@misc{KeimerGirbigMayntzetal.2022, author = {Keimer, Jona and Girbig, Leo and Mayntz, Joscha and Tegtmeyer, Philipp and Wendland, Frederik and Dahman, Peter and Fisher, Alex and Dorrington, Graham}, title = {Flight mission optimization for eco-efficiency in consideration of electric regeneration and atmospheric conditions}, series = {AIAA AVIATION 2022 Forum}, journal = {AIAA AVIATION 2022 Forum}, publisher = {AIAA}, address = {Reston, Va.}, doi = {10.2514/6.2022-4118}, year = {2022}, abstract = {The development and operation of hybrid or purely electrically powered aircraft in regional air mobility is a significant challenge for the entire aviation sector. This technology is expected to lead to substantial advances in flight performance, energy efficiency, reliability, safety, noise reduction, and exhaust emissions. Nevertheless, any consumed energy results in heat or carbon dioxide emissions and limited electric energy storage capabilities suppress commercial use. Therefore, the significant challenges to achieving eco-efficient aviation are increased aircraft efficiency, the development of new energy storage technologies, and the optimization of flight operations. Two major approaches for higher eco-efficiency are identified: The first one, is to take horizontal and vertical atmospheric motion phenomena into account. Where, in particular, atmospheric waves hold exciting potential. The second one is the use of the regeneration ability of electric aircraft. The fusion of both strategies is expected to improve efficiency. The objective is to reduce energy consumption during flight while not neglecting commercial usability and convenient flight characteristics. Therefore, an optimized control problem based on a general aviation class aircraft has to be developed and validated by flight experiments. The formulated approach enables a development of detailed knowledge of the potential and limitations of optimizing flight missions, considering the capability of regeneration and atmospheric influences to increase efficiency and range.}, language = {en} } @techreport{BarnatArntzBerneckeretal.2024, type = {Working Paper}, author = {Barnat, Miriam and Arntz, Kristian and Bernecker, Andreas and Fissabre, Anke and Franken, Norbert and Goldbach, Daniel and H{\"u}ning, Felix and J{\"o}rissen, J{\"o}rg and Kirsch, Ansgar and Pettrak, J{\"u}rgen and Rexforth, Matthias and Josef, Rosenkranz and Terstegge, Andreas}, title = {Strategische Gestaltung von Studieng{\"a}ngen f{\"u}r die Zukunft: Ein kollaborativ entwickeltes Self-Assessment}, series = {Hochschulforum Digitalisierung - Diskussionspapier}, journal = {Hochschulforum Digitalisierung - Diskussionspapier}, publisher = {Stifterverband f{\"u}r die Deutsche Wissenschaft}, address = {Berlin}, issn = {2365-7081}, pages = {16 Seiten}, year = {2024}, abstract = {Das Diskussionspapier beschreibt einen Prozess an der FH Aachen zur Entwicklung und Implementierung eines Self-Assessment-Tools f{\"u}r Studieng{\"a}nge. Dieser Prozess zielte darauf ab, die Relevanz der Themen Digitalisierung, Internationalisierung und Nachhaltigkeit in Studieng{\"a}ngen zu st{\"a}rken. Durch Workshops und kollaborative Entwicklung mit Studiendekan:innen entstand ein Fragebogen, der zur Reflexion und strategischen Weiterentwicklung der Studieng{\"a}nge dient.}, language = {de} } @article{BialonskiGrieger2023, author = {Bialonski, Stephan and Grieger, Niklas}, title = {Der KI-Chatbot ChatGPT: Eine Herausforderung f{\"u}r die Hochschulen}, series = {Die neue Hochschule}, volume = {2023}, journal = {Die neue Hochschule}, number = {1}, publisher = {HLB}, address = {Bonn}, issn = {0340-448X}, doi = {10.5281/zenodo.7533758}, pages = {24 -- 27}, year = {2023}, abstract = {Essays, Gedichte, Programmcode: ChatGPT generiert automatisch Texte auf bisher unerreicht hohem Niveau. Dieses und nachfolgende Systeme werden nicht nur die akademische Welt nachhaltig ver{\"a}ndern.}, language = {de} } @article{GollandKelbch2023, author = {Golland, Alexander and Kelbch, Niklas}, title = {Kartellrecht vs. Datenschutzrecht: Rechtsgrundlagen f{\"u}r die Datenverarbeitung in sozialen Netzwerken}, series = {DSB Datenschutz-Berater}, journal = {DSB Datenschutz-Berater}, number = {9}, publisher = {DFV Mediengruppe}, address = {Frankfurt a.M.