Atmospheric Chemistry.ppt
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1、Atmospheric Chemistry,Formation of the Atmosphere The Early Atmosphere Origin of Life and Oxygen Ozone Air Pollution Acid Rain Greenhouse Effect,Formation of the Earth,Apollo Space Program (1960s) Otto Schmidt Cosmic Dust Planet (100 million years) Ball 10 km 12,000 km Heat Generated during the Proc
2、ess( Collisions )Differentiation Occurs,Thermal Consequences,Earths Core Molten Fe ( Density 7.86 g/cc)Ni ( Density 8.9 g/cc)Outer ShellFe2O3 / FeO ( Density 5.2/5.7 g/cc)Si/SiO2 (Density 2.33/2.32 g/cc)Al/Al2O3 ( Density 2.7/3.5 g/cc),Formation of the Mantle,The less dense material will go toward t
3、he surface (Polar Oxides of Si, Al, Fe) Separation will occur as Fe/Ni core is nonpolarMANTLEstarts to form and cool(Production of Iron from Iron Ore),Isotope Distribution of the Earth,Investigation of the History of the Earth primarily relied on isotope analysis.Decay of 238U 206PbDecay of 235U 207
4、PbAnd the rare gases He, Ar, Xe 4.5 Billion years Old,Appearance of the Atmosphere,Did the atmosphere suddenly appear ? Isotope Analysis gives a clueClaude Allegre He, Ar & Xe( Rare Gases do not react readily )Argon has three isotopes(36Ar 0.337) (38Ar 0.063) (40Ar 99.60) EC Decay 40K 40Ar ( t1/2 =
5、1.28 x 109y ),Isotopes of Xe,Xenon has 9 isotopes With the following distribution124Xe 0.1% , 126Xe 0.09%, 128Xe 1.91% 129Xe 26.4%, 130Xe 4.1%, 131Xe 21.2%132Xe 26.9%, 134Xe 10.4%, 136Xe 8.9%,Distribution of Xe isotopes,Nucleosynthesis gives rise to 129Xe- Decay of 129I 129Xe(t1/2 = 1.6 x 107y) The
6、distribution of Xe isotopes in the mantle and atmosphere can give information about the Earths Atmosphere as the outgassed distribution will vary to that of the mantle.,Differentiation,The Atmosphere was formed due to OUT GASSING of the mantle (Heat)& Volcanic Activity The Mantle does not contain an
7、y40K or 129I All 129 Xe in mantle came from 129I,Age of differentiation,From the ratio of 129 Xe in the Mantle to that of 129 Xe in the Atmosphere it possible to gain some idea of the age of differentiation as the Xe due to Nucleosynthesis would have been OUTGASSED into the atmosphere.,Ratios of Iso
8、topes,The Argon trapped in Mantle evolved from the radioactive decay of 40K 40K The Xenon trapped in Mantle evolved from the radioactive decay of 129IThe ratio of the amount in the mantle to the atmosphere can give information about the process of differentiation,Conclusions from Isotope Analysis, I
9、f outgassing occurred at the beginning the atmosphere would not contain 40Ar 4rBut would contain 129XeResults and Calculations indicate80% to 85% of the Earths Atmosphere was outgassed in the first million years,Collecting the evidence,The other 15% has arisen due to slow release over 4.4 billion ye
10、arsDifficult Analytical Problem requiring Concentration of the samplesSpecific Choice of Sampling Sites,Early Atmosphere,Majors: CO2, N2, H2O (Water Vapour)Traces: CH4, NH3, SO2, HClWater Vapour OceansFeO/Fe2O3 (Grand Canyon) indicatesO2 emerged in the atmosphere about 2 billion years ago,Origin of
11、Life,Stanley Miller (1950) “ Early Earth ”Experimental Setup CH4, NH3, H2, H2O(g) ( Atmosphere) H2O(l) ( Oceans) Electrode discharge (Simulate Lightning)Analysis of Fractions,Formation of Simple Amino Acids,Glycine was found How Glycine (NH2CH2COOH) Formed HCOH + NH3 + HCN NH2CH2CN + H2O Formaldehyd
12、e Cyanide Hydrogen AminonitrileNH2CH2CN + 2 H2O NH2CH2COOH + NH3,Murchison Meteor,A number of the compounds discovered in the discharge fractions are precursors to life. Years later a meteor struck at Murchison (Victoria) was also analyzed and its contents found to be similar to those of the dischar
