TY - JOUR A1 - Raniro, H.R. A1 - Teles, A.P. A1 - Pavinato, P.S. A1 - Adam, Christian T1 - Phosphorus solubility and dynamics in a tropical soil under sources derived from wastewater and sewage sludge N2 - Conventional phosphate fertilizers are usually highly water-soluble and rapidly solubilize when moistened by the soil solution. However, if this solubilization is not in alignment with plants demand, P can react with the soil colloidal phase, becoming less available over time. This is more pronounced in acidic, oxidic tropical soils, with high P adsorption capacity, reducing the efficiency of P fertilization. Furthermore, these fertilizers are derived from phosphate rock, a non-renewable resource, generating an environmental impact. To assess these concerns, waste-recycled P sources (struvite, hazenite and AshDec®) were studied for their potential of reducing P Fixation by the soil and improving the agronomic efficiency of the P fertilization. In our work, we compared the solubilization dynamics of struvite, hazenite, AshDec® to triple superphosphate (TSP) in a sandy clay loam Ferralsol, as well as their effect on solution pH and on soil P pools (labile, moderately-labile and non-labile) via an incubation experiment. Leaching columns containing 50 g of soil with surface application of 100 mg per column (mg col􀀀 1) of P from each selected fertilizer and one control (nil-P) were evaluated for 60 days. Daily leachate samples from the column were analyzed for P content and pH. Soil was stratified in the end and submitted to P fractionation. All results were analyzed considering p < 0.05. Our findings showed that TSP and struvite promoted an acid P release reaction (reaching pHs of 4.3 and 5.5 respectively), while AshDec® and hazenite reaction was alkaline (reaching pHs of 8.4 and 8.5 respectively). Furthermore, TSP promoted the highest P release among all sources in 60 days (52.8 mg col􀀀 1) and showed rapid release dynamic in the beginning, while struvite and hazenite showed late release dynamics and lower total leached P (29.7 and 15.5 mg col􀀀 1 P respectively). In contrast, no P-release was detected in the leachate of the AshDec® over the whole trial period. Struvite promoted the highest soil labile P concentration (7938 mg kg􀀀 1), followed by hazenite (5877 mg kg􀀀 1) and AshDec® (4468 mg kg􀀀 1), all higher than TSP (3821 mg kg􀀀 1), while AshDec® showed high moderately-labile P (9214 mg kg􀀀 1), reaffirming its delayed release potential. KW - Phosphate dynamics KW - Struvite KW - Wastewater KW - Sewage sludge ash KW - CaNaPO4 KW - P speciation PY - 2022 DO - https://doi.org/10.1016/j.jenvman.2021.113984 VL - 302 IS - Part A SP - 113984 PB - Elsevier Ltd. AN - OPUS4-53600 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Montag, D. A1 - Adam, Christian T1 - Rechtliche Vorgaben der Klärschlammverordnung und deren Auswirkungen auf die Phosphor-Rückgewinnung N2 - Im Abfalltechnik-Ausschuss der Bund/Länder-Arbeitsgemeinschaft Abfall (LAGA) wurde eine Vollzugshilfe zur Klärschlammverordnung erarbeitet, die nach Verabschiedung durch die Umweltministerkonferenz Mitte Mai 2020 als LAGA-Merkblatt M-39 veröffentlicht wurde. Im vorliegenden vierten Arbeitsbericht der DWA-Arbeitsgruppe KEK-1.1 werden verschiedene Aspekte der ab dem Jahr 2029 geltenden Regelungen aufgegriffen und damit einige Punkte des LAGA M-39 hinsichtlich der technischen Auswirkungen für den Kläranlagenbetreiber konkret ausgeführt. KW - Klärschlamm KW - Klärschlammverordnung KW - Phosphor-Rückgewinnung PY - 2022 SN - 1866-0029 VL - 5 IS - 69 SP - 406 EP - 413 PB - Gesellschaft zur Förderung der Abwassertechnik CY - Hennef AN - OPUS4-55009 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian A1 - Hobohm, J. A1 - Kuchta, K. A1 - van Wasen, Sebastian A1 - Krüger, Oliver T1 - Recovery of rare earth elements - optimized elemental analysis of fluorescent lamp shredder waste N2 - Rare earth elements (REE) are a crucial component of fluorescence lamps. Several procedures have been developed to recovery