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Future Innovations from International Cooperations Biogas - Biomethane - LNG A sustainable strategy of energy supply for the future.

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Presentation on theme: "Future Innovations from International Cooperations Biogas - Biomethane - LNG A sustainable strategy of energy supply for the future."— Presentation transcript:

1 Future Innovations from International Cooperations Biogas - Biomethane - LNG A sustainable strategy of energy supply for the future.

2 Development of German Biogas Industry

3 1992Stromeinspeisegesetz 2000Erneuerbare-Energie-Gesetz EEG Biogas Natural Gas Grid Electricity Generation Fuel Political Framework

4 FormAcreageYield / ProductProduct (ha)(t/ha)(t/a)(m 3 /t)(m 3 /a) Biodiesel 75%1.162.5001,41.627.500 Bioethanol 13%201.5002,5503.750 Biogas 12%186.000509.300.0002302.139.000.000 Sum1.550.000 11.431.250 TheoreticallySpecifications Capacity FormHuEnergyCurrent kWh/m 3 (kg)(TWh/a) TWh/a2007/08 Biodiesel10,3316,81 5.000.000 Bioethanol7,443,75 Biogas5,912,624,85,28 Sum 33,18 Bioenergy from Acreage

5 Only by use of natural gas or biomethane, the emissions can be lowered lastingly. This cannot be achieved with biodiesel and bioethanol.  Starting-point of the R&D work of DGE GmbH MaterialQuantityEmissionCO 2 COFineHCNO x g CO 2 dust Petrol1 l2.380+25%+75% +60% Diesel1 l2.660+5%+50%+99%+80%+70% Natural gas1 kg2.48011111 Fuel Emissions

6 Simple, safe and economic processing of biogas to biomethane 8 international protected rights Licensing in Europe and North America 3 plants after the BCM-method in Europe End of 2008: approx. 10 plants with a total capacity of 100 Mio. Nm 3 /h biogas BCM-Method for Biogas Processing

7  Biomethane is a processed biogas with constant and ideal conditions for the production of LNG Gas compositions for LNG-production Gas Type Natural GasFlare GasBiomethane BCM CH 4 Vol.%80-9560-9098-99,5 C2H4C2H4 Vol.%0-20,5-2 C3H6C3H6 Vol.%0,5-10,5-2 C3H8C3H8 Vol.%0,5-50,5-8 C4H8C4H8 Vol.%0,5-10,5-2 C 4 H 10 Vol.%0,5-50,5-6 C 5 H 10 Vol.%0,5-10,5-2 C 6 H 12 Vol.%0,5-50,5-6 Other HCVol.%0-21-50-0,1 COVol.%0-0,2 0,05-0,1 H2H2 Vol.%0-0,20-40,05-0,1 H2SH2Sppm31000-70001 Sulphur, totalppm51200-100001 N2N2 Vol.%0-80-100,2-1,0 O2O2 Vol.%0-20-0,50,1-0,3 CO 2 Vol.%0,1-60,5-40,005 H2OH2Oppm500,5-350

8 Conventional production of LNG from natural gas

9 Modern LNG-Technology Pre-Cooling Process for Biogas (DGE GmbH) H 2 O Removal

10 Decentralized LNG-Production from Biogas First container plant for 600 Nm 3 /h biogas. The LNG-Container shall stand beside.

11 Obermeilen

12 New Dimension for Automobile Engineering

13 50% savings in compression performance LNG has 2.6-fold higher density compared to compressed natural gas 2.6-fold mileage Conclusion: Change at the assessment of alternative fuels is overdue! One industrial sector cannot face that alone, it must be carried out industry-wide and cross national! Decentralized LNG-Production from Biogas

14 Thank you for your Attention


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