Transpiration induced changes in atmospheric water vapor 18o via isotopic non-steady-state effects on a subtropical forest plantation

HIGHLIGHTS

  • who: Sidan Lyu and Jing Wang from the Natural Resources Research, Chinese Academy of Sciences, Beijing, China have published the research: Transpiration Induced Changes in Atmospheric Water Vapor 18O via Isotopic Non-Steady-State Effects on a Subtropical Forest Plantation, in the Journal: Water 2022, 14, x FOR PEER REVIEW of 27/08/2022
  • what: The authors also used the model of Hu et_al for estimating u03b418 OT, which was developed using the mass conservation principle at the ecosystem level as: u03b418 OT=(11) T The authors linearly interpolated measured u03b418 OL,b, u03b418 Ox . . .

     

    Logo ScioWire Beta black

    If you want to have access to all the content you need to log in!

    Thanks :)

    If you don't have an account, you can create one here.

     

Scroll to Top

Add A Knowledge Base Question !

+ = Verify Human or Spambot ?