Showing posts with label climate change. Show all posts
Showing posts with label climate change. Show all posts

Monday, June 20, 2016

New OxCARRE Research: Stranded assets, the social cost of carbon, and directed technical change: Macroeconomic dynamics of optimal climate policy

New OxCARRE research from

Frederick van der Ploeg ([ox.ac.uk], OxCARRE) and Armon Rezai ([wu.ac.at], WU - Vienna University of Economics and Business)

Stranded assets, the social cost of carbon, and directed technical change: Macroeconomic dynamics of optimal climate policy

Abstract
The tractable general equilibrium model developed by Golosov et al. (2014), GHKT for short, is modified to allow for stock-dependent fossil fuel extraction costs and partial exhaustion of fossil fuel reserves, a negative impact of global warming on growth, mean reversion in climate damages, steady labour-augmenting technical progress, specific green technical progress driven by learning by doing, population growth, and a direct effect of the stock of atmospheric carbon on instantaneous welfare. We characterize the social optimum and derive simple rule for both the optimal carbon tax and the renewable energy subsidy, and characterize the optimal amount of untapped fossil fuel.
Available here [ox.ac.uk].

Thursday, January 28, 2016

New OxCARRE Research: Second-Best Renewable Subsidies to De-Carbonize the Economy: Commitment and the Green Paradox


A new OxCARRE research paper is available from

Armon Rezai (Vienna University of Economics and Business [wu.ac.at]) and
Frederick van der Ploeg (OxCarre, oxcarre.ox.ac.uk)

writing on

Second-Best Renewable Subsidies to De-Carbonize the Economy: Commitment and the Green Paradox
Abstract
Climate change must deal with two market failures: global warming and learning by doing in renewable use. The first-best policy consists of an aggressive renewables subsidy in the near term and a gradually rising and falling carbon tax. Given that global carbon taxes remain elusive, policy makers have to use a second-best subsidy. In case of credible commitment, the second-best subsidy is set higher than the social benefit of learning. It allows the transition time and peak warming close to first-best levels at the cost of higher fossil fuel use (weak Green Paradox). If policy makers cannot commit, the second-best subsidy is set to the social benefit of learning. It generates smaller weak Green Paradox effects, but the transition to the carbon-free takes longer and cumulative carbon emissions are higher. Under first-best and second best with pre-commitment peak warming is 2.1 - 2.3 °C, under second best without commitment 3.5°C, and without any policy temperature 5.1°C above pre-industrial levels. Not being able to commit yields a welfare loss of 95% of initial GDP compared to first best. Being able to commit brings this figure down to 7%.
Paper available here [oxcarre.ox.ac.uk] 

Monday, January 18, 2016

The Price of Oil and the Price of Carbon

OxCARRE associate Rabah Arezki and Maurice Obstfeld from the IMF, and also available on the IMFDirect blog here, write on

The Price of Oil and the Price of Carbon

By Rabah Arezki and Maurice Obstfeld

“The human influence on the climate system is clear and is evident from the increasing greenhouse gas concentrations in the atmosphere, positive radiative forcing, observed warming, and understanding of the climate system.”Intergovernmental Panel on Climate Change, Fifth Assessment Report

Fossil fuel prices are likely to stay “low for long.” Notwithstanding important recent progress in developing renewable fuel sources, low fossil fuel prices could discourage further innovation in and adoption of cleaner energy technologies. The result would be higher emissions of carbon dioxide and other greenhouse gases.

Policymakers should not allow low energy prices to derail the clean energy transition. Action to restore appropriate price incentives, notably through corrective carbon pricing, is urgently needed to lower the risk of irreversible and potentially devastating effects of climate change. That approach also offers fiscal benefits.

Low for long
Oil prices have dropped by over 60 percent since June 2014 (see Chart 1). A commonly held view in the oil industry is that “the best cure for low oil prices is low oil prices.” The reasoning behind this adage is that low oil prices discourage investment in new production capacity, eventually shifting the oil supply curve backward and bringing prices back up as existing oil fields—which can be tapped at relatively low marginal cost— are depleted. In fact, in line with past experience, capital expenditure in the oil sector has dropped sharply in many producing countries, including the United States. The dynamic adjustment to low oil prices may, however, be different this time around.



Oil prices are expected to remain lower for longer. The advent of shale oil production, made possible by hydraulic fracturing (“fracking”) and horizontal drilling technologies, has added about 4.2 million barrels per day to the crude oil market, contributing to a global supply glut. Shale oil will lead to shorter and more limited oil-price cycles. Indeed, shale requires a lower level of sunk costs than conventional oil, and the lag between first investment and production is much shorter. Furthermore, shale is still at a relatively early stage of its industry life cycle, where the scope for learning is substantial, as shown by production levels that have proven resilient thanks to phenomenal efficiency gains forced by the big drop in oil prices.

In addition, other factors are putting downward pressure on oil prices: change in the strategic behavior of the Organization of Petroleum Exporting Countries, the projected increase in Iranian exports, the scaling down of global demand (especially from emerging markets), the secular drop in petroleum consumption in the United States, and some displacement of oil by substitutes. These likely persistent forces, like the growth of shale, point to a “low for long” scenario, even after the supply legacy left by the high-price era of the 2000s has dissipated. Futures markets, which show only a modest recovery of prices to around $60 a barrel by 2019, support this view.

Natural gas and coal—also fossil fuels—have similarly seen price declines that look to be long-lived. Coal and natural gas are mainly inputs to electricity generation, whereas oil is used mostly to power transportation, yet the prices of all these energy sources are linked, including through oil-indexed contract prices. The North American shale gas boom has resulted in record low prices there. The recent discovery of the giant Zohr gas field off the Egyptian coast will eventually have repercussions on pricing in the Mediterranean region and Europe, and there is significant development potential in many other locales, notably Argentina. Coal prices also are low, owing to oversupply and the scaling down of demand, especially from China, which burns half of the world’s coal.



Renewables at risk

Technological innovations have unleashed the power of renewables such as wind, hydro, solar, and geothermal. Even Africa and the Middle East, home to economies that are heavily dependent on fossil fuel exports have enormous potential to develop renewables. For example, the United Arab Emirates has endorsed an ambitious target to draw 24 percent of its primary energy consumption from renewable sources by 2021.

Progress in the development of renewables could be fragile, however, if fossil fuel prices remain low for long. Renewables account for only a small share of global primary energy consumption, which is still dominated by fossil fuels—30 percent each for coal and oil, 25 percent for natural gas (see Table). But renewable energy will have to displace fossil fuels to a much greater extent in the future to avoid unacceptable climate risks. Unfortunately, the current low prices for oil, gas, and coal may provide scant incentive for research to find even cheaper substitutes for those fuels. There is strong evidence that both innovation and adoption of cleaner technology are strongly encouraged by higher fossil fuel prices. The same is true for new technologies for mitigating fossil fuel emissions.



The current low fossil-fuel price environment will thus certainly delay the energy transition. That transition—from fossil fuel to clean energy sources—is not the first one. Earlier transitions were those from wood/biomass to coal in the eighteenth and nineteenth centuries, and from coal to petroleum in the nineteenth and twentieth centuries. One important lesson is that these transitions take a long time to complete. But this time we cannot wait.

We owe to electric lighting the fact that there are still whales in the sea. Unless renewables become cheap enough that substantial carbon deposits are left underground for a very long time, if not forever, the planet will likely be exposed to potentially catastrophic climate risks.

Some climate impacts may already be discernible. For example, the United Nations Children’s Fund estimates that some 11 million children in eastern and southern Africa face hunger, disease, and water shortages as a result of the strongest El Niño weather phenomenon in decades. Many scientists believe that El Niño events, caused by warming in the Pacific, are becoming more intense as a result of climate change.

Getting the price of carbon right

Nations from around the world have gathered in Paris for the United Nations Climate Change Conference, COP-21, with the goal of a universal and potentially legally binding agreement on reducing greenhouse gas emissions. We need very broad participation to address fully the global “tragedy of the commons” that results when countries fail to take into account the negative impact of their carbon emissions on the rest of the world. Moreover, free riding by non-participants, if sufficiently widespread, can undermine the political will to action of participating countries.

The nations participating at COP-21 are focusing on quantitative emissions-reduction commitments (the Intended Nationally Determined Contribution, or INDCs). Economic reasoning shows that the least expensive way for each country to implement its INDC is to put a price on carbon emissions. The reason is that when carbon is priced, those emissions reductions that are least costly to implement will happen first. The IMFcalculates that countries can generate substantial fiscal revenues—revenues that would allow lower distorting taxes and new investments in the economy—by eliminating fossil fuel subsidies and levying carbon charges that capture the domestic damages caused by emissions. A tax on upstream carbon sources is one easy way to put a price on carbon emissions, although some countries may wish to use other methods, such as emissions trading schemes.

Countries that implement their INDCs through a domestic carbon price will reach their goals at lowest cost to themselves, but without global coordination on carbon prices, the cost to the world economy of whatever aggregate emissions reduction is achieved will be unnecessarily high. In order to maximize global welfare, every country’s carbon pricing should reflect not only the purely domestic damages from emissions (for example, health effects of the particulates associated with burning coal), but also the damages to foreign countries.

Setting the right carbon price will therefore efficiently align the costs paid by carbon users with the true social opportunity cost of using carbon. By raising relative demand for clean energy sources, a carbon price would also help to align the market return to clean-energy innovation with its social return, spurring the refinement of existing technologies and the development of new ones. And it would raise the demand for mitigation technologies such as carbon capture and storage, spurring their further development. If not corrected by the appropriate carbon price, low fossil fuel prices are not accurately signaling to markets the true social profitability of clean energy. While alternative estimates of the damages from carbon emissions differ, and it is especially hard to reckon the likely costs of possible catastrophic climate events, most estimates suggest substantial negative effects.

Direct subsidies to R&D have been adopted by some governments but are a poor substitute for a carbon price: they do only part of the job, leaving in place market incentives to over-use fossil fuels and thereby add to the stock of atmospheric greenhouse gases without regard to the collateral costs.

Politically, low oil prices may provide an opportune moment to eliminate subsidies and introduce carbon prices that could gradually rise over time toward efficient levels. However, it is probably unrealistic to aim for the full optimal price in one go. Global carbon pricing will have important redistributive implications, both across and within countries, and these call for gradual implementation, complemented by mitigating and adaptive measures that shield the most vulnerable.

The hope is that the success of the Paris conference opens the door to future international agreement on carbon prices. Agreement on an international carbon-price floor would be a good starting point in that process. Failure to address comprehensively the problem of greenhouse gas emissions, however, exposes all generations, present and future, to incalculable risks.

Monday, November 30, 2015

Paris Climate talks start

Plenty of reports on the Paris climate talks, which started today. This dynamic graph nicely indicates the multitude of angles one can look at the problem on who's to blame and who should act based on responsibility and impact.

http://www.carbonmap.org

Monday, November 23, 2015

64 Dutch professors request immediate closure of all coal powered electricity plants

64 Dutch professors in the topics of sustainability and environment write a public letter to the government and parliament [trouw.nl, in Dutch] requesting immediate closure of all coal powered electricity plants. Noting that according to a recent report of the European Environment Agency, presumably this one [eea.europa.eu], The Netherlands is among the worst performing on the targets that were set under Kyoto and EU 2020 objectives.

They argue that The Netherlands has enough spare capacity in gas powered electricity plants to shut down all coal powered plants immediately. The additional gas should be imported from Norway.

The purpose would be to 1) meet the emission targets a Dutch court has already ruled the government should abide to, 2) send a strong signal in preparation to the Paris climate talks, 3) do away with impression that a country that is among those most at risk of rising sea-levels is doing very little to prevent it.

The closing of coal powered electricity plants is a world wide pattern, with commitments from the US, UK and Germany, while China has been reducing the number of coal powered plants it is planning to build. Global investors have been pulling money out of the industry, seen as a liability.

Tuesday, November 17, 2015

NYT: ExxonMobil investigated for frauding investors over climate research


Back in september we looked at a report on Exxon's shifts from climate export to being a fierce critic. The New York Times reports that the New York Attorney General has now started an investigation into the issue and whether ExxonMobil may have mislead investors.
The investigation focuses on whether statements the company made to investors about climate risks as recently as this year were consistent with the company’s own long-running scientific research.

Monday, November 16, 2015

World Energy Outlook cautiously optimistic on shift to low carbon future

The International Energy Agency issued its World Energy Outlook [worldenergyoutlook.org]. It's heavy on the connection between energy demand and climate change and aims to give some projections on short and long term developments.
Some interesting quotes from the Executive Summary [iea.org]:



There was also a tantalising hint in the 2014 data of a de-coupling in the relationship between CO2 emissions and economic activity, until now a very predictable link.

By 2040, Asia is projected to account for four out of every five tonnes of coal consumed globally, (...). However, its continued use around the world is compatible with stringent environmental policies only if it is used in the most efficient way, with advanced control technologies to reduce air pollution, and if progress is made in demonstrating that CO2 can be safely and cost-effectively captured and stored.

Despite the shift in policy intentions catalysed by COP21, more is needed to avoid the
worst effects of climate change. There are unmistakeable signs that the much-needed
global energy transition is underway, but not yet at a pace that leads to a lasting reversal 10 of the trend of rising CO2 emissions.

Thursday, October 8, 2015

FT opinion: ‘Fossilist’ finance blocks ‘clean trillion’

The FT has an interesting piece from David Pitt-Watson (executive fellow of finance at London Business School and chair of the UN Environment Program Finance Initiative)  claiming that "Capital markets have unintended bias to unsustainable investment."





Wednesday, September 30, 2015

FT: BoE Chief warns of risk of stranded assets from unburnable fossil fuels.

Related to earlier discussions featured on this blog [here, here and here], the FT writes that Mark Carney, the chief of the Bank of England, warns of the potentially massive downside risk in the UK if binding climate change policy would left the majority of proven reserves unburnable (in the near future). He noted that 19% of the companies on the FTSE100 are related to extractive industries, and that if the world would decide on the 2 degrees limit, and without massive involvement of carbon capture, 'carbon budgetting' would imply that around two thirds of currently proven reserves should not be extracted.

Monday, September 21, 2015

Good read of Inside Climate News: Exxon: The Road not taken

Inside Climate News has an interesting 3 part (1 still to come) story on how Exxon was once on the forefront of climate science. Its researchers underwrote during the late 1970s the consensus on climate change: That the burning of fossil fuels were a major cause of increased CO2 in the atmosphere and that this would result in rising global temperatures.

Based on this analysis, Exxon set up a major research effort to further understand how this really came to be, for instance, investigating the role of oceans in absorbing CO2 from the atmosphere, and the role of deforestation in contributing CO2 levels.

The business case of the research was clearly presented as understanding the implications for the firm at a very long time horizon. The conclusion that Exxon might have to change from being an oil and gas company to diversify away towards renewable and sustainable energy sources was already suggested.

This is then contrasted to Exxon's later activities in sponsoring climate sceptic and denial organisations.

The story is an interesting read, but after part 2 I'm still left wondering where, when and why the decision was taken to depart from having the best knowledge on the climate towards presenting exactly the opposite. Perhaps in the third part, to be published soon.

See also the piece on PBS Frontline.

Monday, August 3, 2015

FT's Nick Butler: The reports are false – coal burns on

Nick Butler writes on the FT website and interesting note on the future of coal.

Writing on the headlines and recent divestment campaigns,
If you have Oxford University, Michael Bloomberg and the Norwegian Sovereign Wealth Fund against you what hope can there be?
May I note an OxCARRE paper [ox.ac.uk] by Tony Venables and Paul Collier? In fact, he notes, how dominant coal still is, and likely to remain given the dependence of it in China and India.

He concludes that only a cheap renewable energy would be able to displace coal. That would imply serious energy put into science and research. Closing,
In the meantime, it would be prudent to start some serious consideration of the question of adaptation to the changes in climate that begin to look inevitable.

Monday, June 1, 2015

FT: European energy groups seek UN backing for carbon pricing system

The FT [FT.com] writes: 
Six of Europe’s largest oil and gas companies have banded together for the first time to ask the UN to let them help devise a plan to stop global warming.
These are Royal Dutch Shell (Dutch-UK), BP (UK), Total (France), Statoil (Norway), Eni (Italy) and BG Group (UK).
The chief executives of ExxonMobil and Chevron, the two largest US oil producers, said last week they would not be joining any European company initiative to forge a common position on global warming.
Further analysis about the issue, and how these companies try to address the potential risk that their assets under ground become worthless, is given here [FT.com]. 

Wednesday, March 18, 2015

The Guardian's "Keep it in the ground" campaign

As part of his final months as editor of the Guardian, Alan Rusbridger [guardian.co.uk] has started a climate campaign called "keep it in the ground" [guardian.co.uk]. In short, if we take the 2 degree Celsius limit seriously, we can still burn 575 Gigatons of carbon while the currently proven reserves of oil gas and coal contain 2795 Gigatons (see opening letter of him).

This relates to the idea of unburnable assets which we posted about last year, here  [oxcarre.blogspot.com], and of which also a related paper exist from Paul Collier and Tony Venables (Closing Coal: Economic and Moral Incentives [oxcarre.ox.ac.uk], and blog [oxcarre.blogspot.com]).

Today's Guardian frontpage has the UK Energy Secretary Ed Davies supporting [guardian.co.uk] the campaign, but this we already knew [oxcarre.blogspot.com].

Friday, December 12, 2014

Big Oil and the value of their assets 2

In an update to a post [oxcarre.blogspot.com] of last summer, the UK Energy Secretary has backed [FT.com] the idea that oil companies' reserves may need to be revalued in light of the world's commitment to not exceed aparticular stock of carbon in the atmosphere. 

Thursday, November 13, 2014

Denmark's 100% renewable energy push

The New York Times, in its series on solutions to climate change, reports on the policy of Denmark to "to end the burning of fossil fuels in any form by 2050 — not just in electricity production, as some other countries hope to do, but in transportation as well."


they keys to success: 

  • plenty of wind power,
  • good electricity connections to Sweden's nuclear power, and Norway's hydroelectric plants (without competition from neighbouring countries),
  • hopefully new technology that can bring a transformation in the transport sector. 35 years to go, why not?