@article{NiehausGaborWielandetal.2011, author = {Niehaus, F. and Gabor, E. and Wieland, S. and Siegert, Petra and Maurer, Karl-Heinz and Eck, J.}, title = {Enzymes for the laundry industries: tapping the vast metagenomic pool of alkaline proteases}, series = {Microbial biotechnology}, volume = {Vol. 4}, journal = {Microbial biotechnology}, number = {Iss. 6}, publisher = {Springer}, address = {Berlin}, issn = {1432-0614 (E-Journal); 0171-1741 (Print); 0175-7598 (Print); 0340-2118 (Print)}, pages = {767 -- 776}, year = {2011}, language = {en} } @article{NokiharaBerndt1978, author = {Nokihara, Kiyoshi and Berndt, Heinz}, title = {Synthesis of hapten-polypeptide conjugates as antigen models for the N-terminal region of the α-2-chain of rabbit skin collagen}, series = {Journal of the Royal Society of Chemistry: Perkin Transactions 1}, volume = {1978}, journal = {Journal of the Royal Society of Chemistry: Perkin Transactions 1}, number = {3}, publisher = {Royal Society of Chemistry}, address = {Cambridge}, issn = {1364-5463}, doi = {10.1039/P19780000260}, pages = {260 -- 263}, year = {1978}, abstract = {Synthesis of derivatives of the peptide sequence L-pyroglutamyl-L-phenylalanyl-L-aspartyl-glycyl-L-lysyl-glycyl-glycyl-glycine as the antigenic determinant representing the N-terminal non-helical region of the α-2-chain of rabbit skin collagen, and conjugation to two different polypeptide carriers, are described.}, language = {en} } @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{NokiharaBerndt1978, author = {Nokihara, Kiyoshi and Berndt, Heinz}, title = {Studies on sulfur-containing peptides : tert-butyloxycarbonylsulfenyl and benzyloxycarbonylsulfenyl derivatives as protecting groups for cysteine}, series = {The journal of organic chemistry}, volume = {43}, journal = {The journal of organic chemistry}, number = {25}, publisher = {American Chemical Society}, address = {Washington}, issn = {0022-3263}, doi = {10.1021/jo00419a046}, pages = {4893 -- 4895}, year = {1978}, language = {en} } @misc{O'ConnellHovenSiegertetal.2007, author = {O'Connell, Timothy and Hoven, Nina and Siegert, Petra and Maurer, Karl-Heinz}, title = {Amadoriasen in Wasch- und Reinigungsmitteln [Offenlegungsschrift]}, publisher = {Deutsches Patent- und Markenamt / Europ{\"a}isches Patentamt / WIPO}, address = {M{\"u}nchen / Den Hague / Genf}, pages = {1 -- 45}, year = {2007}, language = {de} } @misc{O'ConnellSiegertEversetal.2010, author = {O'Connell, Timothy and Siegert, Petra and Evers, Stefan and Bongaerts, Johannes and Weber, Thomas and Maurer, Karl-Heinz and Bessler, Cornelius}, title = {Wasch- oder Reinigungsmittel mit gesteigerter Waschkraft [Offenlegungsschrift]}, publisher = {Deutsches Patentamt}, address = {M{\"u}nchen}, pages = {1 -- 34}, year = {2010}, language = {de} } @misc{O'ConnellSiegertMaureretal.2010, author = {O'Connell, Timothy and Siegert, Petra and Maurer, Karl-Heinz and Schiedel, Marc-Steffen and Vockenroth, Inga Kerstin}, title = {Method for improving the cleaning action of a detergent or cleaning agent [Internationale Patentanmeldung]}, publisher = {WIPO}, address = {Genf}, pages = {1 -- 15}, year = {2010}, language = {en} } @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} } @article{OosterhuisOehlschlaegerBergetal.2011, author = {Oosterhuis, Koen and {\"O}hlschl{\"a}ger, Peter and Berg, Joost H. van den and Toebes, Mireille and Gomez, Raquel and Schumacher, Ton N. and Haanen, John B.}, title = {Preclinical development of highly effective and safe DNA vaccines directed against HPV 16 E6 and E7}, series = {International Journal of Cancer}, volume = {129}, journal = {International Journal of Cancer}, number = {2}, publisher = {Wiley}, address = {Weinheim}, isbn = {1097-0215}, pages = {397 -- 406}, year = {2011}, language = {en} } @article{PasteurTippkoetterKampeisetal.2014, author = {Pasteur, Aline and Tippk{\"o}tter, Nils and Kampeis, Percy and Ulber, Roland}, title = {Optimization of high gradient magnetic separation filter units for the purification of fermentation products}, series = {IEEE TRANSACTIONS ON MAGNETICS}, volume = {50}, journal = {IEEE TRANSACTIONS ON MAGNETICS}, number = {10}, publisher = {IEEE}, address = {New York, NY}, issn = {0018-9464}, doi = {10.1109/TMAG.2014.2325535}, pages = {Artikel 5000607}, year = {2014}, abstract = {High gradient magnetic separation (HGMS) has been established since the early 1970s. A more recent application of these systems is the use in bioprocesses. To integrate the HGMS in a fermentation process, it is necessary to optimize the separation matrix with regard to the magnetic separation characteristics and permeability of the non-magnetizable components of the fermentation broth. As part of the work presented here, a combined fluidic and magnetic force finite element model simulation was created using the software COMSOL Multiphysics and compared with separation experiments. Finally, as optimal lattice orientation of the separation matrix, a transversal rhombohedral arrangement was defined. The high suitability of the new filter matrix has been verified by separation experiments.}, language = {en} }