these technological important elements. Nevertheless, actual REE recycling from fluorescence lamps is scarce so far (recovery rate of less than 1 %), with current recycling approaches concentrating on glass recovery. Since most recycling processes include several, also wet-chemical steps, a complete knowledge of the actual elemental composition of the respective mass flows is necessary for an efficient REE recovery. We tested seven different reagent mixtures for microwave-assisted digestion of fluorescent lamp shredder, including HF, HClO4, and H2O2. We determined the concentrations of 25 of the most relevant rare earth and other trace elements in the respective dilutions. Two independent digestions, one a mixture of perchlorid/nitric/hydrofluoric acid and the other aqua regia, showed the highest concentrations of 23 of these elements, excluding only Sn and Tb. The REE concentrations in the tested lamp shredder sample (stated in g/kg) were 10.2 (Y), 12.1 (La), 7.77 (Ce), 6.91 (Eu), 1.90 (Gd), and 4.11 (Tb). T2 - 5th International conference industrial and hazardous waste management - Crete 2016 CY - Chania, Crete, Greece DA - 27.09.2016 KW - Rare earth elements KW - Critical raw materials KW - Resource recovery KW - WEEE PY - 2016 SN - 978-960-8475-20-5 SN - 2241-3138 SP - 1 EP - 4 AN - OPUS4-37761 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian T1 - Thermochemische Aufbereitung von Klärschlammasche zu Phosphordünger T2 - GVC-Arbeitssitzung CY - Berlin, Germany DA - 2004-04-26 PY - 2004 AN - OPUS4-3505 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian T1 - Einsatz des Lichtbogenofens für die Wertstoffrückgewinnung aus Reststoffen - Forschungsthemen der BAM T2 - Sitzung des Arbeitskreises "Lichtbogenofenbetrieb" des Bundesverbandes der Deutschen Gießerei-Industrie (BDG) CY - Castrop-Rauxel, Germany DA - 2011-04-13 PY - 2011 AN - OPUS4-23593 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian A1 - Herbeck, Maximilian T1 - Metal recovery by reductive melting of red mud N2 - Investigation about metal recovery from red mud by reductive smelting. T2 - Exchange of good practices on metal by-products recovery CY - Brussels, Belgium DA - 12.11.2015 KW - Red mud KW - Metal recovery KW - Reductive smelting PY - 2015 AN - OPUS4-35691 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Krüger, Oliver A1 - Adam, Christian T1 - Sewage sludge ashes - waste or valuable resource N2 - There is a growing concern of the direct use of contaminated sewage sludge in agriculture due possible environmental and health hazards. Thus, incineration of the sludge and thus increasing amounts of sewage sludge ashes (SSA) are to be expected in the future. SSA contains considerable amounts of phosphorus (P) and technology metals that might be recovered as secondary raw materials. Since the EU for instance depends completely on the import of rock phosphate needed for fertilizer production, alternative sources for P are in order. Furthermore, rock phosphate is often contaminated with heavy metals like Cd and U, leading to health and environmental hazards. P recovered from SSA might diminish these problems. To determine the possible recovery potential of P and technology metals from SSA, we conducted a survey of German mono incineration facilities and analyzed the respective SSA for their elemental composition. More than 95% of the emerging SSA was monitored. Results indicate a P recovery potential of 18,000 t/a (up to 13% of the annual P demands for fertilizer production). The concentrations of Cd and U in SSA are one to two Orders of magnitude lower than in rock phosphate and could help to reduce possible hazards. T2 - 4th International conference industrial and hazardous waste management (Crete 2014) CY - Chania, Crete, Greece DA - 02.09.2014 KW - Sewage sludge ash KW - Resource recovery KW - Phosphorus KW - Technology metals PY - 2014 SN - 978-960-8475-20-5 SN - 2241-3138 SP - 1 EP - 8 AN - OPUS4-31396 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian A1 - Kley, Gerd