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Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

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Page 1: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created
Page 2: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphism Metamorphic – Changed from

an original “parent.”

Meta = Change.

Morph = Form or shape.

Parent rocks are called

“protoliths.”

Metamorphism can

occur to any protolith.

Page 3: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphism Protoliths undergo

pronounced changes in…

Texture.

Mineralogy.

Caused by changes in…

Temperature.

Pressure.

Tectonic stress.

Reaction with heated water.

Page 4: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Character Metamorphic rocks have distinctive properties.

Unique texture – Intergrown and interlocking grains.

Unique minerals – Some that are only metamorphic.

Unique foliation – A planar fabric from aligned minerals.

Page 5: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Processes Metamorphic change occurs slowly in

the solid state.

Several processes are at work.

Recrystallization – Minerals change size and shape.

Phase change – New minerals form with…

Same chemical formula.

Different crystal structure.

Example: Andalusite to kyanite.

Kyanite

Page 6: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Neocrystallization – New minerals form as a result of changes in temperature and pressure.

Initial minerals become unstable and change to new minerals.

Original protolith minerals are digested in reactions.

Elements restructure to form new minerals.

Metamorphic Processes

Page 7: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Processes Pressure solution – Mineral grains partially dissolve.

Dissolution requires small amounts of water.

Minerals dissolve where their surfaces press together.

Ions from the dissolution migrate in the water film.

Page 8: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Processes Plastic deformation – Mineral grains soften and deform.

Requires elevated temperatures.

Rock is squeezed or sheared.

Minerals act like plastic, changing shape without breaking.

Page 9: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Causes of Metamorphism The agents of metamorphism are…

Heat (T).

Pressure (P).

Compression and/or shear.

Hot water.

Not all agents are required; they often do co-occur.

Rocks may be overprinted by multiple events.

Page 10: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Heat (Temperature, T) Metamorphism occurs as the result of heat.

Temperature (T) ranges between 200oC and 850oC.

The upper T limit is…melting. It varies based upon rock mineral composition and water content.

Heat energy breaks and reforms atomic bonds.

Sources of heat.

The geothermal gradient.

Magmatic intrusions.

Compression.

Page 11: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

P increases with depth in the crust.

270 to 300 bars per km (1 bar is almost 1 atm = 14.7 psi).

Metamorphism occurs mostly in 2 to 12 kbar range.

T and P both change with depth.

Mineral stability is highly dependent upon T and P.

This stability can be graphed on a “phase diagram.”

Changes in T and P lead

to changes in minerals.

Pressure (P)

Page 12: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Pressure that is greater in one orientation.

A commonplace result of tectonic forces.

Two kinds of differential stress: Normal and shear.

Normal Stress – Operates perpendicular to a surface.

Tension – Pull-apart normal stress.

Compression – Push-together normal stress.

Differential Stress

Page 13: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Differential Stress

Two kinds of differential stress: Normal and shear.

Shear Stress – Operates sideways across a surface.

Causes material to be “smeared out.”

Page 14: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

At higher T and P, differential stress deforms rock.

Rocks change shape slowly without breaking.

Differential Stress

Page 15: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Differential Stress Deformation acts on minerals with specific shapes.

Equant – Roughly equal in all dimensions.

Inequant – Dimensions not the same.

Platy (pancake-like) – 1 dimension shorter.

Elongate (cigar-shaped) – 1 dimension longer.

Differential stress causes these minerals to align.

Alignment fabric records stress trajectory.

Page 16: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Differential Stress Preferred platy mineral alignment is called foliation.

Foliation imparts a layered or banded appearance.

Rocks commonly break parallel to foliation planes.

Foliation develops perpendicular to compression.

Minerals flatten, recrystallize and rotate.

Inequant grains align by rotation and new growth.

Page 17: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Hydrothermal Fluids

Hot water with dissolved ions and volatiles.

Hydrothermal fluids facilitate metamorphism.

Accelerate chemical reactions.

Alter rocks by adding or subtracting elements.

Hydrothermal alteration is called metasomatism.

Page 18: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rock Types

Two major subdivisions of metamorphic rocks.

Foliated – Has a through-going planar fabric.

Subjected to differential stress.

Has a significant component of platy minerals.

Classified by composition, grain size, and foliation type.

Page 19: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rock Types Two major subdivisions of metamorphic rocks.

Nonfoliated – No planar fabric evident.

Crystallized without differential stress.

Comprised of equant minerals only.

Classified by mineral composition.

Page 20: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks Slate – Fine clay, low-grade metamorphic shale.

Has a distinct foliation called slaty cleavage.

Develops by parallel alignment of platy clay minerals.

Slaty cleavage oriented perpendicular to compression.

Slate breaks along this foliation creating flat sheets.

Page 21: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks

Phyllite - Fine mica-rich rock.

Formed by low- to medium-grade alteration of slate.

Clay minerals neocrystallize into tiny micas.

Micas reflect a satiny luster.

Phyllite is between slate and schist.

Page 22: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Schist – Fine or coarse rock with larger micas.

Medium- to high-grade metamorphism.

Has a distinct foliation called schistosity.

Parallel alignment of large mica crystals.

Micas are visible because they have grown at higher T.

Schist often has other minerals due to neocrystallization.

Quartz.

Feldspars.

Kyanite.

Garnet.

Sillimanite.

Large non-mica minerals are called porphyroblasts.

Metamorphic Rocks

Page 23: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks Gneiss – Has a

distinct banded foliation.

Light bands of felsic minerals (quartz and feldspars).

Dark bands of mafic minerals (biotite or amphibole).

Page 24: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks Compositional banding develops in several ways.

Original layering in the protolith.

Extensive high-temperature shearing.

Page 25: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks Nonfoliated rocks lack a planar fabric.

Absence of foliation possible for several reasons:

Rock not subjected to differential stress.

Dominance of equant minerals.

Absence of platy minerals like clays or micas.

Page 26: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks

Amphibolite – Dominated by amphibole minerals.

Basalt or gabbro protolith.

Usually not well foliated.

Hornfels – Alteration by heating.

Associated with plutonic intrusions.

Finely crystalline.

Page 27: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks Quartzite – Almost pure quartz in composition.

Forms by alteration of quartz sandstone.

Sand grains in the protolith recrystallize and fuse.

Like quartz, it is hard, glassy, and resistant.

Metamorphic Alteration

Page 28: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks Marble - Coarsely crystalline calcite or dolomite.

Forms from a limestone or dolostone protolith.

Extensive recrystallization completely changes the rock.

Original textures and fossils in the parent are obliterated.

Used as a decorative and monument stone.

Exhibits a variety of colors.

Metamorphic Alteration

Page 29: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Rocks

Type depends on protolith.

Minerals contribute elements.

Some protoliths yield specific rocks.

Broad compositional classes:

Pelitic.

Mafic.

Carbonate.

Quartzofeldspathic.

Page 30: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Intensity Different minerals are

stable as T and P changes.

Grade is a measure of metamorphic intensity.

Low-grade – Slight.

High-grade – Intense.

Page 31: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Grade

Prograde – Metamorphism via increasing T and P.

Common in rocks that are buried in orogenic belts.

Progressive changes.

Recrystallization causes mineral growth.

Neocrystallization results in new mineral assemblages.

Mineral changes release water.

Page 32: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Grade Example: Prograde metamorphism of a pelitic rock.

Low grade – Shale protolith.

Clays recrystallize into larger, aligned clays to yield a slate.

Clays neocrystallize into tiny, aligned micas in a phyllite.

Intermediate grade –

Micas recrystallize and grow large to form a schist.

New minerals grow in the schist.

High grade -

Micas decompose; elements recombine into new minerals.

Neocrystallization yields quartz and feldspars in a gneiss.

Page 33: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Grade

Retrograde – Metamorphism via decreasing T and P.

Common in rocks that are brought from depth by erosion.

Accompanied by addition of H2O by hydrothermal fluids.

Many prograde rocks aren’t “retrograded.”

Rocks at the surface can preserve prograde conditions.

Page 34: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Index Minerals Certain minerals have a limited

P-T range.

These “index minerals” record metamorphic grade.

Index mineral maps.

Define metamorphic zones.

Grade boundaries called

isograds.

Page 35: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Facies

Mineral assemblage from a specific protolith at specific P-T conditions.

The same minerals result from the same…

Protoliths.

T and P conditions.

Named for dominant

mineral.

Page 36: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Environments Metamorphism occurs in different settings.

Different settings yield different effects via…

Geothermal gradient.

Differential stresses.

Hydrothermal fluids.

These characteristics are governed by tectonics.

Page 37: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Metamorphic Environments The types (and settings) of metamorphism are...

Thermal – Heating by a plutonic intrusion.

Burial – Increases in P and T by deep burial in a basin.

Dynamic – Shearing in a fault zone.

Regional – P and T alteration due to orogenesis.

Hydrothermal – Alteration by hot-water leaching.

Subduction – High P to low T alteration.

Shock – Extremely high P attending a bolide impact.

Page 38: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Contact Metamorphism

Due to heat from magma invading host rock.

Creates zoned bands of alteration in host rock.

Called a contact (or metamorphic) aureole.

The aureole surrounds the plutonic intrusion.

Zoned from high-grade (near pluton) to low-grade (far from pluton).

Page 39: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Contact Metamorphism Grades of alteration form bands around

the pluton.

Bands range from highly altered to slightly altered.

Analogous to changes in pottery with increased heating.

The width of each aureole zone is due to…

The size of the plutonic intrusion.

The degree of metasomatism.

The dominant rock is hornfels.

Page 40: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Burial Metamorphism As sediments are buried in a

sedimentary basin…

P increases because of the weight of the overburden.

T increases because of the geothermal gradient.

Requires burial below diagenetic effects.

This is ~ 8–15 km depending on the geothermal gradient.

Page 41: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Regional Metamorphism Tectonic collisions deform huge “mobile belts.”

Directed compression thickens mountains.

Rocks caught up in mountain building are…

Heated via the geothermal gradient and plutonic intrusions.

Squeezed and heated by deep burial.

Smashed and sheared by differential stresses.

Page 42: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Hydrothermal Metamorphism

Alteration by hot, chemically aggressive water.

A dominant process near mid-ocean ridge magma.

Cold ocean water seeps into fractured crust.

Heated by magma, this water then reacts with mafic rock.

The hot water rises and is ejected via black smokers.

Page 43: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Subduction Metamorphism Subduction creates the unique blueschist facies.

Trenches and accretionary prisms have…

A low geothermal gradient – low temperature.

High pressures.

High P – Low T favor

glaucophane, a blue

amphibole mineral.

Page 44: Essentials of Geology, 3rd edition - This Old Earththisoldearth.net/ESC101_lectures/ch07.pdf · 2017-01-04 · Essentials of Geology, 3rd edition Author: Ronald L. Parker Created

Shock Metamorphism

Rarely, Earth is struck by a comet or an asteroid.

Impacts generate a compressional shock wave.

Extremely high pressure.

Heat that vaporizes or melts large masses of rock.

These conditions generate high-pressure minerals.