Peak Oil Is for Real: The Era of Cheap Oil Is Officially Over
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In fact, however, the consumption part of this equation seems like the less reliable calculation, especially if economic growth continues at anything like its recent pace in China and India. Indeed, all evidence suggests that growth in these countries will resume its pre-crisis pace by the end of 2009 or early 2010. Under those circumstances, global oil demand will eventually outpace supply, driving up prices again and threatening recurring and potentially disastrous economic disorders -- possibly on the scale of the present global economic meltdown.
To have the slightest chance of averting such disasters means seeing a sharp rise in unconventional fuel output. Such fuels include Canadian oil sands, Venezuelan extra-heavy oil, deep-offshore oil, Arctic oil, shale oil, liquids derived from coal (coal-to-liquids or CTL), and biofuels. At present, these cumulatively constitute only about 4% of the world's liquid fuel supply but are expected to reach nearly 13% by 2030. All told, according to estimates in the new IEO report, unconventional liquid production will reach an estimated 13.4 million barrels per day in 2030, up from a projected 9.7 million barrels in the 2008 edition.
But for an expansion on this scale to occur, whole new industries will have to be created to manufacture such fuels at a cost of several trillion dollars. This undertaking, in turn, is provoking a wide-ranging debate over the environmental consequences of producing such fuels.
For example, any significant increase in biofuels use -- assuming such fuels were produced by chemical means rather than, as now, by cooking -- could substantially reduce emissions of carbon dioxide and other greenhouse gases, actually slowing the tempo of future climate change. On the other hand, any increase in the production of Canadian oil sands, Venezuelan extra-heavy oil, and Rocky Mountain shale oil will entail energy-intensive activities at staggering levels, sure to emit vast amounts of CO2, which might more than cancel out any gains from the biofuels.
In addition, increased biofuels production risks the diversion of vast tracts of arable land from the crucial cultivation of basic food staples to the manufacture of transportation fuel. If, as is likely, oil prices continue to rise, expect it to be ever more attractive for farmers to grow more corn and other crops for eventual conversion to transportation fuels, which means rises in food costs that could price basics out of the range of the very poor, while stretching working families to the limit. As in May and June of 2008, when food riots spread across the planet in response to high food prices -- caused, in part, by the diversion of vast amounts of corn acreage to biofuel production -- this could well lead to mass unrest and mass starvation.
A Heavy Energy Footprint on the Planet
The geopolitical implications of this transformation could well be striking. Among other developments, the global clout of Canada, Venezuela, and Brazil -- all key producers of unconventional fuels -- is bound to be strengthened.
Canada is becoming increasingly important as the world's leading producer of oil sands, or bitumen -- a thick, gooey, viscous material that must be dug out of the ground and treated in various energy-intensive ways before it can be converted into synthetic petroleum fuel (synfuel). According to the IEO report, oil sands production, now at 1.3 million barrels a day and barely profitable, could hit the 4.4 million barrel mark (or even, according to the most optimistic scenarios, 6.5 million barrels) by 2030.
Given the IEA's new projections, this would represent an extraordinary addition to global energy supplies just when key sources of conventional oil in places like Mexico and the North Sea are expected to suffer severe declines. The extraction of oil sands, however, could prove a pollution disaster of the first order. For one thing, remarkable infusions of old-style energy are needed to extract this new energy, huge forest tracts would have to be cleared, and vast quantities of water used for the steam necessary to dislodge the buried goo (just as the equivalent of "peak water" may be arriving).
What this means is that the accelerated production of oil sands is sure to be linked to environmental despoliation, pollution, and global warming. There is considerable doubt that Canadian officials and the general public will, in the end, be willing to pay the economic and environmental price involved. In other words, whatever the IEA may project now, no one can know whether synfuels will really be available in the necessary quantities 15 or 20 years down the road.
Venezuela has long been an important source of crude oil for the United States, generating much of the revenue used by President Hugo Chávez to sustain his social experiments at home and an ambitious anti-American political agenda abroad. In the coming years, however, its production of conventional petroleum is expected to fall, leaving the country increasingly reliant on the exploitation of large deposits of bitumen in the eastern Orinoco River basin. Just to develop these "extra-heavy oil" deposits will require significant financial and energy investments and, as with Canadian oil sands, the environmental impact could be devastating. Nevertheless, successful development of these deposits could prove an economic bonanza for Venezuela.
See more stories tagged with: economy, peak oil, doe, oil economy, michael klare, energy department
Michael T. Klare is a professor of peace and world security studies at Hampshire College in Amherst, Massachusetts, and the author, most recently, of Rising Powers, Shrinking Planet: The New Geopolitics of Energy (Henry Holt). A DVD of the documentary film based on his previous book, Blood and Oil, is available by clicking here.
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