A1 - Simon, Franz-Georg A1 - Lehmann, Annekatrin ED - Filibeli, A. ED - F. Dilek Sanin, ED - Ayol, A. ED - Selim L. Sanin, T1 - Recovery of nutrients from sewage sludge - Results of the European research-project SUSAN T2 - IWA-Specialist Conference "Facing Sludge Diversities: Challenges, Risks and Opportunities" CY - Antalya, Turkey DA - 2007-03-28 KW - Phosphorus recovery KW - Sewage sludge ash KW - Thermo-chemical treatment KW - Fertiliser PY - 2007 N1 - Serientitel: Journal of environmental science and health : Part A, Toxic/hazardous substances & environmental engineering – Series title: Journal of environmental science and health : Part A, Toxic/hazardous substances & environmental engineering IS - 43.2008,13 SP - 297 EP - 305 PB - Taylor & Francis CY - Philadalphia, PA AN - OPUS4-16468 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Herzel, Hannes A1 - Leimkötter, D. A1 - Hermann, L. A1 - Emter, J. A1 - Brey, C. A1 - Künstler, J. A1 - Hartmann, S. A1 - Krannich, G. A1 - Moggert, N. A1 - Kurz, P. A1 - Eder, C. A1 - Grimm, B. A1 - Adam, Christian ED - Holm, O. ED - Thomé-Kozmiensky, E. ED - Quicker, P. ED - Kopp-Assenmacher, S. T1 - Success-Story CaNaPO4: Erfolgreiche REACH Registrierung und Inbetriebnahme großtechnischer Anlagen N2 - The Sewage Sludge Ordinance (AbfKlärV), which was amended in 2017, obligate the recovery of phosphorus from sewage sludge and sewage sludge ash from 2029 and 2032, respectively. Thermal disposal of sewage sludge has established itself as the preferred method of disposal, and the capacities of mono-incineration plants are being continuously expanded. Plants for phosphorus recovery, on the other hand, are currently still mainly in the construction, piloting, or commissioning phase. It is estimated that the plant capacities for P recovery planned today will not even be able to cover a quarter of the volume of these ashes in 2029. Therefore, temporary storage of the remaining ashes is currently being discussed to retrieve it later and process it in the P recovery plants, which will then be sufficiently available. It is currently unclear how such interim or long-term storage (> 1 year) should be organized. In addition to legal (fee) issues, the assessment of the technical feasibility of retrievability and the phosphorus recovery potential of landfilled ash remains open. The Institute of Environmental Engineering (ISA) at RWTH Aachen University and the Federal Institute for Materials Research and Testing (BAM) are jointly investigating five deposited ashes that have been dug out and were provided by three landfill operators. The investigations focus on the physical and chemical characterization of these landfilled ashes and its P recovery potential during treatment in thermochemical and wet chemical processes. These results are evaluated in comparison with “fresh,” i.e., non-landfilled sewage sludge ash samples of comparable origin in order to determine the influence of storage. T2 - Berliner Klärschlamm Konferenz CY - Berlin, Germany DA - 11.11.2025 KW - Phosphor KW - Recycling KW - Thermochemisch KW - Dünger KW - Großtechnik PY - 2025 SN - 978-3-911006-63-7 VL - 8 SP - 236 EP - 256 PB - Thomé-Kozmiensky Verlag GmbH CY - Neuruppin AN - OPUS4-64833 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian T1 - Enzymkatalysierte Synthese von Schmierstoffen aus Altfett N2 - Im Rahmen eines vom BMBF geförderten KMU-Innovativ Forschungsprojekts (KKZ 0316199B) konnte in Kooperation mit der Firma Greibo Chemie GmbH ein bio-katalysierter Prozess zur Hydrolyse und Veresterung von gastronomischen Altfetten etabliert werden. Unter Anwendung des Enzyms Candida antarctica lipase-A (CAL-A) kann dieser Prozess mit einem teilweise wässrigen Medium durchgeführt werden was prozesstechnisch einige Vorteile mit sich bringt. Im Gegensatz zu anderen Acyltransferasen ist die CAL-A nicht nur in der Lage die Alkoholyse zu katalysieren sondern auch Fettsäuren zu verestern. Dies eröffnet eine breitere Anwendung des Prozesses auf weitere Produktgruppen