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71.
This Technical Note presents a systematic analysis of a steady-state biofilm model for the simultaneous utilization of an electron donor and an electron acceptor. It shows that the flux of the electron donor is balanced by the flux of the electron acceptor and the concentrations of the two substrates linearly depend on each other in a steady-state biofilm. An analytical solution can be derived for the substrate fluxes into the biofilm as direct functions of the bulk substrate concentrations. This analytical solution, not much more complicated than the one given by the classic single-substrate biofilm model, eliminates the need to identify the rate-liming factor from the two substrates prior to using it. Comparing the single-substrate and the dual-substrate biofilm models shows that the difference between the two for predicting the flux of the limiting substrate of a deep biofilm can be significant when the bulk concentration of the nonlimiting substrate becomes comparable with or less than its Monod half-saturation constant. 相似文献
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Eberhard W. Neuse Gregg Caldwell Axel G. Perlwitz 《Journal of Inorganic and Organometallic Polymers and Materials》1995,5(3):195-207
In continuation of previous investigations aiming at the development of macromolecular metal complexes for biomedical use, this communication describes poly(alkylene oxide)-grafted polymeric platinum complexes. The platinum-containing macromolecules are obtained from presynthesized polyaspartamide carriers bearing poly(ethylene/propylene oxide) side chains and hydroxyethyl side groups as hydrosolubilizing units in addition to ethylenediamine side group terminals for metal coordination. Platination is brought about by treatment of the carriers with tetrachloroplatinate(II) ion in aqueous solution at 25–60°C. pH 4–6. The polymeric products, purified by dialysis in aqueous solution, are isolated by freeze-drying in yields of 60–80%. Platinum contents are in the range of 4–15%. The metal is bound to the carrier through chelation with the ethylenediamine ligands, forming square-planarcis-dichloroethylenediamine-platinum(II) complex species as side-chain terminals. Initially, the product polymers dissolve smoothly in water. Although on room-temperature storage in the solid state they gradually turn insoluble as a consequence of intermolecular solid-state interaction, solubility is retained on low-temperature storage and in frozen aqueous solutions. 相似文献
75.
The influence of the concentration of peroxide (mainly dicumyl peroxide) and pentaerythritol tetraallyl ether as coagent and the effect of temperature on the crosslinking of atactic polypropylene (a-PP) with molar mass 12 000g/mol were investigated. Using this system, crosslinking of 40mass% of a-PP at 160°C was obtained. The problems associated with the mechanism for crosslinking of a-PP are discussed. 相似文献
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Eberhard Leibnitz 《大分子材料与工程》1993,204(1):101-110
By a new technique for the addition of monomers it is possible to increase the reproducibility of the synthesis of poly(1,4-phenylene-1,3,4-oxadiazoles) by one order of magnitude in relation to the known method, measured by the standard deviation of the relative viscosity of polymer solutions in concentrated sulfuric acid. This method leads to polymers with very high molecular weights under markedly milder reaction conditions and in shorter reaction times than by the classic method. The influence of the most important reaction parameters on the reaction rate and equilibrium of the polycondensation was investigated. An [η]/Mw-relation was established based on light-scattering and viscometric investigations of polymer solutions in concentrated sulfuric acid. 相似文献
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79.
New thermoelectric components using microsystem technologies 总被引:5,自引:0,他引:5
Bottner H. Nurnus J. Gavrikov A. Kuhner G. Jagle M. Kunzel C. Eberhard D. Plescher G. Schubert A. Schlereth K.-H. 《Journal of microelectromechanical systems》2004,13(3):414-420
This paper describes the first thermoelectric devices based on the V-VI-compounds Bi/sub 2/Te/sub 3/ and (Bi,Sb)/sub 2/Te/sub 3/ which can be manufactured by means of regular thin film technology in combination with microsystem technology. Fabrication concept, material deposition for some 10-/spl mu/m-thick layers and the properties of the deposited thermoelectric materials will be reported. First device properties for Peltier-coolers and thermogenerators will be shown as well as investigations on long term and cycling stability. Data on metal/semiconductor contact resistance were extracted form device data. Device characteristics like response time for a Peltier-cooler and power output for a thermogenerator will be compared to commercial devices. 相似文献