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Author |
Stosic, D. |
Title |
High-performance Ginzburg-Landau simulations of superconductivity |
Type |
Doctoral thesis |
Year |
2018 |
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166 p. |
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Doctoral thesis; Condensed Matter Theory (CMT) |
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Superconductivity is one of the most important discoveries of the last century. With many applications in physics, engineering, and technology, superconductors are crucial to our way of living. Several material and engineering issues however prevent their widespread usage in everyday life. Comprehensive studies are being directed at these materials and their properties to come up with new technologies that will address these challenges and enhance their superconductive capabilities. In this context, numerical modeling plays an important role in the search of new solutions to existing material and engineering issues. The time-dependent Ginzburg-Landau (TDGL) theory is a powerful predictive tool for modeling the macroscopic behavior of superconductors. However most of the numerical algorithms developed so far are incapable of describing many basic properties of real superconducting devices, and are too slow on current hardware for large-scale numerical simulations necessary for their accurate description. Therefore, the purpose of this thesis is to develop high-performing numerical solutions that can correctly describe material features to be used as modeling tools of laboratory experiments. Some important innovations introduced in this work include the numerical modeling of nonrectangular geometrical shapes with complex electrical and insulating components, the inclusion of dynamic heating of the material, and the description of different types of material inhomogeneities. These encompass the principal features necessary for a complete description of the superconductive physics in real material samples. In this thesis a numerical solution is developed for modeling superconducting thin films and used to study the superconductive properties of three experimental configurations: the dynamics of vortex matter in a Corbino disk, the motion of ultrafast vortices in an hourglass-shaped microbridge, and the photon detection process in a meander-patterned nanowire. Moreover, a numerical solution is developed for modeling three-dimensional superconductors which are studied here for the first time in the type-I superconducting regime. These numerical algorithms are optimized to exploit the computational horsepower of graphics processing units (GPUs) and multicore central-processing unit (CPU) clusters such that they can achieve high-performance and be used to model large-scale problems previously impossible on conventional machines. Several computational tools are also designed to assist with the modeling of superconducting devices. These include a numerical library of the TDGL equations, a novel mechanism for the generation of complex geometries, a closed-form solver to conduct numerical simulations, and a graphics user interface (GUI) to visualize the dynamic behavior of superconductors. The contributions in this thesis ultimately push the boundaries on what is possible in state-of-the-art numerical modeling of superconductivity. |
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UA @ admin @ c:irua:181141 |
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8034 |
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Author |
Vanmeert, F. |
Title |
Highly specific X-ray powder diffraction imaging at the macroscopic and microscopic scale |
Type |
Doctoral thesis |
Year |
2019 |
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Doctoral thesis; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
Abstract |
At or below the surface of painted works of art, valuable information is present that provides insights into an object’s past, such as the artist’s technique and the creative process that was followed or its conservation history, but also on its current state of preservation. Typically, a (very) limited set of small paint samples is taken which provide direct access to the individual paint layers. The chemical build-up of these layers can then be investigated in great detail using various microscopic analytical methods. However, in recent years a new trend towards both elemental and chemical imaging techniques has been set which are capable of visualizing the (often) heterogeneous composition of painted objects on a macroscopic scale. In this dissertation, various forms of specificity attainable with X‑ray powder diffraction (XRPD) imaging are explored: at the chemical, material and spatial level. This high specificity is illustrated throughout several applications stemming from the field of cultural heritage, both at the macroscopic (MA) and microscopic (µ) scale. As a first step, XRPD imaging was transformed to a transportable instrument that can be employed for the in situ investigation of artworks, e.g., inside museums and conservation workshops. With this unique instrument large‑scale maps (cm2 – dm2) reflecting the distribution of crystalline phases on/below the surface of flat painted artefacts can be visualized in a noninvasive manner. In this way compound-specific information was attained which can be related to original pigments or materials that have been added in a later stage and even degradation/secondary products that have formed spontaneously inside the paint layers. Additionally, with MA‑XRPD imaging it was possible to link quantitative information of pigment compositions and preferred orientation effects to the 2D compound‑specific distribution images, allowing for a further distinction between very similar artists’ materials. Furthermore, promising results for the limited depth-selectivity of this technique, obtained by exploiting the small shift in the position of the diffraction signals originating from the layered sequence of the pigments, are shown. Finally, a minute paint sample from Wheat stack under a cloudy sky by Van Gogh was investigated at a synchrotron radiation facility with tomographic µ‑XRPD imaging at the microscopic scale. The high chemical and spatial specificity of this imaging method was exploited to further elucidate the degradation pathway of the red lead pigment. |
