[{"citation":{"ama":"Klepp GH, Broeker T, Schneidewind N. <i>Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems</i>. (Kurt E, ed.). Erol Kurt; 2024.","ieee":"G. H. Klepp, T. Broeker, and N. Schneidewind, <i>Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems</i>. Erol Kurt, 2024.","din1505-2-1":"<span style=\"font-variant:small-caps;\">Klepp, Georg Heinrich</span> ; <span style=\"font-variant:small-caps;\">Broeker, Timo</span> ; <span style=\"font-variant:small-caps;\">Schneidewind, Niko</span> ; <span style=\"font-variant:small-caps;\">Kurt, E.</span> (Hrsg.): <i>Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems</i> : Erol Kurt, 2024","chicago-de":"Klepp, Georg Heinrich, Timo Broeker und Niko Schneidewind. 2024. <i>Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems</i>. Hg. von Erol Kurt. <i>Proceedings of the 12th European Conference on Renewable Energy Systems (ECRES 2024)</i>. Erol Kurt.","short":"G.H. Klepp, T. Broeker, N. Schneidewind, Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems, Erol Kurt, 2024.","ufg":"<b>Klepp, Georg Heinrich/Broeker, Timo/Schneidewind, Niko</b>: Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems, hg. von Kurt, Erol, o. O. 2024.","havard":"G.H. Klepp, T. Broeker, N. Schneidewind, Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems, Erol Kurt, 2024.","bjps":"<b>Klepp GH, Broeker T and Schneidewind N</b> (2024) <i>Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems</i>, Kurt E (ed.). Erol Kurt.","mla":"Klepp, Georg Heinrich, et al. “Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems.” <i>Proceedings of the 12th European Conference on Renewable Energy Systems (ECRES 2024)</i>, edited by Erol Kurt, Erol Kurt, 2024.","van":"Klepp GH, Broeker T, Schneidewind N. Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems. Kurt E, editor. Proceedings of the 12th European Conference on Renewable Energy Systems (ECRES 2024). Erol Kurt; 2024.","chicago":"Klepp, Georg Heinrich, Timo Broeker, and Niko Schneidewind. <i>Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems</i>. Edited by Erol Kurt. <i>Proceedings of the 12th European Conference on Renewable Energy Systems (ECRES 2024)</i>. Erol Kurt, 2024.","apa":"Klepp, G. H., Broeker, T., &#38; Schneidewind, N. (2024). Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems. In E. Kurt (Ed.), <i>Proceedings of the 12th European Conference on Renewable Energy Systems (ECRES 2024)</i>. Erol Kurt."},"publication_status":"published","title":"Evaluation of The Techno-Economic Aspects and Sustainability of Integrated  Renewable Energy Systems","status":"public","publisher":"Erol Kurt","author":[{"id":"49011","full_name":"Klepp, Georg Heinrich","first_name":"Georg Heinrich","last_name":"Klepp"},{"last_name":"Broeker","first_name":"Timo","id":"43927","full_name":"Broeker, Timo"},{"first_name":"Niko","last_name":"Schneidewind","full_name":"Schneidewind, Niko","id":"85120"}],"year":"2024","department":[{"_id":"DEP6017"}],"conference":{"name":"12th European Conference on Renewable Energy Systems (ECRES 2024)","location":"Palma de Mallorca, Spain","end_date":"2024-05-17","start_date":"2024-05-16"},"user_id":"83781","date_updated":"2025-01-21T15:23:14Z","editor":[{"first_name":"Erol","last_name":"Kurt","full_name":"Kurt, Erol"}],"publication":"Proceedings of the 12th European Conference on Renewable Energy Systems (ECRES 2024)","publication_identifier":{"unknown":["978-605-70842-3-1"]},"type":"conference_editor_article","date_created":"2024-07-31T14:31:30Z","language":[{"iso":"eng"}],"_id":"11809"},{"date_created":"2019-07-30T09:33:08Z","publication_identifier":{"issn":["2311-5637"]},"publication":"Fermentation","date_updated":"2024-05-17T11:23:55Z","oa":"1","language":[{"iso":"eng"}],"keyword":["biological methanation","CSTR","Methanothermobacter marburgensis","methane","carbon dioxide","dinitrogen","hydrogen","power-to-gas"],"title":"Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis","citation":{"apa":"Hoffarth, M. P., Broeker, T., &#38; Schneider, J. (2019). Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis. <i>Fermentation</i>, <i>5</i>(3), Article 56. <a href=\"https://doi.org/10.3390/fermentation5030056\">https://doi.org/10.3390/fermentation5030056</a>","chicago":"Hoffarth, Marc Philippe, Timo Broeker, and Jan Schneider. “Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter Marburgensis.” <i>Fermentation</i> 5, no. 3 (2019). <a href=\"https://doi.org/10.3390/fermentation5030056\">https://doi.org/10.3390/fermentation5030056</a>.","van":"Hoffarth MP, Broeker T, Schneider J. Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis. Fermentation. 