transport. Trends in CO2 are consistent with organic carbon burial and CO2 drawdown during the Monterey Excursion, but cannot explain the Miocene Climatic Optimum (MCO) or expansion of the East Antarctic Ice Sheet (EAIS). Fig. 4.14. Tracing climate change in the Miocene. Shown here are records of ice volume and temperature (based on foraminiferal S 0) and relative organic carbon burial (based on foraminiferal S C), compared with the CO2 estimates of Pagani et al. (1999), and tectonic events that may have affected ocean heat transport. Trends in CO2 are consistent with organic carbon burial and CO2 drawdown during the Monterey Excursion, but cannot explain the Miocene Climatic Optimum (MCO) or expansion of the East Antarctic Ice Sheet (EAIS).
This chapter has summarised the main hydrological and sediment transport trends observed in the Ebro basin during the twentieth century. Most data concentrates in the lower reach of the catchment and in recent years and, therefore, this area has driven most of the attention of the work. The Ebro flow and sedimentary regimes are profoundly marked by the human action in the entire basin. Changes in land uses and especially dam construction have change the historical pattern of water and sediment yield, and the associated physical processes (i.e. riverchannel sedimentary structure and morphology). [Pg.43]

Mantzos, L., Capros, P., Kouvarikatis, N. et al. (2003). European Energy and Transport - Trends to 2030. On behalf of the European Commission, DG TREN. Greece University of Athens. [Pg.165]

Mantoz, L. and Capros, M. (2006). European Energy and Transport, Trend to 2030 - Update 2005. Report to the European Commission. Brussels. [Pg.596]

European Commission, Energy and Transport Trends to 2050—Update 2005, 2006, ISBN 92-79-02305-5. [Pg.141]

McBean G. J. (2002). Cerebral cystine uptake a tale of two transporters. Trends Pharmacol. Sci. 23 299-302. [Pg.235]

Williams BAP, Hirt RP, Lucocq JM, Embley TM (2002) A mitochondrial remnant in the microsporidian Trachipleistophora hominis. Nature 418 865-869 Winkler HH, Neuhaus HE (1999) Non-mitochondrial ATP transport. Trends Biochem Sci 24 64-68... [Pg.160]

Neyfakh A. Natural functions of bacterial multidrug transporters. Trends Microbiol. 1997 5 309-313. [Pg.372]

Latunde-Dada GO, Simpson RJ, McKie AT. Recent advances in mammalian haem transport. Trends Biochem. Sci. 2006 31 182-188. [Pg.682]

Takano, J., Miwa, K., Fujiwara, T. (2008). Boron transport mechanisms collaboration of channels and transporters. Trends in Plant Science, 13, 451—457. [Pg.19]

Pentchev PG, Blanchette-Mackie El, Dawidowicz EA (1994) The NP-C gene a key to pathways of intracellular cholesterol transport. Trends Cell Biol 4 365—369... [Pg.122]

Thirone, A. C. R, Huang, C., Klip, A. Tissue-specific roles of IRS proteins in insulin signalling and glucose transport. Trends Endocrinol. Metab. 2006, 77(2), 72-78. [Pg.83]

Pfeffer SR. 1992. GTP-binding proteins in intracellular transport. Trends CeU Biol 2 41-46. [Pg.87]

Graham, T.R. 2004. Rippases and vesicle-mediated protein transport. Trends Cell Biol. 14 670-677. Holthuis, J.C., Levine, T.P. 2005. Lipid traffic floppy drives and a superhighway. Nat. Rev. Mol. Cell Biol. 6 209-220. [Pg.484]

BP Rosen. Families of arsenic transporters. Trends Microbiol 7 207-212, 1999. [Pg.268]

PM Hergemother, Polymeric materials for high speed civil transport . Trends Polym Sd 1996 4 104. [Pg.147]

Distribution features and transport trend of seabed sediment in Leizhou Bay... [Pg.47]

Seabed sediment grain size parameters in costal zone are important to describe depositional environment and reflect the coupling mechanism of dynamic-deposition-topography action. Therefore, based on a combination of characteristics of seabed sediment grain size parameters, it can help understand sedimentary environment, such as sediments deposition condition, sediment sources, sediment transport trends etc. [Pg.47]

Under long-term action of hydrodynamic condition (runoff, tide and waves, etc.) and sand sources, seabed sediments of Leizhou Bay have complex material content and different grain size. As a newly developed port site, sedimentary environment of Leizhou Bay has not specifically studied (Han Zhi-yuan, 2012). Based on mass filed sediment and hydrologic data of Leizhou Bay, this article focus on the sediments deposition condition, sediment sources, sediment transport trends etc., and will provide strong support for the utilization and environmental protection of Leizhou Bay. [Pg.48]

Seabed sediment in Leizhou Bay distributes with discontinuous features, which showing that transport trend of seabed sediment is not obvious and seabed sediment is not active, so sedimentary environment and underwater topography can maintain a stable state. [Pg.54]

EU 2007 European Energy and Transport, Trends to 2030 -Update 2007, European Commission, DG TREN... [Pg.1650]

It is very important in preparing these types of projects to pay attention to the sustainable city concept. The cars also cause considerable air and noise pollution which threatens the health of inhabitants. The projects should be prepared in accordance with the natural, historical and cultural characteristics of the city and not create environmental pollution. The projects should also help reduce dependence on highway networks and individual transportation trends. Marmaray project has been prepared with these points in mind and is expected to have a positive and considerable contribution to traffic problems in Istanbul. [Pg.720]

Binder A, Bohler M and Wolf M (1981) Energy-transducing membranes of a thermophilic cyanobacterium. In Selman DA, Selman-Reimer S, eds. Energy coupling in photosynthesis, pp. 313-321. Elsevier North-Holland,Amsterdam. Carrillo N and Vallejos RH (1983) The light-dependent modulation of photosynthetic electron transport. Trends Biochem. Sci. 8, 52-56. [Pg.638]

Carrillo N, Vallejos RH (1983) The light-dependent modulation of photosynthetic electron transport. Trends Biochem. Sci. 2, 52-56. [Pg.706]


See other pages where Transportation Trends is mentioned: [Pg.116]    [Pg.491]    [Pg.45]    [Pg.45]    [Pg.238]    [Pg.2]    [Pg.300]    [Pg.168]    [Pg.47]    [Pg.48]    [Pg.50]    [Pg.51]    [Pg.52]    [Pg.294]   


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