Dokument-ID Dokumenttyp Autoren/innen Persönliche Herausgeber/innen Haupttitel Abstract Auflage Verlagsort Verlag Herausgeber (Institution) Erscheinungsjahr Titel des übergeordneten Werkes Jahrgang/Band ISBN Veranstaltung Veranstaltungsort Beginndatum der Veranstaltung Enddatum der Veranstaltung Ausgabe/Heft Erste Seite Letzte Seite URN DOI Lizenz Datum der Freischaltung OPUS4-43648 Zeitschriftenartikel Vogel, Christian; Hermann, P.; Kästner, B.; Adamczyk, Burkart; Hoehl, A.; Ulm, G.; Adam, Christian Air and chlorine gas corrosion of different silicon carbides analyzed by nano-Fourier-transform infrared (nano-FTIR) spectroscopy The present study shows the potential of high-resolution imaging and nano-Fourier-transform infrared (nano-FTIR) spectroscopy for corrosion science. The protective oxidation layers of different chlorine-gas treated silicon carbides (SiCs) were characterized with these techniques. A nitrified SiC showed the highest resistant strength against chlorine corrosion at 1000 °C compared to the other SiCs. Nano-FTIR spectroscopy with a lateral resolution below 40 nm detected differences in the crystallinity of the bulk-SiC and in the transitional region to the protective layer. Furthermore, high-resolution imaging provides deep insight in the interfacial layer between bulk-SiC and the protective oxidation layer on sub-micrometer scale. Elsevier 2018 Corrosion Science 131 324 329 10.1016/j.corsci.2017.12.002 2018-01-09 OPUS4-44178 Vortrag Adam, Christian Chemische Charakterisierung von P-Recyclaten Zukünftig werden vermehrt P-Recyclate auf den Düngemittelmarkt kommen. Diese müssen ausreichend charakterisiert werden, um Sicherheit und Wirksamkeit beurteilen zu können. Mit dem Vortrag wurde der wissenschaftliche Beirat für Düngungsfragen des Bundesministeriums für Ernährung und Landwirtschaft beraten. 2018 Fachgespräch Recycling-Phosphate als Düngemittel für die Landwirtschaft Bonn, Germany 14.02.2018 15.02.2018 2018-02-16 OPUS4-43378 Zeitschriftenartikel Vogel, Christian; Rivard, C.; Wilken, V.; Muskolus, A.; Adam, Christian Performance of secondary P-fertilizers in pot experiments analyzed by phosphorus X-ray absorption near-edge structure (XANES) spectroscopy A pot experiment was carried out with maize to determine the phosphorus (P) plant-availability of different secondary P-fertilizers derived from wastewater. We analyzed the respective soils by P K-edge X-ray absorption near-edge structure (XANES) spectroscopy to determine the P chemical forms that were present and determine the transformation processes. Macro- and micro-XANES spectroscopy were used to determine the chemical state of the overall soil P and identify P compounds in P-rich spots. Mainly organic P and/or P adsorbed on organic matter or other substrates were detected in unfertilized and fertilized soils. In addition, there were indications for the formation of ammonium phosphates in some fertilized soils. However, this effect was not seen in the maize yield of all P-fertilizers. The observed reactions between phosphate from secondary P-fertilizers and cofertilized nitrogen compounds should be further investigated. Formation of highly plant-available compounds such as ammonium phosphates could make secondary P-fertilizers more competitive to commercial phosphate rock-based fertilizers with positive effects on resources conservation. Springer 2018 Ambio 47 1 62 72 urn:nbn:de:kobv:b43-433782 10.1007/s13280-017-0973-z http://creativecommons.org/licenses/by/3.0/de/deed.de 2017-12-11 OPUS4-45341 Zeitschriftenartikel Steckenmesser, D.; Vogel, Christian; Böhm, L.; Heyde, B.; Adam, Christian Fate of heavy metals and polycyclic aromatic hydrocarbons (PAH) in sewage sludge carbonisates and ashes - A risk assessment to a thermochemical phosphorus-recycling process In the near future, phosphorus (P) recycling will gain importance in terms of decreasing primary resources. Sewage sludge (SSL) is an adequate secondary P-resource for P-fertilizer production but it is also a sink for heavy metals and organic pollutants. The present study is an investigation on thermochemical P-recycling of SSL. Various temperatures and amendments were tested regarding their performance to remove heavy metals and polycyclic aromatic hydrocarbons (PAH) and simultaneous increase of the plant-availability of P. The investigations were carried out on two types of SSL originating from wastewater treatment plants with chemical P-precipitation and enhanced biological P-removal, respectively. The results show that thermochemical treatment with chlorine donors is suitable to remove the majority of heavy metals and that a combination of a gaseous chlorine donor (HCl) and sodium additives leads to both high heavy metal removal and high plant availability of P. Furthermore, plant experiments Show that almost all investigated thermochemical treatments can significantly reduce the bioavailability and plant uptake of heavy metals. Furthermore, PAHs are secondarily formed during low-temperature treatments (400-500 ° ), but can be significantly reduced by using sodium carbonate as an additive. Amsterdam Elsevier Ltd. 2018 Waste Management 78 576 587 10.1016/j.wasman.2018.06.027 2018-07-03 OPUS4-45679 Buchkapitel Adam, Christian; Krüger, Oliver IWA Publishing, Wastewater as a resource: From rare earth metals to phosphorus Wastewater contains a diverse array of organic and inorganic compounds and its complex composition strongly depends on the location and the connected dischargers. However, municipal wastewater as a carrier of feces and urine generally contains considerable amounts of the main nutrients nitrogen and phosphorus. The latter is in the focus of the discussions about the recovery potential of wastewater due to the relatively high mass flows of phosphorus in wastewater and the finite nature and decreasing quality of phosphate rock reserves. But due to the presence of the whole periodic table of elements, wastewater might contain further valuable components of interest for recovery including those defined as critical raw materials by the European Commission. Phosphorus and most of the other critical raw materials are fixed in the sewage sludge and after incineration in the sewage sludge ash (SSA). This is accompanied by high concentration factors from wastewater via sludge to ash. However, the mass fractions of the majority of elements in sewage sludge are comparable to those of the earth crust, indicating no relative enrichment. Nevertheless, enrichment factors of 100 or higher are given for phosphorus, copper, zinc, cadmium, silver, tin, lead and the platinum group elements indicating an anthropogenic input. An economic value of sewage sludge was estimated to $460,-/t calculated on the basis of the respective market prices for high purity elements - a theoretical value. A German survey of sewage sludge ashes showed that the mass fractions and the mass flows of most of the elements present in SSA are probably too low for an economic recovery. In most cases the mass flows are rather small compared to the imports and the chemical forms are not suitable for recovery. An exception is phosphorus that is present in high mass fractions up to 13% and that bears a high substitution potential. If the application of P-recovery technologies lead to a further concentration of valuable elements e.g. as by-products in side streams of the process, it would probably make also the recovery of other elements of economic interest. London IWA Publishing 2018 Phosphorus: Polluter and Resource of the Future 978-1-78040-835-4 241 252 10.2166/9781780408361 2018-08-09 OPUS4-46074 Vortrag Adam, Christian; Quicker, P. Thermische Behandlung von CFK-Abfällen Carbonfaser verstärkte Kunststoffe (CFK) sind aus dem Leichtbau nicht mehr wegzudenken. Da die Produktion der Fasern viel Energie benötigt ist deren Recycling anzustreben. Durch Bearbeitung und Handling während des Recyclings verkürzen sich die Carbonfasern (CF) analog zur Papierfaser. Zu kurze Fasern können nicht mehr in eine Flächenstruktur eingebracht werden und müssen daher aus dem Kreislauf ausgeschleust und einer Verwertung zugeführt werden. Untersuchungen des Lehr- und Forschungsgebiets Technologie der Energierohstoffe (TEER) der RWTH Aachen University haben gezeigt, dass die Bedingungen für eine energetische Nutzung von CF-Abfällen in Abfallverbrennungsanlagen nicht geeignet sind. Zudem können CF Betriebsprobleme verursachen. Des Weiteren können bei einer unzureichenden thermischen Behandlung sogenannte WHO-Fasern entstehen, die als gesundheitsschädlich einzustufen sind. Eine Alternative können Hochtemperaturverfahren mit höheren Verweilzeiten sein. Es kommt die Herstellung von Calciumcarbid in Frage, bei der CF als Kohlenstoffträger und der Kunststoff als Energieträger genutzt werden. Eine weitere Verwertungsoption stellt die Stahlproduktionsroute dar. Erste Untersuchungen der Bundesanstalt für Materialforschung und -prüfung (BAM) und TEER am kleintechnischen Lichtbogen der BAM zeigen, dass CF-Abfälle potentiell als Reduktionsmittel und Energieträger eingesetzt werden können. 