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LIBRIS Formathandbok  (Information om MARC21)
FältnamnIndikatorerMetadata
00007003nam a2201213 4500
001oai:DiVA.org:lnu-78110
003SwePub
008181001s2018 | |||||||||||000 ||eng|
020 a 9781910154434q electronic
024a https://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-781102 URI
040 a (SwePub)lnu
041 a engb eng
042 9 SwePub
072 7a ref2 swepub-contenttype
072 7a rap2 swepub-publicationtype
100a Biollaz, S.u PSI4 aut
2451 0a Gas analysis in gasification of biomass and waste :b Guideline report: Document 2 - Factsheets on gas analysis techniques
264 1b International Energy Agency (IEA),c 2018
300 a 141 s.
338 a print2 rdacarrier
520 a Gasification is generally acknowledged as one of the technologies that will enable the large-scale production of biofuels and chemicals from biomass and waste. One of the main technical challenges associated to the deployment of biomass gasification as a commercial technology is the cleaning and upgrading of the product gas. The contaminants of product gas from biomass/waste gasification include dust, tars, alkali metals, BTX, sulphur-, nitrogen- and chlorine compounds, and heavy metals. Proper measurement of the components and contaminants of the product gas is essential for the monitoring of gasification-based plants (efficiency, product quality, by-products), as well as for the proper design of the downstream gas cleaning train (for example, scrubbers, sorbents, etc.). The deployment and implementation of inexpensive yet accurate gas analysis techniques to monitor the fate of gas contaminants might play an important role in the commercialization of biomass and waste gasification processes.This special report commissioned by the IEA Bioenergy Task 33 group compiles a representative part of the extensive work developed in the last years by relevant actors in the field of gas analysis applied to (biomass and waste) gasification. The approach of this report has been based on the creation of a team of contributing partners who have supplied material to the report. This networking approach has been complemented with a literature review. This guideline report would like to become a platform for the reinforcement of the network of partners working on the development and application of gas analysis, thus fostering collaboration and exchange of knowledge. As such, this report should become a living document which incorporates in future coming progress and developments in the field.
650 7a TEKNIK OCH TEKNOLOGIERx Industriell bioteknikx Bioenergi0 (SwePub)209042 hsv//swe
650 7a ENGINEERING AND TECHNOLOGYx Industrial Biotechnologyx Bioenergy0 (SwePub)209042 hsv//eng
650 7a TEKNIK OCH TEKNOLOGIERx Kemiteknikx Kemiska processer0 (SwePub)204012 hsv//swe
650 7a ENGINEERING AND TECHNOLOGYx Chemical Engineeringx Chemical Process Engineering0 (SwePub)204012 hsv//eng
653 a biomass
653 a gasification
653 a gas analysis
653 a aerosol
653 a particulate matter
653 a Bioenergiteknik/Energi- och Miljöteknik
653 a Bioenergy Technology
700a Calbry-Muzyka, A.u PSI4 aut
700a Rodriguez, S.u PSI4 aut
700a Sárossy, Z.u DTU4 aut
700a Ravenni, G.u DTU4 aut
700a Fateev, A.u DTU4 aut
700a Seiser, R.u UCSD4 aut
700a Eberhard, M.u KIT4 aut
700a Kolb, T.u KIT4 aut
700a Heikkinen, N.u VTT4 aut
700a Reinikainen, M.u VTT4 aut
700a Brown, R.C.u Iowa State University, USA4 aut
700a Johnston, P.A.u Iowa State University, USA4 aut
700a Nau, P.u DLR4 aut
700a Geigle, K.P.u DLR4 aut
700a Kutne, P.u DLR4 aut
700a Işık-Gülsaç, I.u TÜBİTAK Mam4 aut
700a Aksoy, P.u TÜBİTAK Mam4 aut
700a Çetin, Y.u TÜBİTAK Mam4 aut
700a Sarıoğlan, A.u TÜBİTAK Mam4 aut
700a Tsekos, C.u Delft University of Technology, Netherlands4 aut
700a de Jong, W.u Delft University of Technology, Netherlands4 aut
700a Benedikt, F.u TU Wien, Austria4 aut
700a Hofbauer, H.u TU Wien, Austria4 aut
700a Waldheim, L.u SFC4 aut
700a Engvall, K.u KTH Royal instute of technology, Sweden4 aut
700a Neubauer, Y.u Technical University of Berlin, Germany4 aut
700a Funcia, I.u CENER4 aut
700a Gil, J.u CENER4 aut
700a del Campo, I.u CENER4 aut
700a Wilson, I.u University of Glasgow, UK4 aut
700a Khan, Z.u University of Glasgow, UK4 aut
700a Gall, D.u Gothenburg University, Sweden4 aut
700a Gómez-Barea, A.u University of Seville, Spain4 aut
700a Schmidt, F.u Umeå University, Sweden4 aut
700a Lin, Leteng,d 1980-u Linnéuniversitetet,Institutionen för byggd miljö och energiteknik (BET)4 aut0 (Swepub:lnu)llebie
700a Strand, Michaelu Linnéuniversitetet,Institutionen för byggd miljö och energiteknik (BET)4 aut0 (Swepub:lnu)mstbie
700a Anca-Couce, A.u Graz University of Technology, Austria4 aut
700a von Berg, L.u Graz University of Technology, Austria4 aut
700a Larsson, A.u GoBiGas4 aut
700a Sánchez Hervás, J.M.u CIEMAT4 aut
700a van Egmond, B.F.u ECN part of TNO4 aut
700a Geusebroek, M.u ECN part of TNO4 aut
700a Toonen, A.u ECN part of TNO4 aut
700a Kuipers, J.u ECN part of TNO4 aut
700a Cieplik, M.u ECN part of TNO4 aut
700a Boymans, E.H.u ECN part of TNO4 aut
700a Grootjes, A.J.u ECN part of TNO4 aut
700a Fischer, F.u TUM4 aut
700a Schmid, M.u University of Stuttgart, Germany4 aut
700a Maric, J.u Chalmers University of Technology, Sweden4 aut
700a Defoort, F.u CEA4 aut
700a Ravel, S.u CEA4 aut
700a Thiery, S.u CEA4 aut
700a Balland, M.u CEA4 aut
700a Kienzl, N.u Bioenergy 2020+4 aut
700a Martini, S.u Bioenergy 2020+4 aut
700a Loipersböck, J.u Bioenergy 2020+4 aut
700a Basset, E.u ENGIE Lab CRIGEN4 aut
700a Barba, A.u ENGIE Lab CRIGEN4 aut
700a Willeboer, W.u RWE-Essent4 aut
700a Venderbosch, R.u BTG4 aut
700a Carpenter, D.u NREL4 aut
700a Pinto, F.u LNEG4 aut
700a Barisano, D.u ENEA4 aut
700a Baratieri, M.u UNIBZ4 aut
700a Ballesteros, R.u UCLM4 aut
700a Aranda Almansa, G.u ECN part of TNO4 edt
700a Mourao Vilela, C.u ECN part of TNO4 edt
700a Vreugdenhil, B.J.u ECN part of TNO4 edt
710a PSIb DTU4 org
856u https://www.ieabioenergy.com/wp-content/uploads/2018/09/Gas_analysis_report_II-1.pdfy Full text
8564 8u https://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-78110

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