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- Active thermography (2)
- Aktive Thermografie (2)
- Raman microspectroscopy (2)
- Risse (2)
- Sewage sludge ash (2)
- Trackingsystem (2)
- 3D-Kartierung (1)
- Aquifer fluid (1)
- Bauwerksoberflächen (1)
- CCS (1)
Organisationseinheit der BAM
Development of new radiopharmaceuticals based on rhenium-188 depends on finding appropriate ligands able to give complexes with high in vivo stability. Rhenium(III) mixed-ligand complexes with tetradentate/monodentate ('4 + 1') coordination of the general formula [Re(NS3)(PRR'R' ')] (NS3 = tris(2-mercaptoethyl)amine and derivatives thereof, PRR'R' ' = phosphorus(III) ligands) appear to be among the promising tools to achieve this goal. According to this approach, we synthesized and characterized a series of rhenium model complexes. In vitro stabilities of the corresponding rhenium-188 complexes were determined by incubating 2-3 MBq or alternatively 37 MBq of the complexes in phosphate buffer, human plasma, and rat plasma, respectively, at 22° C or 37° C, followed by checking the amount of 188ReO4- formed after 1 h, 24, and 48 h by thin-layer chromatography. The rate of perrhenate formation varied over a wide range, depending primarily on the nature of the phosphorus(III) ligand. Physicochemical parameters of the corresponding nonradioactive rhenium complexes were analyzed in detail to find out the factors influencing their different stability and furthermore to design new substitution-inert '4 + 1' complexes. Tolman's cone angle of phosphorus(III) ligands and the lipophilic character of the inner coordination sphere were found to be crucial factors to build up stable rhenium '4 + 1' complexes. Additional information useful to describe electronic and steric properties of these compounds were selected from electronic spectra (wavelength of the ReS charge-transfer band), cyclovoltammetric measurements (E° of the ReIII/ReIV couple), and NMR investigations (31P chemical shift of coordinated P(III) ligands).
The reaction mechanisms of phosphate-bearing mineral phases from sewage sludge ash-based fertilizers in soil were determined by Raman and synchrotron infrared microspectroscopy. Different reaction mechanisms in wet soil were found for calcium and magnesium (pyro-) phosphates. Calcium orthophosphates were converted over time to hydroxyapatite. Conversely, different magnesium phosphates were transformed to trimagnesium phosphate. Since the magnesium phosphates are unable to form an apatite structure, the plant-available phosphorus remains in the soil, leading to better growth results observed in agricultural pot experiments. The pyrophosphates also reacted very differently. Calcium pyrophosphate is unreactive in soil. In contrast, magnesium pyrophosphate quickly formed plant-available dimagnesium phosphate.
Sewage sludge ash (SSA) based P-fertilisers were produced by thermochemical treatment of SSA with Cl-donors at approximately 1000 °C. During this thermochemical process heavy metals are separated as heavy metal chlorides via the gas phase. Chromium cannot be separated under normal conditions. The risk of the development of toxic Cr(VI) during the thermochemical process was investigated. X-ray Absorption Spectroscopy measurements showed that SSA and thermochemically treated SSA with CaCl2, MgCl2 and NaCl contain Cr(III) compounds only. In contrast, treating SSA with elevated quantities of Na2CO3, to enhance the plant-availability of the phosphate phases of the fertiliser, developed approximately 10–15% Cr(VI). Furthermore, Raman microspectroscopy showed that using Mg-carbonate reduces the risk of a Cr(VI) development during thermochemical treatment. Additionally, leaching tests showed that only a Crwater solubility >10% is an indicator for Cr(VI) in SSA based P-fertilisers.
Active thermography is well suited for the detection of delaminations and cracks in façade elements like plaster and tiles. Not only artificial heating but also solar heating can be used if the adjustment of the façade and the weather conditions are suitable. Optical methods like laser scanners, photogrammetric methods and crack tracking sensors are providing geometrical 3D data which can be used for a 3D mapping of thermograms and for providing data with higher geometrical resolution. Thus, by the combination and fusion of these data, a comprehensive mapping and monitoring of damages of façade systems is possible.