2018 6. Forum Leichtbau Recycling und Ressourceneffizienz Berlin, Germany 13.09.2018 13.09.2018 2018-09-28 OPUS4-45661 Zeitschriftenartikel Adam, Christian Phosphor: Von der Rückgewinnung zum Recycling Eine entscheidende Problematik nach Inkrafttreten der neuen Klärschlammverordnung ist, wie Phosphor nicht nur rückgewonnen, sondern in den Markt eingeschleust und letztlich auch in den Kreislauf zurückgeführt werden kann. Die Wege hierzu sind noch weitgehend ungeklärt. Die DWA-Arbeitsgruppe KEK- 1.1 hat aus diesem Grund einen Workshop durchgeführt, um rechtliche Anforderungen an Rezyklate, Aspekte der Rezyklatqualität und -beschaffenheit sowie den aktuellen Markt für Rezyklate zu diskutieren. Auf Basis dieses Workshops wurde ein Arbeitsbericht erstellt, der sich schwerpunktmäßig mit dem Einsatz von Rezyklaten zu Düngezwecken beschäftigt. Hierzu liegen bereits Erkenntnisse vor, und es sind bereits Praxisbeispiele in der Umsetzung. Hennef Gesellschaft zur Förderung der Abwassertechnik (GFA) Deutsche Vereinigung für Wasserwirtschaft, Abwasser und Abfall e. V. (DWA) 2018 Korrespondenz Abwasser 65 8 710 717 10.3242/kae2018.08.005 2018-08-07 OPUS4-45199 Beitrag zu einem Tagungsband Adamczyk, Burkart; Schraut, Katharina; Adam, Christian Thiel, S.; Thomé-Kozmiensky, E.; Friedrich, B.; Pretz, T.; Quicker, P.; Senk, D. G.; Wortruba, H. Nachbehandlung von Stahlwerksschlacken und deren Verwertung als Klinkermaterial 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. Neuruppin Thomé-Kozmiensky Verlag GmbH 2018 Mineralische Nebenprodukte und Abfälle 5 5 978-3-944310-41-1 Berliner Konferenz Mineralische Nebenprodukte und Abfälle Berlin, Germany 11.06.2018 12.06.2018 282 296 2018-06-20 OPUS4-44481 Zeitschriftenartikel Huber, F.; Herzel, Hannes; Adam, Christian; Mallow, O.; Blasenbauer, D.; Fellner, J. Combined disc pelletisation and thermal treatment of MSWI fly ash An environmentally friendly and cost efficient way for the management of municipal solid waste incineration (MSWI) fly ash represents its thermal co-treatment together with combustible waste. However, the safe introduction and storage of MSWI fly ash in the waste bunker is challenging and associated with severe problems (e.g. dust emissions, generation of undefined lumps and heat in case of moistened MSWI fly ash). Therefore, the aim of this study is to investigate the suitability of pelletisation as a pretreatment of MSWI fly ash. In particular, MSWI fly ash was characterised after sampling, pelletisation and thermal treatment and the transfer of constituents to secondary fly ash and flue gas was investigated. For this purpose, MSWI fly ash pellets with a water content of about 0.15 kg/kg and a diameter of about 8 mm have been produced by disc pelletiser and treated in an electrically heated pilot-scale rotary kiln at different temperatures, ranging from 450°C to 1050°C. The total contents of selected elements in the MSWI fly ash before and after thermal treatment and in the generated secondary fly ash have been analysed in order to understand the fate of each element. Furthermore, leachable contents of selected elements and total content of persistent organic pollutants of the thermally treated MSWI fly ash were determined. Due to the low total content of Hg (0.7 mg/kg) and the low leachate content of Pb (<0.36 mg/kg), even at the lowest treatment temperature of 450°C, thermally treated MSWI fly ash pellets can be classified as nonhazardous waste. However, temperatures of at least 650°C are necessary to decrease the toxic equivalency of PCDD/F and DL-PCB. The removal of toxic heavy metals like Cd and Pb is significantly improved at temperatures of 850°C, 950°C or even 1050°C. The observed metal removal led to relatively high contents of e.g. Cu (up to 11,000 mg/kg), Pb (up to 91,000 mg/kg) and Zn (up to 21,000 mg/kg) in the secondary fly ash. This metal enriched secondary fly ash might represent a potential raw material for metal recovery (e.g. via acidic leaching). Due to the high content of total dissolved solids observed in the leachate of thermally treated MSWI fly ash pellets, a wet extraction procedure is suggested to enable its safe disposal at non-hazardous waste landfills. Rotterdam Elsevier Ltd. 2018 Waste Management 73 381 391 10.1016/j.wasman.2017.12.020 2018-03-19 OPUS4-47040 Beitrag zu einem Tagungsband Taube, Mareike Carolin; Adam, Christian; Adamczyk, Burkart; Schulenburg, F.; Bartmann, U.; Beckmann, T.; Michalik, K.; Reuter, M.; Stelter, M. Optimisation of a Pyrometallurgical Niobium and Tantalum Recyling Process with on-line-LIBS 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. Clausthal-Zellerfeld GDMB Verlag GmbH GDMB Gesellschaft der Metallurgen und Bergleute e. V. 2018 Proceedings / EMPRC 2018, European Mineral Processing & Recycling Congress 978-3-940276-84-1 European Mineral Processing & Recycling Congress (EMPRC 2018) Essen, Germany 25.06.2018 26.06.2018 347 362 2018-12-17