The Sustainable Energy Challenge

Similar documents
The Sustainable Energy Challenge

Where will our energy come from? Ch. 16. All from the Sun

ENERGY To be or not to be sustainable?

Unit 4 Energy Review. Student. 1. Which is a problem with using wind turbines to produce energy? A. Wind turbines are efficient only in certain areas.

Power Technologies. Question. Answer. Energy is the ability to do work or change the system. Answer. Question. What are the various sources of energy?

Where is Transportation Going?

Technologies to Mitigate Climate Change

Chapter 14 area strip mining contour strip mining high-grade ore low-grade ore mineral mineral resource mountaintop removal open-pit mining

10. Why is photosynthesis necessary for biofuel production?

The Energy Challenge

Energy, Greenhouse Gases and the Carbon Cycle

ENERGY RESOURCES RESEARCH NOTES

M1. allow 1 mark for each correct line if more than one line goes from an energy source then all lines from that energy source are wrong [3]

The Bright Prospects of Renewable Energy

Period 26 Solutions: Using Energy Wisely

Name: Class: Date: 1. How much of the United States electric generation comes from coal? How much supply remains?

The Carbon Cycle and Energy Security

Fuel Cells 101. Hydrogen Fuel Cell Educational Outreach Workshop Presented by David Cooke October 21 st, 2013

Name Class Date. Conventional Energy Resources

By Mark Z. Jacobson Stanford University November 11, 2016

Coal. Biomass. Advantages. Disadvantages. Disadvantages. Advantages

Chapter 1 Overview of Energy Use

U. S. Energy sources over time

SCIENCE AND TECHNOLOGY TO MEET OUR ENERGY NEEDS

Renewable Energy Alternatives

Fuel Cells: Timing and limits to the transition to a hydrogen economy. Thomas J. Meyer. Strategic Research At LANL

Mitigation Strategies for Atmospheric Carbon. Clarence Lehman Department of Ecology, Evolution, and Behavior October 14, 2008

Energy Technology & Conservation. Week_02. Instructor: Mr. Adnan Qamar. Mechanical Engineering Department

Transportation and Air Pollution Glossary

+ Greenhouse Effect Gasses. n Main Gasses: n Water (H 2 O) n Carbon Dioxide (CO 2 ) n Methane (CH 4 ) n Others Gasses:

Climate Change. Chapter 16

Energy and Climate Change Related Concepts in Alberta Curriculum

Activity 3 Information sheet

Alternate Energy. Remember. Beyond the Age of Oil. Needs to be versatile: Heat Electricity Generation Transportation (Internal combustion or other)

Hydrogen as an Energy Carrier

Towards the development of low cost non-platinum based catalysts for catalytic water splitting

The Hydrogen Opportunity

ENVI.5720 Energy and Environment

Energy Source Uses. Biomass

Midwest Transportation Consortium

A is any natural material that is used by humans.

ENERGY INNOVATION HUBS

Biology 112 Introduction to Ecology. QUIZZAM Energy. Chapter Number 10

GREENHOUSE GASES 3/14/2016. Water Vapor, CO 2, CFCs, Methane and NO x all absorb radiation Water vapor and CO 2 are the primary greenhouse gases

atom biofuel biomass the smallest unit of a chemical element, made up of protons, neutrons, and electrons

Energy and Global Issues

Alternative Energy Resources. Environmental Earth Science Rev 2018, Spds 2011

A Sustainable Energy Future?

Possible Exam Questions for Other Topics in Chemistry 10

BP Technology Outlook. A brief perspective

ENVIRONMENTAL SCIENCE PACING GUIDE

Power Generation Technologies

Solar Grand Plan. Ken Zweibel PrimeStar Solar February 2008

ALTERNATIVE ENERGY. Beyond Petroleum and Coal

THE ROLE OF THE HYDROGEN FUEL CELL IN PROVIDING CLEAN ENERGY OF THE FUTURE

Renewable Energy Today

Four Solar Systems Passive heating Active heating Photovoltaic Water heating

Scientists The world needs your help to solve its energy crisis

Future Technologies for Integrated Electrical Load Leveling & Production & Use of Biomass. Charles T. Campbell University of Washington

Have We Had an Impact? Global Warming. 3 Forms of Heat Transfer. Thickness of Earth s Atmosphere. The Impact on Engineering

Renewable Energy Technology 2004 Energy Workshop

RENEWABLE ENERGY AND ALTERNATIVE FUELS

World Energy Sources & Fossil Fuel Power Production. Josh Barnes, Cyrus Hughlett...and Karl. SL/AP Physics Hour 2

ENERGY FORMS & CONVERSION

Energy. Some facts 2/6/2012. Total Primary Power vs Year 1990: 12 TW 2050: 28 TW. What are the facts?!

KNOWLEDGE EXPANDER ENERGY Shell Global Solutions International B.V.

