Biodiesel (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Biodiesel" in German language version.

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  • X. Lang: Preparation and characterization of bio-diesels from various bio-oils. In: Bioresource Technology. 80, S. 53–62, doi:10.1016/S0960-8524(01)00051-7.
  • Jörg Adolf, Horst Fehrenbach, Uwe Fritsche, Dorothea Liebig: Welche Rolle können Biokraftstoffe im Verkehrssektor spielen?. In: Wirtschaftsdienst. 93, 2013, S. 124–131, doi:10.1007/s10273-013-1496-2.
  • Patrick Duffy: XXV. On the constitution of stearine. In: Quarterly Journal of the Chemical Society of London. 5, 1853, S. 303, doi:10.1039/QJ8530500303
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  • Gabriella P. A. G. Pousa, André L. F. Santos, Paulo A. Z. Suarez: History and policy of biodiesel in Brazil. In: Energy Policy. 35, 2007, S. 5393–5398, doi:10.1016/j.enpol.2007.05.010.
  • Jon Van Gerpen: Biodiesel processing and production. In: Fuel Processing Technology. 86, 2005, S. 1097–1107, doi:10.1016/j.fuproc.2004.11.005.
  • J.M. Dias, J.M. Aranjo, J.F. Costa, M.C.M. Alvim-Ferraz, M.F. Almeida: Biodiesel production from raw castor oil. In: Energy. 53, 2013, S. 58–66, doi:10.1016/j.energy.2013.02.018.
  • Cheng-Yuan Yang, Zhen Fang, B. o. Li, Yun-feng Long: Review and prospects of Jatropha biodiesel industry in China. In: Renewable and Sustainable Energy Reviews. 16, 2012, S. 2178–2190, doi:10.1016/j.rser.2012.01.043.
  • Samir Chikkali, Stefan Mecking: Raffination von Pflanzenölen für die Chemie durch Olefinmetathese. In: Angewandte Chemie. 2012, S. 5902–5909, doi:10.1002/ange.201107645.
  • Srividya Ayalasomayajula, Ramalingam Subramaniam, August Gallo, Stephen Dufreche, Mark Zappi, Rakesh Bajpai: Potential of Alligator Fat as Source of Lipids for Biodiesel Production. In: Industrial & Engineering Chemistry Research. 51, 2012, S. 2166–2169, doi:10.1021/ie201000s.
  • Metin Gürü, Atilla Koca, Özer Can, Can Cinar, Fatih Sahin: Biodiesel production from waste chicken fat based sources and evaluation with Mg based additive in a diesel engine. In: Renewable Energy. 35, 2010, S. 637–643, doi:10.1016/j.renene.2009.08.011.
  • Ayhan Demirbas, M. Fatih Demirbas: Importance of algae oil as a source of biodiesel, In: Energy Conversion and Management, 52, 1, 2011, S. 163–170, doi:10.1016/j.enconman.2010.06.055
  • Rowena E. Montenegro, Michael A. R. Meier: Lowering the boiling point curve of biodiesel by cross-metathesis. In: European Journal of Lipid Science and Technology. 114, 2012, S. 55–62, doi:10.1002/ejlt.201100026.
  • O. Meyer, P. Adryan, J. Riedel, F. Roessner, R. A. Rakoczy, R. W. Fischer: Nachhaltiger Ansatz zur Biodieselproduktion unter Verwendung heterogener Katalysatoren. In: Chemie Ingenieur Technik. 82, 2010, S. 1251–1255, doi:10.1002/cite.201000046.
  • M.E. Borges, L. Diaz: Recent developments on heterogeneous catalysts for biodiesel production by oil esterification and transesterification reactions: A review. In: Renewable and Sustainable Energy Reviews. 16, 2012, S. 2839–2849, doi:10.1016/j.rser.2012.01.071.
  • Jan C. Kuschnerow, Mandy Wesche, Stephan Scholl: Ökobilanzielle Bewertung des Einsatzes rezyklierter ionischer Flüssigkeiten als Umesterungskatalysatoren. In: Chemie Ingenieur Technik. 83, 2011, S. 1582–1589, doi:10.1002/cite.201100097.
  • Kunchana Bunyakiat, Sukunya Makmee, Ruengwit Sawangkeaw, Somkiat Ngamprasertsith: Continuous Production of Biodiesel via Transesterification from Vegetable Oils in Supercritical Methanol. In: Energy & Fuels. 20, 2006, S. 812–817, doi:10.1021/ef050329b.
  • S. Saka, D. Kusdiana: Biodiesel fuel from rapeseed oil as prepared in supercritical methanol. In: Fuel. 80, 2001, S. 225–231, doi:10.1016/S0016-2361(00)00083-1.
  • Ali Sabri Badday, Ahmad Zuhairi Abdullah, Keat Teong Lee, Muataz Sh. Khayoon: Intensification of biodiesel production via ultrasonic-assisted process: A critical review on fundamentals and recent development. In: Renewable and Sustainable Energy Reviews. 16, 2012, S. 4574–4587, doi:10.1016/j.rser.2012.04.057.
