TY - CONF A1 - Schraut, Katharina A1 - Adamczyk, Burkart A1 - Simon, Sebastian A1 - von Werder, Julia A1 - Meng, Birgit A1 - Stephan, D. A. A1 - Adam, Christian T1 - Zementklinker durch Nachbehandlung von Stahlwerksschlacken N2 - Die Klinkerphasenbildung durch Sinterung in Drehrohröfen bei der Herstellung von Portlandzementklinker (PZK) ist gründlich erforscht und optimiert. Im Hinblick auf mögliche ökonomische und ökologische Vorteile befassen sich aktuelle Forschungsvorhaben darüber hinaus mit der Herstellung von Klinkermineralen aus Stahlwerksschlacken, die eine vergleichbare chemische Zusammensetzung aufweisen. Neuste Untersuchungen zeigen, dass nach der reduzierenden Behandlung schmelzflüssiger Linz-Donawitz-(LD)-Schlacken und Abscheidung des gebildeten metallischen Eisens eine mineralische Schlacke entsteht, die unabhängig von ihren Abkühlbedingungen ca. 50–60 Gew.% des wichtigsten Klinkerminerals Alit (C3S) enthält und eine hohe hydraulische Reaktivität aufweist. Die Stabilität des Alits auch nach langsamer Abkühlung deutet auf eine Stabilisierung des Minerals durch Nebenelemente aus den LD-Schlacken hin. Ein sinkender Anteil an LD-Schlacke durch Zusatz synthetischer Schlackemischung, die sich hinsichtlich ihrer Hauptkomponenten wie eine ausreduzierte LD-Schlacke zusammensetzt, führt zu einem Rückgang des Alitgehaltes und dem Zerfall der Schlacke beim Erstarren. T2 - 5. Schlacken-Symposium CY - Meitingen, Germany DA - 25.10.2018 KW - LD-Schlacke KW - Zement KW - Tricalciumsilikat PY - 2018 SP - 219 EP - 229 PB - Max Aicher Unternehmensgruppe AN - OPUS4-46412 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Taube, Mareike Carolin A1 - Adam, Christian A1 - Adamczyk, Burkart A1 - Schulenburg, F. A1 - Bartmann, U. A1 - Beckmann, T. A1 - Michalik, K. A1 - Reuter, M. A1 - Stelter, M. T1 - Optimisation of a Pyrometallurgical Niobium and Tantalum Recyling Process with on-line-LIBS N2 - Tantalum and niobium are essential for the development of electronics towards a more and more compact design, but without reducing their performance today. Especially in smart phones and tablets, tantalum and niobium capacitors with high charge densities have already become almost indispensable. However, tantalum as a critical raw material is still a problem for the sustainable production of electronics. Due to this fact, the existence of efficient recycling processes especially in Europe is becoming even more important nowadays. The Bundesanstalt für Materialforschung und -prüfung (BAM) is currently working on the optimisation of an existing pyrometallurgical tantalum recycling process. Optimisation of this industrial process is carried out in a small-scale electric arc furnace (480 kVA, capacity approx. 150 kg/h) at BAM using a new and innovative equipment for on-line analysis of high temperature processes. The aim of this project is to identify the best timing for an optimum slag tapping, when the slag is lower than minimum targeted tantalum concentration. Hence, LIBS (Laser induced breakdown spectroscopy) is used to identify the chemical composition of the slag layer and during slag tapping. The on-line-LIBS prototype of BAM enables an in-situ measurement of the element distribution in the melt after calibration on the slag system. First results of this joint research project will be presented including LIBS-measurements and thermodynamic and kinetic aspects of the process. T2 - European Mineral Processing & Recycling Congress (EMPRC 2018) CY - Essen, Germany DA - 25.06.2018 KW - Laser-induced breakdown spectroscopy KW - On-line analysis KW - Tantalum KW - Niobium KW - Pyrometallurgy PY - 2018 SN - 978-3-940276-84-1 SP - 347 EP - 362 PB - GDMB Verlag GmbH CY - Clausthal-Zellerfeld AN - OPUS4-47040 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adamczyk, Burkart A1 - Schraut, Katharina A1 - Adam, Christian ED - Thiel, S. ED - Thomé-Kozmiensky, E. ED - Friedrich, B. ED - Pretz, T. ED - Quicker, P. ED - Senk, D. G. ED - Wortruba, H. T1 - Nachbehandlung von Stahlwerksschlacken und deren Verwertung als Klinkermaterial T1 - Post-treatment of steelmaking slags and their utilisation as cement clinker N2 - Steelmaking slags produced using the Linz-Donawitz method (LD slags) are widely used as building and construction materials in road, earth and water works. Because the legal conditions become more and more re-strictive , this application is uncertain in the future. LD slags contain high amounts of mineral bound iron (in form of Fe2O3), which must be considered as a waste of resources. Except for the Iron the chemical composition is quite similar to that of Portland cement clinker. However, due to the high content of Fe2O3 the mineralogical composition differs significantly, resulting in a low hydraulic reactivity. A post-treatment of the liquid LD slag in