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cars love chemistry BASF solutions for electromobility

Chemistry: Paving the Road to Electromobility

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Ca. 17% of the world wide caused CO2 emissions accrue from traffic. BASF is searching for soultions to improve the technical status of electromobility. The presentation shows the contributions of BASF in the fields of eletricity production, power storage (battery materials) and power utilization.

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Page 1: Chemistry: Paving the Road to Electromobility

cars love chemistry

BASF solutions for electromobility

Page 2: Chemistry: Paving the Road to Electromobility

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New concepts for mobility

Global megatrends

…require new concepts

Energy demand & climate protection

Growing population

Urbanization Mobility & communication

MEGATRENDS

Affordable Energy efficient Low emission Comfortable

Page 3: Chemistry: Paving the Road to Electromobility

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CO2 emission by propulsion concept

Potential for optimization

Assumption energy demand: 4,5 l/100 km ICE today, ICE optimized -20%, 18 kWh/100 km Source: Studien UBA, Agentur für Erneuerbare Energien, BMU, IES, Stand: 9/2008.

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50

100

150

200

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Gramm CO2 per Kilometer

ICE today

ICE optimized

EV Electricity

from hard coal

EV Electricity German

energy mix

EV Electricity

from renewables

133 110

162

107

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Electromobility

Operation: Production:

Emission caused by production and transport

Direct emission of the car

Page 4: Chemistry: Paving the Road to Electromobility

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Vision electromobility

How the world of tomorrow could be …

High flexibility / availability

Low energy losses

Cost efficient

Power storage

Emission free driving

Competitive electric cars

No trade-offs in comfort

Power utilization

Stable supply

“Smart grids”

Low transmission losses

Power transmission

CO2 neutral

Competitive prices

100 % renewable

Power production

Page 5: Chemistry: Paving the Road to Electromobility

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Key buying criteria for electric vehicles

… at a glance

Recent studies show suitability in all-day life and …

e-cars are fun!

Challenge: Acceptance of new technology & total cost of ownership

Ecological Awareness Individualization

Political Framework Mega Cities Energy

Personal Drivers

External Drivers

Clear trend: to be different

E-cars are rare

“Drivable iPhone”

Limited natural resources

Oil price

Business model – e-cars part of “Smart Grid”

Clean Air

Traffic jams – emissions

Short distances

Access to cities – emission dependent

CO2 emission cap in the EU

Tax benefits

Increased social responsibility

Wish to be mobile with less CO2 emission

Renewable energy

Page 6: Chemistry: Paving the Road to Electromobility

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Sciences Politics Industry Society

BASF

ThyssenKrupp

VW

AUDI

Evonik

E.ON

Daimler

Siemens

Magna ESMT

IGM

VDA

BMVBS

BMBF

BMWi

BMU

BMW Uni Ulm

Battery Technology

Power Train Technology

Infrastructure & Grid

Integration

Norms & Standards

Materials & Recycling

Education & Qualification

Political Framework

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Bundling of forces in Germany

National Platform Electromobility – NPE

Chemistry identified as a key pillar

to help the breakthrough of electric vehicles

Page 7: Chemistry: Paving the Road to Electromobility

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A wide range of chemical products and

solutions enables energy efficient driving

Role of chemistry in electromobility

Chemistry as key pillar

Battery materials

Offgas treatment for hybrid e-cars

Organic light-emitting diodes (OLED)

Organic photovoltaics

Heat management

Light weight construction

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Page 8: Chemistry: Paving the Road to Electromobility

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Electrical energy efficiency ― Solar roof with transparent organic solar cells

― Transparent organic OLEDs

Goals:

maximum energy efficiency,

improved safety, and higher comfort

smart forvision in cooperation with BASF

Technologies for the car of tomorrow

Holistic temperature management ― IR-reflecting films/pigments

― High performance foams for insulation

Multifunctional lightweight construction ― Lightweight ergonomically designed seats

― Thermoplastic polyamide wheel

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Page 9: Chemistry: Paving the Road to Electromobility

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International Research Network with scientists and industry

Joint R&D with international competence centers

Building a production plant for cathode materials

Innovative battery materials

Goals:

higher range, improved safety and lower costs

Improved materials for components and cells ― Cathodes, Electrolytes

― Anodes, Separators

New battery concepts (Li-S, Li-Air)

ONGOING ACTIVITIES

Page 10: Chemistry: Paving the Road to Electromobility

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Materials

Improved battery technology

Battery as key component in electric vehicles

The battery determines characteristics of an electric vehicle ― Range, Costs, Safety,…

The battery allows for differentiation and value creation ―Challenging technology and chance for chemistry / engineering / OEMs

Materials are the heart of the battery cell ―Chemistry plays a central role as material supplier

Components Cells Batteries Electric Car

BASF

Page 11: Chemistry: Paving the Road to Electromobility

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Meet us at booth C35, Hall 4.0

and see the smart forvision at FO.0 A01

Innovative technology created by chemistry

will bring electromobility onto the fast lane

Page 12: Chemistry: Paving the Road to Electromobility

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