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Hydrogen Fuel Cell & Photovoltaics

Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

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Page 1: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Hydrogen Fuel Cell&

Photovoltaics

Page 2: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Photovoltaics

Page 3: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics
Page 4: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

PV Cell

Page 5: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics
Page 6: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Conversion Efficiency

Page 7: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

PV Array Components

oPV CellsoModulesoArrays

Page 8: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

PV System Components

Page 9: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Net Metering

Page 10: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Net Metering Participation

Page 11: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

PV Array Fields

Page 12: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics
Page 13: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Source: Solarbuzz, a part of The NPD Group

Page 14: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

• Clean• Sustainable• Free• Provide electricity to

remote places

Advantages of Solar Energy

Page 15: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Disadvantages of Solar Energy

•Less efficient and costly equipment

•Part Time•Reliability Depends On

Location•Environmental Impact of PV

Cell Production

Page 16: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Hydrogen Fuel Cells

The NEED Project: 30 Years of Energy Education

Page 17: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Trends in the Use of Fuel

Wood Coal O il NaturalGas

Hydrogen

Percentage of hydrogen content in fuel

Page 18: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

19th century: steam engine

20th century: internal combustion engine

21st century: fuel cells

A varied range of organizations, from energy companies to automobile manufacturers, are working to develop fuel cells and the accompanying

infrastructure. A trend in the production of power is clearly visible:

Page 19: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

The History of Fuel Cells

Electrolyser Grove’s Gas Battery(first fuel cell, 1839)(after Larminie and Dicks, 2000)

Page 20: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Bacon’s laboratory in 1955

Photo courtesy of University of Cambridge

Page 21: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

NASA Space Shuttle fuel cellPhoto courtesy of NASA

Page 22: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Applications for Fuel Cells

Transportation vehicles

Photo courtesy of DaimlerChrysler

NECAR 5

Page 23: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Distributed power stations

Photo courtesy of Ballard Power Systems

250 kW distributed cogeneration power plant

Applications for Fuel Cells

Page 24: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Home power

Photo courtesy of Plug Power

7 kW home cogeneration power plant

Applications for Fuel Cells

Page 25: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Portable power

50 W portable fuel cell with metal hydride storage

Applications for Fuel Cells

Page 26: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

The Science of Fuel Cells

Phosphoric Acid

(PAFC)

Alkaline(AFC)

Polymer Electrolyte Membrane

(PEMFC)

Direct Methanol

(DMFC)

Solid Oxide

(SOFC)

Molten Carbonate(MCFC)

Types of Fuel Cells

Polymer Electrolyte Membrane(PEMFC)

Direct Methanol(DMFC)

Solid Oxide(SOFC)

Page 27: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

PEM Fuel Cell Electrochemical Reactions

Anode:

H2 2H+ + 2e- (oxidation)

Cathode:

1/2 O2 + 2e- + 2H+ H2O (l) (reduction)

Overall Reaction:

H2 + 1/2 02 H2O (l)

ΔH = - 285.8 kJ/mole

Page 28: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Hydrogen + Oxygen Electricity + Water

Water

A Simple PEM Fuel Cell

Page 29: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Membrane Electrode Assembly (MEA)

O2

2H2O

4H+

Nafion

4e -

2

K

H2

O2

H2O

2H2 4H+

Nafion

4e -

O2

2H2O

4H+

Nafion

4e -

Nafion

H+

Catalysis

Transport

Resistance

Anode Cathode

Polymerelectrolyte

(i.e. Nafion)Carbon cloth Carbon cloth

Platinum-catalyst

Platinum-catalyst

Oxidation

Reduction

Page 30: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Polymer Electrolyte Membrane

(after Larminie and Dicks, 2000)

Polytetrafluoroethylene (PTFE) chains

Sulphonic Acid

50-175 microns(2-7 sheets of paper)

Water collects around the clusters of hydrophylic sulphonate side chains

Page 31: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Hydrogen Storage

56 L

14 L

9.9 L

Liters to store 1 kg hydrogen

Compressed gas (200 bar)

Liquid hydrogen MgH2 metal hydride

Page 32: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Hydrogen: Energy Forever

Fuel tank Reformer

H2

Hydrogen bottles

H2

H2

Hydrogen bottles

H2

Algae

H2

Hydrogen bottles

H2

Solar panel Electrolyser

Page 33: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Renewable Energy Sources

As long as the sun shines, the wind blows, or the rivers flow, there can be clean, safe, and sustainable electrical power, where and

when required, with a solar hydrogen energy system

M icro hydro

Storage

H 2

Oxygen

Oxygen

WaterWater

FuelCellE lectro lyzer

Solar Cell

W ind

Page 34: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Benefits of Fuel Cells

Modular

Clean

Quiet

Sustainable

Efficient

Safe

The Benefits of Fuel Cells

Page 35: Hydrogen Fuel Cell & Photovoltaics. Photovoltaics

Heliocentris: Science education through fuel cells 35

Our Fragile Planet.

We have the responsibility to mind the planet so that the extraordinary natural beauty of the Earth

is preserved for generations to come.

Photo courtesy of NASA