@article{NokiharaBerndt1979, author = {Nokihara, Kiyoshi and Berndt, Heinz}, title = {Darstellung von Bis(S-methoxycarbonylthio)-B-Kette des Rinderinsulins}, series = {Hoppe-Seyler's Zeitschrift f{\"u}r physiologische Chemie}, volume = {360}, journal = {Hoppe-Seyler's Zeitschrift f{\"u}r physiologische Chemie}, number = {1}, issn = {1437-4315}, doi = {10.1515/bchm2.1979.360.1.773}, pages = {773 -- 776}, year = {1979}, language = {de} } @article{NaithaniKlostermeyerLangeetal.1971, author = {Naithani, V. K and Klostermeyer, Henning and Lange, H. R. and [u.a.], and Berndt, Heinz and [u.a.],}, title = {Preparation of peptide derivatives for porcine proinsulin-synthesis}, series = {Biological Chemistry}, volume = {352}, journal = {Biological Chemistry}, number = {1}, publisher = {De Gruyter}, issn = {1437-4315}, doi = {10.1515/bchm2.1971.352.1.1}, pages = {2 -- 3}, year = {1971}, language = {en} } @article{SchwertnerBerndtGielenetal.1975, author = {Schwertner, Eberhard and Berndt, Heinz and Gielen, Hans-G{\"u}nter and Zahn, Helmut}, title = {Peptide 96 : Synthese einiger [2-(p-Biphenylyl)isopropyloxycarbonyl]-Aminos{\"a}urederivate}, series = {Justus Liebigs Annalen der Chemie}, volume = {75}, journal = {Justus Liebigs Annalen der Chemie}, number = {3}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {1099-0690}, doi = {10.1002/jlac.197519750318}, pages = {581 -- 585}, year = {1975}, abstract = {Die Darstellung der N-[2-(p-Biphenylyl)isopropyloxycarbonyl]-Derivate (Bpoc-Derivate) des Cysteins unter Verwendung der Thiolschutzgruppen Tetrahydropyranyl (Thp) f{\"u}r 1, Diphenylmethyl (Dpm) f{\"u}r 2, Trityl (Trt) f{\"u}r 3 und S-tert.-Butyl (SBut) f{\"u}r 4 sowie die Synthese von aktivierten Estern der Bpoc-Derivate des Glycins (5), Isoleucins (6) und Prolins (7) werden beschrieben. An einem Beispiel wird die M{\"o}glichkeit aufgezeigt, die Bpoc-Gruppe {\"u}ber das Bpoc-Azid nachtr{\"a}glich in den Peptidverband einzuf{\"u}hren.}, language = {de} } @article{WolfBerndtBrandenburg1979, author = {Wolf, G{\"u}nter and Berndt, Heinz and Brandenburg, Dietrich}, title = {Synthese der [LysA13] Rinderinsulin-A-Kette in der Form [Lys(Tfa)A13]A(SO3H)4 und NαA1-Msc-[LysA13]A(SO3H)4 unter Verwendung des S-tert-Butylmercapto-Restes als Thiolschutzgruppe}, series = {Hoppe-Seyler's Zeitschrift f{\"u}r physiologische Chemie}, volume = {360}, journal = {Hoppe-Seyler's Zeitschrift f{\"u}r physiologische Chemie}, number = {2}, issn = {1437-4315}, doi = {10.1515/bchm2.1979.360.2.1569}, pages = {1569 -- 1578}, year = {1979}, language = {de} } @article{OjovanSteinmetz2022, author = {Ojovan, Michael I. and Steinmetz, Hans-J{\"u}rgen}, title = {Approaches to Disposal of Nuclear Waste}, series = {Energies}, volume = {15}, journal = {Energies}, number = {20}, publisher = {MDPI}, address = {Basel}, issn = {1996-1073}, doi = {10.3390/en15207804}, pages = {Artikel 7804}, year = {2022}, abstract = {We present a concise mini overview on the approaches to the disposal of nuclear waste currently used or deployed. The disposal of nuclear waste is the end point of nuclear waste management (NWM) activities and is the emplacement of waste in an appropriate facility without the intention to retrieve it. The IAEA has developed an internationally accepted classification scheme based on the end points of NWM, which is used as guidance. Retention times needed for safe isolation of waste radionuclides are estimated based on the radiotoxicity of nuclear waste. Disposal facilities usually rely on a multi-barrier defence system to isolate the waste from the biosphere, which comprises the natural geological barrier and the engineered barrier system. Disposal facilities could be of a trench type, vaults, tunnels, shafts, boreholes, or mined repositories. A graded approach relates the depth of the disposal facilities' location with the level of hazard. Disposal practices demonstrate the reliability of nuclear waste disposal with minimal expected impacts on the environment and humans.}, language = {en} } @misc{SchumannRoginSchneideretal.2012, author = {Schumann, C. and Rogin, S. and Schneider, H. and Oster, J. and Tippk{\"o}tter, Nils and Kampeis, P.