Energy shift to pop ‘fossil bubble’

epa05071234 Project Manager Klaus Schrot checks the last solar panels before the opening of a new solar farm on a former firing range in Star Buchholz in Schwerin, Germany, 16 Decemeber 2015. The company PVStrom has installed almost 40,000 solar modules. The installation will thus generate more than 10,000 megawatt hours of solar power annually.  EPA/JENS BUETTNER

 

Bloomberg

The way we get electricity is about to change dramatically, as the era of ever-expanding demand for fossil fuels comes to an end—in less than a decade. That’s according to a new forecast by Bloomberg New Energy Finance that plots out global power markets for the next 25 years.
Call it peak fossil fuels, a turnabout that’s happening not because we’re running out of coal and gas, but because we’re finding cheaper alternatives. Demand is peaking ahead of schedule because electric cars and affordable battery storage for renewable power are arriving faster than expected, as are changes in China’s energy mix.
Here are eight massive shifts coming soon to power markets.

THERE WILL BE NO
GOLDEN AGE OF GAS
Since 2008, the single most important force in U.S. power markets has been the abundance of cheap natural gas brought about by fracking. Cheap gas has ravaged the U.S. coal industry and inspired talk of a “bridge fuel” that moves the world from coal to renewable energy. It doesn’t look like that’s going to happen.
The cost of wind and solar power are falling too quickly for gas ever to dominate on a global scale, according to BNEF. The analysts reduced their long-term forecasts for coal and natural gas prices by a third for this year’s report, but even rock-bottom prices won’t be enough to derail a rapid global transition toward renewable energy.
“You can’t fight the future,” said SebHenbest, the report’s lead author. “The economics are increasingly locked in.” The peak year for coal, gas, and oil: 2025.

RENEWABLES ATTRACT
$7.8 TRILLION
Humanity’s demand for electricity is still rising, and investments in fossil fuels will add up to $2.1 trillion through 2040. But that will be dwarfed by $7.8 trillion invested in renewables, including $3.4 trillion for solar, $3.1 trillion for wind, and $911 billion for hydro power.
Already in many regions the lifetime cost of wind and solar is less than the cost of building new fossil fuel plants, and that trend will continue. But by 2027, something remarkable happens.
At that point, building new wind farms and solar fields will often be cheaper than running the existing coal and gas generators. “This is a tipping point that results in rapid and widespread renewables development,” according to BNEF.
The pink stuff on the top of this chart is new this year. It represents flexible capacity—technology, primarily large batteries for the home and grid, that smooths out the peaks and valleys inherent to wind and solar power.
By 2028, batteries will be as ubiquitous as rooftop solar is today.

ELECTRIC CARS RESCUE
POWER MARKETS
In this discussion of peak fossil fuels, the focus is on electricity generation, not transportation fuels. For cars, peak oil demand will take a bit more time.
But the sudden rise of electric cars is on the verge of disrupting oil markets as well, and that has profound implications for electricity markets as more cars plug in.
In fact, electric cars couldn’t come at a better time for developed economies. Take Germany, for example, where increases in efficiency mean that without electric cars, demand for electricity would be headed toward a prolonged and destabilizing decline. Electric vehicles will reverse that trend, according to BNEF.
The charts below show the soaring demand for battery capacity for cars and the difference that EVs will make to power demand worldwide. The adoption of electric cars will vary by country and continent, but overall they’ll add eight percent to humanity’s total electricity use by 2040, BNEF found.

BATTERIES JOIN THE GRID
Renewable energy and electric cars create a virtuous cycle of demand growth. Unlike fossil fuels—where a surge of demand leads to higher prices—with new energy technologies more demand begets more scale, and that drives prices lower.
The scale up of electric cars increases demand for renewable energy and drives down the cost of batteries.
And as those costs fall, batteries can increasingly be used to store solar power.

SOLAR AND WIND
PRICES PLUMMET
The chart below is arguably the most important chart in energy markets. It describes a pattern so consistent, and so powerful, industries set their clocks by it. It’s the beautiful math of declining solar costs.
The chart is on a logarithmic scale, so the declines are even more profound than at first glance. For every doubling in the world’s solar panels, costs fall by 26 percent, a number known as solar’s “learning rate.” Solar is a technology, not a fuel, and as such it gets cheaper and more efficient over time. This is the formula that’s driving the energy revolution.
Wind-power prices are also falling fast—19 percent for every doubling. Wind and solar will be the cheapest forms of producing electricity in most of the world by the 2030s, according to BNEF.