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UA @ admin @ c:irua:159805 |
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8043 |
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Author |
Abreu Alfonso, Y. |
Title |
Hyperfine parameters and radiation damage in semiconductors and superconducting materials |
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Doctoral thesis |
Year |
2014 |
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126 p. |
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Doctoral thesis; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:116686 |
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8047 |
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Bondarenko, I.; Treiger, B.; Van Grieken, R.; van Espen, P. |
Title |
IDAS: a new Windows based software for multivariate analysis of atmospheric aerosol composition data bases |
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H3 Book chapter |
Year |
1995 |
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308-315
T2 - Space and time in environmental infor |
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H3 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation); Chemometrics (Mitac 3) |
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UA @ admin @ c:irua:12357 |
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8049 |
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Salvadó, N.; Butí, S.; Pradell, T.; Beltran, V.; Cinque, G.; Juanhuix, J. |
Title |
Identification and distribution of metal soaps and oxalates in oil and tempera paint layers in fifteenth-century altarpieces using synchrotron radiation Techniques |
Type |
H1 Book chapter |
Year |
2019 |
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195-210
T2 - Metal soaps in art : conservation and |
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H1 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
Abstract |
The formation and distribution of metal soaps produced as a result of the reactivity and aging of the materials in a fifteenth-century egg tempera and oil paintings on wood are presented. The painting technique involves the application of several paint layers over a ground using, sometimes in the same paint layer sequence, drying oil and egg yolk binders. We show, with a selection of examples, how the use of thin sections and a combination of various micro-sensitive analytical techniques is adequate to obtain the high-quality data necessary for the unambiguous identification of metal soaps and metal oxalates as well as their distribution in the paint layers. The techniques include micro infrared spectroscopy (μSR-FTIR) and micro X-ray diffraction (μSR-XRD) with synchrotron radiation, optical microscopy (OM), and scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM-EDS). The data obtained sheds light about the underlying reaction and aging mechanisms happening in each paint layer and among them. This helps to define the state of conservation of the artworks. |
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2019-03-23 |
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978-3-319-90616-4; 2366-6226; 978-3-319-90617-1 |
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Call Number |
UA @ admin @ c:irua:172891 |
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8051 |
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Author |
Verbueken, A.; Verpooten, G.; Nouwen, E.; de Broe, M.; Van Grieken, R. |
Title |
Identification of inorganic and organic microliths in kidney sections by laser microprobe mass analysis (LAMMA) |
Type |
P3 Proceeding |
Year |
1986 |
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P3 Proceeding; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation); Laboratory Experimental Medicine and Pediatrics (LEMP) |
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UA @ admin @ c:irua:117510 |
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8054 |
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Author |
de Nolf, W. |
Title |
Imaging of crystalline phase distributions by means of scanning and tomographic X-ray powder diffraction |
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Doctoral thesis |
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2013 |
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407 p. |
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Doctoral thesis; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:110910 |
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8057 |
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Mozo, I.; Lacoste, L.; De Cocker, P.; Vlaeminck, S.E.; Sperandio, M.; Bessiere, Y.; Hernandez-Raquet, G.; Caligaris, M.; Barillon, B.; Martin Ruel, S. |
Title |
Impact of temperature on mainstream deammonification performance and microbial community |
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P3 Proceeding |
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2016 |
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3 p.
T2 - IWA World Water Congress & Exhibition (W |
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P3 Proceeding; Engineering sciences. Technology; Sustainable Energy, Air and Water Technology (DuEL) |
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UA @ admin @ c:irua:151121 |
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8065 |
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Schaubroeck, T.; De Clippeleir, H.; Weissenbacher, N.; Dewulf, J.; Boeckx, P.; Vlaeminck, S.E.; Wett, B. |
Title |
The importance of resource recovery for the environmental sustainability of an energy self-sufficient sewage treatment plant |
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P3 Proceeding |
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2015 |
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3 p.
