SlideShare a Scribd company logo
Chapter 14 The Ocean Floor
Section Review Questions Section 14.1 Review questions #1-5 on page 400 are DUE: Wednesday, April 16 th .
(14.1) The Vast World Ocean The great oceans of the world cover about  71%  of the Earth's surface and are divided by continents. Each ocean includes smaller bodies of water called seas, bays, and gulfs.  Oceanography  is a science that draws from many other science fields to study all aspects of the world oceans.
Geography of the Oceans If 71% of the Earth’s surface is covered by oceans then the continents must make up about 29% How many oceans basins are there actually? Would you believe  5
Oceans by name We will use all 5 ocean basins this year
Ocean Trivia Almost surrounded completely by land Largest ocean Ocean with most storm activity Saltiest ocean Has most of world’s fresh water going into it Arctic Pacific Indian Atlantic Atlantic
Looking at the floor Turn to page 396 & 397….. What does the ocean floor look like, what features are there, What is the shape of the ocean floor basin, etc. What do you see and what do you think?
New Oceanic Crust New ocean lithosphere forms at mid-ocean ridges . New rock that forms there are very hot, therefore less dense then the surrounding rock.  This causes the mid-ocean ridges to rise above the existing ocean floor. As the ocean plate cools it becomes denser and begins to sink.
Question: What are seamounts and guyots?  Seamounts are islands that  did not  yet reach the ocean surface or  will never  reach the surface or did reach the surface and sank.  Guyots are flattened volcanic peaks. What caused them to flatten on top? Wave activity  can cut them off.
So how did they sink?  As the ocean floor cooled and sank so did the islands, seamounts, and guyots. The shape of the ocean floor is in the  shape of a parabola .  Cooling of the ocean floor is faster right after it forms and continues to cool slowly.
Distance from the ridge The distance away from the ridge is proportional to the square of the temperature of the ocean plate. Any curve with the formula y=x 2  is a parabola.
Sea level change During the Cretaceous period sea level was 300 meters higher causing major flooding of the continents. Compare this to the fact that if all the ice in the world melted sea level would rise 80 meters. When  plate velocities increase   ridge systems become active  raising the sea floor thus causing continental flooding.
Ocean Seafloor Mineral Factory Occur where water circulates through the mid-ocean ridge like a chemical factory removing metals and ores from the ocean crust.  Cold water is pulled into the crust, and as it heats up, it begins to dissolve out incompatible elements like metals.  This happens at ocean vents called black smokers where the water is turned black.  As the warm water rises, metals precipitate out onto the seafloor.  As ocean crust moves it drops the metals into the ocean trench/subduction zone.  Many of the minerals rise to the Earth’s surface in magma.
Mapping the Ocean Floor The topography of the ocean floor is as diverse as the continents. Features include: Chains of volcanoes Mountain ranges Trenches Submarine plateaus
How to Measure the Depth of the Oceans………………… Bathymetry  – ( bathos = depth, metry = measurement ) is the measurement of ocean depths and the charting of the shape (topography) of the ocean floor. HMS Challenger  – first ship designed to investigation of the oceans scientifically. Follow the Challenger journey
Technology: Sonar Satellites  Submersibles
Sonar  So und  N avigation  a nd  R anging  Sound travels through water at about  1,500 meters per second
Multibeam sonar  Charts created form ocean floor profiles.
Magnified 40 times to clearly show the features
Satellites  Measures the ocean surface height. Gravity attracts water to seamounts and guyots create a small rise in the ocean surface and trenches create small depressions.
Submersibles  Underwater craft designed to investigate the deep oceans. They can record data and pictures at extreme ocean depth.
Ocean travel was dangerous
Short History of Underwater Ocean Exploration and Technology  1st submarine  -  Turtle   Huneley  - civil war sub Submarines 1934 – William Beebe – 923 meters in a tethered steel sphere attached to a ship.   bathyscaphs  -deep diving subs 1960, Trieste – Jacques Piccard – 10,912 meters in the Mariana trench  SCUBA  -  self - contained - underwater breathing – apparatus Who developed scuba gear?
Bathyscaph
Alvin
Remote submersibles (ROV)
14.2 Ocean Floor Features The ocean floor regions are:  The continental margins The ocean basin floor The mid-ocean ridge.
Continental Margins Continental Margins  – zone of transition between continent and adjacent ocean basin Atlantic  - Covered with thick layers of undisturbed sediments. This region has very little volcanic or earthquake activity. Why?  Not associated with plate boundaries.
Pacific  – The Pacific Ocean crust is plunging beneath continental crust. This is caused by volcanic and earthquake activity. The result of this activity is a  narrow continental margin .
Continental Shelf  Not all coastlines have a continental shelf. It extends from the shoreline to approximately 80 kilometers. It is approximately 130 meters in depth on its seaward side.  Importance: Large mineral deposits Oil and natural gas  Sand and gravel deposits Important fishing grounds
Continental slope  Marks the edge of the continental shelf. Is a steeper drop to the ocean floor, between 50 and 250.  Submarine canyons: Formed by erosion at least in part by  turbidity currents . They form when sediments are disturbed by volcanic or earthquake activity. The muddy sediment that is now mixed in the water flows down the continental shelf and slope.  Or they could have formed????????
Why submarine canyons? Possibly when sea level was much lower some rivers crossed the continental shelf causing erosion to form submarine canyons. What could have caused this……. Glaciers forming……… REALLY!!!!!!!
Continental Rise  Areas at the base of the continental slope when sediments have accumulated. They may be hundreds of miles wide.
Other Features Trenches: subduction zones, sites of plate convergence Deepest is Mariana Trench = 11,022 meters in depth Abyssal plain Seamounts Guyots  Mid-ocean ridges  Hydrothermal vents  Atolls
Mid-ocean ridges  Are very wide and may occupy ½ of the ocean floor, site of divergent plate boundary or sea floor spreading sites. They are broken into segments by transform faults.
Hydrothermal vents  Form along mid-ocean ridges. The water here is mineral rich; the hot newly formed crust comes in contact with cold ocean water causing minerals like sulfur, iron, copper, and zinc precipitate out and are deposited.
 