Optische dreidimsionale Erfassung und Datenverarbeitung von Bauwerksoberflächen in der Denkmalpflege
(2016)
Im Beitrag werden Verfahren und Strategien für die dreidimensionale und zeitaufgelöste Erfassung und Darstellung von Veränderungen an Bauwerken und Skulpturen vorgestellt. Ablösungen und Verformungen
können im Rahmen eines Monitoring über größere Zeiträume verfolgt werden. Anhand systematischer Untersuchungen an einer Fallstudie im Magdeburger Dom werden in diesem Beitrag die Vorgehensweise und
Ergebnisse vorgestellt. Zudem kann mit diesen Verfahren auch der Zustand einer Skulptur nach einer Restaurierung dokumentiert werden. Eine dreidimensionale Erfassung kann weiterhin dazu verwendet werden, eine Kopie einer Skulptur mit einem 3D‐Druck‐Verfahren herzustellen. Dieses Verfahren wird in Bezug auf die Genauigkeit mit einem herkömmlich erstellten Gipsabdruck verglichen.
For reliability and safety issues of injection wells, corrosion resistance of materials used needs to be determined. Herein, representative low-cost materials, including carbon steel X70/1.8977 and low alloyed steel 1.7225, were embedded in mortar to mimic the realistic casing-mortar interface. Two types of cement were investigated: (1) Dyckerhoff Variodur commercial Portland cement, representing a highly acidic resistant cement and (2) Wollastonite, which can react with CO2 and become stable under a CO2 stream due to the carbonation process. Exposure tests were performed under 10 MPa and at 333 K in artificial aquifer fluid for up to 20 weeks, revealing crevice corrosion and uniform corrosion instead of expected pitting corrosion. To clarify the role of cement, simulated pore water was made by dispersing cement powder in aquifer fluid and used as a solution to expose steels. Surface analysis, accompanied by element mapping on exposed specimens and their crosssections, was carried out to trace the chloride intrusion and corrosion process that followed.
Eines der bedeutendsten Kunstwerke des Magdeburger Doms sind die Putzritzungen am Ostflügel des Kreuzgangs aus dem 13. Jahrhundert. Der größte Teil der einzelnen Putzoberflächen sind Ausbesserungen oder Neuverputzungen aus verschiedenen Restaurierungs- oder Reparaturphasen. In dem von der Forschungsinitiative Zukunft Bau geförderten Projekt zur 3D-Kartierung von Bauwerksoberflächen wurden Untersuchungen zur Erfassung der Schäden an diesen Putzritzungen mit optischen 3D-Messverfahren und der aktiven Thermografie durchgeführt. Dabei wurden bei den optischen Verfahren hochauflösende Techniken zur Erfassung der Oberflächentopologie (Stereophotogrammmetrie) und zur Vermessung der Rissstrukturen und Ausbeulungen (3D-Trackingverfahren) eingesetzt. Die Zuordnung der Signaturen in den Thermogrammen zu Hohlstellen sowie Materialergänzungen und -ersatz wird diskutiert. Weiterhin erfolgt ein Vergleich der Ergebnisse mit Messungen an neu freigelegten Putzbereichen.
Die messtechnische Erfassung von Bauwerkschäden ist eine wichtige Voraussetzung für die dreidimensionale und zeitaufgelöste Darstellung von möglicherweise sicherheitsrelevanten Veränderungen an Bauwerken, wie z. B. Verformungen, Verwindungen und Risswachstum. Ziel des vorgestellten Projektes war die Entwicklung eines Verfahrens zur effizienten und wiederholbaren 3D-Schadenkartierung an zum Teil empfindlichen Bauteiloberflächen.
In this contribution, the development and application of optical and thermographic methods for the nondestructive evaluation of delaminations, cracks and further substructures in Connection with bulging is presented.
Since delaminated fagade elements show geometric as well as thermal anomalies, surface geometry and defects beneath the surface were investigated. As methods, Stereo photogrammetry, a tracking based method for tactile recording of geometric 3D data and active thermography were used. Two case studies were assessed with a combination of these methods: the plaster scratches at the Magdeburg Cathedral and a mural painting in Cobbelsdorf, both located in Germany. While the plaster scratches have been investigated by artificial heating with an infrared radiator, the rural painting was tested by analysing the temperature increase due to solar heating.