T2 - IWA Resource Recovery Conference, 30 Aug |
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P3 Proceeding; Engineering sciences. Technology; Sustainable Energy, Air and Water Technology (DuEL) |
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UA @ admin @ c:irua:151141 |
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8068 |
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Samaee, V. |
Title |
In-situ transmission electron microscopic nanomechanical investigations of Ni |
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2018 |
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172 p. |
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Doctoral thesis; Electron microscopy for materials research (EMAT) |
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UA @ admin @ c:irua:156143 |
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8075 |
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Storms, H.; Artaxo, P.; Bruynseels, F.; Van Grieken, R. |
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Individual particle analysis by automated EPMA for the improvement of source apportionment for remote aerosols |
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1987 |
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343-345
T2 - Microbeam analysis 1987 / Geiss, R.H. |
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H3 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:117525 |
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8077 |
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Wegrzynek, D.; Eisma, D.; Van Grieken, R. |
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Individual particle analysis of sediments from the Gulf of Lions, suspensions from the Rhône river and dust of Saharan origin: preliminary results |
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1992 |
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P3 Proceeding; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:2861 |
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8078 |
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Kontozova, V.; Godoi, R.H.M.; Spolnik, Z.; Worobiec, A.; Deutsch, F.; Van Grieken, R. |
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Influence of gaseous and particulate air pollutants on stained glass windows: case study in the Basilica Saint Urbain in Troyes, France |
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2005 |
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P3 Proceeding; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation); Laboratory Experimental Medicine and Pediatrics (LEMP) |
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UA @ admin @ c:irua:52359 |
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8092 |
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Anaf, W. |
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The influence of particulate matter on cultural heritage : chemical characterisation of the interaction between the atmospheric environment and pigments |
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2014 |
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319 p. |
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Doctoral thesis; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:119329 |
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8095 |
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Zhang, Q.; De Clippeleir, H.; DeBarbadillo, C.; Su, C.; Al-Omari, A.; Wett, B.; Chandran, K.; Vlaeminck, S.E.; Murthy, S. |
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Inhibition mechanisms affecting deammonification of dewatering filtrate from thermally hydrolyzed digested solid |
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P3 Proceeding |
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2016 |
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9 p.
T2 - WEFTEC.16, 24 - 28 September 2016, New O |
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P3 Proceeding; Engineering sciences. Technology; Sustainable Energy, Air and Water Technology (DuEL) |
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UA @ admin @ c:irua:151123 |
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8102 |
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Claes, M.; Gysels, K.; Van Grieken, R.; Harrison, R.M. |
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Inorganic compounds of atmospheric aerosols |
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1998 |
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95-145
T2 - Atmospheric particles / Harrison, R.M. |
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H3 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:20968 |
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8104 |
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Potgieter-Vermaak, S.; Van Grieken, R.; Potgieter, J.H. |
Title |
Integrated analytical techniques for analysing individual environmental particles |
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2012 |
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123-141
T2 - Spectroscopic properties of inorganic |
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H2 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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978-1-84973-395-3 |
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UA @ admin @ c:irua:109314 |
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8108 |
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Van Grieken, R.; Darchuk, L.; Kontozova, V.; Potgieter-Vermaak, S.; van Meel, K.; Stefaniak, E.; Worobiec, A. |
Title |
Integration of analysis techniques of different scales using X ray induced and electron induced X ray spectrometry for applications in preventive conservation and environmental monitoring |
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2011 |
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53-56
T2 - Integration of nuclear spectrometry met |
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H2 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation); Laboratory Experimental Medicine and Pediatrics (LEMP) |
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In the past years, and also within the framework of this CRP, we have used a combination of several nuclear and non-nuclear techniques in fundamental research and especially in various applications. Most work has been done with energy-dispersive X ray fluorescence in combination with electron probe X ray microanalysis, but several other more common analysis techniques have been used as well. The applications have included mostly preventive conservation (e.g. characterisation of damaging atmospheric particles in many museums) and environmental monitoring (e.g. for atmospheric particles in relation to their health effects in outdoor and especially indoor environments). Fundamental aspects have been in the optimising of interfaced electron microprobe and Raman microprobe analysis and the evaluation of the potential of such an instrument for atmospheric aerosols; quite a few unexpected and unpredicted problems have appeared in the latter study. |
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978-92-0-121310-5 |
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UA @ admin @ c:irua:97169 |
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8110 |
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Johansson, T.B.; Van Grieken, R.E.; Winchester, J.W. |
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Interpretation of aerosol trace metal particle size distributions |
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H3 Book chapter |
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1975 |
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356-365
T2 - Nuclear techniques in environmental r |
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H3 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:117460 |
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8117 |
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Van Grieken, R. |
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Introduction: considering the role of X-ray spectrometry in chemical analysis and outlining the volume |
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2004 |
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1-11
T2 - X-ray spectrometry: recent technological |
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H3 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:43877 |
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8121 |
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Godoi, R.H.M.; Kontozova, V.; Godoi, A.F.L.; Van Grieken, R. |
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Investigation of individual particles and gaseous air pollutants in showcases |
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2004 |
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147-150
T2 - Air pollution and cultural heritage / |
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H3 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:48941 |
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8126 |
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Sui, Y.; Alloul, A.; Muys, M.; Makyeme, M.; Coppens, J.; Verstraete, W.; Vlaeminck, S.E. |
Title |
Invigorating the renaissance of single cell protein : safe opportunities for nutrient recovery and reuse as feed ingredient |
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P3 Proceeding |
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2016 |
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12 p.
T2 - WEF/IWA Nutrient Removal and Recovery C |
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P3 Proceeding; Engineering sciences. Technology; Sustainable Energy, Air and Water Technology (DuEL) |
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UA @ admin @ c:irua:151128 |
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8130 |
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Van Winckel, T.; Yapuwa, H.; Wett, B.; Sturm, B.; Vlaeminck, S.E.; Al-Omari, A.; Murthy, S.; De Clippeleir, H. |
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Its time to harvest : combining internal selection and flocculent external selection to maximize carbon capture efficiency |
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P3 Proceeding |
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2017 |
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3 p.
T2 - WEFTEC.17, 30 September 4 October 2017, |
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P3 Proceeding; Engineering sciences. Technology; Sustainable Energy, Air and Water Technology (DuEL) |
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UA @ admin @ c:irua:151112 |
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8133 |
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van der Snickt, G. |
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James Ensor's pigments studied by means of portable and synchrotron radiation-based X-ray techniques : evolution, context and degradation |
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Doctoral thesis |
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2012 |
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501 p. |
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Doctoral thesis; Art; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:100628 |
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8135 |
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Van Grieken, R.; Fobe, B. |
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Kultuurpatrimonium, zure regen en energie |
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A3 Journal article |
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1990 |
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Energie en milieu: tijdschrift over energie en leefmilieu |
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1 |
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10-11 |
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A3 Journal article; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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0777-4850 |
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UA @ admin @ c:irua:116827 |
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8143 |
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Gielis, J.; Shi, P.; Beirinckx, B.; Caratelli, D.; Ricci, P.E. |
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Lamé-Gielis curves in biology and geometry |
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P3 Proceeding |
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2021 |
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P3 Proceeding; Sustainable Energy, Air and Water Technology (DuEL) |
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Most recent IF: NA |
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UA @ admin @ c:irua:178828 |
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8145 |
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Author |
Otten, P.; Bruynseels; Van Grieken, R. |
Title |
LAMMA analysis of inorganic ammonium compounds in individual marine aerosol particles |
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P3 Proceeding |
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1986 |
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P3 Proceeding; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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UA @ admin @ c:irua:117509 |
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8147 |
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Verbueken, A.; Paulus, G.; Van de Vyver, F.; Verpooten, G.; de Broe, M.; Van Grieken, R. |
Title |
LAMMA : calibration and application to nephrotoxicology studies |
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P3 Proceeding |
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1983 |
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P3 Proceeding; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation); Laboratory Experimental Medicine and Pediatrics (LEMP) |
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Call Number |
UA @ admin @ c:irua:117491 |
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8149 |
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Verbueken, A.H.; Paulus, G.J.; Van de Vyver, F.L.; Verpooten, G.A.; Visser, W.J.; de Broe, M.E.; Van Grieken, R.E. |
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LAMMA in nephrotoxicity studies |
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P3 Proceeding |
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1984 |
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P3 Proceeding; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation); Laboratory Experimental Medicine and Pediatrics (LEMP) |
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Call Number |
UA @ admin @ c:irua:117492 |
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8150 |
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Bruynseels, F.; Artaxo, P.; Storms, H.; Van Grieken, R. |
Title |
LAMMA-study of aerosol samples collected in the Amazon basin |
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1987 |
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355-358
T2 - Microbeam analysis 1987 / Geiss, R.H. |
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H3 Book chapter; AXES (Antwerp X-ray Analysis, Electrochemistry and Speciation) |
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Call Number |
UA @ admin @ c:irua:117527 |
Serial |
8151 |
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