Atoll formation and corals
 
14.3 Seafloor Sediments  Terrigenous  – originates on land.  They consist primarily of mineral grains that were eroded from continental rocks and transported to the oceans.  Coarse grain materials like sand settle quickly near the shore. Fine grained sediments like clay may take years to settle.  1centimeter of clay may take 50,000 years to form.  Terrigenous sediments accumulate much quicker in areas like the Gulf of Mexico where the Mississippi enters the ocean. Deposits there may be several kilometers thick.
Biogenous  – consists of shells and skeletons of marine animals and algae.  The most common type is calcareous ooze which forms from calcium carbonate shells and corals. The shells dissolve as the sink to lower depths.  This sediment has the consistency of thick mud.  Other sediments include siliceous  ooze  which is composed mostly of diatom shells made of silica.  Phosphate  rich biogenous sediments come from teeth, bones and scales of fish.
 
 
Hydrogenous  – consists of minerals that crystallize directly from ocean water through various chemical reactions.
Common types: Manganese nodules  – made also of iron and other metals, they form around grains of sand and are scatter across large areas of the deep ocean floor. Calcium carbonates  – form by precipitation directly from ocean water in warm climates. If this sediment is buried it can form limestone. Evaporites  – form where evaporation rates are high and ocean circulation is restricted. As water evaporates the remaining water becomes saturated with dissolved minerals which begin to precipitate. These sediments are generally called “salts.” Three common minerals that form this way are  halite, gypsum, and calcium sulfate .
Resources from the Seafloor  Oil and natural gas  – ancient remains of microscopic organisms that were buried before they could decompose. Exposed to pressure of overlying rocks and the Earth’s internal heat the remains were transformed into oil and natural gas. Major offshore reserves: Persian Gulf, Gulf of Mexico, off southern California, North Sea, and the East Indies.  Possible new reserves may be off the coast of Alaska and the Canadian Arctic, Asian seas, Africa, and Brazil Problems: pollution of the oceans
Gas hydrates  – occurs as methane hydrate or methane.  Gas Hydrate is an  ice-like crystalline solid  formed from a mixture of water and natural gas, usually methane. They occur in the pore spaces of sediments, and may form cements, nodes or layers. These occur beneath permafrost areas on land and under the ocean floor at depths below 525 meters. Most oceanic gas hydrates are created when bacteria break down organic matter trapped in ocean floor sediments. Other gases include ethane and propane. Chunks of gas hydrates look like metals and evaporate quickly when exposed to warm temperatures and less pressure. An estimated 20 quadrillion cubic meters of methane are locked in sediments. This is double the Earth’s coal, oil, and natural gas reserves combined.
Where are gas hydrates found?
 