2019;5(3).","ufg":"<b>Hoffarth, Marc Philippe/Broeker, Timo/Schneider, Jan</b>: Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis, in: <i>Fermentation</i> 5 (2019), H. 3.","mla":"Hoffarth, Marc Philippe, et al. “Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter Marburgensis.” <i>Fermentation</i>, vol. 5, no. 3, 56, 2019, <a href=\"https://doi.org/10.3390/fermentation5030056\">https://doi.org/10.3390/fermentation5030056</a>.","bjps":"<b>Hoffarth MP, Broeker T and Schneider J</b> (2019) Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter Marburgensis. <i>Fermentation</i> <b>5</b>.","havard":"M.P. Hoffarth, T. Broeker, J. Schneider, Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis, Fermentation. 5 (2019).","short":"M.P. Hoffarth, T. Broeker, J. Schneider, Fermentation 5 (2019).","chicago-de":"Hoffarth, Marc Philippe, Timo Broeker und Jan Schneider. 2019. Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis. <i>Fermentation</i> 5, Nr. 3. doi:<a href=\"https://doi.org/10.3390/fermentation5030056\">10.3390/fermentation5030056</a>, .","din1505-2-1":"<span style=\"font-variant:small-caps;\">Hoffarth, Marc Philippe</span> ; <span style=\"font-variant:small-caps;\">Broeker, Timo</span> ; <span style=\"font-variant:small-caps;\">Schneider, Jan</span>: Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis. In: <i>Fermentation</i> Bd. 5, MDPI  (2019), Nr. 3","ieee":"M. P. Hoffarth, T. Broeker, and J. Schneider, “Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis,” <i>Fermentation</i>, vol. 5, no. 3, Art. no. 56, 2019, doi: <a href=\"https://doi.org/10.3390/fermentation5030056\">10.3390/fermentation5030056</a>.","ama":"Hoffarth MP, Broeker T, Schneider J. Effect of N2 on Biological Methanation in a Continuous Stirred-Tank Reactor with Methanothermobacter marburgensis. <i>Fermentation</i>. 2019;5(3). doi:<a href=\"https://doi.org/10.3390/fermentation5030056\">10.3390/fermentation5030056</a>"},"volume":5,"author":[{"full_name":"Hoffarth, Marc Philippe","first_name":"Marc Philippe","id":"42198","last_name":"Hoffarth"},{"first_name":"Timo","last_name":"Broeker","full_name":"Broeker, Timo","id":"43927"},{"first_name":"Jan","full_name":"Schneider, Jan","last_name":"Schneider","id":"13209","orcid":"0000-0001-6401-8873"}],"main_file_link":[{"url":"https://www.mdpi.com/2311-5637/5/3/56","open_access":"1"}],"year":"2019","status":"public","type":"journal_article","intvolume":"         5","user_id":"83778","article_number":"56","doi":"10.3390/fermentation5030056","_id":"1721","publication_status":"published","abstract":[{"text":"In this contribution, the effect of the presence of a presumed inert gas like N2 in the feed gas on the biological methanation of hydrogen and carbon dioxide with Methanothermobacter marburgensis was investigated. N2 can be found as a component besides CO2 in possible feed gases like mine gas, weak gas, or steel mill gas. To determine whether there is an effect on the biological methanation of CO2 and H2 from renewable sources or not, the process was investigated using feed gases containing CO2, H2, and N2 in different ratios, depending on the CO2 content. A possible effect can be a lowered conversion rate of CO2 and H2 to CH4. Feed gases containing up to 47N2 were investigated. The conversion of hydrogen and carbon dioxide was possible with a conversion rate of up to 91 but was limited by the amount of H2 when feeding a stoichiometric ratio of 4:1 and not by adding N2 to the feed gas.</jats:p>","lang":"eng"}],"issue":"3","department":[{"_id":"DEP4018"}],"publisher":"MDPI "},{"citation":{"chicago":"Griese, Martin, Marc Philippe Hoffrath, Timo Broeker, Thomas Schulte, and Jan Schneider. “Hardware-in-the-Loop Simulation of an Optimized Energy Management Incorporating an Experimental Biocatalytic Methanation Reactor.” <i>Energy : The International Journal</i> 181 (2019): 77–90. <a href=\"https://doi.org/10.1016/j.energy.2019.05.092\">https://doi.org/10.1016/j.energy.2019.05.092</a>.","ieee":"M. Griese, M. P. Hoffrath, T. Broeker, T. Schulte, and J. Schneider, “Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor,” <i>Energy : the international journal</i>, vol. 181, pp. 77–90, 2019, doi: <a href=\"https://doi.org/10.1016/j.energy.2019.05.092\">10.1016/j.energy.2019.05.092</a>.","apa":"Griese, M., Hoffrath, M. P., Broeker, T., Schulte, T., &#38; Schneider, J. (2019). Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. <i>Energy : The International Journal</i>, <i>181</i>, 77–90. <a href=\"https://doi.org/10.1016/j.energy.2019.05.092\">https://doi.org/10.1016/j.energy.2019.05.092</a>","havard":"M. Griese, M.P. Hoffrath, T. Broeker, T. Schulte, J. Schneider, Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor, Energy : The International Journal. 