CAPACITY FACTORS GO WILD
One of the fast-moving stories in renewable energy is the shift in what’s known as the capacity factor. That’s the percentage of a power plant’s maximum potential that’s actually achieved over time.
Consider a wind farm. Even at high altitudes, the wind isn’t consistent and varies in strength with the time of day, weather, and the seasons. So a project that can crank out 100 megawatt hours of electricity during the windiest times might produce just 30 percent of that when averaged out over a year. That gives it a 30 percent capacity factor.
As technologies continue to improve and as project designers get smarter about their placement, the capacity factors of renewables are increasing. Here’s a watercolor plot of wind power capacity factors over time. Some wind farms in Texas are now achieving capacity factors of 50 percent, according to BNEF.
Improving capacity factors make renewables more attractive. But capacity factors of gas and coal plants are also changing. Once a solar or wind project is built, the marginal cost of the electricity it produces is pretty much zero—free electricity—while coal and gas plants require more fuel for every new watt produced. If you’re a power company with a choice, you choose the free stuff every time.
As natural gas and coal plants are increasingly idled in favor of renewables, their capacity factors will take a big hit, and lifetime cost of those plants goes up. Think of them as the expensive back-up power for cheap renewables.

A NEW POLLUTER TO
WORRY ABOUT
China, the biggest and fastest-growing polluter, became a major global environmental concern over the last few decades. But that perception is changing fast. China’s evolving economy and its massive shift from coal to renewables mean it will have the greatest reduction in carbon emissions of any country in the next 25 years, according to BNEF. That’s good news for the climate and is a significant change for the global energy outlook. But that leaves India, which is emerging as the biggest threat to efforts to curb climate change. India’s electricity demand is expected to increase fourfold by 2040, and the country will need to invest in a variety of energy sources to meet this overwhelming new demand. India has hundreds of millions of people with little or no access to electricity, and the country sits atop a mountain of coal. It intends to use it.

THE TRANSFORMATION
CONTINUES
BNEF’s outlook for carbon dioxide emissions has improved significantly over the last year, in spite of cheap fossil fuel prices.
The shift to renewables is happening shockingly fast—but not fast enough to prevent perilous levels of global warming. Without additional policy action by governments, global carbon dioxide emissions from the power sector will peak in the 2020s and remain relatively flat for the the foreseeable future. That’s not enough to prevent the surface of the Earth from heating more than 2 degrees Celsius, according to BNEF. That’s considered the point of no return for some of the worst consequences of climate change.
BNEF’s report focuses on fundamental economics: price, demand, supply. It includes climate-related policies that have already been set into action, but doesn’t make any guesses for new policies beyond those. It also doesn’t include any jumps in technology that aren’t clearly already under way. That could be heartening for people concerned about climate change, because if there’s one thing that energy markets have shown in the last decade, it’s that there will be more surprises to come.

epa05353065 A electric car from Tesla is being charged at a supercharger facility in Solli, Norway, 04 June 2016. These charging stations are built specifically for electric cars from Tesla and makes it possible to charge the car's large battery in a shorter period of time. Tesla are building super chargers along the main road in Norway and Europe. Reports 06 June 2015 state four leading Norway's political parties have tentatively agreed on a bill that will end the sales of fossil-fuel driven vehicles by 2025. Norway currently boasts the biggest number of electric vehicles with a total of 24 per cent of all vehicles on the road.  EPA/TORE MEEK NORWAY OUT

epa05326175 An interior view of a greenhouse in Hveragerdi, Iceland, 22 April 2016. Greenhouses in Iceland are heated with geothermal water, pumped from nearby geothermal springs. The hot water allows farmers to cultivate flowers, fruits and vegetables all year round. During the dark winter months the greenhouses are fixed with lighting energised with both electricity produced with both geothermal and hydro power plants. Hveragerdi is a small town, 40 minutes from Reykjavik built primarily around geothermal springs.  EPA/BIRGIR THOR HARDARSON ICELAND OUT

epa05048235 A view of a Solar farm next to a community in Valenzuela city, north of Manila, Philippines, 30 November 2015. In support of the ongoing COP21 Paris Climate Conference, village chief Joel Angeles of Barangay Isla, announced that the new 11-hectare solar power plant that has 32,692 solar panels and can generate 8.6 megawatts every day, will be supplying electricity to the public schools in the community for free. World leaders are gathering from 30 November to 11 December at the Paris Climate Conference, also known as 21st Conference of Parties (COP21).  EPA/FRANCIS R. MALASIG

epa03687058 A line of wind turbines in Bangui, Ilocos Norte, northern Philippines, 04 May 2013. Most areas in Mindanao island in southern Philippines suffer 4-8 hours of rotational black outs due to energy shortages in the region. Bangui wind turbines not only improve tourism in Ilocos province, but it also powers 40 percent of the entire province which proves that reducing dependency on fossil fuel is possible.  EPA/DENNIS M. SABANGAN

 

 

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