Sand and gravel  – used in construction and some are gem quality. Diamonds, platinum, titanium, and gold are found in these deposits. Manganese nodules  – they include iron, copper, nickel, and cobalt. Cobalt  – used to make strong allows of other metals. Can make cutting tools, magnets, and jet engine parts.
 
Evaporative salts  – Of economic use is halite which is used in table salt, seasoning of food, curing, preserving food, agriculture, dying fabrics and de-icing roads.
Problems include … Developing the tools to get them from the ocean floor  Establishing mining rights.

More Related Content

PPTX
River eco report
PPT
Chapter 14
PPT
The sea floor
PPTX
Sea floorslideshow
PPT
Submarine canyons
PPTX
Morphology of ocean floor
PPTX
Geography notes volcanoes, Earthquakes, AQA
PPT
Oceanography I - Kashmeera N.A.
River eco report
Chapter 14
The sea floor
Sea floorslideshow
Submarine canyons
Morphology of ocean floor
Geography notes volcanoes, Earthquakes, AQA
Oceanography I - Kashmeera N.A.

What's hot (19)

PDF
Topography of ocean floors
PPT
The Earth
PPT
The Middle Cretaceous Carbonate Ramp_Konidari
PPTX
Seafloor features1
PPTX
Marine ecology
PPTX
Ocean basins
PPT
Ocean floor
PPTX
Unit 2 relief
PPT
Oceanography
PPT
Chapter 8 Oceanography
PPT
OCEANOGRAPHY
PPTX
Ocean Bottom Topography
PPTX
Presentation oceanography
PPSX
Oceanography
PPTX
Continental Margins
PDF
Continental Shelf
PPT
Lecture6
PPT
Devonian period
PPTX
Geological processes along plate boundaries module 5
Topography of ocean floors
The Earth
The Middle Cretaceous Carbonate Ramp_Konidari
Seafloor features1
Marine ecology
Ocean basins
Ocean floor
Unit 2 relief
Oceanography
Chapter 8 Oceanography
OCEANOGRAPHY
Ocean Bottom Topography
Presentation oceanography
Oceanography
Continental Margins
Continental Shelf
Lecture6
Devonian period
Geological processes along plate boundaries module 5
Ad

Similar to Chapter 14new Notes (20)

PPT
The sea floor
PPT
The sea floor
PPT
Upload undersea landscapes
PPT
Seafloor features
PPTX
Topic/ Lesson for sea floor spreading and the explanation
PPTX
Chapter 2 - The Sea Floor
PPTX
Chapter2 theseafloor-160119025500
PPT
1 10 ocean composition-location Water in Earth’s Processes
PPTX
Geography oceanography optional material.pptx
PPTX
Marine Provinces
PPTX
Landforms..this land is our land (Teach)
PPTX
Physical science 1 part 2
PPT
GHHS Oceanography
PDF
SEAFLOOR SPREADING_20250721_005435_0000.pdf_20250721_071836_0000.pdf
PPTX
Landforms thislandisourland-111022123136-phpapp01
PDF
Earth-Science 5 564ij455b 46858 665745574
PDF
TheSubmarineCanyons.pdf
PDF
TheSubmarineCanyons.pdf
PPT
Earth science chp 14[1]
PPT
Hotspot,Margins
The sea floor
The sea floor
Upload undersea landscapes
Seafloor features
Topic/ Lesson for sea floor spreading and the explanation
Chapter 2 - The Sea Floor
Chapter2 theseafloor-160119025500
1 10 ocean composition-location Water in Earth’s Processes
Geography oceanography optional material.pptx
Marine Provinces
Landforms..this land is our land (Teach)
Physical science 1 part 2
GHHS Oceanography
SEAFLOOR SPREADING_20250721_005435_0000.pdf_20250721_071836_0000.pdf
Landforms thislandisourland-111022123136-phpapp01
Earth-Science 5 564ij455b 46858 665745574
TheSubmarineCanyons.pdf
TheSubmarineCanyons.pdf
Earth science chp 14[1]
Hotspot,Margins
Ad

More from basdsci (13)