181 (2019) 77–90.","mla":"Griese, Martin, et al. “Hardware-in-the-Loop Simulation of an Optimized Energy Management Incorporating an Experimental Biocatalytic Methanation Reactor.” <i>Energy : The International Journal</i>, vol. 181, 2019, pp. 77–90, <a href=\"https://doi.org/10.1016/j.energy.2019.05.092\">https://doi.org/10.1016/j.energy.2019.05.092</a>.","bjps":"<b>Griese M <i>et al.</i></b> (2019) Hardware-in-the-Loop Simulation of an Optimized Energy Management Incorporating an Experimental Biocatalytic Methanation Reactor. <i>Energy : the international journal</i> <b>181</b>, 77–90.","ufg":"<b>Griese, Martin u. a.</b>: Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor, in: <i>Energy : the international journal</i> 181 (2019),  S. 77–90.","ama":"Griese M, Hoffrath MP, Broeker T, Schulte T, Schneider J. Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. <i>Energy : the international journal</i>. 2019;181:77-90. doi:<a href=\"https://doi.org/10.1016/j.energy.2019.05.092\">10.1016/j.energy.2019.05.092</a>","van":"Griese M, Hoffrath MP, Broeker T, Schulte T, Schneider J. Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. Energy : the international journal. 2019;181:77–90.","chicago-de":"Griese, Martin, Marc Philippe Hoffrath, Timo Broeker, Thomas Schulte und Jan Schneider. 2019. Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. <i>Energy : the international journal</i> 181: 77–90. doi:<a href=\"https://doi.org/10.1016/j.energy.2019.05.092\">10.1016/j.energy.2019.05.092</a>, .","din1505-2-1":"<span style=\"font-variant:small-caps;\">Griese, Martin</span> ; <span style=\"font-variant:small-caps;\">Hoffrath, Marc Philippe</span> ; <span style=\"font-variant:small-caps;\">Broeker, Timo</span> ; <span style=\"font-variant:small-caps;\">Schulte, Thomas</span> ; <span style=\"font-variant:small-caps;\">Schneider, Jan</span>: Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. In: <i>Energy : the international journal</i> Bd. 181, Elsevier (2019), S. 77–90","short":"M. Griese, M.P. Hoffrath, T. Broeker, T. Schulte, J. Schneider, Energy : The International Journal 181 (2019) 77–90."},"volume":181,"title":"Hardware-in-the-Loop simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor","status":"public","page":"77 - 90","author":[{"last_name":"Griese","full_name":"Griese, Martin","first_name":"Martin","id":"52308"},{"last_name":"Hoffrath","first_name":"Marc Philippe","full_name":"Hoffrath, Marc Philippe"},{"full_name":"Broeker, Timo","first_name":"Timo","last_name":"Broeker","id":"43927"},{"last_name":"Schulte","first_name":"Thomas","full_name":"Schulte, Thomas","id":"46242"},{"last_name":"Schneider","id":"13209","first_name":"Jan","full_name":"Schneider, Jan","orcid":"0000-0001-6401-8873"}],"year":"2019","external_id":{"isi":["000476965900009"]},"date_updated":"2025-06-25T07:48:53Z","publication_identifier":{"eissn":["1873-6785"],"issn":["0360-5442"]},"publication":"Energy : the international journal","date_created":"2021-04-08T07:42:48Z","keyword":["Biological methanation","Energy management","HIL simulation","Optimization","Scalable models"],"language":[{"iso":"eng"}],"publication_status":"published","isi":"1","publisher":"Elsevier","quality_controlled":"1","conference":{"location":"Guimaraes, PORTUGAL","name":"31st International Conference on Efficiency, Cost, Optimization, Simulation, and Environmental Impact of Energy Systems (ECOS)","start_date":"2018-06-17","end_date":"2018-06-21"},"department":[{"_id":"DEP4023"},{"_id":"DEP4018"}],"abstract":[{"lang":"eng","text":"Towards renewable energy systems, the coupling of multiple sectors is important and incorporates novel technologies where currently no models exist that correctly represent all transient effects. Therefore, we present a method that incorporates Hardware-in-the-Loop simulations where virtual components as models are coupled to real and experimental facilities in real time. By including experimental components, a higher validity can be obtained and the practical applicability of renewable energy scenario can be discussed more profoundly. In this paper, the considered energy system consists of an experimental biocatalytic methanation reactor, a real photovoltaic park, a regenerative fuel cell and short-term storage units to supply a residential district. A representative control sequence of the methanator is obtained by modeling the scenario as an optimal control problem. A first HIL simulation highlights that modifications of the instrumentation are required for a grid injection of the generated methane. The scientific approach can be applied to any energy system where some of the considered components are available as experimental or real facilities. Non-exisiting components are simply replaced by models. The presented approach helps to determine which parts or process parameters are crucial for the planed operation before the overall energy system is realized on a larger scale. (C) 2019 Elsevier Ltd. All rights reserved."