Clean Power for Transport initiative An EU sustainable alternative fuels strategy including the appropriate infrastructure

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Clean Power for initiative An EU sustainable alternative fuels strategy including the appropriate infrastructure

Main problems to fix Energy supply at risk: - largest oil consumer: 55% and rising Oil counts for 94% of transport fuels, 84% imported New oil reserves expensive High oil import bill: Up to 1 billion per day in 2011 Trade balance deficit: ~ 2.5 % of GDP 7% of household expenditure

Oil price ($/bl) Speculative bubble 2007-2008: Cost for EU transport = 90 b North-Africa unrest 2010-2011: Cost for EU transport = 40 b

CO2 emissions from transport: Sustainable transport 30% of total CO2 emissions from the EU economy in 2009 Increased by 34% between 1990 and 2009 GHG emissions reduction from transport of 60% by 2050 Large-scale deployment of low-co 2 alternative fuels can contribute significantly Alternative fuels, together with increased transport efficiency, are indispensable Clean fuels are also beneficial in urban areas

Competitiveness / Growth and jobs Risk for the EU industry: Loss of world leadership Market opportunities for European industry support for innovative sectors where EU companies are leading If the EU acts as a first-mover, global competitiveness of EU vehicles, vessels and relevant infrastructures industries will be enhanced Employment creation in a wide range of sectors in the EU (construction, manufacturing, electricity, ICT technology and applications, advanced materials)

What is the current situation? Important efforts to promote alternative fuels by some Member States and industry, but: Different technological choices lead to: Isolated national/regional markets Fragmentation of the internal market for alternative fuels Technology "border lines", which inhibit mobility with alternative fuels across Europe

Closure of the Missing Link Sustainable Market Infrastructure Common standards EU-funded Projects Green Car Initiative FCH-JU TEN-T projects on LNG Market incentives Subsidies Fiscal advantages EIB loans Regulatory measures CO2 and pollutants Fuel quality and renewable energy Directives Green procurement

What is the EC response? The Clean Power for Package will contribute to: Build a competitive, resource efficient and sustainable transport system in the EU Establish a long term fuel strategy Remove technical and regulatory barriers across the EU Facilitate the development of a single market for alternative fuel infrastructure and alternative fuel vehicles and vessels

Clean Power for initiative Communication A European alternative fuels strategy A proposal for a Directive on the deployment of alternative fuels infrastructure Focusing on the "missing link" - infrastructure and standards Staff Working Document on Actions towards a comprehensive framework on LNG for shipping

The Communication a comprehensive alternative fuels strategy for the long-term substitution of oil as the primary energy source for transport a framework to guide investments and technological development Single-fuel solution is not possible => a package of alternative fuels Priority actions For infrastructure with common standards For technology development For consumer acceptance WE CONTINUE ON ALL FRONTS!

TEN-T and R&D projects Horizon2020 European Green Vehicles Initiative Smart Cities initiative LNG projects Etc.

A legislative proposal for infrastructure build-up, with common standards Obligation of means (national policy frameworks + EC assessment and recommendations) Obligation of results (minimum infrastructure) Conservative approach; no disproportionate targets => would help MS to reach their projections A proposal developed in close consultation with MS and industry A network approach/creation of economies of scale Unlock private investment = a pro-growth initiative Flexibility = Full freedom given to MS for implementation EU support offered

Infrastructure build-up by 2020 Minimum number of recharging points for EVs reaches set values per MS, with at least 10% publicly accessible Hydrogen refuelling points to connect those already existent in MS, with maximum distances of 300 km LNG refuelling points for waterborne vessels in all maritime ports and inland ports of the TEN-T Core Network, by 2020, respectively 2025 LNG refuelling points for road transport vehicles along the TEN-T Core Network with a maximum distance of 400 km CNG refuelling points with maximum distances of 150 km to allow the circulation of CNG vehicles

The proposed Directive creates: the conditions to establish a single market and economies of scale => Confidence for investors & consumers Stable framework including minimum infrastructure Investments encouraged EU common standards Interoperability Consumer information Fuel / vehicle compatibility

Advantages of Hydrogen Can be produced from any primary energy source, uncoupling the vehicle fuel from the energy source Production through electrolysis and other renewable sources can contribute significantly to the decarbonisation of transport When used in fuel cells, delivers a clean, energy efficient, zero-emission and low noise fuel Refuelling is relatively straightforward and doesn't take much more time than with fossil fuels