}, title = {Steuerung von HGMS-Prozessen mittels Durchflusszytometrie}, series = {Chemie Ingenieur Technik}, volume = {84}, journal = {Chemie Ingenieur Technik}, number = {8}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.201250125}, pages = {1370}, year = {2012}, abstract = {Die Hochgradientenmagnetseparation (HGMS) ist eine Methode zur Aufreinigung von biopharmazeutischen Produkten. Mit dieser Methode l{\"a}sst sich in nur einem Schritt eine Fest/Fest/Fl{\"u}ssig-Trennung erzielen, was zu einer erheblichen Zeit- und Kostenersparnis im Downstreaming f{\"u}hrt. Dennoch steht ihr industrieller Einsatz noch aus, was u. a. am Mangel an Analysenmethoden liegt, um die HGMS quantifizierbar zu machen. Gerade in der Pharmaproduktion werden Prozesse gebraucht, die gem{\"a}ß den einschl{\"a}gigen Vorschriften (cGMP) validiert und deren verfahrenstechnische Anlagenteile qualifiziert werden k{\"o}nnen. Die Schwierigkeit ist die Messung der magnetischen Mikrosorbentien in der Suspension, in der auch Zellen oder Zelltr{\"u}mmer vorliegen. Im Rahmen eines Forschungsprojektes im „Zentralen Innovationsprogramm Mittelstand" des BMWi wurden verschiedene Analysenmethoden untersucht. Die Durchflusszytometrie erm{\"o}glicht eine Charakterisierung von Partikeln und eine simultane quantitative Messung. Durch die multiparametrige Messung kann zwischen Zellen, Zelltr{\"u}mmern und Magnetpartikeln unterschieden werden. Die At-line-Einbindung des Durchflusszytometers ist durch den Einsatz einer externen Pumpe m{\"o}glich. {\"U}ber eine automatisierte Messwertanalyse kann der HGMS-Prozess mittels der Durchflusszytometrie gesteuert werden.}, language = {de} } @inproceedings{EngelThieringerTippkoetter2016, author = {Engel, Mareike and Thieringer, Julia and Tippk{\"o}tter, Nils}, title = {Linking bioprocess engineering and electrochemistry for sustainable biofuel production}, series = {Young Researchers Symposium, YRS 2016. Proceedings}, booktitle = {Young Researchers Symposium, YRS 2016. Proceedings}, publisher = {Fraunhofer Verlag}, address = {Karlsruhe}, pages = {49 -- 53}, year = {2016}, abstract = {Electromicrobial engineering is an emerging, highly interdisciplinary research area linking bioprocesses with electrochemistry. In this work, microbial electrosynthesis (MES) of biobutanol is carried out during acetone-butanol-ethanol (ABE) fermentations with Clostridium acetobutylicum. A constant electric potential of -600mV (vs. Ag/AgCl) with simultaneous addition of the soluble redox mediator neutral red is used in order to study the electron transfer between the working electrode and the bacterial cells. The results show an earlier initiation of solvent production for all fermentations with applied potential compared to the conventional ABE fermentation. The f inal butanol concentration can be more than doubled by the application of a negative potential combined with addition of neutral red. Moreover a higher biofilm formation on the working electrode compared to control cultivations has been observed. In contrast to previous studies, our results also indicate that direct electron transfer (DET) might be possible with C. acetobutylicum. The presented results make microbial butanol production economically attractive and therefore support the development of sustainable production processes in the chemical industry aspired by the "Centre for resource-efficient chemistry and raw material change" as well as the the project "NanoKat" working on nanostructured catalysts in Kaiserslautern.}, language = {en} } @misc{BraunKrafftTippkoetter2022, author = {Braun, Lena and Krafft, Simone and Tippk{\"o}tter, Nils}, title = {Combined supercritical carbon dioxide extraction and chromatography of the algae fatty linoleic and linolenic acid}, series = {Chemie Ingenieur Technik}, volume = {94}, journal = {Chemie Ingenieur Technik}, number = {9}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.202255308}, pages = {1304}, year = {2022}, abstract = {A method for the integrated extraction and separation of fatty acids from algae using supercritical CO2 is presented. Desmodesmus obliquus and Chlorella sorokiniana were used as algae. First, a method for chromatographic separation of fatty acids of different degrees of saturation was established and optimized. Then, an integrated method for supercritical extraction was developed for both algal species. It was also verified whether prior cell disruption was beneficial for extraction. In developing the method for chromatographic separation, statistical experimental design was used to determine the optimal parameter settings. The methanol content in the mobile phase proved to be the most important parameter for successful separation of the three unsaturated fatty acids oleic acid, linoleic acid, and linolenic acid. Supercritical extraction with dried algae showed that about four times more fatty acids can be extracted from C. sorokiniana relative to the dry mass used.