}],"user_id":"83781","intvolume":"       181","type":"journal_article","_id":"5435","doi":"10.1016/j.energy.2019.05.092"},{"citation":{"ama":"Schneider J, Broeker T, Hoffrath M. Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. <i>IfGB-Forum Spirituosen und Brennerei </i>. Published online 2019.","ieee":"J. Schneider, T. Broeker, and M. Hoffrath, “Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure,” <i>IfGB-Forum Spirituosen und Brennerei </i>, 2019.","havard":"J. Schneider, T. Broeker, M. Hoffrath, Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure, IfGB-Forum Spirituosen und Brennerei . (2019).","mla":"Schneider, Jan, et al. “Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure.” <i>IfGB-Forum Spirituosen und Brennerei </i>, 2019.","bjps":"<b>Schneider J, Broeker T and Hoffrath M</b> (2019) Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. <i>IfGB-Forum Spirituosen und Brennerei </i>.","ufg":"<b>Schneider, Jan/Broeker, Timo/Hoffrath, M.</b>: Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure, in: <i>IfGB-Forum Spirituosen und Brennerei </i> (2019).","van":"Schneider J, Broeker T, Hoffrath M. Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. IfGB-Forum Spirituosen und Brennerei . 2019;","chicago":"Schneider, Jan, Timo Broeker, and M. Hoffrath. “Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure.” <i>IfGB-Forum Spirituosen und Brennerei </i>, 2019.","apa":"Schneider, J., Broeker, T., &#38; Hoffrath, M. (2019). Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. <i>IfGB-Forum Spirituosen und Brennerei </i>.","din1505-2-1":"<span style=\"font-variant:small-caps;\">Schneider, Jan</span> ; <span style=\"font-variant:small-caps;\">Broeker, Timo</span> ; <span style=\"font-variant:small-caps;\">Hoffrath, M.</span>: Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. In: <i>IfGB-Forum Spirituosen und Brennerei </i> (2019)","chicago-de":"Schneider, Jan, Timo Broeker und M. Hoffrath. 2019. Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. <i>IfGB-Forum Spirituosen und Brennerei </i>.","short":"J. Schneider, T. Broeker, M. Hoffrath, IfGB-Forum Spirituosen und Brennerei  (2019)."},"publication_status":"published","title":"Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure","status":"public","year":"2019","author":[{"orcid":"0000-0001-6401-8873","first_name":"Jan","last_name":"Schneider","full_name":"Schneider, Jan","id":"13209"},{"full_name":"Broeker, Timo","id":"43927","last_name":"Broeker","first_name":"Timo"},{"last_name":"Hoffrath","full_name":"Hoffrath, M.","first_name":"M."}],"department":[{"_id":"DEP4018"}],"user_id":"83779","date_updated":"2024-05-24T07:57:00Z","publication":"IfGB-Forum Spirituosen und Brennerei ","type":"journal_article","date_created":"2021-04-08T07:42:48Z","language":[{"iso":"ger"}],"_id":"5436"},{"status":"public","year":"2019","author":[{"id":"43927","first_name":"Timo","last_name":"Broeker","full_name":"Broeker, Timo"}],"conference":{"location":"Detmold","name":"15th European Bioethanol and Bioconversion Technology Meeting, AGF e.V.","start_date":"2019-04-10","end_date":"2019-04-10"},"department":[{"_id":"DEP4018"}],"citation":{"havard":"T. Broeker, bioCO2nvert - using CO2 for renewable energy storage , in: 2019.","mla":"Broeker, Timo. <i>BioCO2nvert - Using CO2 for Renewable Energy Storage </i>. 2019.","bjps":"<b>Broeker T</b> (2019) BioCO2nvert - Using CO2 for Renewable Energy Storage .","ufg":"<b>Broeker, Timo</b>: bioCO2nvert - using CO2 for renewable energy storage , in: o. Hg.: o. O. 2019.","ama":"Broeker T. bioCO2nvert - using CO2 for renewable energy storage . In: ; 2019.","van":"Broeker T. bioCO2nvert - using CO2 for renewable energy storage . In 2019.","chicago":"Broeker, Timo. “BioCO2nvert - Using CO2 for Renewable Energy Storage ,” 2019.","ieee":"T. Broeker, “bioCO2nvert - using CO2 for renewable energy storage ,” presented at the 15th European Bioethanol and Bioconversion Technology Meeting, AGF e.V., Detmold, 2019.","apa":"Broeker, T. (2019). <i>bioCO2nvert - using CO2 for renewable energy storage </i>. 