an electric arc furnace under reducing conditions enables the reduction of the iron compounds to metallic iron, which separates from the mineral phase due to its higher density. The remaining solidified mineral fraction mainly contains typical crystalline phases of cement clinker in similar ratios: Alite (Ca3SiO5; > 60%) as main phase, Belite (Ca2SiO4, 10%), Tricalciumaluminate (Ca3Al2O6; 5%) and Brownmillerite (Ca2(Al,Fe)2O5, 1%) as secondary phases. Alite, which usually decomposes to Belite and free lime under slow cooling conditions, is stabilized in the Fe-reduced slag probably by integration of foreign ions into the lattice and is stable even if the slag is cooled down very slowly. Furthermore, the particularly large Alite crystals do not exhibit the typical decomposition edge of Belite and lime, found in Alite from ordinary ce-ment clinker. Technological tests for building materials show a high hydraulic reactivity and a compressive strength after 28 days comparable or even slightly higher to reference cement. Nevertheless, because of the increasing viscosity with decreasing Fe2O3 content, the treatment requires a temperature higher than the slag decanted from the LD converter. Furthermore, during the reduction of the bound Iron huge amounts of carbon monoxide are released, resulting in foaming of the slag. Both aspects make it difficult to manage the process. In addition, for economic reasons the treatment has to be carried out immediately after casting the slag from the LD converter to avoid the solidification, which is a logistical challenge for most steel plants. Otherwise the separation of the mineral bound iron as metallic phase and the utilisation of the mineral fraction as cement clinker will both save resources and lower the global CO2-output. For these reasons further initiatives should be considered in the medium term. N2 - LD-Schlacken weisen eine große chemische Ähnlichkeit zu Protlandzementklinker auf. Sie enthalten jedoch noch bis zu 30% Eisen, das mineralisch in oxidischer Form gebunden vorliegt. Dadurch kann sich bei der Erstarrung die wichtigste Klinkerphase "Alit" nicht ausbilden. Durch eine reduzierende Schmelzbehandlung der Schlacke kann des mineralisch gebundene Eisen als Metall separiert werden. Dadurch wird auch die Mineralogie der Schlacke so verändert, dass auch sie nun praktisch einem Portlandzementklinker entspricht. Entsprechende Versuche wurden am kleintechnischen Lichtbogenofen der BAM durchgeführt. Es werden Ergebnisse vorgestellt und auf Grenzen und Möglichkeiten eines derartigen Prozesses im Hinblick auf eine industrielle Umsetzung eingegangen. T2 - Berliner Konferenz Mineralische Nebenprodukte und Abfälle CY - Berlin, Germany DA - 11.06.2018 KW - Zementklinker KW - Stahlwerksschlacke KW - LD-Schlacke KW - Lichtbogenofen KW - Alit PY - 2018 SN - 978-3-944310-41-1 VL - 5 SP - 282 EP - 296 PB - Thomé-Kozmiensky Verlag GmbH CY - Neuruppin AN - OPUS4-45199 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Weimann, Karin A1 - Adam, Christian ED - Martins, I. M. ED - Ulsen, C. ED - Villagran, Y. T1 - Advantages of recycling gypsum plasterboards N2 - Advantages of recycling gypsum plaster boards During the last decades the material composition of buildings has become increasingly diverse. However, largely sorted material flows are needed for generating high quality secondary building materials. The use of secondary building materials can meet the requirements of sustainability in several ways: the extended time availability of primary raw materials and, thereby, the preservation of natural resources as well as the conservation of landfill sites. Recycling of gypsum (calcium sulfate) can be a good example for the environmental benefits of closed-loop recycling. The content of sulfates in other secondary building materials, in particular in recycled concrete aggregates, should be minimized for quality reasons. In contrast, separated gypsum can also be used in gypsum production if the high quality requirements for the recycled gypsum are met. Since almost all processing steps in the recycling process are associated with environmental impacts, an environmental evaluation of the use of recycled gypsum as a substitute in gypsum production has to be carefully conducted. This paper focusses on the techniques for generating recycled gypsum from gypsum plasterboards, the related quality requirements and a comprehensive environmental evaluation of the complete process. T2 - IV International Conference Progress of Recycling in the Built Environment CY - Lisbon, Portugal DA - 11.10.2018 KW - Environmental evaluation KW - Gypsum KW - CDW processing PY - 2018 SN - 978-2-35158-208-4 VL - PRO 124 SP - 243 EP - 250 PB - Rilem publications S.A.R.L. CY - Paris AN - OPUS4-48078 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -