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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 für dessen Anwendung von Interesse. Aufgrund der verschiedenen Bindungstypen im Lignin ist eine Auftrennung mit nur einem Enzym unwahrscheinlich. Vielmehr sind verschiedene mediatorgestützte 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 gewählt: die Verhältnisse der Enzyme, Ligninmasse, Konzentrationen an Eisen-, Mangan-, Oxalat-Ionen, ABTS, Violursäure und H₂O₂. Somit werden elf Parameter simultan optimiert. Als Algorithmus wurde ein Programm mit variabler Genkodierung entwickelt. Die Umsetzung des Lignins wird dabei über den verfolgt. Zurzeit ist ein enzymatischer Umsatz von 12% möglich. 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, während Laccase keinen Einfluss hat. Des Weiteren beeinflussen die Konzentrationen von Mangan und Oxalat die Umsetzung, während die Variation von ABTS- und H₂O₂ nur eine geringe Auswirkung hat.
Epilepsy
(2010)
Biomechanics studies biological soft tissue materials (growth, remodeling) in vivo. For this objective, the detailed information of material properties must be well defined to construct reliable constitutive models. In the paper, the bulge test is carried out with elastomers in order to develop a test method. Then, application of the test for soft tissue materials is straightforward due to the similarities between elastomers with soft tissue materials as proved in Holzapfel 2005, Ogden 2009. It means, after the preliminary experiments and parameter identification with rubber materials has been setup, experiments on soft tissue materials can be similarly carried out. Elastomers have a complex behavior which strongly depends on the largest previous load cycle. For simplicity we consider only the first loading.
Various models have been proposed for the prediction of the necessary support pressure at the face of a shallow tunnel. To assess their quality, the collapse of a tunnel face was modelled with small-scale model tests at single gravity. The development of the failure mechanism and the support force at the face in dry sand were investigated. The observed displacement patterns show a negligible influence of overburden on the extent and evolution of the failure zone. The latter is significantly influenced, though, by the initial density of the sand: in dense sand a chimney-wedge-type collapse mechanism developed, which propagated towards the soil surface. Initially, loose sand did not show any discrete collapse mechanism. The necessary support force was neither influenced by the overburden nor the initial density. A comparison with quantitative predictions by several theoretical models showed that the measured necessary support pressure is overestimated by most of the models. Those by Vermeer/Ruse and Léca/Dormieux showed the best agreement to the measurements.
With the final objective of optimizing the "Micromix" hydrogen combustion principle, a round jet in a laminar cross-flow prior to its combustion is investigated experimentally using Stereoscopic Particle Image Velocimetry. Measurements are performed at a jet to cross-stream momentum ratio of 1 and a Reynolds number, based on the jet diameter and jet velocity, of 1600. The suitability to combine side, top and end views is analyzed statistically. The statistical theory of testing hypotheses, pertaining to the joint distribution of the averaged velocity along intersecting observation planes, is employed. Overall, the averaged velocity fields of the varying observation planes feature homogeneity at a 0.05 significance level. Minor discrepancies are related to the given experimental conditions. By use of image maps, averaged and instantaneous velocity fields, an attempt is made to elucidate the flow physics and a kinematically consistent vortex model is proposed. In the time-averaged flow field, the principal vortical systems were identified and the associated mixing visualized. The jet trajectory and physical dimensions scale with the momentum ratio times the jet diameter. The jet/cross-flow mixture converging upon the span-wise centre-line, the lifting action of the Counter Rotating Vortex Pair and the reversed flow region contribute to the high entrainment and mixedness. It is shown that the jet width is larger on the downstream side as compared to the upstream side of the centre-streamline. The deepest penetration of the particles on the outer boundary occurs in the centre-plane. Meanwhile, with increasing off-centre position, the boundaries all lay further from the centre-line position than does the boundary in the centre-plane, corresponding to a kidney-like shape of the flow cross-section. The generation of the Counter Rotating Vortex Pair and the instability mechanism is documented by instantaneous image maps and vector fields. The necessary circulation for the Counter Rotating Vortex Pair originates from a combined effect of steady in-hole, hanging and wake vortices. The strong cross-flow and jet interaction induces a three-dimensional waving, the stream-wise Counter Rotating Vortex Pair pair, leading to the formation of Ring Like Vortices. A secondary Counter Rotating Vortex Pair forms on top of the primary Counter Rotating Vortex Pair, resulting in mixing by "puffs". Overall, Stereoscopic Particle Image Velocimetry proofed capable of elucidating the Jet in Cross-Flow complex flow field. The gained insight in the mixing process will definitely contribute to the "Micromix" hydrogen combustion optimization.