und Abfallströme. Es wurden Optimierungen mit modifizierten Enzymen und verschiedenen Fetten und Alkoholen vorgenommen. Des Weiteren wurden die verfahrenstechnischen Parameter optimiert und ein Scale-up auf den 0,5 Tonnen Maßstab durchgeführt. Die aus dem Prozess resultierenden Fettsäureester eignen sich als Motoren- oder Hydraulikbasisöle sowie als Metallbearbeitungsöle. Im Vergleich zu den Mineralölkosten von ca. 1,0 - 1,5 € pro kg muss bei einer Umstellung eines Hydrauliköls auf Fettsäureester (konventionell hergestellt) allerdings bei einem Preis von 3 – 5 € pro kg mit Mehrkosten bei gleichbleibendem Verbrauch gerechnet werden. Für die erfolgreiche Markteinführung müssten vermutlich die durchaus vorhandenen ökologischen Vorteile der Altfett-basierten Produkte beworben werden. T2 - Deutsche Biotechnologietage 2016 CY - Leipzig DA - 26.04.2016 KW - Altfett KW - Enzymkatalyse PY - 2016 AN - OPUS4-35970 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Weimann, Karin A1 - Adam, Christian ED - Martins, Isabel ED - Ulsen, Carina ED - Angulo, Sergio Cirelli T1 - Secondary building materials from construction and demolition waste: environmental benefits and costs N2 - Due to the large quantities of construction and demolition waste (CDW) in Europe, its reuse or recycling is of particular importance. Although several countries already recycle high amounts of CDW, the use as secondary raw materials is often limited by inferior building material properties. Specific characteristics, like high porosity and low density are caused by hardened cement paste in crushed concrete and the content of mortar and plaster in brick debris. Impurities like wood or gypsum and also harmful substances like organic pollutants may be a major problem for a reuse and should be minimized. Therefore unwanted materials and impairing substances have to be separated from the secondary building material stream. This can be done during the demolition process by using techniques for selective dismantling or during the subsequent treatment of the resulting rubble. Since almost all processing steps are associated with environmental impacts, the benefits of saving natural resources by applying secondary building materials should be weighed carefully. An environmental performance evaluation was undertaken to assess different techniques for reducing gypsum in recycled concrete aggregates, aiming at a minimization of elutable sulfates. These results were compared to the environmental impacts of the extraction of natural aggregates for concrete. T2 - "Progress of recycling in the built environment" CY - Sao Paulo, Brazil DA - 03.08.2015 KW - CDW processing KW - Demolition/selective dismantling KW - Gypsum KW - Environmental evaluation KW - Bauschuttaufbereitung KW - Ökobilanzielle Bewertung PY - 2015 UR - http://www.rilem.org/gene/main.php?base=500218&id_publication=449&id_papier=10699 SN - e-ISBN: 978-2-35158-158-2 SP - 192 EP - 199 CY - Paris, France AN - OPUS4-38170 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Adam, Christian A1 - Kley, Gerd A1 - Simon, Franz-Georg T1 - Thermal treatment of municipal sewage sludge aiming at marketable P-fertilisers N2 - Municipal sewage sludge is a carrier of nutrients – most important phosphorus (P) – but also contains organic pollutants and heavy metals. A two steps thermal treatment is suggested based on 1. mono-incineration of sewage sludge under destruction of organic pollutants and 2. thermochemical treatment of the resulting ashes to remove heavy metals and increase P-bioavailability. The targeted products are marketable P-fertilisers. The thermochemical treatment was investigated in a gas tight lab-scale rotary furnace. Seven sewage sludge ashes of different origin and composition and one residue from gasification of sewage sludge were mixed with a chlorine donor (e.g. MgCl2) and thermochemically treated under systematic variation of operational parameters. The distributions of the heavy metals between solid and gas phase were determined. The heavy