  • Sarah Huffer, Christine M. Roche, Harvey W. Blanch, Douglas S. Clark: Escherichia coli for biofuel production: bridging the gap from promise to practice. In: Trends in Biotechnology. 30, 2012, S. 538–545, doi:10.1016/j.tibtech.2012.07.002.
  • Xin Meng, Jianming Yang, Xin Xu, Lei Zhang, Qingjuan Nie, M. o. Xian: Biodiesel production from oleaginous microorganisms. In: Renewable Energy. 34, 2009, S. 1–5, doi:10.1016/j.renene.2008.04.014.
  • Stefan Pelzer: Maßgeschneiderte Mikroorganismen. In: Biologie in unserer Zeit. 42, 2012, S. 98–106, doi:10.1002/biuz.201210472.
  • Miroslawa Szczesna Antczak, Aneta Kubiak, Tadeusz Antczak, Stanislaw Bielecki: Enzymatic biodiesel synthesis – Key factors affecting efficiency of the process. In: Renewable Energy. 34, 2009, S. 1185–1194, doi:10.1016/j.renene.2008.11.013.
  • Gerhard Knothe: Analyzing biodiesel: standards and other methods. In: Journal of the American Oil Chemists' Society. 83, 2006, S. 823–833, doi:10.1007/s11746-006-5033-y.
  • J. Iqbal, W. A. Carney u. a.: Metals Determination in Biodiesel (B100) by ICP-OES with Microwave Assisted Acid Digestion. In: The Open Analytical Chemistry Journal Band 4, 2010, S. 18–26. doi:10.2174/1874065001004010018.
  • Stanislav Pehan, Marta Svoljak Jerman, Marko Kegl, Breda Kegl: Biodiesel influence on tribology characteristics of a diesel engine. In: Fuel. 88, 2009, S. 970–979, doi:10.1016/j.fuel.2008.11.027.
  • Hans-Walter Knuth, Hendrik Stein, Thomas Wilharm, Markus Winkler: Elementbelastungen von Abgasnachbehandlungssystemen durch Biodiesel, In: MTZ – Motortechnische Zeitschrift, 73, 6, 2012, S. 470–475, doi:10.1007/s35146-012-0362-x.
  • Christopher J. Chuck, Chris D. Bannister, J. Gary Hawley, Matthew G. Davidson: Spectroscopic sensor techniques applicable to real-time biodiesel determination. In: Fuel. 89, 2010, S. 457–461, doi:10.1016/j.fuel.2009.09.027.
  • J. E. De Souza, M. D. Scherer, J. A. S. Caceres, A.R.L. Caires, J.-C. M´Peko: A close dielectric spectroscopic analysis of diesel/biodiesel blends and potential dielectric approaches for biodiesel content assessment. In: Fuel. 105, 2013, S. 705–710, doi:10.1016/j.fuel.2012.09.032.
  • Leonas Povilas Lingaitis, Saugirdas Pukalskas: The economic effect of using biological diesel oil on railway transport. In: Transport. 23, 2008, S. 287–290, doi:10.3846/1648-4142.2008.23.287-290.
  • Erik Simonson: THE BIG PICTURE: Around the World in 65 Days. In: IEEE Spectrum. 44, 2007, S. 18–19, doi:10.1109/MSPEC.2007.273032.
  • D. Wardle: Global sale of green air travel supported using biodiesel. In: Renewable and Sustainable Energy Reviews. 7, 2003, S. 1–64, doi:10.1016/S1364-0321(03)00002-9.
  • Patrick Lamers, Carlo Hamelinck, Martin Junginger, Andre Faaij: International bioenergy trade – A review of past developments in the liquid biofuel market. In: Renewable and Sustainable Energy Reviews. 15, 2011, S. 2655–2676, doi:10.1016/j.rser.2011.01.022.
  • Gislaine S. Silva, Eric L.S. Marques, J. C. T. Dias, Ivon P. Lobo, Eduardo Gross, Martin Brendel, Rosenira S. da Cruz, Rachel P. Rezende: Biodegradability of soy biodiesel in microcosm experiments using soil from the Atlantic Rain Forest. In: Applied Soil Ecology. 55, 2012, S. 27–35, doi:10.1016/j.apsoil.2012.01.001.
  • Francielle Bücker, Naiara Aguiar Santestevan, Luiz Fernando Roesch, Rodrigo J. Seminotti Jacques, Maria do Carmo Ruaro Peralba, Flávio Anastácio de Oliveira Camargo, Fátima Menezes Bento, Impact of biodiesel on biodeterioration of stored Brazilian diesel oil, In: International Biodeterioration & Biodegradation, Volume 65, Issue 1, January 2011, S. 172–178, doi:10.1016/j.ibiod.2010.09.008
  • S. Kent Hoekman, Curtis Robbins: Review of the effects of biodiesel on NOx emissions. In: Fuel Processing Technology. 96, 2012, S. 237–249, doi:10.1016/j.fuproc.2011.12.036.