13、ge experiment of Stanley Miller,Early Energy System,The first living organisms gained their energy by a fermentation of the organic soup C6H12O6 Alcohol + CO2 + EnergyHowever there was only a limited amount of organic nutrients in the primeval soup and to sustain life. ( First Famine ). A new effici
14、ent Energy Source was required.,Role of Blue Green Algae,Blue Green Algae & Photosynthetic Bacteria developed to use water as a hydrogen donor and produced dioxygen as a by product. Photosynthesis nCO2 + nH2O ( CH2O)n + nO2 6CO2 + 6H20 C6H12O6 + 6O2,Decline of Anaerobic Bacteria,Problem for Anaerobi
15、c Organisms Evidence of the appearance of Oxygen is indicated in the (Red Layers) of the Grand Canyon. O2 is believed to have entered the atmosphere about 1.8 Billion years ago Fe2+ and oxygen reactions may have delayed entry of oxygen into the atmosphere.,Oxygen Rich Planet,Oxygen Rich Planet The b
16、uild up of Oxygen in the atmosphere led to the formation of the Ozone Layer at 15 to 60 km above the earth. Ozone O3 absorbs harmful UV light and this allowed organisms to colonize the Water/Land/ Atmosphere interface.,Oxygen Rich Planet,Respiration utilized the photosynthetic Compounds (Sugar ) to
17、produce Energy (CH2O)n + nO2 nCO2 + H2O + E This process was 18 times more efficient than the fermentation process .But oxygen can damage cellular material,The trouble with oxygen,The ultilization of oxygen in producing energy resulted in emergence Eukarotic cells which contained a nucleus which pro
18、tected cellular material prone to oxidation.( DNA),The present atmosphere,The present atmosphere has arisen from (1) The distance of the earth from the sun (2) Nature of the earths composition (3) The rise of life.,Distance from the Sun,The distance from the Sun determines the kinetic energy (KE) of
19、 the molecules in the atmosphere due to the Suns heat and the molecules velocity.KE = 1/2 mv2 & KE = 3/2kT Where m is the mass of the molecule (Mr /NA)k is the Boltzmann constant (R/NA)( Earth !50 x 106km) Transit of Venus Capt Cook to within 2% of the value 1788,Influence of Earths Mass,The ability
20、 of molecules to remain in the atmosphere is also related to the mass of the earth. The escape Velocity Ve = (2Gm/R)1/2 m = Mass, G=Universal Gravitational Constant, R = Radius,Escape Velocity,Escape Velocity (Ve) Ve = (2Gm/R)1/2 m = Mass of the PlanetG= Universal Gravitational Constant,R = Radius o
21、f the Planet Escape Velocities in km/s Earth = 11.2 Venus = 10.3 Mars = 5.0,Escape Velocity,The ability of molecules to remain in an atmosphere is related to the mass.Density Diameter Distance from SunMars 3.94g/ml 6794km 227.9 Mkm Earth 5.52g/ml 12756km 149.6 Mkm The Molecules Escape Velocity and n
22、ature of the molecules determines the composition of the atmosphere.,No H or He in Earths Atmosphere,At 600 K (Upper Atmosphere ) For H atoms 1 in 106 exceeds the escape velocity.This is High enough for rapid depletion of H from the atmosphere As a result all the Hydrogen on earth is present in a bo
23、und state.(Water, Organic material),Little CO2 in atmosphere,For Oxygen only 1 in 1084 atoms exceeds the escape velocity .This indicates negligible depletion of Oxygen. Presence of Life on Earth has removed Carbon dioxide from the Atmosphere and given rise to oxygen. Shellfish/Coral.( Calcium Carbon
24、ate and Plant Material ),Earth ,Venus & Mars,Surface Characteristics of PlanetsTemperature Pressure (bar)* Venus 732 K (459oC) 90 Earth 288 K ( 15oC ) 1 (101325Pa) Mars 223 K (-55oC ) 0.006 *1 bar = 100,000Pa= 10m in depth of the Ocean,Distribution of Gases on Earth Venus & Mars,Composition of Plane
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