PPT
Ch2
PPT
Planet Earth
PPT
Ch 1esnew
PPT
Pennsylvania Drainage Patterns
PPT
Ch2 Minerals Id
PPT
Ch2 Minerals
PPT
Chapter 15
PPT
Chapter 20 Enviro
PPT
Energy Resources
PPT
Ch. 20 Notes
PPT
Chapter 17 Notes
PPT
Chapter 19
PPT
Chapter 18
Ch2
Planet Earth
Ch 1esnew
Pennsylvania Drainage Patterns
Ch2 Minerals Id
Ch2 Minerals
Chapter 15
Chapter 20 Enviro
Energy Resources
Ch. 20 Notes
Chapter 17 Notes
Chapter 19
Chapter 18

Recently uploaded (20)

PDF
Building Integrated photovoltaic BIPV_UPV.pdf
PPTX
A Presentation on Artificial Intelligence
PDF
Unlocking AI with Model Context Protocol (MCP)
PPTX
20250228 LYD VKU AI Blended-Learning.pptx
PDF
Blue Purple Modern Animated Computer Science Presentation.pdf.pdf
PDF
Profit Center Accounting in SAP S/4HANA, S4F28 Col11
PDF
NewMind AI Weekly Chronicles - August'25-Week II
PPTX
KOM of Painting work and Equipment Insulation REV00 update 25-dec.pptx
PPTX
1. Introduction to Computer Programming.pptx
PDF
Dropbox Q2 2025 Financial Results & Investor Presentation
PPTX
Programs and apps: productivity, graphics, security and other tools
PPTX
Spectroscopy.pptx food analysis technology
PDF
The Rise and Fall of 3GPP – Time for a Sabbatical?
PDF
Network Security Unit 5.pdf for BCA BBA.
PDF
Mobile App Security Testing_ A Comprehensive Guide.pdf
PPTX
Digital-Transformation-Roadmap-for-Companies.pptx
PDF
Architecting across the Boundaries of two Complex Domains - Healthcare & Tech...
PDF
Advanced methodologies resolving dimensionality complications for autism neur...
PDF
Agricultural_Statistics_at_a_Glance_2022_0.pdf
PDF
Spectral efficient network and resource selection model in 5G networks
Building Integrated photovoltaic BIPV_UPV.pdf
A Presentation on Artificial Intelligence
Unlocking AI with Model Context Protocol (MCP)
20250228 LYD VKU AI Blended-Learning.pptx
Blue Purple Modern Animated Computer Science Presentation.pdf.pdf
Profit Center Accounting in SAP S/4HANA, S4F28 Col11
NewMind AI Weekly Chronicles - August'25-Week II
KOM of Painting work and Equipment Insulation REV00 update 25-dec.pptx
1. Introduction to Computer Programming.pptx
Dropbox Q2 2025 Financial Results & Investor Presentation
Programs and apps: productivity, graphics, security and other tools
Spectroscopy.pptx food analysis technology
The Rise and Fall of 3GPP – Time for a Sabbatical?
Network Security Unit 5.pdf for BCA BBA.
Mobile App Security Testing_ A Comprehensive Guide.pdf
Digital-Transformation-Roadmap-for-Companies.pptx
Architecting across the Boundaries of two Complex Domains - Healthcare & Tech...
Advanced methodologies resolving dimensionality complications for autism neur...
Agricultural_Statistics_at_a_Glance_2022_0.pdf
Spectral efficient network and resource selection model in 5G networks