metals concentrations of the treated ashes met the legislative limits in most cases. The products from thermochemical treatment are suited raw materials for P-fertiliser production. Relevant process parameters such as temperature, type and concentration of Cl-donor and retention time were optimised for the thermochemical treatment step. KW - Sewage sludge KW - Mono-incineration KW - Ash treatment KW - Thermochemical treatment KW - Phosphorus-fertiliser PY - 2007 SN - 1345-9678 SN - 1347-5320 VL - 48 IS - 12 SP - 3056 EP - 3061 PB - Japan Institute of Metals CY - Sendai AN - OPUS4-16647 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian T1 - Phosphorrückgewinnung im Bereich der kommunalen Abwasserreinigung T2 - ProcessNet Sitzung des Fachausschusses "Abfallbehandlung und Wertstoffrückgewinnung" CY - Fichtenau, Germany DA - 2010-10-07 PY - 2010 AN - OPUS4-22401 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian T1 - Environmental evaluation of different ways to produce recycled concrete aggregates T2 - SUM 2014 - Symposium on Urban Mining CY - Bergamo, Italy DA - 2014-05-19 PY - 2014 AN - OPUS4-30784 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Herzel, Hannes A1 - Krüger, Oliver A1 - Hermann, L. A1 - Adam, Christian T1 - Sewage sludge ash - A promising secondary phosphorus source for fertilizer production N2 - Sewage sludge incineration is extensively practiced in some European countries such as the Netherlands, Switzerland, Austria and Germany. A survey of German sewage sludge ash showed that the recovery potential is high, approx. 19,000 t of phosphorus per year. However, the survey also discovered that the bioavailability of phosphorus in the sewage sludge ash is poor and that more than half of the ashes cannot be used as fertilizers due to high heavy metal content. A new thermochemical process for sewage sludge ash treatment was developed that transforms the ash into marketable fertilizer products. Sewage sludge ash was thermochemically treated with sodium and potassium additives under reducing conditions, whereby the phosphate-bearing mineral phases were transformed into plant available phosphates. High P-bioavailability was achieved with a molar Na/P ratio > 1.75 in the starting materials. Sodium sulfate, carbonate and hydroxide performed comparably as additives for this calcination process. Potassium carbonate and -hydroxide have to be added in a molar K/P ratio > 2.5 to achieve comparable P-solubility. The findings of the laboratory scale investigations were confirmed by an industrial demonstration trial for an ash treatment with sodium sulfate. Simultaneously, the volatile transition metal arsenic (61% removal) as well as volatile heavy metals such as cadmium (80%), mercury (68%), lead (39%) and zinc (9%) were removed via the off-gas treatment system. The product of the demonstration trial is characterized by high bioavailability and a toxic trace element mass fraction below the limit values of the German fertilizer ordinance, thus fulfilling the quality parameters for a P-fertilizer. KW - Sewage sludge ash KW - Phosphorus recovery KW - Thermochemical treatment KW - Reducing conditions KW - Heavy metal evaporation KW - Bioavailability KW - Sodium sulfate PY - 2016 DO - https://doi.org/10.1016/j.scitotenv.2015.08.059 SN - 0048-9697 SN - 1879-1026 IS - 542 SP - 1136 EP - 1143 PB - Elsevier CY - Amsterdam AN - OPUS4-34165 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - RPRT A1 - Weimann, Karin A1 - Matyschik, Jan A1 - Adam, Christian A1 - Schulz, T. A1 - Linß, E. A1 - Müller, A. T1 - Optimierung des Rückbaus/Abbruchs von Gebäuden zur Rückgewinnung und Aufbereitung von Baustoffen unter Schadstoffentfrachtung (insbes. Sulfat) des RCMaterials sowie ökobilanzieller Vergleich von Primär- und Sekundärrohstoffeinsatz inkl. Wiederverwertung N2 - Aufgrund der großen Massenströme ist das Recycling von Baurestmassen von besonderer Bedeutung für die Schonung von natürlichen Ressourcen. Eine wichtige Voraussetzung für ein hochwertiges Recycling, wie