Disadvantages of Hydrogen The fuel cell is expensive (=> high vehicle cost => low demand) Hydrogen takes space and is stored compressed, so the filling tank is large and heavy Compressing hydrogen consumes energy => Research to use hydrogen in liquid form Safety risk (H2 + O2 can lead to explosion)

Current State of Development Very limited to date A few thousands vehicles, mainly demonstration (cars, buses, two-wheelers) Around 500 fuelling stations active worldwide Major OEMs including Daimler, Toyota, Honda, GM, Hyundai, Nissan Germany, Japan, Korea and US lead - with China and India making early moves In the EU, Scandinavia, UK and Italy are also active

Fuel Cells and Hydrogen Joint Undertaking The FCH-JU is a Public-Private Partnership research and innovation initiative; it started activities in 2009 It is working to accelerate the commercial deployment (improve performance, reduce costs) of fuel cells and hydrogen for both stationary and transport applications 31 projects have been initiated so far with a few already reaching completion The FCH-JU is also conducting ad-hoc researches such as on comparing power trains for cars and for buses and on the refuelling network

Clean Power for Package 1) Sets targets to build the necessary hydrogen refuelling points "Member States on the territory of which exist already at the day of the entry into force of this Directive hydrogen refuelling points, shall ensure that a sufficient number of publicly accessible refuelling points are available, with distances not exceeding 300 km, to allow the circulation of hydrogen vehicles with the entire national territory by 31 Dec 2020"

Clean Power for Package 2) Set standards to ensure interoperability across the EU "All hydrogen refuelling points for motor vehicles shall be compliant with the technical specifications set out in Annex III.2 by Dec 2015"

Refuelling stations Country Existing public Existing non public To make public To build Total Cost to build a b c d a+c+d for d AT 2 4 6 6.4 BE 1 3 4 4.8 BG 7 7 7 CY 1 1 1 CZ 1 4 5 6.4 DE 33 9 33 DK 3 11 3 EE 3 3 3 EL 2 6 8 9.6 ES 7 18 25 28.8 FI 2 6 8 9.6 FR 5 19 24 30.4 HU 5 5 5 IE 4 4 4 IT 18 3 18 LT 4 4 4 LV 5 5 5 NL 4 4 PL 21 21 21 PT 4 4 4 RO 9 9 9 SE 4 17 21 27.2 SI 2 2 SK 4 4 4 UK 17 2 17 TOTAL 101 92 67 77 245 123 Currently about 200 refuelling stations in the EU, of which 101 publically accessible Targets of the CPT Package can be met by Making an additional 67 existing stations public; and Building an additional 77 stations, publically accessible; this requires about 123 millions => A network for hydrogen vehicles will be created in France, Germany, Italy, Poland, Spain, Sweden and UK

Standards EU regulatory framework exists for wholevehicle type approval of hydrogen cars, buses, trucks, scooters On-going efforts to establish a UN Global Technical Regulation for vehicle approval ISO and SAE standards exist with globally harmonised requirements for hydrogen purity, fuel connectors, refuelling station safety and layout Standards still needed for certain components: fuel hoses, permitting for fuel stations, trans-filling and fuel dispenser, vehicle tank information protocols

Standards CPT Annex III.2 2.1 Outdoor hydrogen refuelling points dispensing gaseous hydrogen used as fuel on board land vehicles shall comply with the relevant EN standard (European standard, CEN) to be adopted by 2014 and, pending the publication of this standard, with the technical specifications of the ISO/TS20100:2008 Gaseous Hydrogen Fuelling specification 2.2 The hydrogen purity dispensed by hydrogen refuelling points shall comply with the relevant EN standard to be adopted by 2014 and, pending publication of this standard, with the technical specifications included in the ISO 14687-2 standard 2.3 Hydrogen refuelling points shall employ fuelling algorithms and equipment complying with the relevant EN standard to be adopted by 2014 and, pending the publication of this standard, with the ISO 20100 Fuelling Protocols for Light Duty Gaseous Hydrogen Surface Vehicles 2.4 Connectors for vehicles for the refuelling of gaseous hydrogen shall comply with the relevant EN standard to be adopted by 2014 and, pending publication of this standard, with the ISO 17268 gaseous hydrogen land vehicle refuelling connection devices standard

Thank you for your attention!