SET-PLAN IMPLEMENTATION
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1 SET-PLAN IMPLEMENTATION The Steering Group of the SET-Plan in its last meeting on October 28 th, 2010 agreed to speed-up the execution of activities of the Implementation Plans(IPs) of the European Industrial Initiatives (EIIs). It was decided to collectively identify the possibilities for launching joint actions between Member States and/or Member States and the European Commission. The mapping exercise carried out through this questionnaire builds upon this decision of the Steering Group. It aims to identify topics for leveraging best ongoing efforts with complementary joint actions, as prioritized by the Implementation Plans. In this phase the mapping will focus on projects and activities with a total budget higher than 0.5 M. We trust that you also consider the success of this exercise important for the immediate implementation of the SET-Plan. MAPPING OF PROJECTS, ACTIVITIES, RESOURCES AND INVESTMENTS To which EII(s) is your project, activity, resource or investment relevant? (multiple choices are possible) WIND SOLAR GRIDS CCS NUCLEAR BIOENERGY A. PROJECTS AND ACTIVITIES GENERAL INFORMATION Name of project: The strategic program of the National (Polish) Centre for Research and Development: Advanced Technologies for Energy Generation ; Task 4. Elaboration of Integrated Technologies for the Production of Fuels and Energy from Biomass as well as from Agricultural and other Waste Materials. Rev. 1 January 2011 Page 1 of 7
2 Acronym: Give project acronym, if applicable Location: Applicable only for demo/pilot project; enter specific location(s) and Member State(s) Project partners: List project partners; name coordinator first. For European & international projects mention the country affiliation of each partner Project website: Contact details: Name, affiliation and contact details of the project coordinator - The Szewalski Institute of Fluid Flow Machinery, Polish Academy of Sciences in Gdańsk - Heat and Power Station in Żychlin - Biomass processing Plant in Szepietowo - The Szewalski Institute of Fluid-Flow Machinery Polish Academy of Sciences, - ENERGA Group, - Gdańsk University of Technology, - University of Warmia and Mazury - Institute for Chemical Processing of Coal, - Silesian University of Technology, - Institute of Power Engineering, - Tadeusz Kościuszko Cracow University of Technology prof. dr hab. inż. Jan Kiciński, The Szewalski Institute of Fluid-Flow Machinery Polish Academy of Sciences, Tel: kic@imp.gda.pl Start date: mm-yyyy Duration: in months 60 SHORT PROJECT DESCRIPTION Provide a short abstract of max. 100 words The project aims at elaboration of integrated technologies for the production of fuels, electric energy and heat from biomass, agricultural waste and other wastes. Research works carried out within the project concentrate on: - biomass combustion and steam/orc cogeneration, - high-temperature gasification and syngas cogeneration, - fermentation and biogas cogeneration, - alcohol fermentation, - fuel cells and hydrogen/biogas cogeneration. In the course of the project, a number of demo/pilot installations will be built to illustrate the energy and economic efficiency of the applied technologies and prove their reliability, availability and easy Rev. 1 January 2011 Page 2 of 7
3 maintenance. Technical documentation for the series of distributed energy systems will also be elaborated. PROJECT GOALS & OBJECTIVES Goals: Indicate main qualitative goals Objectives: Indicate quantitative objectives (similar to KPIs of the Implementation Plans of the EIIs). Also indicate intermediate milestones where applicable. Assumed state-of-the-art: Describe quantitatively the state-of-the-art that the project objectives are based upon R&D of CHP technologies based on biomass and waste by using various methods, including gasification, pyrolises and fermentation as well as fuel cells Development of effective ways of liquid fuel production from biomass and agricultural wastes materials 1. Development of 12 pilot and demonstration installations of distributed co-generation system, including: MWe CHP(ORC) plant in Zychlin MWe CHP (syngas) plant in Szepietowo MWe CHP (combined biogas/orc) plant in Gdańsk - Biogas enrichment installation - Syngas cleaning installation - 2 Micro biogas installation - Micro gasification installation - Lignocelluloses bio-refinery - Microwave plasma installation for methane reforming (10 kg H 2 / h) - Micro-CHP system with 2.5kW SOFC fuel cell Implementation of distributed cogeneration systems renewable energy systems is gaining momentum in Poland. One considerable source of renewable energy is biomass. Effective utilisation of biomass for fuel and energy production requires increased effort in research of technologies for biomass processing and cogeneration based on biomass sources. There is a growing interest in investigations of installations for biomass combustion, fermentation and high temperature gasification as well as for biogas enrichment with increasing tendency to separate biogas production and utilisation sites. The innovative procedure of biogas purification and enrichment based on SFR technology is developed. Rev. 1 January 2011 Page 3 of 7