z.B. eine Wiederverwertung von aufbereitetem Bauschutt/Altbeton als rezyklierte Gesteinskörnung im Hochbau, ist die Einhaltung von Grenzwerten für Stör- und Schadstoffe. Dabei steht der Sulfatgehalt im Eluat von Bauschutt besonders im Fokus. In der vorliegenden Studie wird untersucht, wie durch die Optimierung von Abbrucharbeiten und Bauschuttaufbereitung hochwertige Gesteinskörnungen aus Altbeton gewonnen werden können. Anhand von Literatur- und Datenrecherchen werden zunächst Sulfatquellen in Gebäuden sowie verfügbare Abbruch- und Aufbereitungstechniken zusammengestellt. Am Beispiel von unterschiedlichen Gebäudetypen werden Szenarien für selektiven und nicht selektiven Abbruch (Schwerpunkt: Sulfatentfachtung) in Hinblick auf ihre Umweltwirkungen ökobilanziell bewertet. Ergänzt werden diese Bewertungen durch Untersuchungen an realen Bauschuttmaterialien und Abbruchprojekten. Auf dieser Basis werden Handlungsempfehlungen für die Gewinnung von hochwertigen RC-Gesteinskörnungen erarbeitet und diskutiert.----------------------------------------------------------------------------------------- Due to the large-scale mass flow of construction and demolition wastes, the recycling of those residues is of particular importance for the conservation of natural resources. An important requirement for recycling on a high level, like the reuse of crushed concrete as recycled concrete aggregate, is the observation of limits for hazardous substances and impurities. This study is focusing on the reduction of sulphates in the eluate of crushed concrete. An investigation of possibilities to optimize demolition and dismantling as well as treatment of crushed concrete with the objective of gaining recycled concrete aggregates of high quality. Based on a literature research and a data review the origins of sulfates in buildings and also the availability of techniques for demolition and treatment of crushed concrete are listed and evaluated. Using the examples of different building types scenarios for selective dismantling and non-selective demolition (focused on reducing suphates) are evaluated in terms of affecting the environment. In addition samples from real demolition construction sites and plants for treatment of construction rubble were investigated. Based on these results recommendations for the production of high quality recycled concrete aggregates are worked out. KW - Bauschuttaufbereitung KW - Abbruch KW - Ökobilanzielle Bewertung KW - RC-Beton KW - Gips KW - Abbruchverfahren KW - Hochwertiges Recycling KW - Ökobilanzielle Betrachtung KW - Sulfatentfachtung KW - Demolition/dismantling KW - Treatment of C&D wastes KW - High-grade recycling KW - Environmental LCA KW - Reduction of sulphates PY - 2012 UR - http://www.umweltbundesamt.de/publikationen/optimierung-des-rueckbausabbaus-von-gebaeuden-zur SN - 1862-4804 SP - 1 EP - 227 PB - Umweltbundesamt CY - Dessau-Roßlau AN - OPUS4-26999 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Simon, Franz-Georg A1 - Adam, Christian T1 - Ressourcen aus Abfall T1 - Resources from waste N2 - Die Beseitigung unbehandelter Abfälle auf Deponien gehört der Vergangenheit an, nicht nur weil Verordnungen diese Praxis verbieten, sondern auch, weil wegen steigender Preise für Rohstoffe und sinkender Gehalte in Erzen auch in Abfällen nach Alternativen gesucht wird. In den Aschen aus Hausmüllverbrennungsanlagen können mit einfachen Verfahren Metalle zurückgewonnen werden. Mit dem Phosphor aus Klärschlammaschen können Düngemittel hergestellt und so natürliche Ressourcen geschont werden. In beiden Fällen ist die Anreicherung der Wertstoffe durch den Verbrennungsprozess vorteilhaft, da die Effizienz von Recyclingprozessen stark von der Konzentration im Ausgangsgut abhängig ist. N2 - Disposal of untreated waste has come to end due to new legislation in this field. Furthermore as a response to increasing prices for primary raw materials and decreasing ore concentrations products from waste treatment display a source for secondary raw