  • Kento T. Magara-Gomez, Michael R. Olson, Tomoaki Okuda, Kenneth A. Walz, James J. Schauer: Sensitivity of hazardous air pollutant emissions to the combustion of blends of petroleum diesel and biodiesel fuel. In: Atmospheric Environment. 50, 2012, S. 307–313, doi:10.1016/j.atmosenv.2011.12.007.
  • O. Schröder, A. Munack, J. Schaak, C. Pabst, L. Schmidt, J. Bünger, J. Krahl: Emissions from diesel engines using fatty acid methyl esters from different vegetable oils as blends and pure fuel. In: Journal of Physics: Conference Series. 364, 2012, S. 012017, doi:10.1088/1742-6596/364/1/012017.
  • Chiung-Yu Peng, Cheng-Hang Lan, Chun-Yuh Yang: Effects of biodiesel blend fuel on volatile organic compound (VOC) emissions from diesel engine exhaust. In: Biomass and Bioenergy, 36, 2012, S 96–106, doi:10.1016/j.biombioe.2011.10.016.
  • Niraj Kumar, Varun, Sant Ram Chauhan: Performance and emission characteristics of biodiesel from different origins: A review. In: Renewable and Sustainable Energy Reviews. 21, 2013, S. 633–658, doi:10.1016/j.rser.2013.01.006.
  • Marek Tatur, Harsha Nanjundaswamy, Dean Tomazic, Matthew Thornton, Andreas Kolbeck, Matthias Lamping: Erhöhter Biodieselanteil im Kraftstoff – Auswirkung auf Motoren und Abgasnachbehandlungssysteme In: MTZ – Motortechnische Zeitschrift, 70, 2009, S. 38–49, doi:10.1007/BF03225456
  • Walter Zegada-Lizarazu, Andrea Monti, Energy crops in rotation. A review. In: Biomass and Bioenergy, Volume 35, Issue 1, January 2011, S. 12–25, doi:10.1016/j.biombioe.2010.08.001.
  • Mario Pagliaro, Rosaria Ciriminna, Hiroshi Kimura, Michele Rossi, Cristina Della Pina: From Glycerol to Value-Added Products. In: Angewandte Chemie International Edition. 46, 2007, S. 4434–4440, doi:10.1002/anie.200604694.
  • Dietmar Steverding: Mikrobielle Herstellung von 1,3-Propandiol. Fermentative Biotechnologie. In: Chemie in unserer Zeit. 44, 2010, S. 384–389, doi:10.1002/ciuz.201000531.
  • A. R. Ravishankara, J. S. Daniel, R. W. Portmann: Nitrous Oxide (N2O): The Dominant Ozone-Depleting Substance Emitted in the 21st Century. In: Science. 326, 2009, S. 123–125, doi:10.1126/science.1176985.
  • Paul J. Crutzen u. a.: N2O Release from Agro-biofuel Production Negates Global Warming Reduction by Replacing Fossil Fuels. In: Atmos. Chem. Phys. 8, 2008, doi:10.5194/acp-8-389-2008.
  • Melese Tesfaye Firrisa, Iris Duren, Alexey Voinov: Energy efficiency for rapeseed biodiesel production in different farming systems. In: Energy Efficiency. doi:10.1007/s12053-013-9201-2.
  • Lian Pin Koh, David S. Wilcove: Is oil palm agriculture really destroying tropical biodiversity?. In: Conservation Letters. 1, 2008, S. 60–64, doi:10.1111/j.1755-263X.2008.00011.x.
  • Wouter M. J. Achten, Erik Mathijs, Louis Verchot, Virendra P. Singh, Raf Aerts, Bart Muys: Jatropha biodiesel fueling sustainability?. In: Biofuels, Bioproducts and Biorefining. 1, 2007, S. 283–291, doi:10.1002/bbb.39.
  • Florian Humpenöder, Rüdiger Schaldach, Yalda Cikovani, Liselotte Schebek: Effects of land-use change on the carbon balance of 1st generation biofuels: An analysis for the European Union combining spatial modeling and LCA. In: Biomass and Bioenergy. 56, 2013, S. 166–178, doi:10.1016/j.biombioe.2013.05.003.
  • Amber Broch, S. Kent Hoekman, Stefan Unnasch: A review of variability in indirect land use change assessment and modeling in biofuel policy. In: Environmental Science & Policy. 29, 2013, S. 147–157, doi:10.1016/j.envsci.2013.02.002.
  • R. Poon, V. E. Valli u. a.: Short-term oral toxicity of three biodiesels and an ultra-low sulfur diesel in male rats. In: Food and Chemical Toxicology. Band 47, Nummer 7, Juli 2009, S. 1416–1424, doi:10.1016/j.fct.2009.03.022. PMID 19328220.

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  • Allgemeine Verwaltungsvorschrift zur Änderung der Verwaltungsvorschrift wassergefährdende Stoffe. In: Bundesanzeiger. Band 57, 142a, 30. Juli 2005 (umweltbundesamt.de [PDF]).

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