Chapter 14new Notes

  • 1. Chapter 14 The Ocean Floor
  • 2. Section Review Questions Section 14.1 Review questions #1-5 on page 400 are DUE: Wednesday, April 16 th .
  • 3. (14.1) The Vast World Ocean The great oceans of the world cover about 71% of the Earth's surface and are divided by continents. Each ocean includes smaller bodies of water called seas, bays, and gulfs. Oceanography is a science that draws from many other science fields to study all aspects of the world oceans.
  • 4. Geography of the Oceans If 71% of the Earth’s surface is covered by oceans then the continents must make up about 29% How many oceans basins are there actually? Would you believe 5
  • 5. Oceans by name We will use all 5 ocean basins this year
  • 6. Ocean Trivia Almost surrounded completely by land Largest ocean Ocean with most storm activity Saltiest ocean Has most of world’s fresh water going into it Arctic Pacific Indian Atlantic Atlantic
  • 7. Looking at the floor Turn to page 396 & 397….. What does the ocean floor look like, what features are there, What is the shape of the ocean floor basin, etc. What do you see and what do you think?
  • 8. New Oceanic Crust New ocean lithosphere forms at mid-ocean ridges . New rock that forms there are very hot, therefore less dense then the surrounding rock. This causes the mid-ocean ridges to rise above the existing ocean floor. As the ocean plate cools it becomes denser and begins to sink.
  • 9. Question: What are seamounts and guyots? Seamounts are islands that did not yet reach the ocean surface or will never reach the surface or did reach the surface and sank. Guyots are flattened volcanic peaks. What caused them to flatten on top? Wave activity can cut them off.
  • 10. So how did they sink? As the ocean floor cooled and sank so did the islands, seamounts, and guyots. The shape of the ocean floor is in the shape of a parabola . Cooling of the ocean floor is faster right after it forms and continues to cool slowly.
  • 11. Distance from the ridge The distance away from the ridge is proportional to the square of the temperature of the ocean plate. Any curve with the formula y=x 2 is a parabola.
  • 12. Sea level change During the Cretaceous period sea level was 300 meters higher causing major flooding of the continents. Compare this to the fact that if all the ice in the world melted sea level would rise 80 meters. When plate velocities increase ridge systems become active raising the sea floor thus causing continental flooding.
  • 13. Ocean Seafloor Mineral Factory Occur where water circulates through the mid-ocean ridge like a chemical factory removing metals and ores from the ocean crust. Cold water is pulled into the crust, and as it heats up, it begins to dissolve out incompatible elements like metals. This happens at ocean vents called black smokers where the water is turned black. As the warm water rises, metals precipitate out onto the seafloor. As ocean crust moves it drops the metals into the ocean trench/subduction zone. Many of the minerals rise to the Earth’s surface in magma.
  • 14. Mapping the Ocean Floor The topography of the ocean floor is as diverse as the continents. Features include: Chains of volcanoes Mountain ranges Trenches Submarine plateaus
  • 15. How to Measure the Depth of the Oceans………………… Bathymetry – ( bathos = depth, metry = measurement ) is the measurement of ocean depths and the charting of the shape (topography) of the ocean floor. HMS Challenger – first ship designed to investigation of the oceans scientifically. Follow the Challenger journey
  • 17. Sonar So und N avigation a nd R anging Sound travels through water at about 1,500 meters per second
  • 18. Multibeam sonar Charts created form ocean floor profiles.
  • 19. Magnified 40 times to clearly show the features
  • 20. Satellites Measures the ocean surface height. Gravity attracts water to seamounts and guyots create a small rise in the ocean surface and trenches create small depressions.
  • 21. Submersibles Underwater craft designed to investigate the deep oceans. They can record data and pictures at extreme ocean depth.
  • 22. Ocean travel was dangerous
  • 23. Short History of Underwater Ocean Exploration and Technology 1st submarine - Turtle Huneley - civil war sub Submarines 1934 – William Beebe – 923 meters in a tethered steel sphere attached to a ship. bathyscaphs -deep diving subs 1960, Trieste – Jacques Piccard – 10,912 meters in the Mariana trench SCUBA - self - contained - underwater breathing – apparatus Who developed scuba gear?
  • 25. Alvin
  • 27. 14.2 Ocean Floor Features The ocean floor regions are: The continental margins The ocean basin floor The mid-ocean ridge.
  • 28. Continental Margins Continental Margins – zone of transition between continent and adjacent ocean basin Atlantic - Covered with thick layers of undisturbed sediments. This region has very little volcanic or earthquake activity. Why? Not associated with plate boundaries.
  • 29. Pacific – The Pacific Ocean crust is plunging beneath continental crust. This is caused by volcanic and earthquake activity. The result of this activity is a narrow continental margin .