materials. Elemental metals can be easily separated from municipal solid waste incineration bottom ash. Fertilizers can be produced using phosphate from sewage sludge ashes thus preserving natural resources. In both cases the enrichment taking place in the incineration process facilitates the resource recovery, because the efficiency of recycling processes is dependent on the concentration of the input material. KW - Klärschlammaschen KW - NE-Metalle KW - Phosphor KW - Rostaschen KW - Bottom ash KW - Nonferrous metals KW - Phosphorus KW - Sewage sludge ash PY - 2012 DO - https://doi.org/10.1002/cite.201100189 SN - 0009-286X SN - 1522-2640 VL - 84 IS - 7 SP - 999 EP - 1004 PB - Wiley-VCH CY - Weinheim AN - OPUS4-26209 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Adam, Christian A1 - Peplinski, Burkhard A1 - Michaelis, Matthias A1 - Kley, Gerd A1 - Simon, Franz-Georg T1 - Thermochemical treatment of sewage sludge ashes for phosphorus recovery N2 - Phosphorus (P) is an essential element for all living organisms and cannot be replaced. Municipal sewage sludge is a carrier of phosphorus, but also contains organic pollutants and heavy metals. A two-step thermal treatment is suggested, including mono-incineration of sewage sludge and subsequent thermochemical treatment of the ashes. Organic pollutants are completely destroyed by mono-incineration. The resulting sewage sludge ashes contain P, but also heavy metals. P in the ashes exhibits low bioavailability, a disadvantage in farming. Therefore, in a second thermochemical step, P is transferred into mineral phases available for plants, and heavy metals are removed as well. The thermochemical treatment was investigated in a laboratory-scale rotary furnace by treating seven different sewage sludge ashes under systematic variation of operational parameters. Heavy metal removal and the increase of the P-bioavailability were the focus of the investigation. The present experimental study shows that these objectives have been achieved with the proposed process. The P-bioavailability was significantly increased due to the formation of new mineral phases such as chlorapatite, farringtonite and stanfieldite during thermochemical treatment. KW - P-recovery KW - Sewage sludge ash KW - Thermochemical treatment KW - Mineral phases KW - X-ray diffraction PY - 2009 DO - https://doi.org/10.1016/j.wasman.2008.09.011 SN - 0956-053X VL - 29 IS - 3 SP - 1122 EP - 1128 PB - Pergamon Press CY - New York, NY AN - OPUS4-18605 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian A1 - Kabbe, Ch. T1 - Phosphorrückgewinnung und Recycling aus dem Abwasser N2 - Phosphorrecycling sollte nicht isoliert praktiziert werden, sondern im Kontext der spezifischen Abwasserbehandlung und der Betrachtung weiterer Nährstoffe wie Stickstoff und Kalium. Hohe Rückgewinnungsquoten um jeden Preis sind nicht immer zielführend und u.U. sogar schädlich für die Kreislaufwirtschaft. Es sollte eine Kombination verschiedener Ansätze je nach vorhandener Infrastruktur verfolgt werden. Fällungsverfahren (Struvit) sind geeignet kostengünstig kleine Mengen Phosphor zurückzugewinnen. Für ein umfassendes P-Recycling muss die Rückgewinnung aus der Asche erfolgen. T2 - 20. Leibnitz-Conference of Advanced Science - "Ressourcenmanagement als Beitrag zur gesicherten Rohstoffversorgung" CY - Lichtenwalde, Saxony, Germany DA - 19.05.2016 KW - Recycling KW - Phosphor KW - Abwasser PY - 2016 AN - OPUS4-36319 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Adam, Christian A1 - Schick, J. A1 - Kratz, S. A1 - Hermann, L. T1 - Phosphorus recovery by thermochemical treatment of sewage sludge ash T2 - 5th IWA Leading-Edge Conference on Water and Wastewater Technologies CY - Zürich, Switzerland DA - 2008-06-01 KW - Phosphorus recovery KW - Sewage sludge ash KW - Thermochemical treatment KW - Fertiliser KW - Greenhouse pot experiments PY - 2008 SP - 1 EP - 10 PB - International Water Association (IWA) CY - London AN - OPUS4-17568 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -