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Lecture 21: Ice Core Records

Lecture 21: Ice Core Records. Orbital-Scale Changes in CO 2 and CH 4. Ocean sediments tell us ice-rafted debris, δ 18 O records from the foraminifera shells (indicating ice volume and ocean temperature). Ice cores tell us two greenhouse gases (CO 2 and CH 4 ).

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Lecture 21: Ice Core Records

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  1. Lecture 21: Ice Core Records

  2. Orbital-Scale Changes in CO2 and CH4 • Ocean sediments tell us • ice-rafted debris, • δ18O records from the foraminifera shells (indicating ice volume and ocean temperature) Ice cores tell us two greenhouse gases (CO2 and CH4)

  3. Ice Core and Instrumental CO2 and CH4Measurements Mid-18th century: 280 ppm Early 20th century: 300 ppm 1958: 315 ppm Now: ~381 ppm (in 2006) Atmospheric CO2 is ~2000 years younger than the ice layers

  4. Orbital-Scale Changes in CH4 Vostok Ice in Antarctica Six cycles since the last interglacial period Maxima: 550-700 ppb Minima: 350-450 ppb 23000 years/cycle Peak methane values match peaks of monsoons Changes in methane levels are caused by changes in summer monsoon in the tropics Heavy monsoon rainfall  more bogs more vegetation decay  more CH4

  5. Orbital-Scale Changes in CO2 Vostok Ice in Antarctica Major CO2 cycles match marine δ18O (ice volume) cycles in an overall sense Four 100,000-year cycles 23,000-year cycle not prominent Which is driving which? Maxima: 280-300 ppm Difficulties: Low accuracy in dating in Antarctica Minima: 180-190 ppm Dust reacts with CO2 bubbles in Greenland

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