  • 30. Continental Shelf Not all coastlines have a continental shelf. It extends from the shoreline to approximately 80 kilometers. It is approximately 130 meters in depth on its seaward side. Importance: Large mineral deposits Oil and natural gas Sand and gravel deposits Important fishing grounds
  • 31. Continental slope Marks the edge of the continental shelf. Is a steeper drop to the ocean floor, between 50 and 250. Submarine canyons: Formed by erosion at least in part by turbidity currents . They form when sediments are disturbed by volcanic or earthquake activity. The muddy sediment that is now mixed in the water flows down the continental shelf and slope. Or they could have formed????????
  • 32. Why submarine canyons? Possibly when sea level was much lower some rivers crossed the continental shelf causing erosion to form submarine canyons. What could have caused this……. Glaciers forming……… REALLY!!!!!!!
  • 33. Continental Rise Areas at the base of the continental slope when sediments have accumulated. They may be hundreds of miles wide.
  • 34. Other Features Trenches: subduction zones, sites of plate convergence Deepest is Mariana Trench = 11,022 meters in depth Abyssal plain Seamounts Guyots Mid-ocean ridges Hydrothermal vents Atolls
  • 35. Mid-ocean ridges Are very wide and may occupy ½ of the ocean floor, site of divergent plate boundary or sea floor spreading sites. They are broken into segments by transform faults.
  • 36. Hydrothermal vents Form along mid-ocean ridges. The water here is mineral rich; the hot newly formed crust comes in contact with cold ocean water causing minerals like sulfur, iron, copper, and zinc precipitate out and are deposited.
  • 37.  
  • 39.  
  • 40. 14.3 Seafloor Sediments Terrigenous – originates on land. They consist primarily of mineral grains that were eroded from continental rocks and transported to the oceans. Coarse grain materials like sand settle quickly near the shore. Fine grained sediments like clay may take years to settle. 1centimeter of clay may take 50,000 years to form. Terrigenous sediments accumulate much quicker in areas like the Gulf of Mexico where the Mississippi enters the ocean. Deposits there may be several kilometers thick.
  • 41. Biogenous – consists of shells and skeletons of marine animals and algae. The most common type is calcareous ooze which forms from calcium carbonate shells and corals. The shells dissolve as the sink to lower depths. This sediment has the consistency of thick mud. Other sediments include siliceous ooze which is composed mostly of diatom shells made of silica. Phosphate rich biogenous sediments come from teeth, bones and scales of fish.
  • 42.  
  • 43.  
  • 44. Hydrogenous – consists of minerals that crystallize directly from ocean water through various chemical reactions.
  • 45. Common types: Manganese nodules – made also of iron and other metals, they form around grains of sand and are scatter across large areas of the deep ocean floor. Calcium carbonates – form by precipitation directly from ocean water in warm climates. If this sediment is buried it can form limestone. Evaporites – form where evaporation rates are high and ocean circulation is restricted. As water evaporates the remaining water becomes saturated with dissolved minerals which begin to precipitate. These sediments are generally called “salts.” Three common minerals that form this way are halite, gypsum, and calcium sulfate .
  • 46. Resources from the Seafloor Oil and natural gas – ancient remains of microscopic organisms that were buried before they could decompose. Exposed to pressure of overlying rocks and the Earth’s internal heat the remains were transformed into oil and natural gas. Major offshore reserves: Persian Gulf, Gulf of Mexico, off southern California, North Sea, and the East Indies. Possible new reserves may be off the coast of Alaska and the Canadian Arctic, Asian seas, Africa, and Brazil Problems: pollution of the oceans
  • 47. Gas hydrates – occurs as methane hydrate or methane. Gas Hydrate is an ice-like crystalline solid formed from a mixture of water and natural gas, usually methane. They occur in the pore spaces of sediments, and may form cements, nodes or layers. These occur beneath permafrost areas on land and under the ocean floor at depths below 525 meters. Most oceanic gas hydrates are created when bacteria break down organic matter trapped in ocean floor sediments. Other gases include ethane and propane. Chunks of gas hydrates look like metals and evaporate quickly when exposed to warm temperatures and less pressure. An estimated 20 quadrillion cubic meters of methane are locked in sediments. This is double the Earth’s coal, oil, and natural gas reserves combined.
  • 48. Where are gas hydrates found?
  • 49.  
  • 50. Sand and gravel – used in construction and some are gem quality. Diamonds, platinum, titanium, and gold are found in these deposits. Manganese nodules – they include iron, copper, nickel, and cobalt. Cobalt – used to make strong allows of other metals. Can make cutting tools, magnets, and jet engine parts.
  • 51.  
  • 52. Evaporative salts – Of economic use is halite which is used in table salt, seasoning of food, curing, preserving food, agriculture, dying fabrics and de-icing roads.
  • 53. Problems include … Developing the tools to get them from the ocean floor Establishing mining rights.