15th European Bioethanol and Bioconversion Technology Meeting, AGF e.V., Detmold.","chicago-de":"Broeker, Timo. 2019. bioCO2nvert - using CO2 for renewable energy storage . In: .","din1505-2-1":"<span style=\"font-variant:small-caps;\">Broeker, Timo</span>: bioCO2nvert - using CO2 for renewable energy storage . In: , 2019","short":"T. Broeker, in: 2019."},"title":"bioCO2nvert - using CO2 for renewable energy storage ","_id":"5463","language":[{"iso":"eng"}],"user_id":"83779","date_updated":"2024-05-24T08:22:41Z","type":"conference_abstract","date_created":"2021-04-08T09:53:01Z"},{"year":"2019","author":[{"full_name":"Broeker, Timo","id":"43927","last_name":"Broeker","first_name":"Timo"},{"first_name":"M.","last_name":"Hoffrath","full_name":"Hoffrath, M."},{"id":"13209","last_name":"Schneider","full_name":"Schneider, Jan","first_name":"Jan","orcid":"0000-0001-6401-8873"}],"conference":{"location":"Berlin","name":"IfGB-Forum Spirituosen und Brennerei 2019","end_date":"2019-09-10","start_date":"2019-09-10"},"department":[{"_id":"DEP4018"}],"status":"public","title":"Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure","citation":{"ieee":"T. Broeker, M. Hoffrath, and J. Schneider, “Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure,” presented at the IfGB-Forum Spirituosen und Brennerei 2019, Berlin, 2019.","apa":"Broeker, T., Hoffrath, M., &#38; Schneider, J. (2019). <i>Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure</i>. IfGB-Forum Spirituosen und Brennerei 2019, Berlin.","chicago":"Broeker, Timo, M. Hoffrath, and Jan Schneider. “Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure,” 2019.","ama":"Broeker T, Hoffrath M, Schneider J. Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. In: ; 2019.","van":"Broeker T, Hoffrath M, Schneider J. Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. In 2019.","havard":"T. Broeker, M. Hoffrath, J. Schneider, Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure, in: 2019.","mla":"Broeker, Timo, et al. <i>Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure</i>. 2019.","bjps":"<b>Broeker T, Hoffrath M and Schneider J</b> (2019) Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure.","ufg":"<b>Broeker, Timo/Hoffrath, M./Schneider, Jan</b>: Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure, in: o. Hg.: o. O. 2019.","short":"T. Broeker, M. Hoffrath, J. Schneider, in: 2019.","chicago-de":"Broeker, Timo, M. Hoffrath und Jan Schneider. 2019. Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. In: .","din1505-2-1":"<span style=\"font-variant:small-caps;\">Broeker, Timo</span> ; <span style=\"font-variant:small-caps;\">Hoffrath, M.</span> ; <span style=\"font-variant:small-caps;\">Schneider, Jan</span>: Power-to-Gas und biokatalytische Methanisierung – eine Perspektive zu Nutzung von Gärungskohlensäure. In: , 2019"},"_id":"5472","language":[{"iso":"ger"}],"type":"conference_abstract","date_created":"2021-04-08T10:25:46Z","user_id":"83779","date_updated":"2024-05-24T08:34:05Z"},{"user_id":"74004","date_updated":"2023-03-15T13:49:49Z","publication":"ECOS","date_created":"2020-11-23T12:01:30Z","type":"journal_article","place":"Guimarães","language":[{"iso":"eng"}],"_id":"4001","citation":{"ieee":"M. Griese, M. Hoffrath, T. Broeker, J. Schneider, and T. Schulte, “HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor,” <i>ECOS</i>, 2018.","ama":"Griese M, Hoffrath M, Broeker T, Schneider J, Schulte T. HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. <i>ECOS</i>. 2018.","chicago":"Griese, Martin, M. Hoffrath, Timo Broeker, J. Schneider, and Thomas Schulte. “HIL Simulation of an Optimized Energy Management Incorporating an Experimental Biocatalytic Methanation Reactor.” <i>ECOS</i>, 2018.","apa":"Griese, M., Hoffrath, M., Broeker, T., Schneider, J., &#38; Schulte, T. (2018). HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. <i>ECOS</i>.","mla":"Griese, Martin, et al. “HIL Simulation of an Optimized Energy Management Incorporating an Experimental Biocatalytic Methanation Reactor.” <i>ECOS</i>, 2018.","havard":"M. Griese, M. Hoffrath, T. Broeker, J. Schneider, T. Schulte, HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor, ECOS. (2018).","bjps":"<b>Griese M <i>et al.</i></b> (2018) HIL Simulation of an Optimized Energy Management Incorporating an Experimental Biocatalytic Methanation Reactor. <i>ECOS</i>.","ufg":"<b>Griese, Martin et. al. (2018)</b>: HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor, in: <i>ECOS</i>.","van":"Griese M, Hoffrath M, Broeker T, Schneider J, Schulte T. HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. ECOS. 2018;","din1505-2-1":"<span style=\"font-variant:small-caps;\">Griese, Martin</span> ; <span style=\"font-variant:small-caps;\">Hoffrath, M.