1 st find water. Search for Life

What Are Our Alternatives, If Fossil Fuels Are a Problem?

Concentrations of several of these greenhouse gases (CO 2, CH 4, N 2 O and CFCs) have increased dramatically in the last hundred years due to human

L I D E. Earth s Ultimate Energy Source. Hydroelectric Power. Chemistry in Focus 3rd edition Tro

U.S. Climate Change Technology Program (CCTP) Overview

1) Fact, Advantage, or Disadvantage? 2) How we use Our Energy Sources Solar Energy. How Do We Use Our Energy Sources?

Chapter: Chapter 15-16: Alternative Energy and the Environment. a) deposition of organic-poor material b) elevated temperatures and pressures

Solutions to Global Warming. World Population Growth

ALTERNATIVE ENERGY. Four Solar Systems. Solar. Carbon Dioxide and Global Warming. Alternative Energy Sources. Beyond Petroleum and Coal

Introduction to Renewable energies

February 19, Chapter 17: Energy Efficiency and Renewable Energy

A Hydrogen Economy. Dr. Mazen Abualtayef. Environmental Engineering Department. Islamic University of Gaza, Palestine

Dr Richard Pike Royal Society of Chemistry

HOW CAN THE SUN S ENERGY BE USED?

Powering New York State with Wind, Water, and the Sun to Address Global Warming, Air Pollution, and Energy Security

HOW IT WORKS w w w. f u e l c e l l p a r t n e r s h i p. o r g

Making Renewable Fuel by Carbon Recycling

Environmental Geography

An Interconnected Planet

Section 1: Renewable Energy Today

learning objectives subjects Environmental Education Science Social Studies materials Power to the People Background

Environmental Science Sixth Edition

4. If the Earth is to continue to use oil its current rate, what must happen for us to sustain this rate?

MIT Carbon Sequestration Initiative

Energy. There are many different types of energy which we can observe on a daily basis.

Four Solar Systems Passive heating Active heating Photovoltaic

Would / Does tidal power work? How does it work? In what ways is tidal power an improvement on wind and solar power?

ALTERNATIVE ENERGY Beyond Petroleum and Coal

To Hydrogen or not to Hydrogen. Potential as a Ship Fuel. Dr. John Emmanuel Kokarakis. Emmanuel John Kokarakis University of Crete

BES Update. Patricia M. Dehmer Director, Office of Basic Energy Sciences Office of Science, U.S. Department of Energy 19 April 2007

- renewable - cheap - no pollution. - expensive equipment - no energy on cloudy or rainy days

Natural Resource Sustainability Considerations in Future Energy Development

Geological l Sequestration: ti AP Primer

Global Climate Change. The sky is falling! The sky is falling!

Transcription:

The Sustainable Energy Challenge Outline the challenges: oil, the economy and carbon dioxide what is sustainability? George Crabtree Departments of Physics, Electrical and Mechanical Engineering University of Illinois at Chicago Materials Science Division Argonne National Laboratory sustainable energy alternatives and roadblocks UIC Summer Institute on Sustainability and Energy APS Energy Research Opportunities Workshop Boston, MA February 26, 2012

Background Reading physicsworld.com October 2009 Controlling the Functionality of Materials for Sustainable Energy George Crabtree John Sarrao ANNUAL REVIEW OF CONDENSED MATTER PHYSICS October 2010 George Crabtree and John Sarrao http://www.annualreviews.org/journ al/conmatphys http://physicsworld.com/cws/ article/print/40527 http://www.americanenergyinnovation.org/

The Problem: Dependence on Imported Oil Million barrels per day 25 20 15 10 5 US Oil consumption production Cost to economy $350 B/yr at current prices transferred to foreign oil producers 0 1950 1960 1970 1980 1990 2000 US EIA Unpredictable supply threatens economy, lifestyle, national security find alternatives to imported oil biofuels, electricity, solar fuels http://tonto.eia.doe.gov/energy_in_brief/foreign_oil_dependence.cfm

The Problem: Greenhouse Gases and Climate Change 0.5 Global average surface temperature million km 2 mm C 0.0-0.5 50 0-50 -100-150 4 0-4 Global average sea level Northern hemisphere snow cover 1850 1900 1950 2000 IPCC Fourth Assessment 2007 http://www.ipcc.ch/graphics/gr-ar4-syr.htm SPM1 2/3 of carbon dioxide emissions come from power plants and autos Permanent changes in weather patterns, agricultural networks and coastal geography Cost of accommodation may be higher than preventive cost of reducing emissions

Roadblocks to Sustainable Energy Technologies Performance: fossil is cheaper Sustainable energy technologies are in their infancy. They perform far below their ultimate potential. Dramatic improvements are needed incremental tuning of the present state of the art is not sufficient Breakthroughs needed understand and control materials and chemistry at molecular and nanoscale levels

