France Hits Record 19.2% EV Share in December – Up Almost 6× Year on Year
cleantechnica.com
cleantechnica.com
Sweden in November: 38.7%, up 2.7x YoY
https://cleantechnica.com/2020/12/02/swedens-ev-sales-hit-ne...
I worry about the current trend of both France and Sweden shutting down nuclear plants without building any replacements though. Wind power is great, I suppose (the jury is still out on the sustainability of the hardware - but it's not looking great at the moment - massive amounts of concrete needed causing kinda huge co2 emissions during the chemical manufacturing processes), but it's no good as a baseline power for days when there's no wind and the hydro power is running on low. The fallback for that scenario is burning coal or oil.
Agree the trend of decommissioning nuclear plants is counterproductive for other reasons though.
Is that really true when much of the employed population falls on a relatively uniform commute schedule?
I'd expect similar congestion to what's seen on roadways to recur on an inadequate power grid.
I recall a study that if 80% of cars were electric in the U.K., it will increase the load on the grid by 10-20%.
When only charged at home it's just an overnight charging window.
We don't have gas pumps at every parking spot and drivers are generally content with the current situation.
Also, most people live in cities. Most people in cities don't have a charger at home.
Cities are full of cars during the day, but the parking lots empty out at night. They live in less-dense suburbs, where it's comparatively easy to park and comparatively easy to have a charger installed. In the city, many of those who are willing to afford a car at all will also find ways to charge it (including sharing a few charging stations at their garage).
2. At least one but perhaps several orders of magnitudes more expensive than doing it at home. In part because you can charge overnight when pricing is the lowest.
I'd guess most people that have a EV-vehicle have a charger at home.
a) Politicians love them
b) Politicians really don't understand power grids
c) They don't seem to be that "green", after all, if you consider the life span and the co2 emissions from the concrete manufacturing.
https://www.factcheck.org/2018/03/wind-energys-carbon-footpr...
A metaphor if I may engage, is you cannot get a six pack with pure calorie counting, you have to have a bit more sophisticated system in nutrition and work outs for that. Same thing applies for The Grid, a wind mill of same specification at two different locations will give different yields, at different time of day and have completely different effect on system as a whole.
He participated in research on low cost rocket designs. His take away was the actual design wasn't as important as building more rockets rather than less.
With solar you make panels by the 100 million. Wind turbines by the tens of thousand. Nuclear by the low digits. Per year.
https://fr.wikipedia.org/wiki/Parc_automobile_fran%C3%A7ais
Cars are parked 95% of the time.
Even a smallish 2 kW car to grid capacity would give 80 GW of instantaneuous dispatchable power to the grid. And cars are distributed on all the territory.
If average battery is about 50 kWh that gives a whole day of France max demand.
And of course on the other way 80 GW of dispatchable demand.
For reference electro-nuclear production capacity is 62 GW in France.
A fully electric car fleet means the grid will just never go down.
This is all software controlled, all new cars in Europe have a SIM card (eCall law), electric cars are computer on wheels, nothing is missing but the will to do it.
My Tesla model 3 SR+ has 50 kWh of NCA batteries with about 1000-1500 cycles, so about 600k km (to 70% of original capacity). Petrol car leave the european market with about 200-250k km on the odometer (source: discussion with a car journalist).
If you buy a Tesla model 3 SR+ right now in Europe it's made in China with LFP chemistry which is much more durable 3000-6000 cycles to about 2 millions km.
That gives plenty of room to play with car batteries without too much detriment.
And I assume you'll be able to limit discharging to some value to avoid getting stuck on your parking :).
Do you have a link to Ireland law about eCall?
In Europe GDPR force to require consent for personnal data use like most car data is, once consent is given I see no reason not to use the already present SIM for eCall for other purposes.
1x Windmill, 3.6MW for 500 m3 concrete [0, 1]
1x Hinkley Point C base, nameplate 3.2GW for 18,000 m3 [2]
I don't know how much Hinkley Point overall might use, because a lot might go into the shell, so say the overall build is an order of magnitude more than the base. That is 180k m3 of concrete or about 360 windmill foundations in Hinkley with some rather unfavourable assumptions. So a 3.2 GW nuclear reactor might match up to ~1.3 GW of Windfarm.
Depending on how much goes into the base vs the shell it is probably somewhere between 3x to an order of magnitude favouring nuclear. Not considering relative lifetime, although I expect a nuclear concrete pour has better long-term prospects (how would they replace the windmill without re-pouring the base?).
[0] https://www.wagner.com.au/main/our-projects/sapphire-wind-fa...