</span> ; <span style=\"font-variant:small-caps;\">Broeker, Timo</span> ; <span style=\"font-variant:small-caps;\">Schneider, J.</span> ; <span style=\"font-variant:small-caps;\">Schulte, Thomas</span>: HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. In: <i>ECOS</i>. Guimarães (2018)","chicago-de":"Griese, Martin, M. Hoffrath, Timo Broeker, J. Schneider und Thomas Schulte. 2018. HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor. <i>ECOS</i>.","short":"M. Griese, M. Hoffrath, T. Broeker, J. Schneider, T. Schulte, ECOS (2018)."},"article_type":"original","title":"HIL simulation of an optimized energy management incorporating an experimental biocatalytic methanation reactor","status":"public","year":2018,"author":[{"last_name":"Griese","id":"52308","full_name":"Griese, Martin","first_name":"Martin"},{"full_name":"Hoffrath, M.","first_name":"M.","last_name":"Hoffrath"},{"full_name":"Broeker, Timo","id":"43927","first_name":"Timo","last_name":"Broeker"},{"last_name":"Schneider","first_name":"J.","full_name":"Schneider, J."},{"last_name":"Schulte","first_name":"Thomas","id":"46242","full_name":"Schulte, Thomas"}],"department":[{"_id":"DEP6020"}],"abstract":[{"text":"In this contribution, a model-based method for analyzing and optimizing energy systems comprising the electrical, thermal and chemical domain is presented. The method is a variant of the Hardware-in-the-Loop (HIL) simulation where virtual components are combined with real experimental components of the evaluated system. In order to integrate the real components with minimal instrumentation efforts, measured quantities are included as information flows, only, while the physical power flows are connected to local supply structures, like the electric grid or gas distribution system. This contribution incorporates a biocatalytic methanation reactor as an experimental component to convert hydrogen and carbon dioxide into methane. Compared to the well-known Sabatier process, this reactor operates at lower temperature levels and does not need pure carbon dioxide. This allows a dynamic operation and makes it more flexible regarding the carbon dioxide source whose availability is often critically discussed. The virtual energy components are represented by real-time capable models describing their physical behavior. In a test scenario, the electrical energy supply of residential quarters is investigated where photovoltaic data and a modeled fuel cell system are included beside the real experimental methanation process. For the dynamical management of energy and operating gases, electrical and chemical storage units are considered as virtual components, as well. The previous described energy system allows various strategies regarding the operation of the components, especially the storage units. Therefore an optimized energy management is reasonable, based on a designated criterion, e.g. minimal operating costs or maximum energy efficiency. In order to find the global optimum, the method of dynamic programming is used to determine the optimal control sequence for an assumed operation case, e.g. given by the photovoltaic yield of the considered day. Finally, the found solution is tested in real-time by the proposed HIL simulation.","lang":"eng"}]},{"_id":"5632","language":[{"iso":"ger"}],"date_created":"2021-04-20T13:10:17Z","type":"journal_article","publication":"Brauwelt ","intvolume":"      2018","date_updated":"2024-05-22T16:07:09Z","user_id":"83779","issue":"19","department":[{"_id":"DEP4018"}],"author":[{"last_name":"Broeker","first_name":"Timo","full_name":"Broeker, Timo","id":"43927"},{"orcid":"0000-0001-6401-8873","first_name":"Jan","last_name":"Schneider","id":"13209","full_name":"Schneider, Jan"}],"year":"2018","publisher":"Carl Hanser Verlag","page":"530 -532","status":"public","title":"Oxidativer Aufschluss von Biertreber","publication_status":"published","volume":2018,"citation":{"chicago-de":"Broeker, Timo und Jan Schneider. 2018. 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Schneider, Oxidativer Aufschluss von Biertreber, Brauwelt . 2018 (2018) 530–532.","mla":"Broeker, Timo, and Jan Schneider. “Oxidativer Aufschluss von Biertreber.” <i>Brauwelt </i>, vol. 2018, no. 19, 2018, pp. 530–32.","bjps":"<b>Broeker T and Schneider J</b> (2018) Oxidativer Aufschluss von Biertreber. <i>Brauwelt </i> <b>2018</b>, 530–532.","van":"Broeker T, Schneider J. Oxidativer Aufschluss von Biertreber. Brauwelt . 2018;2018(19):530–2.","ama":"Broeker T, Schneider J. Oxidativer Aufschluss von Biertreber. <i>Brauwelt </i>. 2018;2018(19):530-532."