What is Sustainability? Lasts a long time Oil in 1900 Coal in 2012 Does no harm Nuclear electricity: no CO 2 Ethanol: reduced CO 2 Leaves no change Closed chemical cycle Electricity, hydrogen 6

Sustainable Next-Generation Energy Technologies Sustainability Profile lasts a long time does no harm leaves no change Solar electricity: a fully sustainable energy chain manufacture and end-of-life impact must be considered breakthroughs needed lower cost, higher efficiency photovoltaics third generation materials and nanostructures electricity storage

Carbon Sequestration Sustainability Profile lasts a long time does no harm leaves no change emissions sequestration carbon dioxide depletes coal resource 100s of years breakthroughs needed chemical reactivity with rocks in extreme environments migration through porous rocks geologic monitoring and predictive modeling leakage routes to atmosphere ~ 1000 years

Nuclear Electricity Sustainability Profile lasts a long time does no harm leaves no change emissions nuclear waste depletes uranium resource 100s of yrs breakthroughs needed materials for extreme environments high temperature, high radiation flux high corrosivity geologic monitoring and modeling spent fuel 10 000s yrs usgs

Replace Conventional Oil cellulosic biofuel solar chemical fuel lasts a long time does no harm leaves no change oil sands and shale coal to liquid lasts a long time does no harm leaves no change recycles CO 2 switchgrass ethanol plant cellulosic biofuel: recycles carbon dioxide solar fuel without biology: thermo- or photo-chemistry oil sands and shale, coal to liquid: 50% more carbon dioxide breakthroughs needed more pollutants cellulosic breakdown to sugar or fuel chemistry of carbon dioxide to fuel

Electrify Transportation renewable electricity production Sustainability Profile lasts a long time does no harm leaves no change electric motor replaces gasoline engine renewable hydrogen production hydrogen storage H 2 e - + + + + + + + + fuel cell battery H 2 O breakthroughs needed x2-5 higher energy density in batteries catalysts, membranes and electrodes in fuel cells O 2 tesla motors

Sustainable Energy Enabling Technologies: The Grid Wind Sun breakthroughs needed long distance reliable, efficient delivery of electricity

Enabling Technologies: Storing Energy Store intermittent solar and wind electricity Electrify transportation with plug-in hybrids and electric cars batteries: 30-50x less energy density than gasoline impossible dream: x10 improvement beyond batteries: chemical storage + fuel cells = electricity Energy/volume MJ / L system super capacitors 30 20 10 batteries 0 0 electrical storage hydrogen compounds (target) compressed hydrogen gas Energy Storage Density methanol chemical + fuel cells = electricity ethanol gasoline combustion 10 20 Energy/weight 30 40 MJ/kg system electro-chemical storage chemical storage breakthroughs needed x2-5 increase in battery energy density x10-20 increase through chemical storage + fuel cells

The Transition to Sustainable Energy: High Tech Materials and Chemistry traditional energy gas CH 4 oil CH 2 heat useful coal CH work 0.8 commodity materials disposable fuels combustion sunlight wind water geothermal biomass direct conversion sustainable energy electricity biofuels solar chemical fuel useful work high tech materials and chemistry e.g., photovoltaics, electrodes, superconductors, catalysts sustainable energy requires controlling complex, functional, high tech materials and chemistry

New Science: Controlling Complexity controlling materials and chemistries in ultra-small and ultra-fast regimes computer modeling complex materials nanoscience We are at the dawn of a new era build materials with atom-by-atom chemical precision predict behavior of materials that have not been made design new materials and chemistries for specific tasks breakthroughs to next-generation sustainable energy technologies are within reach

The Energy and Science Grand Challenges BESAC and BES Reports Secure Energy Future, 2002 Hydrogen Economy, 2003 Solar Energy Utilization, 2005 Superconductivity, 2006 Solid-state Lighting, 2006 Advanced Nuclear Energy Systems, 2006 Clean and Efficient Combustion of Fuels, 2006 Electrical Energy Storage, 2007 Geosciences: Facilitating 21st Century Energy Systems, 2007 Catalysis for Energy, 2007 Materials Under Extreme Environments, 2007 Directing Matter and Energy: Five Grand Challenges for Science and the Imagination, 2007 New Science for a Secure and Sustainable Energy Future, 2008 Science for Energy Technology, 2010 Computational Materials Sciences and Chemistry, 2010 Computational Materials Science and Chemistry, 2010 http://science.energy.gov/bes/news-and-resources/reports/basic-research-needs/

... And Policy energy sustainability environmental sustainability economic sustainability a multidimensional, interactive challenge

The world is undergoing an historic transition. Get on board. Intense immersion in energy and sustainability Lectures, tours of energy and sustainability sites Team challenge projects solving real-world problems Summer 2012 http://sise.phy.uic.edu