}, issn = {0170-7256}, pages = {247 -- 249}, year = {2023}, language = {de} } @article{Golland2023, author = {Golland, Alexander}, title = {Kompetenz nationaler Wettbewerbsbeh{\"o}rden zur Feststellung eines Verstoßes gegen die DS-GVO}, series = {MMR - Zeitschrift f{\"u}r IT-Recht und Recht der Digitalisierung}, journal = {MMR - Zeitschrift f{\"u}r IT-Recht und Recht der Digitalisierung}, number = {9}, publisher = {Beck}, address = {M{\"u}nchen}, pages = {680 -- 683}, year = {2023}, language = {de} } @inproceedings{BeerHaidnWillms1995, author = {Beer, Stefan and Haidn, O.J. and Willms, Herbert}, title = {Control of stoichiometric propellant supply in an H2/O2-spinning reserve system}, series = {Combustion technologies for a clean environment : selected papers from the proceedings of the first international conference, Vilamoura, Portugal, September 3 - 6, 1991. - (Energy, combustion and the environment ;1)}, booktitle = {Combustion technologies for a clean environment : selected papers from the proceedings of the first international conference, Vilamoura, Portugal, September 3 - 6, 1991. - (Energy, combustion and the environment ;1)}, editor = {Carvalho, Maria da Gra{\c{c}}a}, publisher = {Gordon and Breach}, address = {Basel [u.a.]}, isbn = {2-88124-619-2}, pages = {825 -- 838}, year = {1995}, language = {en} } @misc{TippkoetterWulfhorstMogueetal.2014, author = {Tippk{\"o}tter, Nils and Wulfhorst, H. and Mogue, N. and M{\"o}hring, S. and Roth, J. and Ulber, Roland}, title = {Spektrometrische Messung und Modellierung der enzymatischen Hydrolyse von Biomasse nach Organosolv- und Liquid Hot Water-Aufschl{\"u}ssen (LHW)}, series = {Chemie Ingenieur Technik}, volume = {86}, journal = {Chemie Ingenieur Technik}, number = {9}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.201450269}, pages = {1584}, year = {2014}, abstract = {In diesem Beitrag wird die NIR- und MIR-Spektrometrie in Kombination mit multivariaten Kalibrationsmodellen zur Analyse von Monosacchariden und Cellulose aus Biomasse etabliert. Spektrengemischter Standardl{\"o}sungen mit definierten Glucose- und Xylosekonzentrationen in Wasser werden im NIR-(Lambda 750, Perkin Elmer, USA) und MIR-Bereich (Spektrum 100, PerkinElmer) in Gegenwart von entweder Carboxymethylcellulose oder Grasfasern aufgenommen. Darauf basierend werden Kalibrationsmodelle (Unscrambler®, CAMO-Software AS, Norwegen) entwickelt und zur Vorhersage der Zuckerkonzentration in den Hydrolyseproben und der Celluloseanteile angewendet. Dar{\"u}ber hinaus wird die Partikelgr{\"o}ße der Rohstoffe bestimmt. Die Messergebnisse bilden die experimentelle Basis f{\"u}r die numerische Modellierung der Reaktionskinetik der enzymatischen Hydrolyse von Lignocellulose. Das Modell kombiniert die Bilanzierung der Partikelgr{\"o}ßenverteilungen mit der Multienzymkinetik. Dabei werden neben der Partikelgr{\"o}ßenverteilung und der Substratkonzentration die Zusammensetzung der Rohstoffe nach Vorbehandlung sowie die Produktinhibierung und mehrere enzymatische Aktivit{\"a}ten ber{\"u}cksichtigt. Das Modell erm{\"o}glicht es, die Partikelgr{\"o}ßenverteilungen und die Konzentrationen der Substrate und Produkte w{\"a}hrend der Hydrolyse vorherzusagen und die kinetischen Parameter im Batch- sowie im Fed-Batch-Reaktor zu bestimmen.}, language = {de} } @misc{WollnyStadtmuellerTippkoetteretal.2012, author = {Wollny, S. and Stadtm{\"u}ller, R. and Tippk{\"o}tter, Nils and Oster, J. and Kampeis, P. and Ulber, Roland}, title = {Optimierung der selektiven Aufarbeitung von Proteinen mit Aptamer-funktionalisierten Magnetpartikeln}, series = {Chemie Ingenieur Technik}, volume = {84}, journal = {Chemie Ingenieur Technik}, number = {8}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.201250031}, pages = {1203}, year = {2012}, abstract = {Die Herstellung pharmakologisch relevanter Proteine durch Mikroorganismen f{\"u}hrt eine mehrstufige Aufarbeitung mit sich. Durch die Verwendung von Aptameren, kurzen einzelstr{\"a}ngigen DNA- oder RNA-Oligonukleotiden immobilisiert auf funktionalisierten, wiederverwendbaren Magnetpartikeln, k{\"o}nnen mehrere dieser Abtrennungsoperationen kombiniert und damit die Prozesskosten minimiert werden. Aufgrund der definierten dreidimensionalen Struktur k{\"o}nnen Aptamere kleine organische Molek{\"u}le hochspezifisch binden. Im vorgestellten Projekt wird die Aufarbeitung von His6-GFP als Modellprotein mithilfe der mit Aptamer funktionalisierten Magnetpartikel durchgef{\"u}hrt. In bisherigen Versuchen wurde die Bindung von Aptameren auf den magnetischen Partikeln sowie die Bindung des Modellproteins GFP auf den Partikeln optimiert. Des Weiteren wurden mehrere Strategien zur Elution des GFPs von den Partikeln verfolgt, um den Proteinertrag zu maximieren und die Partikel rezyklieren zu k{\"o}nnen. Die Untersuchung unspezifischer Bindungen von Zelltr{\"u}mmern und Proteinen an die Magnetpartikel wurde mithilfe eines konfokalen Laser-Scanning-Mikroskops durchgef{\"u}hrt.}, language = {de} } @article{AkimbekovDigelTastambeketal.2021, author = {Akimbekov, Nuraly S. and Digel, Ilya and Tastambek, Kuanysh T. and Sherelkhan, Dinara K. and Jussupova, Dariya B. and Altynbay, Nazym P.}, title = {Low-rank coal as a source of humic substances for soil amendment and fertility management}, series = {Agriculture}, volume = {11}, journal = {Agriculture}, number = {12}, publisher = {MDPI}, address = {Basel}, issn = {2077-0472}, doi = {10.3390/agriculture11121261}, pages = {25 Seiten}, year = {2021}, abstract = {Humic substances (HS), as important environmental components, are essential to soil health and agricultural sustainability. The usage of low-rank coal (LRC) for energy generation has declined considerably due to the growing popularity of renewable energy sources and gas. However, their potential as soil amendment aimed to maintain soil quality and productivity deserves more recognition. LRC, a highly heterogeneous material in nature, contains large quantities of HS and may effectively help to restore the physicochemical, biological, and ecological functionality of soil. Multiple emerging studies support the view that LRC and its derivatives can positively impact the soil microclimate, nutrient status, and organic matter turnover. Moreover, the phytotoxic effects of some pollutants can be reduced by subsequent LRC application. Broad geographical availability, relatively low cost, and good technical applicability of LRC offer the advantage of easy fulfilling soil amendment and conditioner requirements worldwide. This review analyzes and emphasizes the potential of LRC and its numerous forms/combinations for soil amelioration and crop production. A great benefit would be a systematic investment strategy implicating safe utilization and long-term application of LRC for sustainable agricultural production.}, language = {en} } @article{AkimbekovDigelTastambeketal.2022, author = {Akimbekov, Nuraly S. and Digel, Ilya and Tastambek, Kuanysh T. and Marat, Adel K. and Turaliyeva, Moldir A. and Kaiyrmanova, Gulzhan K.}, title = {Biotechnology of Microorganisms from Coal Environments: From Environmental Remediation to Energy Production}, series = {Biology}, volume = {11}, journal = {Biology}, number = {9}, publisher = {MDPI}, address = {Basel}, issn = {2079-7737}, doi = {10.3390/biology11091306}, pages = {47 Seiten}, year = {2022}, abstract = {It was generally believed that coal sources are not favorable as live-in habitats for microorganisms due to their recalcitrant chemical nature and negligible decomposition. However, accumulating evidence has revealed the presence of diverse microbial groups in coal environments and their significant metabolic role in coal biogeochemical dynamics and ecosystem functioning. The high oxygen content, organic fractions, and lignin-like structures of lower-rank coals may provide effective means for microbial attack, still representing a greatly unexplored frontier in microbiology. Coal degradation/conversion technology by native bacterial and fungal species has great potential in agricultural development, chemical industry production, and environmental rehabilitation. Furthermore, native microalgal species can offer a sustainable energy source and an excellent bioremediation strategy applicable to coal spill/seam waters. Additionally, the measures of the fate of the microbial community would serve as an indicator of restoration progress on post-coal-mining sites. This review puts forward a comprehensive vision of coal biodegradation and bioprocessing by microorganisms native to coal environments for determining their biotechnological potential and possible applications.}, language = {en} }