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Eingeladener Vortrag
- nein (16)
Raw material supply is essential for all industrial activities. The use of secondary raw material gains more importance since ore grade in primary production is decreasing. Meanwhile urban stock contains considerable amounts of various elements. Photovoltaic (PV) generating systems are part of the urban stock and recycling technologies for PV thin film modules with CdTe as semiconductor are needed because cadmium could cause hazardous environmental impact and tellurium is a scarce element where future supply might be constrained. The paper describes a sequence of mechanical processing techniques for end-of-life PV thin film modules consisting of sandblasting and flotation. Separation of the semiconductor material from the glass surface was possible, however, enrichment and yield of valuables in the flotation step were non-satisfying. Nevertheless, recovery of valuable metals from urban stock is a viable method for the extension of the availability of limited natural resources.
Thermische Bodenbehandlung
(2008)
Die Normung von Analyseverfahren ermöglicht, dass Parameter unter standardisierten Bedingungen qualitätsgesichert ermittelt werden können. Insbesondere dann, wenn Verfahren in gesetzliche Regelwerke einfließen, ist es notwendig, dass die Ergebnisse sicher und vergleichbar sind und der Aufwand im Vollzug vertretbar ist. Derzeit werden viele Parameter in verschiedenen Verordnungen nach unterschiedlichen genormten Verfahren analysiert, was die Überwachungsarbeit erschwert und zudem unnötig teurer macht. Aus diesem Grund wir eine sogenannte horizontale Normung angestrebt, bei der geeignete Analyseverfahren auch Matrices-übergreifend genormt und anschließend EU-weit zitiert werden können. Grundvoraussetzung für die Verabschiedung als Norm ist die Validierung der Verfahren. Bereits vor einigen Jahren erteilte die EU ein Mandat an CEN (Europäisches Komitee zur Normung), um umweltrelevante Parameter Matrices-übergreifend zu validieren. Allerdings konnten nicht alle für diverse Verordnungsnovellen (z.B. Klärschlammverordnung) wichtigen Parameter im Rahmen dieses Projekts validiert werden. Aus diesem Grund wurde das aktuelle Vorhaben in den Umweltforschungsplan des BMUB aufgenommen und von der BAM durchgeführt. Im Forschungsvorhaben konnten im Bereich der anorganischen Parameter die CEN/TS 16170 (Elemente mit ICP-OES), CEN/TS 16171 (Elemente mit ICP-MS) und CEN/TS 16175-2 (Quecksilber mit CV-AFS) sowie im Bereich der organischen Parameter die CEN/TS 16181 (PAK mit HPLC und GC), die CEN/TS 16167 (PCB mit GC-MS und GC-ECD) und die CEN/TS 16190 (Dioxine, Furane und dl-PCB mit HR-GC-MS) für die Analyse von Klärschlamm, behandeltem Bioabfall und Boden erfolgreich validiert werden. Die validierten Verfahren stehen nun kurz vor der Verabschiedung als EN (Europäische Norm).
A thin-layer reference material for surface and near-surface analytical methods was produced and certified. The surface density of the implanted Sb layer was determined by Rutherford backscattering spectrometry (RBS), instrumental neutron activation analysis (INAA), and inductively coupled plasma isotope dilution mass spectrometry (ICP-IDMS) equipped with a multi-collector. The isotopic abundances of Sb (121Sb and 123Sb) were determined by multi-collector ICP-MS and INAA. ICP-IDMS measurements are discussed in detail in this paper. All methods produced values traceable to the SI and are accompanied by a complete uncertainty budget. The homogeneity of the material was measured with RBS. From these measurements the standard uncertainty due to possible inhomogeneities was estimated to be less than 0.78% for fractions of the area increments down to 0.75 mm2 in size. Excellent agreement between the results of the three different methods was found. For the surface density of implanted Sb atoms the unweighted mean value of the means of four data sets is 4.8121016 cm-2 with an expanded uncertainty (coverage factor k=2) of 0.0921016 cm-2. For the isotope amount ratio R (121Sb/123Sb) the unweighted mean value of the means of two data sets is 1.435 with an expanded uncertainty (coverage factor k=2) of 0.006.
Thin film chalcogenide photovoltaic technologies (CIGS, CdTe) make use of critical and toxic materials. Therefore a sound recycling of production waste and of end-of-life PV modules is essential to increase the availability of critical materials and to decrease the environmental impact of the products. Several processes to recover metals and semiconductors from thin-film PV modules have been developed, with some being operated at pilot scale. This paper presents an overview of proven recycling concepts. The approaches were divided into three steps: 'delamination of the modules', 'decoating of the substrate' and 'extraction and refining of the metals and semiconductors' to illustrate possible recycling paths. For each step feasible mechanical or chemical processes are presented and their advantages and drawbacks are described. The results show that recycling technologies for chalcogenide photovoltaic modules are sufficiently explored and commercially available. However, the responsibility to set up efficient collection and recycling systems is in the hands of the PV producers and must be supported by appropriate policies.
This article presents a snapshot of key issues regarding characterization of granular waste materials with respect to their reuse as alternative construction materials, and the factors that need to be considered in their reutilization in order to comply with soil and groundwater protection regulations.
When reusing or disposing of contaminated granular waste materials there is a need to evaluate how the contaminants will interact on the pathway soil-groundwater and the effect this interaction will have on the surrounding environment. While column testing can provide a closer approximation to field percolation conditions than batch testing, there is still a need to develop column testing procedures that consider the requirements of practical testing time frames. This study evaluates the effect of different column contact times (2.5, 5, and 16 h) on the release of inorganic constituents from bottom ash and demolition waste, two commonly reused granular materials. Leaching data for representative constituents of concern, such as copper, chromium, sulfate and chloride, as well as pH and electrical conductivity was compared for all different contact times studied.
Results for the materials investigated in this study showed that variations in contact time have no significant effect on the release of the selected constituents and leaching parameters at low liquid to solid ratios. However, after a liquid to solid ratio of 1 L/kg, the effect is more noticeable, and higher contact times show lower pH values as well as a reduction in the release of constituents of concern from bottom ash. In the case of demolition waste, the variation of contact time did not have a strong effect on the leaching behavior.