Earth Materials Minerals: The Crystalline State Minerals and Mineralogy Mineral Chemistry Atomic...

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Earth Materials Minerals: The Crystalline State Minerals and Mineralogy Mineral Chemistry Atomic Structure of Minerals Minerals as indicators of the environment of their formation diamond quartz pyrite amethyst asbestos

Transcript of Earth Materials Minerals: The Crystalline State Minerals and Mineralogy Mineral Chemistry Atomic...

Page 1: Earth Materials Minerals: The Crystalline State Minerals and Mineralogy Mineral Chemistry Atomic Structure of Minerals Minerals as indicators of the environment.

Earth MaterialsMinerals: The Crystalline

State• Minerals and Mineralogy • Mineral Chemistry• Atomic Structure of Minerals• Minerals as indicators of the

environment of their formation

diamond quartz pyrite amethystasbestos

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Plate boundaries and Earthquakes

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Supercontinent and Plate Motion

Fig. 2.10

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Supercontinent and Plate Motion

56 million years ago

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Supercontinent and Plate Motion

120 million years ago

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Supercontinent and Plate Motion

200 million years ago

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Earth MaterialsMinerals: The Crystalline

State• Minerals and Mineralogy (p. 67-69)• Mineral Chemistry (p. 69-74)• Atomic Structure of Minerals (p. 74-

77)• Minerals as indicators of the

environment of their formation (p. 92)

diamond quartz pyrite amethystasbestos

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Definition of a Mineral

• Naturally formed (inorganic)

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Definition of a Mineral

• Naturally formed (inorganic)• Solid

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Definition of a Mineral

• Naturally formed (inorganic)• Solid • Specific chemical composition

– What chemical elements are present and in what proportions

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Definition of a Mineral

• Naturally occurring (inorganic)• Solid • Specific chemical composition• Crystal Structure

– Ordered arrangement of atoms

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Definition of a Mineral

• Naturally occurring (inorganic)• Solid • Specific chemical composition• Crystal Structure

Examples: quartz (SiO2), calcite (CaCO3), halite (NaCl)

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Rock is an aggregate of one or more minerals

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Polished section

~1 cm

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Thin Section

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Thin section under ordinary light

Magnetite

Mica

Quartz

Feldspar

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Thin section under polarized light

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What makes each mineral unique?(p.69)• Composition

What chemical elements are present and in what proportions

– Quartz SiO2

– Olivine (Mg,Fe)2SiO3

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What makes each mineral unique?(p.69)• Crystal Structure

How are the chemical elements packed together

Halite (NaCl)

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Extremely soft

Extremely hardBoth minerals are made of carbon (C)

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Atomic Arrangement& Physical Properties

3D framework

Sheet structure

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Elements and atoms

• Chemical Elementsmost fundamental substance

separated by chemical means

• Atomssmallest particle of matterretains all properties of an element

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Fig. 3.1

Structure of an Atom

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• Ion an atom with excess chargecations H+

anions O2-

• Chemical Compoundelectrically neutral comb. of ions

water, H2O H+, H+, O2-

Ions and Compounds ( p. 54-56)

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Complex ions

• Combination of ions with a charge

Si4+, O48- (SiO4)4- Silicate Ion

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Transferring Electrons between atoms

Fig. 3.2

Ionic Bonding

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Fig. 3.4

Covalent Bonds in Watersharing electrons between

atoms

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Nature of Bonding and Physical Properties

3D framework

Sheet structure

Fig. 3.3 and 3.5

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The Three States of Matter

Solid Liquid Gas

Ice in a glacier is a mineralWater in the oceans is not a mineral

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Box B3.1

The Three States of

Water

Controlled by temperature and Pressure

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low Temp, High Pressure favors solid state

In Geology, melting is a change of state

high Temp, low Pressure favors gaseous state

General Rule

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Crystal Structure of Minerals (p. 74-77)

Two factors that control the arrangement of atoms and ions

Number of neighboring atoms/ions

Size of atom/ion

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Galena (PbS) Packing order of

atoms

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Packing arrangementPolymorphs

(p. 79)

Diamond

Graphite

Compounds that occur in more than 1 crystal arrangement

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Size of ions of some

geologically important

ions

Size is based on Charge

Fig. 3.8

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Silicate ion(SiO4)4-

O2-

O2- O2-

O2-

Si4+

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Ionic Substitution

Olivine

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Ionic Substitution

Olivine

Ions of Similar Size and Charge can substitute for each otherFor example

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Ionic Substitution

OlivineMg2

2+(SiO4)4-

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Ionic Substitution

OlivineFe2

2+(SiO4)4-

Fe2+-->Mg2+

Natural Olivine: (Mg,Fe)2SiO4

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Phase diagram

Fig. 3.31

Minerals as indicators of their environments of their formationp. 92

Pre

ssu

re

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Fig. 3.31

geotherm

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Diamonds from the Mantle

Fig. 3.31

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Fig. B3.1

Snowball

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