}},{"status":"public","year":"2018","author":[{"full_name":"Broeker, Timo","last_name":"Broeker","first_name":"Timo","id":"43927"}],"department":[{"_id":"DEP4018"}],"conference":{"end_date":"2018-11-21","start_date":"2018-11-21","location":"Essen","name":"Summit Umweltwirtschaft.NRW 2018"},"citation":{"short":"T. Broeker, in: 2018.","chicago-de":"Broeker, Timo. 2018. 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Broeker, “Implementierung eines bedarfsgerechten Power-to-Gas-Konzeptes in CO2 emittierende Fermentationsanlagen,” presented at the Summit Umweltwirtschaft.NRW 2018, Essen, 2018."},"title":"Implementierung eines bedarfsgerechten Power-to-Gas-Konzeptes in CO2 emittierende Fermentationsanlagen","language":[{"iso":"ger"}],"_id":"5636","user_id":"83779","date_updated":"2024-05-23T11:06:45Z","type":"conference_abstract","date_created":"2021-04-20T13:33:10Z"},{"date_created":"2021-04-20T14:30:52Z","type":"conference_abstract","user_id":"83779","date_updated":"2024-05-23T11:10:21Z","_id":"5644","language":[{"iso":"ger"}],"title":"Implementierung eines bedarfsgerechten Power-to-Gas-Konzeptes in CO2 emittierende Fermentationsanlagen","citation":{"short":"T. Broeker, in: 2018.","chicago-de":"Broeker, Timo. 2018. Implementierung eines bedarfsgerechten Power-to-Gas-Konzeptes in CO2 emittierende Fermentationsanlagen. 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R., &#38; Schneider, J. (2017). Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor. <i>BrewingScience</i>, <i>70</i>(3–4), 74–84.","chicago":"Broeker, Timo, Marc Hoffarth, L. Oppermann, V. Wolff, Pia Rebecca Neubauer, and Jan Schneider. “Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor.” <i>BrewingScience</i> 70, no. 3–4 (2017): 74–84.","van":"Broeker T, Hoffarth M, Oppermann L, Wolff V, Neubauer PR, Schneider J. Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor. BrewingScience. 2017;70(3–4):74–84.","havard":"T. Broeker, M. Hoffarth, L. Oppermann, V. Wolff, P.R. Neubauer, J. Schneider, Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor, BrewingScience. 70 (2017) 74–84.","bjps":"<b>Broeker T <i>et al.</i></b> (2017) Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor. <i>BrewingScience</i> <b>70</b>, 74–84.","mla":"Broeker, Timo, et al. “Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor.” <i>BrewingScience</i>, vol. 70, no. 3–4, 2017, pp. 74–84.","ufg":"<b>Broeker, Timo u. a.</b>: Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor, in: <i>BrewingScience</i> 70 (2017), H. 3–4,  S. 74–84.","short":"T. Broeker, M. Hoffarth, L. Oppermann, V. Wolff, P.R. Neubauer, J. Schneider, BrewingScience 70 (2017) 74–84.","din1505-2-1":"<span style=\"font-variant:small-caps;\">Broeker, Timo</span> ; <span style=\"font-variant:small-caps;\">Hoffarth, Marc</span> ; <span style=\"font-variant:small-caps;\">Oppermann, L.</span> ; <span style=\"font-variant:small-caps;\">Wolff, V.</span> ; <span style=\"font-variant:small-caps;\">Neubauer, Pia Rebecca</span> ; <span style=\"font-variant:small-caps;\">Schneider, Jan</span>: Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor. In: <i>BrewingScience</i> Bd. 70 (2017), Nr. 3–4, S. 74–84","chicago-de":"Broeker, Timo, Marc Hoffarth, L. Oppermann, V. Wolff, Pia Rebecca Neubauer und Jan Schneider. 2017. Oxidation of Brewers Spent Grain for the Release of Fermentable Sugars by Direct Pretreatment in an Electrolysis Reactor. <i>BrewingScience</i> 70, Nr. 3–4: 74–84.","ieee":"T. Broeker, M. Hoffarth, L. Oppermann, V. Wolff, P. R. Neubauer, and J. 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Broeker, Wet oxidation of spent grains from breweries for the production of fermentable sugars, in: 2017.","mla":"Schneider, Jan, et al. <i>Wet Oxidation of Spent Grains from Breweries for the Production of Fermentable Sugars</i>. 2017.","bjps":"<b>Schneider J, Hoffarth M and Broeker T</b> (2017) Wet Oxidation of Spent Grains from Breweries for the Production of Fermentable Sugars.","ufg":"<b>Schneider, Jan/Hoffarth, Marc/Broeker, Timo</b>: Wet oxidation of spent grains from breweries for the production of fermentable sugars, in: o. Hg.: o. O. 2017.","van":"Schneider J, Hoffarth M, Broeker T. Wet oxidation of spent grains from breweries for the production of fermentable sugars. In 2017.","chicago":"Schneider, Jan, Marc Hoffarth, and Timo Broeker. “Wet Oxidation of Spent Grains from Breweries for the Production of Fermentable Sugars,” 2017.","apa":"Schneider, J., Hoffarth, M., &#38; Broeker, T. (2017). <i>Wet oxidation of spent grains from breweries for the production of fermentable sugars</i>. 36th EBC Congress, Ljubljana (Slovenia).","din1505-2-1":"<span style=\"font-variant:small-caps;\">Schneider, Jan</span> ; <span style=\"font-variant:small-caps;\">Hoffarth, Marc</span> ; <span style=\"font-variant:small-caps;\">Broeker, Timo</span>: Wet oxidation of spent grains from breweries for the production of fermentable sugars. In: , 2017","chicago-de":"Schneider, Jan, Marc Hoffarth und Timo Broeker. 2017. Wet oxidation of spent grains from breweries for the production of fermentable sugars. In: .","short":"J. Schneider, M. Hoffarth, T. Broeker, in: 2017.","ama":"Schneider J, Hoffarth M, Broeker T. Wet oxidation of spent grains from breweries for the production of fermentable sugars. In: ; 2017.","ieee":"J. Schneider, M. Hoffarth, and T. Broeker, “Wet oxidation of spent grains from breweries for the production of fermentable sugars,” presented at the 36th EBC Congress, Ljubljana (Slovenia), 2017."},"title":"Wet oxidation of spent grains from breweries for the production of fermentable sugars","status":"public","conference":{"location":"Ljubljana (Slovenia)","name":"36th EBC Congress"},"department":[{"_id":"DEP4023"},{"_id":"DEP4018"}],"year":"2017","author":[{"first_name":"Jan","full_name":"Schneider, Jan","last_name":"Schneider","id":"13209","orcid":"0000-0001-6401-8873"},{"full_name":"Hoffarth, Marc","first_name":"Marc","id":"52330","last_name":"Hoffarth"},{"first_name":"Timo","id":"43927","full_name":"Broeker, Timo","last_name":"Broeker"}]},{"author":[{"full_name":"Broeker, Timo","id":"43927","first_name":"Timo","last_name":"Broeker"},{"id":"52330","last_name":"Hoffarth","first_name":"Marc","full_name":"Hoffarth, Marc"},{"last_name":"Heikrodt","first_name":"Klaus","full_name":"Heikrodt, Klaus","id":"46269"},{"first_name":"Jan","full_name":"Schneider, Jan","id":"13209","last_name":"Schneider","orcid":"0000-0001-6401-8873"}],"year":"2017","department":[{"_id":"DEP4023"},{"_id":"DEP4018"}],"conference":{"location":"Ljubljana (Slovenia)","name":"36th EBC Congress"},"status":"public","title":"Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery","citation":{"ama":"Broeker T, Hoffarth M, Heikrodt K, Schneider J. Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery. In: ; 2017.","ieee":"T. Broeker, M. Hoffarth, K. Heikrodt, and J. Schneider, “Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery,” presented at the 36th EBC Congress, Ljubljana (Slovenia), 2017.","bjps":"<b>Broeker T <i>et al.</i></b> (2017) Study on the Implementation of a Biocatalytic Power-to-Gas Reactor in a  Brewery.","havard":"T. Broeker, M. Hoffarth, K. Heikrodt, J. Schneider, Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery, in: 2017.","mla":"Broeker, Timo, et al. <i>Study on the Implementation of a Biocatalytic Power-to-Gas Reactor in a  Brewery</i>. 2017.","ufg":"<b>Broeker, Timo u. a.</b>: Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery, in: o. Hg.: o. O. 2017.","van":"Broeker T, Hoffarth M, Heikrodt K, Schneider J. Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery. In 2017.","chicago":"Broeker, Timo, Marc Hoffarth, Klaus Heikrodt, and Jan Schneider. “Study on the Implementation of a Biocatalytic Power-to-Gas Reactor in a  Brewery,” 2017.","apa":"Broeker, T., Hoffarth, M., Heikrodt, K., &#38; Schneider, J. (2017). <i>Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery</i>. 36th EBC Congress, Ljubljana (Slovenia).","din1505-2-1":"<span style=\"font-variant:small-caps;\">Broeker, Timo</span> ; <span style=\"font-variant:small-caps;\">Hoffarth, Marc</span> ; <span style=\"font-variant:small-caps;\">Heikrodt, Klaus</span> ; <span style=\"font-variant:small-caps;\">Schneider, Jan</span>: Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery. In: , 2017","chicago-de":"Broeker, Timo, Marc Hoffarth, Klaus Heikrodt und Jan Schneider. 2017. Study on the implementation of a biocatalytic power-to-gas reactor in a  brewery. In: .","short":"T. Broeker, M. Hoffarth, K. Heikrodt, J. Schneider, in: 2017."},"language":[{"iso":"eng"}],"_id":"5580","date_created":"2021-04-16T12:36:47Z","type":"conference_abstract","user_id":"83779","date_updated":"2024-05-22T15:28:31Z"},{"status":"public","author":[{"last_name":"Broeker","first_name":"Timo","full_name":"Broeker, Timo","id":"43927"}],"year":"2017","department":[{"_id":"DEP4023"},{"_id":"DEP4018"}],"conference":{"location":"Lemgo","name":"Internes Symposium \"Umwelt und Ressourcen\""},"citation":{"ieee":"T. Broeker, “Bioraffinerie und Sektorenkopplung – biokatalytische Methanisierung als Schlüsseltechnologie zur Implementierung von Power-to-Gas,” presented at the Internes Symposium “Umwelt und Ressourcen,” Lemgo, 2017.","ama":"Broeker T. Bioraffinerie und Sektorenkopplung – biokatalytische Methanisierung als Schlüsseltechnologie zur Implementierung von Power-to-Gas. 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