Does photosynthesis contribute to the increasing mass of Earth?

In summary, plants convert sunlight into glucose and other simple molecules. This increases the mass of the Earth because of the dust and ice that falls from space and the meteors that strike it. Matter is not created, it is only transformed.
  • #1
Blenton
210
0
Since each day we are illuminated by the sun, plants convert that energy into glucose etc does this indicate an increase in mass of the Earth if losses due to heat radiating out and gains such as meteors are ignored?
 
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  • #2
Plants don't convert sunlight into food by E=mc^2
They just use the energy of sunlight to cause a chemical reaction (making sugar from CO2+water) when they eat the sugar it goes back to CO2 and H2O - rther like a rechargeble battery/

The Earth's mass does increase mainly from dust and ice that falls from space plus a lot of charged particles form the sun
 
  • #3
mgb_phys said:
Plants don't convert sunlight into food by E=mc^2


Sorry, Einstein didn't make an exception for plants!
However, plants store energy by converting sunlight into chemical bonds.


So, the real question is if CH2O and O2 weigh more than CO2 and H2O.


Will have to check this out later...
 
  • #4
Xnn said:
So, the real question is if CH2O and O2 weigh more than CO2 and H2O.


Will have to check this out later...
The cellulose and plant structure should weigh less than the constituent CO2 and H2O, but the difference is going to be very small, probably in the ppb range since the bond energies are on the order of eV, not MeV or GeV.

Light enables plants to restructure CO2 and H2O into more complex molecules, but the number of nucleons and electrons doesn't change, and that is what mgb_phys was indicating. Matter is not created, it is only transformed. But one is right, the sunlight energy becomes stored chemical energy.

On the other hand, the Earth does capture some of the solar wind, so it does gain mass that way, and there is the odd meterorite that strikes the earth.
 
  • #5
Earth's heat balance is pretty stringently balanced. A tiny, tiny fraction of the incident energy might be stored as chemical bonds and a certain amount of carbon is buried each year, thus leading to a net rise in oxygen levels - i.e. it's stuff that can potentially burn, but hasn't.

Meteors and interplanetary dust particles add about 40,000 tons of mass to Earth each year, but it loses a couple of kilograms of gas per second, thus there's actually a net decrease of about 20,000 tons per year.
 
  • #6
Astronuc said:
The cellulose and plant structure should weigh less than the constituent CO2 and H2O, but the difference is going to be very small, probably in the ppb range since the bond energies are on the order of eV, not MeV or GeV.

The photosynthesis (Calvin) cycle is

6CO2 + 6H2O + ~ 48 photons <-----> C6H12O6 + 6O2

The heat of oxidation of this reaction is about 29 eV. The total mass of the sugar + oxygen is ~272 AMU = ~346 MeV. The energy difference is about 84 ppb. Where is the 29 eV (heat of oxidation) stored? Is the chemical (potential energy) stored as a mass difference?
 

What causes the mass of Earth to increase?

The mass of Earth increases due to the accumulation of various materials such as dust, gas, and meteorites. This process is known as accretion and has been ongoing since the formation of our planet about 4.6 billion years ago.

How does human activity affect the mass of Earth?

Human activity can have a significant impact on the mass of Earth. Deforestation, mining, and burning fossil fuels all release carbon into the atmosphere, which contributes to the planet's overall mass. Additionally, human activities such as space exploration can also add to the mass of Earth by bringing back materials from other celestial bodies.

Is the mass of Earth constantly increasing?

Yes, the mass of Earth is constantly increasing. As mentioned earlier, the process of accretion is ongoing, and new materials are constantly being added to the planet. However, the rate of increase is relatively slow compared to the overall mass of Earth.

Can the mass of Earth decrease?

Yes, the mass of Earth can decrease. This can happen through natural processes such as asteroid impacts or volcanic eruptions, which eject material into space. Human activities such as sending spacecraft out of Earth's orbit can also result in a slight decrease in the planet's overall mass.

How does the increase in Earth's mass affect its orbit?

The increase in Earth's mass does not have a significant effect on its orbit. This is because the mass of the planet is much larger than any additional materials that are added to it. The Earth's orbit is primarily determined by the gravitational pull of the sun, as well as the other planets in our solar system.

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