the biogeochemical cycles. what does that mean??? chemicals that cycle through the geological and...

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The Biogeochemical Cycles

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Biological Bio = Life Examples: Plants, Animals, Fungus, Bacteria Cycles through the food chain

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Page 1: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Biogeochemical Cycles

Page 2: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

What does that mean???

Chemicals that cycle through the geological and biological world

Page 3: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

BiologicalBio = Life

Examples: Plants, Animals, Fungus, Bacteria

Cycles through the food chain

Page 4: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Geological

Geo = Earth

Examples: Rocks, Oceans, ect.

Page 5: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

ChemicalsMajor Cycles:WaterNitrogenPhosphorousCarbonMinor CyclesSulfurCalciumMagnesiumPotassium

Page 6: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Cycling

Move through the environment

Not used up!

Change form

Page 7: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Important Terms…Reservoirs or sinks: Part of the cycle where

the chemical is held in large quantities for long periods of time

Exchange Points: Chemical held for a short period of time

Page 8: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Water (or the hydrologic cycle)

Page 9: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Water, Water, WaterEvaporation

Transpiration

Precipitation

Condensation

Evapotranspiration

Page 10: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

TranspirationTranspiration is the

process by which moisture is carried through plants from roots to small pores on the underside of leaves, where it changes to vapor and is released to the atmosphere

Page 11: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Nitrogen CycleWhy do we need

Nitrogen?

All life requires Nitrogen

Nucleic Acids (DNA)Amino Acids

ProteinsProtein Functions???

Page 12: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Nitrogen FormsN2 = Nitrogen Gas

NH3 = Ammonia***

NH4+ = Ammonium

NO2- = Nitrite

NO3- = Nitrate***

Biological N compounds***

Page 13: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Nitrogen FixationN2 NH3

Nitrogen is fixed into a form that organisms can use

Fixation:1.Biological (“special” bacteria)

2. Other: Combustion, Volcanic Action, Lightning, & Industrial Processes

Page 14: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Nitrogen Fixing Bacteria Cyanobacteria (fixers

in ocean)

Rhizobium – bacteria that live in nodules on roots of legumes (fixers on land)

Enzyme- nitrogenase

No oxygen

Page 15: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

NitrificationNH3 NO2- NO3-

Two step process carried out by soil bacteria

Furnishes these bacteria with energy

Page 16: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

AmmonificationBiological N compounds NH3

Carried out by ammonifying bacteria

Decompose N compounds & release ammonia into the environment

Page 17: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Assimilation Incorporation of

NH3 & NO3- into

plant proteins and nucleic acids (use the N)

What happens when animals eat the plants?

Page 18: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

DenitroficationNO3

- N2

Denitrofying bacteria return N to atmosphere

Page 19: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Humans and the N Cycle

N-based fertilizer:Run-off

Eutrophication Algal Bloom

*Excess N in soil increase N in atmosphere (acid rain)

*Changes in N levels affects biodiversity

Page 20: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Big Picture

Page 21: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Carbon CycleWhere is Carbon?

AtmosphereDissolved in the

oceanRocks (limestone)

Organisms

Why Carbon

Basis of organic compounds (carbs,

lipids, proteins, nucleic acids)

Page 22: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

PhotosynthesisAutotrophs “fix”

carbon from atmosphere into chemical compounds (sugar)

Moves through food chain

Page 23: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Cellular Respiration

Carbon from organisms put back in atmosphere

Page 24: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Combustion Burning of fossil

fuels (sequestered C as opposed to surface C)

Release C into atmosphere

Problems????

Page 25: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Carbon Sinks

Wood of trees

Shells of marine organisms (limestone)

Fossil Fuels (remains of ancient organisms)

Page 26: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Global WarmingCARBON ENTERS ATMOSPHERE AT A RATE

GREATER THAN THE NATURAL CARBON CYCLE CAN HANDLE

Sequestered vs Surface Carbon

Page 27: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Carbon Cycle

Page 28: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Phosphorous CycleWhere is P???

No gaseous state (which means???)

LandOcean

Organisms

Why PBiological molecules

DNARNAATP

Page 29: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

On Land…Water runs over

rocks (erosion) and carries away inorganic phosphate (PO4

3-)Deposits in soilPicked up by

plantsEnters food chain!

Page 30: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

…And in WaterDissolved in water

Absorbed by plants and algae

Enters food chain!

Page 31: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

How does it get between land and water???

Page 33: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Phosphorous Sinks

The sea floor

Page 34: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Humans & the P Cycle

Accelerate long-term loss from land (agriculture, waste disposal)

Fertilizers algal blooms

Page 35: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Phosphorous Cycle

Page 36: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Sulfur CycleScientists still do not have a clear

understanding of this cycle.

Why do we need sulfur???

Important part of proteins and plays a role in allowing organisms to use O2

Page 37: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Sulfur & OrganismsOrganisms contain a tiny fraction of SPlants absorb sulfate and assimilate into

proteinsIn the ocean, marine algae release DMS

into atmosphere (helps form clouds)Bacteria drive S cycle (especially in

environments with little oxygen)

Page 38: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Sulfur & the AtmosphereSulfur is a minor part

of the atmosphere

S compounds are reactive and therefore short-lived

Released into atmosphere by:

1. Sea Spray2. Marine Algae3. Forest Fires4. Volcanoes5. Dust Storms

Page 40: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Humans & the Sulfur CycleBurning coal

releases sulfur

Leads to acid deposition & associated problems

Page 41: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

The Big Picture…

Page 42: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Calcium, Magnesium, and PotassiumWhy do we need themregulating cellular processesTransmitting signals between cells

Page 43: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

Where do they come fromFound in rocks dissolved in waterNo gaseous stateCan exist as positively charged ions

(attracted to negative charge of soil particles)

Page 44: The Biogeochemical Cycles. What does that mean??? Chemicals that cycle through the geological and biological world

THE END!!!!!!