Not as helpful for reducing effective emissions as you might think. High altitude water vapor is just as big of a problem as CO2 as the lifetime of water vapor in the stratosphere is measured in years, not days or hours like it is in the lower troposphere. Water vapor is, after all, a much stronger greenhouse gas than CO2, it's just that normally its lifetime in the atmosphere is so short so as not to matter. So unle…
ZEROe: Hydrogen-hybrid aircraft concept
71–80 of 111 posts
Re: ZEROe: Hydrogen-hybrid aircraft concept
#72Earlier quoted context omitted.
> It's not any inherently greener then synthetic hydrocarbon production, which can be produced from atmospheric carbon for zero net carbon impact As I understand it, the production of complex hydrocarbons that can be used as a replacement for jet fuel is even more inefficient when compared to the production of hydrogen, as many of the known processes that start from CO2 actually use hydrogen in the process. So, altho…
That makes sense. I guess the questions would be whether the material science can really allow us to make use of that, and how the end-to-end efficiency weights against the infrastructure/engineering greenfield costs that synthetic fuels avoid. Being able to just keep using all existing engines/storage/distribution knowledge we already have is a major economic advantage. Electric will cover most land based transporta…
Re: ZEROe: Hydrogen-hybrid aircraft concept
#73A side-question on the perspective of battery-driven electric-flights: when electric cars can recuperate power instead of breaking, why can't airplanes do the same on descent? Couldn't they build a propeller at the rear, which does propulsion and recuperation? Energy-wise, that would certainly be attractive...
Further, since air resistance scales with the square of the velocity, the drag forces on an aircraft is so high that you typically never reduce thrust to zero until to just before touching down. An aircraft never idle-glide any substantial part of the flight. I.e, it's like trying to recuperate energy while driving slowly in a car up a very steep hill. Just releasing the throttle will make you stop quite rapidly...
Re: ZEROe: Hydrogen-hybrid aircraft concept
#74Earlier quoted context omitted.
> It's not any inherently greener then synthetic hydrocarbon production, which can be produced from atmospheric carbon for zero net carbon impact As I understand it, the production of complex hydrocarbons that can be used as a replacement for jet fuel is even more inefficient when compared to the production of hydrogen, as many of the known processes that start from CO2 actually use hydrogen in the process. So, altho…
> start from CO2 Why would that route even be taken though? Biofuel for jet engines is proven technology in limited use for many years now. Let plants deal with the CO2, since they're good at it, then process the resultant vegetable oils to produce a suitable diesel or jet fuel. https://en.wikipedia.org/wiki/Aviation_biofuel
Re: ZEROe: Hydrogen-hybrid aircraft concept
#75Earlier quoted context omitted.
An advantage of hydrogen is that it can be used in fuel cells, producing only water as reaction product. Using hydrocarbons of any sort in existing engines leads to the production of nitrogen oxides due to the presence of nitrogen in the air.
Thanks for this reply as well. But batteries will cover most land use, and going by sources like the EIA [1] the primary source of anthropogenic N2O emissions is overwhelmingly agriculture, at 70+%. Other sources indicate that may have fallen somewhat since then, but even so everything I can find indicates fossil fuel combustion is still only around 10%. And of that air travel will be single digits. Not nothing, but…
Large scale energy storage is probably handled better using either redox flow batteries [1], hydro storage systems or energy storage vaults using concrete blocks which are lifted when there is too much energy available, lowered when energy is needed.
Re: ZEROe: Hydrogen-hybrid aircraft concept
#76The process is straightforward:
1. A lot of cheap solar energy, from the best location.
2. Electrolyse to produce hydrogen.
3. Capture CO2. Either from air or from carbon intensive processes (e.g. producing cement).
4. Use Sabatier reaction to bond CO2 and hydrogen to produce carbohydrate fuel.
5. Since we use same amount of CO2 to produce as there will be burn this carbon neutral fuel.
It's much easier to do it at scale, than redesign, get approved new planes, replace all existing fleets and the infrastructure. This could easily take 60-120 years, when we need to act much sooner to prevent worst consequences of global warming.
Of course, today this would not work as individual steps are too expensive. Though all of the steps could be much cheaper as solar energy panel shows.
It gives possibility for oil rich countries to transform to post carbon economy when they resources will be depleted and consumers would prefer carbon neutral fuels.
I guess all of this sovereign funds would be much better of investing in this tech than pouring money in SoftBank to do WeWork style opportunities.
Google crowd oil or solar kerosene for papers about it.
Re: ZEROe: Hydrogen-hybrid aircraft concept
#77Would not be easier to produce synthetic kerosene fuel from captured CO2 and hydrogen. The process is straightforward: 1. A lot of cheap solar energy, from the best location. 2. Electrolyse to produce hydrogen. 3. Capture CO2. Either from air or from carbon intensive processes (e.g. producing cement). 4. Use Sabatier reaction to bond CO2 and hydrogen to produce carbohydrate fuel. 5. Since we use same amount of CO2 to…
Not necessarily, it depends on the byproducts - hypothetically, suppose when you burned the fuel the emissions were SOMEHOW 100% methane. You're essentially turning CO2 into methane in this farcical hypothetical, which is probably worse than burning normal fossil-kerosene.
Obviously the emissions won't be methane, but you'll need to track the CO2e of every type of emission it produces other than CO2.
Re: ZEROe: Hydrogen-hybrid aircraft concept
#78Earlier quoted context omitted.
> It's not any inherently greener then synthetic hydrocarbon production, which can be produced from atmospheric carbon for zero net carbon impact As I understand it, the production of complex hydrocarbons that can be used as a replacement for jet fuel is even more inefficient when compared to the production of hydrogen, as many of the known processes that start from CO2 actually use hydrogen in the process. So, altho…
> start from CO2 Why would that route even be taken though? Biofuel for jet engines is proven technology in limited use for many years now. Let plants deal with the CO2, since they're good at it, then process the resultant vegetable oils to produce a suitable diesel or jet fuel. https://en.wikipedia.org/wiki/Aviation_biofuel
Re: ZEROe: Hydrogen-hybrid aircraft concept
#79Earlier quoted context omitted.
Not to mention hydrogen fires being invisible to unaided eye in daylight.
Hydrogen at atmospheric pressure is hard to ignite in uncontrolled circumstances. It wants a specific gas/air ratio.
The thing is, no matter how far you are overshooting or undershooting that ratio, as soon as you are doing both there'll be a boundary where it's matching.
Re: ZEROe: Hydrogen-hybrid aircraft concept
#80Earlier quoted context omitted.
> for a very specific number of hours Unless you plan on throwing away the planes after one or two flights, those tanks will be filled with hydrogen for tens of thousands of hours over their lifespan. Perhaps they have light weight alloys that can cope with this though, I'm no metallurgist..
I never addressed the lifespan of containers, that's not same as hydrogen leakage.
Liquid per liquid, why not liquid methane that's far easier to work with and can be manufactured at zero carbon emissions.