[1] https://www.sapphirewindfarm.com.au/
[2] https://en.wikipedia.org/wiki/Hinkley_Point_C_nuclear_power_...
See also: https://archinect.com/news/article/150240752/recycled-concre...
Your argument completely ignores the fact that nuclear has the highest energy density and availability of all currently available energy sources.
We should definitely try and reduce the amount of embodied CO2 in wind turbines. But it is hardly a differentiating factor when comparing nuclear and wind. Both are fantastic in terms of co2 when compared to the fossil fuels they are replacing. We only talk about embodied co2 because the other emissions are so non-existent!
Emissions from concrete are a problem which needs to be addressed separately to energy production. Other industries need to do their bit and provide alternatives.
We are basically building back wind farms and not building new ones.
The article below gives a reasonable overview of the causes:
https://m.dw.com/en/german-wind-energy-stalls-amid-public-re...
https://www.cleanenergywire.org/news/modest-wind-power-expan...
But I was responding to another argument: the parent claimed that wind power is actually removed. Except for some fear mongering that it might happen in the future I can't find any evidence for this. So still waiting on a citation on that original claim.
Starting with 2021 old wind farms will be build back, since there is a new rule about 1000m,new ones cant be build, hence reducing the available area.
Renewables clearly have no place when it comes to generate a lot of energy. They're interesting in a few cases where there's a lot of wind, or where there is no power grid and you need a little power.
Others advocate reducing energy consumption, but if we reduce co2 emissions from transport, we will need more electricity.
Still, there is definitely a trend here.
Last I checked, everything is north of twice that amount unless you omit the battery. I'd be willing to pay more for something amazing like an Aptera, though not super much because I'd simply not get enough use out of it: it won't ever beat taking mass transport to work, also because on mass transport I can relax before/after work instead of driving, so it will only ever be for weekend trips to my (girlfriend's) parents, grocery trips, etc. That's also why 45km/h electric cars or scooters are not worth it, they'd just replace local trips which I mostly do by bus anyway.
I'd also be happy with second-hand, but I have no idea about maintenance costs as I never owned any vehicle other than bikes. (I do have a driver's license and regular driving experience, it's just that I borrow what I'm driving.)
Are you assuming a fixed rate of retirement for ICE vehicles? I've long wondered if the growth line of EVs would end up being yet another example of an S-curve rather than linear as so many seem to expect. It definitely seems like there are potential tipping point factors on both sides of the equation, because fossil fuel infrastructure has a ton of capex and opex that works due to massive amortization across a big enough fleet. And simultaneously justification for huge EV infrastructure investments, and the mass manufacturing necessary to keep prices marching down, faces some level of bootstrapping and amortization issues too. Plus, lack itself is a hindrance if people aren't confident about charging up.
But it's easy to see how that could flip, and then in a surprising hurry go in reverse. At some level of shrinking ICE usage a lot of gas stations themselves become non-viable. And then suddenly it starts to get harder to fuel up, in turn driving the dynamic even faster right? It seems probable that there will be some inertia due to lagging specialized applications, demand amongst niches like collectors, etc for a while. But it seems possible the new equilibrium might get reached non-linearly. And that's ignoring and political tipping points that could happen too, if a majority of people have EVs, or even a very sizable minority (say 20-40%), what happens to political support for current extensive systems of explicit and implicit subsidies fossil fuels enjoy?
Yes, that calculation assumes that, but it doesn't matter that much - if we take your alternative into account, either EVs have to be 100% of new cars for 12 years, or there has to be a big increase in new cars sold, which would be news in itself.
Or some less likely alternatives, like a huge mode switch to public transport or a global pandemic causing a mode switch to working from home or something.
Sure, but seems feasible. I mean upfront, 10-year horizons during disruptive shifts absolutely can get a bit speculative. I don't mean to make any hard predictions here. But there certainly seems to be a ton of capital floating around right now that could get redirected given the right incentives. Privately, there seem to be a significant number of people who could buy new cars but aren't. Cars seem to last significantly longer these days [0, 1], and the burgeoning of EVs may itself act as a further deterrent. If minimum capex and TCO made major shifts, I could see that driving significantly faster replacement cycles temporarily until new market equilibrium and saturation was reached. Granted with some floors created by segments of the population who couldn't handle the capex even if the opex was favorable as is so often the case.
But speaking of that there is the public side too. From what I can tell, a LOT of money continues to go into government subsidies of fossil fuels [2]. The politics will absolutely shift as the population shifts, and at some point it seems likely that "why not put those tens of billions into 'cash for clunkers' type schemes instead?" is going to make it one or another platform. Or all the platforms competing with each other. Of course that applies only to certain countries that can afford it.
At any rate, it will be an interesting decade!
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0: https://www.nytimes.com/2012/03/18/automobiles/as-cars-are-k...
1: https://www.aarp.org/auto/trends-lifestyle/info-2018/how-lon...
2: https://www.forbes.com/sites/jamesellsmoor/2019/06/15/united...
And they'll still be around, they'll just serve electricity. Fun fact, a lot of gas stations used to serve as stables. When cars arrived, they served both and gradually stopped being stables.
Though with electricity being overall so much easier to distribute than gas, I'm guessing a significant amount will indeed have to close, especially inside cities; no point going to a refueling station if a charger is available at nearly every corner, when you're parked while eating at the restaurant, or when you're home asleep and charging from your garage.
Instead, family members that drive less tend to have older cars.
http://www.fiches-auto.fr/articles-auto/l-auto-en-chiffres/s...
For about 40 millions cars, so 5%/year.
Also older cars tend to do less distance each passing years
https://www.researchgate.net/figure/Average-annual-mileage-A...
As for petrol vehicules I assume once passed a certain level of EV they will become harder to fuel and maintain because petrol vehicule services will no longer be profitable and will disappear.
France gets 70% of its power from nuclear.
https://www.numbeo.com/gas-prices/in/Paris?displayCurrency=U...
Who would have thought.
[1] https://wisconsindot.gov/Pages/dmv/vehicles/title-plates/fue...
[2] https://streets.mn/2016/07/07/chart-of-the-day-vehicle-weigh...
So "hey, those guys stopped paying their share" can be passed,and that's what happens.
Up until the last 10 years, it wasn’t feasible to use the road with a heavy vehicle without burning fuel so it was a shortcut to put road tax on the fuel instead of tolls everywhere.
This is why farmers use red dyed diesel that has the tax excluded. They are still emitting just as much but aren’t wearing down the road.
In 2016 commercial trucks paid $18.4 billion in federal highway user taxes and $21.6 billion in state highway user taxes[1]
[1] https://www.ccjdigital.com/heres-how-much-trucking-paid-in-h...
What can’t be ignored is the level of subsidies being offered to heavy vehicles.
solution is to tax electricity not 1 of the uses of electricity?
If the goal was truly to "fairly" tax road use, registration fees should be based on vehicle weight and not fuel type.
https://streets.mn/2016/07/07/chart-of-the-day-vehicle-weigh...
If you want to EV tax me for road wear fine. Please tax trucks at least 1000x, and please tax all gas burning cars for the lung cancer and other negative externalities they cause.
Did you consider the weight for the full vehicle, or per-axle? The per-axle figure is the relevant one and would probably flatten that figure out quite a bit.
They are also much more stringently enforced on commercial transportation vehicles, which require annual inspections and serious preventative maintenance to pass which does already add to the cost of operating these vehicles.
Their per-mile consumption is higher as well, which aside from being bad for the environment, already means they are consuming much more fuel and paying a higher tax as it is.
> tax all gas burning cars for the lung cancer and other negative externalities they cause.
Transportation, on the whole, accounts for 28% of greenhouse gasses... but it also enables the society that we live in and our own personal mobility within it. Electricity is nearly the same at 27%. You can shift the source, but you cant eliminate greenhouse gas from our way of life.
Also basically every every other material good.
I think people would probably scream pretty loud if food suddenly jumped in price 10x, but maybe we could handle it like most places handle sales tax? Exempt trucks carrying food/necessities and tax everything else.
The cost of transportation should just be included in the good. That way, if someone comes up with an ingenious new method of urban farming or something, they'll get rewarded in the market for cost savings.
And if that sort of tax policy would severely impact the cost of food, we'd be better off with direct subsidies for groceries.
https://www.lacentrale.fr/fiche-technique-voiture-volkswagen...
=> length 4.78m, weight 1635kg
https://www.lacentrale.fr/fiche-technique-voiture-tesla-mode...
=> length 4.69m weight 1612kg
The dual-motor AWD variant Model 3 comes in at 1847kg (4072lbs), which is pretty damn heavy for a car in my NA Miata-driving book.
Also no PASSAT is going to rip sub-4s 0-60 launches from every stop.
AWD model 3 does have a 50% bigger battery though.
In Germany, one kWh of electricity causes 400 grams of CO2 emissions, yet local law classifies electric drives as carbon-free.
Edit: ah, 8% are hybrids, the other 11% require reliable charger access.
Edit - Again, not sure if France is anything similar, but I have found it super interesting.
More info: https://www.amsterdam.nl/en/parking/electric-charging/
Amsterdam charging station map: https://www.amsterdam.nl/en/traffic-transport/map-charging-s...
Not that I'm predicting that would actually happen, just saying that's an enormous rate of increase in 12 months.
He has also said many times a vehicle will be designed in China for the Chinese market, and a vehicle will be designed in Germany for the European market.
It's coming, but it all takes time, and they needed to focus on the high dollar products with high(er) margins so they could finance the lower ones.
At a minimum that would enable working on a minivan, smaller cars, and other form factors, especially if it is under a different badge.
But that assumes that car design is the bottleneck, it may still be battery supply, and nothing matters until that is solved.
Given their apparent quality problems, I'd guess it's not all battery issues.
The price of acquisition would likely exceed anything Tesla could scrape together right now.
Then there's also the problem that Nissan is fundamentally a Japanese company. You can't just "acquire-hire" people halfway around the globe and expect that to work out.
They might be able to buy part (maybe whatever they own in the west, if there's anything worthwhile) of Nissan though, assuming someone was selling.
Um, have you seen Tesla's valuations? Renault et al could be bought out just with Tesla stock swaps.
And you don't think Renault wants to cut loose that albatross?
"Then there's also the problem that Nissan is fundamentally a Japanese company."
Wouldn't the Japanese, at least at the government policy level, want tech exposure to cutting edge EV technology?
https://www.ladepeche.fr/2020/07/23/une-voiture-neuve-coute-...
At battery day 2020 Tesla has announced a new small car to be designed in Germany and sold for around 25k USD in about 3 years.
25k USR is about 25k EUR when a 20% VAT is added (typical value for EU countries).
you sounds like a mad $TSLA HODLer
https://www.caradvice.com.au/869447/plug-pulled-on-renault-z...
Strangely they never have comparative prices or can explain why France doesn't have super high energy prices.
Over the 5-10 years of a major nuke project planning and construction, they're going to see their target cost undercut by wind/solar by massive margins.
Obviously those curves won't last forever, once they stabilize, then new nuke projects will have a more stable target.
The USA has it easy so to speak. Higher density countries, especially if they don't want to fill literally their whole share of the sea with wind (which is also much more expensive than on land), if they have any sea to begin with... e.g. I heard that southeastern Germany has much less wind because they have a higher minimum distance between villages and wind turbines, but I don't remember where I read that (whether they have less wind installed was a quicker check[2], omw to bed since it's 5am here). They already can't find space to put them and green energy is only at like 5% of their energy need (33% of the electricity[3], which is 15% of the energy need[4]). In fact, if you look at the graph of [3], renewables are so far mostly replacing nuclear production and fossil fuels are still going strong.
This just isn't the time to phase fission out, yet, regardless of whether anyone is in favor of building it out.
I just think it's silly to exclude many many megawatts of the safest kind of green energy. We're barely scratching the surface of replacing power generation, let alone the other ~90% of fossil fuel usage (e.g. in the Netherlands, 112TWh is electricity versus 900TWh total fossil fuel usage per year[1]).
It's like deciding not to bring more oxygen to the international space station, hoping you'll be able to find enough room to grow plants instead. Just that the experiment we're doing is on the scale of a planet and decades ahead with a notoriously hard to predict future. I say we should start building today and, as soon as we then can, turn off the fossil fuel based power plants, replace the lion's share of combustion engine cars, etc. that contribute to killing or impairing millions of people every year[5], rather than (to use the previous comparison) worrying whether oxygen production by vegetation might be cheaper than lifting up some more oxygen. "Will it keep us going strong" is perhaps a better question than "what's the cheapest option that will make it look like we're making good progress to the majority of our voters?"
[1] https://en.wikipedia.org/wiki/Energy_in_the_Netherlands
[2] https://1-stromvergleich.com/wind-power-germany/
[3] https://en.wikipedia.org/wiki/Energy_in_Germany#/media/File:...
[4] https://en.wikipedia.org/wiki/Energy_in_Germany
[5] https://en.wikipedia.org/wiki/Air_pollution "air pollution causes the deaths of around 7 million people worldwide each year, and is the world's largest single environmental health risk"
https://www.lefigaro.fr/societes/2017/12/12/20005-20171212AR...
From what I can see I'd say public sector impact on EV sale is insignificant (36k just in december).
Also in France about half of sales are to fleet buyers, and those were up to now quite conservative and buying very little electric vehicules. I assume this will start to change soon.
> The December combined plugin share of 19.2% was dominated by battery electric vehicles (BEVs) at 11.1% of the total auto market, with plugin hybrid vehicles (PHEVs) taking 8.1%.
The article also has a chart showing the breakdown.[1]
1. https://cleantechnica.com/files/2021/01/December-2020-France...