Earlier quoted context omitted.
There are thousands of long-haul flights—and something like 100k flights overall—per day. If we're doing 10k+ rocket launches per day, then that's a huge problem. If we're doing 1 per day, it's a rounding error. This is premature optimization. (Either way, the solution, of course, is a carbon tax to price in the emissions.)
Edit: I messed up the math - didn't see 100k per day of flights...
A rocket a day keeps the high costs away (1993)
21–30 of 99 posts
Re: A rocket a day keeps the high costs away (1993)
#22[flagged]
There are thousands of long-haul flights—and something like 100k flights overall—per day. If we're doing 10k+ rocket launches per day, then that's a huge problem. If we're doing 1 per day, it's a rounding error. This is premature optimization. (Either way, the solution, of course, is a carbon tax to price in the emissions.)
Re: A rocket a day keeps the high costs away (1993)
#23Earlier quoted context omitted.
If we can generate Methane for example from CO2 in the atmosphere this could potentially solve this problem
Oxides are incredibly stable chemically. Any further conversion or sequestration process is guaranteed by thermodynamics to be very energy-intensive.
Re: A rocket a day keeps the high costs away (1993)
#24Earlier quoted context omitted.
Edit: I messed up the math - didn't see 100k per day of flights...
one upside is many modern rockets use methane, synthesizing methane with pv/wind power would be much lower impact, depending on how much of the exhaust is actually at escape velocity it could be very slightly carbon negative, like new forged steel with ore prepped with clean hydrogen.
Re: A rocket a day keeps the high costs away (1993)
#25[flagged]
A modern 737 has a max fuel load of almost 30000L of jet fuel [1].
The density of jet fuel is 775-840 g/L [2]. Let's take 800g/L so that we can just multiply the lead numbers - that gives 24,000 kg of fuel.
According to spaceflight101 [3], the Falcon 9 uses 123,570 kg of RP-1 (similar to jet fuel) in the first stage and 32,300 kg of RP-1 in the second stage for a total of 155,870 kg, which is about 6.5x the total fuel load on the 737.
Falcon 9 launched 98 times last year (which includes some Falcon Heavy flights which have more fuel, but I don't think it changes the big picture here).
There are 5000 737's in active service [4]. Most of them are probably flying several times per day, but if we just assume once per day that's 1,825,000 flights. That's almost 3000x the amount of CO2 as produced by all those F9 flights. And that's just 737s.
1. https://en.wikipedia.org/wiki/Boeing_737#Specifications
2. https://en.wikipedia.org/wiki/Jet_fuel
Re: A rocket a day keeps the high costs away (1993)
#26[flagged]
There are thousands of long-haul flights—and something like 100k flights overall—per day. If we're doing 10k+ rocket launches per day, then that's a huge problem. If we're doing 1 per day, it's a rounding error. This is premature optimization. (Either way, the solution, of course, is a carbon tax to price in the emissions.)
Re: A rocket a day keeps the high costs away (1993)
#27[flagged]
These are not great comparison numbers. When rockets fly passengers it's ~4 people as compared to ~200 for a plane. A modern 737 has a max fuel load of almost 30000L of jet fuel [1]. The density of jet fuel is 775-840 g/L [2]. Let's take 800g/L so that we can just multiply the lead numbers - that gives 24,000 kg of fuel. According to spaceflight101 [3], the Falcon 9 uses 123,570 kg of RP-1 (similar to jet fuel) in th…
Re: A rocket a day keeps the high costs away (1993)
#28Re: A rocket a day keeps the high costs away (1993)
#29Earlier quoted context omitted.
There are thousands of long-haul flights—and something like 100k flights overall—per day. If we're doing 10k+ rocket launches per day, then that's a huge problem. If we're doing 1 per day, it's a rounding error. This is premature optimization. (Either way, the solution, of course, is a carbon tax to price in the emissions.)
Elon said by 2028 they will be in active passenger service replacing long haul aviation for cheaper than a business class ticket.
Rocketry is far less efficient than a modern high-bypass turbofan.
NASA can afford to buy 75,000 kg of methane per astronaut. Even if the rocket was amortized to zero over infinite flights, and had zero maintenance costs, even if crew cost nothing and airport/spaceport leases cost nothing, thermodynamics insists that you still have to buy $100,000 worth of RP-1 rocket fuel. A business class ticket cannot buy enough carbon to support 75,000 kg of emissions.
Re: A rocket a day keeps the high costs away (1993)
#30Earlier quoted context omitted.
one upside is many modern rockets use methane, synthesizing methane with pv/wind power would be much lower impact, depending on how much of the exhaust is actually at escape velocity it could be very slightly carbon negative, like new forged steel with ore prepped with clean hydrogen.
Correct me if I'm wrong but I am under the impression that Starship does not use that, the least expensive fuels for rockets are highly CO2 emitting, and the least expensive fuels are what will get rolled out in mass numbers if SpaceX, Blue Origin, and others succeed in building a rocket transportation industry.