}, language = {en} } @misc{TippkoetterZhangPothetal.2010, author = {Tippk{\"o}tter, Nils and Zhang, M. and Poth, S. and Ulber, Roland}, title = {Enzymatische Lignindegradierung unter Einsatz eines Optimierungsalgorithmus}, series = {Chemie Ingenieur Technik}, volume = {82}, journal = {Chemie Ingenieur Technik}, number = {9}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.201050707}, pages = {1601 -- 1602}, year = {2010}, abstract = {Lignine bestehen aus einem hochgradig vernetzten Polymer phenolischer Grundeinheiten. Diese Verbindungen sind eine Quelle vielversprechender chemischer Grundbausteine. Auch die enzymatische Modifikation der Materialeigenschaften des Lignins ist f{\"u}r dessen Anwendung von Interesse. Aufgrund der verschiedenen Bindungstypen im Lignin ist eine Auftrennung mit nur einem Enzym unwahrscheinlich. Vielmehr sind verschiedene mediatorgest{\"u}tzte Reaktionen notwendig. Pilze, wie z.B. T. versicolor, nutzen Enzymkombinationen zum Aufschluss des Lignins. Hierbei kommen Laccase, Ligninperoxidase und Manganperoxidase zum Einsatz. Die optimale Kombination der Enzyme und ihrer Mediatoren bzw. Stabilisatoren ist Ziel der Untersuchungen. Aufgrund der großen Parameteranzahl wurde ein genetischer Algorithmus eingesetzt. Als Versuchsparameter wurden gew{\"a}hlt: die Verh{\"a}ltnisse der Enzyme, Ligninmasse, Konzentrationen an Eisen-, Mangan-, Oxalat-Ionen, ABTS, Violurs{\"a}ure und H₂O₂. Somit werden elf Parameter simultan optimiert. Als Algorithmus wurde ein Programm mit variabler Genkodierung entwickelt. Die Umsetzung des Lignins wird dabei {\"u}ber den verfolgt. Zurzeit ist ein enzymatischer Umsatz von 12\% m{\"o}glich. Als Referenz wurde eine chemische Lignindegradierung mit einem Umsatzvon 37\% etabliert. Die sechs Generationen des Algorithmus zeigen eine Kongruenz der Enzymkonzentrationen von LiP, MnP und VeP, w{\"a}hrend Laccase keinen Einfluss hat. Des Weiteren beeinflussen die Konzentrationen von Mangan und Oxalat die Umsetzung, w{\"a}hrend die Variation von ABTS- und H₂O₂ nur eine geringe Auswirkung hat.}, language = {de} } @article{TixMollKrafftetal.2024, author = {Tix, Julian and Moll, Fabian and Krafft, Simone and Betsch, Matthias and Tippk{\"o}tter, Nils}, title = {Hydrogen production from enzymatic pretreated organic waste with thermotoga neapolitana}, series = {Energies}, volume = {17}, journal = {Energies}, number = {12}, publisher = {MDPI}, address = {Basel}, issn = {1996-1073}, doi = {10.3390/en17122938}, pages = {20 Seiten}, year = {2024}, abstract = {Biomass from various types of organic waste was tested for possible use in hydrogen production. The composition consisted of lignified samples, green waste, and kitchen scraps such as fruit and vegetable peels and leftover food. For this purpose, the enzymatic pretreatment of organic waste with a combination of five different hydrolytic enzymes (cellulase, amylase, glucoamylase, pectinase and xylase) was investigated to determine its ability to produce hydrogen (H2) with the hydrolyzate produced here. In course, the anaerobic rod-shaped bacterium T. neapolitana was used for H2 production. First, the enzymes were investigated using different substrates in preliminary experiments. Subsequently, hydrolyses were carried out using different types of organic waste. In the hydrolysis carried out here for 48 h, an increase in glucose concentration of 481\% was measured for waste loads containing starch, corresponding to a glucose concentration at the end of hydrolysis of 7.5 g·L-1. In the subsequent set fermentation in serum bottles, a H2 yield of 1.26 mmol H2 was obtained in the overhead space when Terrific Broth Medium with glucose and yeast extract (TBGY medium) was used. When hydrolyzed organic waste was used, even a H2 yield of 1.37 mmol could be achieved in the overhead space. In addition, a dedicated reactor system for the anaerobic fermentation of T. neapolitana to produce H2 was developed. The bioreactor developed here can ferment anaerobically with a very low loss of produced gas. Here, after 24 h, a hydrogen concentration of 83\% could be measured in the overhead space.}, language = {en} }