4 Achievements so far: If intermediate results are available, please indicate the current achievements (qualitative and/or quantitative) The syngas purification procedures are also worked out. The other innovative systems of interest are lignocelluloses bio-refinery, microwave plasma installation for methane reforming or micro-chp system with SOFC fuel cell. All systems are now under construction. FUNDING & BUDGET Funding programme: Give the name of funding programme Funding public entity: Indicate which public entity is in charge of /manages the programme The strategic program of the National (Polish) Centre for Research and Development National (Polish) Centre for Research and Development Total (public & private) project budget ( ): ~ 25 mln Public funding ( ): Total effort (person months) ~ 15 mln ~ man-month DISSEMINATION OF PROJECT RESULTS Publications, presentations in conferences and workshops, and other dissemination means: Give highlights only - A.Cenian, J.Gołaszewski and T. Noch, editors, Eco-energetics biogas and syngas: Technologies, Legal Framework, Policy and Economics in Baltic Sea Region, Wydawnictwo Gdańskiej Wyższej Szkoły Administracji, Gdańsk 2011, ISBN , pp Piętak A., Wierzbicki S., Imiołek M., Mikulski M.: Dwupaliwowy silnik o zapłonie samoczynnym do zasilania biopaliwowych agregatów prądotwórczych, Journal of KONES, vol. 16, No Piętak, A., Chraplewska, N., Duda K., Possibilities of supplying internal combustion engines by wood gas, Journal of KONES Powertrain and Transport, Vol. 17, Imiołek, M., Piętak, A., Wierzbicki, S., The effect of fuel injection parameters on the combustion process in a self-ignition engine, Journal of KONES Powertrain and transport, Vol. 17, Imiołek, M., Piętak, A., Wierzbicki, S., The effect of fuel injection parameters on the combustion process in a self-ignition engine, Journal of KONES Powertrain and Rev. 1 January 2011 Page 4 of 7
5 Transport, Vol. 17, No. 3, Lampart P., Jędrzejewski Ł., Investigations of aerodynamics of bladeless microturbines, J. Theoret. Appl. Mech, Vol. 49, No 2, 2011, pp Lampart P., Hirt Ł., Complex multidisciplinary optimisation of turbine blading systems, Proc. Conference of Fluid Mechanics, KKMP2010, Poznań, TOWARDS COMMERCIALISATION Indicate (new) products and/or services expected from the project. Are new business models required for commercialisation of the project results? Highlight expected commercialisation benefits, e.g. patents, spin-offs, new products, business partnerships Among the expected products of the project are: - complete advanced technologies for the production of fuels and energy from biomass and waste, - documentation of a series of CHP and micro CHP plants (ORC, biogas, syngas, combined), - demo/pilot CHP and micro CHP plants (ORC, biogas, syngas, combined), including: MWe CHP(ORC) plant in Zychlin MWe CHP (syngas) plant in Szepietowo MWe CHP (combined biogas/orc) plant in Gdańsk - 2 Micro biogas installation - Micro-CHP system with 2.5kW SOFC fuel cell - biomass-to-fuel installations, including:, - Biogas enrichment installation, - Syngas cleaning installation, - Micro gasification installation, - Lignocelluloses bio-refinery, - Microwave plasma installation for methane reforming. SYNERGIES WITH THE IMPLEMENTATION PLANS OF THE EUROPEAN INDUSTRIAL INITIATIVES NETWORKING KNOWLEDGE SHARING Contribution to/relevance with the IPs: To your opinion, to which activities of the IPs of the EIIs is this project related to? Indicate contributions/ complements. Please note that reference here is made to the activities of the IPs as published in activities/implementation-plans Potential synergies with other projects and activities: Can you identify any other project(s) in your country, another MS or at European level that could be synergetic with this project? Model agroenergy complexes as an example of distributed cogeneration based on local renewable energy sources ( Public Energy Alternatives PEA ( Rev. 1 January 2011 Page 5 of 7
6 Baltic Eco-Energy Cluster ( Networking: Would you be willing to share results with the projects identified above? Indicate willingness to networking and also potential conditions Yes Knowledge sharing: Would the abovementioned Networking necessitates a formal knowledge sharing agreement? To your view would this be the preferred route? No, yes Future steps: Are there any follow-up activities considered after the completion of your project? Is there a need to scale up activities in this topic at European level? Yes. The applications to various EU projects on biomass and CHP technologies have been prepared. B. RESOURCES AND INVESTMENTS RESOURCES AND INVESTMENTS Describe in short any RD&D infrastructures that your project relies on. Are these available or do they need to be developed? RD&D infrastructure used at Institute of Fluid Flow Machinery and their co-workers in this project consists of the following components: - Micro CHP(ORC) installation and laboratory, - Piston engine and gas turbine installations, - Biomass gasification installations, - Laser and plasma diagnostics laboratory. If these are to be developed, what is the corresponding investment required? What is the allocated budget ( ) for this investment in your project? The above mentioned installations and laboratories are being developed in the course of the project. The required investment would be of the order of 4 mln The allocated budget within the project is ~ 3 mln Rev. 1 January 2011 Page 6 of 7
7 OTHER INFORMATION Date: when the questionnaire was completed Information provider: Give the name and affiliation of the contact person for the questionnaire. If you are the project coordinator, check the box project coordinator Prof. Jan Kiciński, prof. IMP PAN Adam Cenian, prof. IMP PAN Piotr Lampart, prof. IMP PAN Please send the completed form to Thank you for your cooperation! Rev. 1 January 2011 Page 7 of 7
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