Global Change and the Earth System: A Planet Under PressureThe interactions between environmental change and human societies have a long, complex history spanning many millennia, but these have changed fundamentally in the last century. Human activities are now so pervasive and profound that they are altering the Earth in ways which threaten the very life support system upon which humans depend. This book describes what is known about the Earth System and the impact of changes caused by humans. It considers the consequences of these changes with respect to the stability of the Earth System and the well-being of humankind; as well as exploring future paths towards Earth System science in support of global sustainability. |
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Page 18
... sediments of Lake Ammersee, southern Germany (Von Grafenstein et al. 1998), showing a major climatic in- stability event that occurred around 8200 years ago, during the Holocene. The event was large both in magnitude, as reflected by a ...
... sediments of Lake Ammersee, southern Germany (Von Grafenstein et al. 1998), showing a major climatic in- stability event that occurred around 8200 years ago, during the Holocene. The event was large both in magnitude, as reflected by a ...
Page 21
... sediment sequence from Laguna Pallcacocha, south Ecuador, spanning the whole of the Holocene, ENSO events have been identified from the presence of light coloured, clastic laminae that, for the recent period, correspond with documented ...
... sediment sequence from Laguna Pallcacocha, south Ecuador, spanning the whole of the Holocene, ENSO events have been identified from the presence of light coloured, clastic laminae that, for the recent period, correspond with documented ...
Page 22
... in the case of evolution and Milankovitch cycles Fig. 2.16. Lake Victoria sediment-core variations in a magnetic susceptibility. 22 CHAPTER 2⚫ Planetary Machinery : The Dynamics of the Earth System Prior to Significant Human Influence.
... in the case of evolution and Milankovitch cycles Fig. 2.16. Lake Victoria sediment-core variations in a magnetic susceptibility. 22 CHAPTER 2⚫ Planetary Machinery : The Dynamics of the Earth System Prior to Significant Human Influence.
Page 24
... sediment-core variations in a magnetic susceptibility (after Johnson et al. 1996) and b lake water δ 18O (Beuning et al. 1998) to illustrate the early Holocene refilling and overflowing of the lake Fig. 2.18. Differences in near-surface ...
... sediment-core variations in a magnetic susceptibility (after Johnson et al. 1996) and b lake water δ 18O (Beuning et al. 1998) to illustrate the early Holocene refilling and overflowing of the lake Fig. 2.18. Differences in near-surface ...
Page 28
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Contents
1 | |
6 | |
Harvard University USA The University of Newcastle | 60 |
Claussen Martin | 75 |
How Humans are Changing the Earth System | 81 |
3 | 109 |
Magnitudes Rates and Significance of Human Changes | 131 |
4 | 142 |
Department of Geosciences Harvey Nick | 166 |
5 | 203 |
NASA Headquarters Washington DC USA Potsdam Institute for Climate Impact Research | 234 |
Dalhousie University Canada Scholes R | 251 |
References | 299 |
Mitra A | 305 |
Acknowledgements | 307 |
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aerosol aerosol particles Africa agricultural anthropogenic areas Asia atmos atmospheric CO2 Berlin Heidelberg biodiversity Biogeochem Cy biological biomass biosphere Cambridge carbon cycle century chemical climate change climate system CO₂ coastal zone complex concentration decades deforestation dynamics Earth System functioning ecosys ecosystems effects emissions ENSO environment environmental estimated example extinction feedbacks fertilisation flux forcing forest fossil fuel Gaia Geophys Res glacial Greenland growth Heidelberg New York Holocene human activities human-driven hydrological hydrological cycle ice core IGBP IGBP Global Change impacts important increase influence interactions IPCC land-cover Lovelock marine natural nitrogen North Atlantic nutrients ocean organic ozone past patterns perturbation photosynthesis phytoplankton plant population processes production radiative forcing record regions responses river role scale Science sediment significant simulations soil solar species surface temperature terrestrial ecosystems Tg N yr–1 thermohaline circulation tion transport trends tropical tropospheric variability vegetation warming Younger Dryas