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- Arzneimittel (5)
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- Abwasserbelastung (1)
- Antibiotikum (1)
- Anticancer Drug (1)
Organophosphorus flame retardants and plasticizers (OPEs) have been utilized for decades as plasticizers and, to a lesser extent, as flame retardants in various consumer products to improve their material properties. The research presented in this thesis investigated the occurrence, distribution and transport of OPEs with a focus on the coastal and estuarine environment. Due to the wide range of physicochemical properties of OPEs, the environmental fate and behaviour of OPEs was investigated over a range of compartments, starting from the atmospheric occurrence to the aquatic phase and the behaviour in sediments. The aim was to gather information on the OPE contamination situation in the coastal and estuarine environments, to identify specific contamination patterns for source assessment and to investigate the distribution behaviour of OPEs between gas- and particle-phases to evaluate their environmental transport mechanism. To achieve these scientific goals, sensitive and robust chemical analytical methods for the detection and quantification of OPEs in a variety of environmental samples using gas-chromatography coupled with tandem mass spectrometry were developed. Water samples were removed along the Elbe and Rhine Rivers to test the hypothesis of whether specific point sources, such as wastewater treatment plants, are the major input pathways for OPE contamination in rivers. A total of 65 water samples, including an intensive measurement campaign during the flood event in 2013 at the Elbe, was taken and analysed for OPEs. No obvious point sources were identified along either of the rivers analysed. No significant increase or decrease in the OPE concentrations or a change in patterns were observed over a transect of over 300 km at the Elbe, with an increase in water discharge of 2.5. This finding suggested that the OPE input in large rivers is primarily driven by diffuse sources, such as surface runoff, or by minor point sources rather than local point sources. To examine the specific pattern of OPE contamination in individual rivers and estuaries, 37 sediment samples from 8 rivers in Europe and China were analysed. With this analytical data, a fingerprint analysis of the OPE patterns identified could be conducted. All the rivers investigated in Europe displayed a very similar fingerprint. In contrast, the fingerprint from China differed significantly from the one in Europe. For example, in China, the OPE restricted in Europe, Tris(2-chloroethly)phosphate, was found to be one of the major OPE components, while Tris(2-butoxyethyl) phosphate, a major compound in Europe, was negligible in China. The investigation showed that the fingerprinting analysis is a useful tool to identify different regions or characterize specific rivers regarding their OPE contamination. In addition, it could be shown that legislative restriction and processes have an impact on local or even EU-wide contamination patterns. At a coastal site next to the German city of Büsum, 58 air samples were taken over one year. Using the newly developed analytical method, it was possible to analyse the gas, as well as the particle phase, of the samples collected with very low detection limits for OPEs. In contrast to expectations, no annual trend in OPE concentrations, phase distributions or patterns was observed, but the investigation of the phase distribution challenged the previous scientific consensus that OPEs occur as primarily bound to particles in the atmosphere. Several compounds were detected in significant amounts in the gas phase. To validate these novel results, a model analysis based on the chemical properties of OPEs was conducted using three different phase distribution models. The results from the environmental data were strongly supported by the simulations, and the formal knowledge could be refuted. Consequently, the atmospheric transport assumptions and estimations about the long-range transport of OPEs have to be reassessed because compounds in the gas phase undergo other types of transport degradation and elimination mechanisms than particle-boundones. The novel findings presented in this thesis challenged an important aspect regarding the perceived scientific knowledge about the behaviour of OPEs in the environment and call on the scientific community to reassess the environmental behaviour of OPEs. The insights presented on the patterns highlight the impact of environmental policies and regulatory mechanisms to work towards the final goal of a good environmental status and the avoidance of adverse effects of discarded chemicals on humans and the environment.
Biozide Wirkstoffe sind Chemikalien, die zum Schutz der menschlichen oder tierischen Gesundheit oder zum Schutz von Materialien vor Schädlingen eingesetzt werden. Monitoringergebnisse lassen vermuten, dass diese Wirkstoffe auch häufig im Innenraum von Haushalten eingesetzt werden und von dort vor allem über Abwasserleitungen und Kläranlagen in die Umwelt gelangen, wenn sie in Kläranlagen nicht eliminiert werden. Die Produkte, aus denen die Wirkstoffe aus Haushalten in das Abwasser gelangen, sind bislang jedoch nicht identifiziert worden. Aus diesem Grund konnten die daraus resultierenden Umweltbelastungen nicht eingeschätzt und keine entsprechenden Emissionsminderungsmaßnahmen umgesetzt werden. In dieser Arbeit wurde deshalb untersucht, in welchen Haushaltsprodukten biozide Wirkstoffe eingesetzt werden und in das Abwasser gelangen. Zudem sollte erforscht werden, was die Haushaltsmitglieder über Biozidprodukte wissen und wie sie mit ihnen umgehen. Ziel war es, die Anwendungen von bioziden Wirkstoffen in Haushalten zu identifizieren, von denen die höchsten Umweltbelastungen zu erwarten sind, und geeignete Emissionsminderungsmaßnahmen abzuleiten. Um die Anwendung biozider Wirkstoffe in Haushalten zu untersuchen, wurde zunächst durch eine Befragung in Haushalten eines dörflichen Wohngebietes ermittelt, was die Haushaltsmitglieder über Biozidprodukte wissen und wie sie die damit verbundenen Risiken im Vergleich zu anderen Haushaltsprodukten einschätzen. Zudem wurde für jeden der teilnehmenden Haushalte ein Inventar der vorhandenen Produkte erstellt. Dabei wurden neben den Biozidprodukten auch Wasch- und Reinigungsmittel und Körperpflegeprodukte untersucht. Ähnliche Erhebungen fanden zusätzlich in Haushalten in urbanen Gebieten statt. Die aufgrund der inventarisierten Produkte zu erwartenden Stoffe wurden im Laufe eines Jahres durch ein speziell abgestimmtes Monitoringprogramm im Abwasser des dörflichen Wohngebietes in Tages- und Stundenmischproben untersucht. Alle Proben wurden nach der Probenahme aufgearbeitet und mittels Flüssigchromatographie gekoppelt mit einem Triple-Quad-Massenspektrometer analysiert. Dabei wurden die Konzentrationen von 14 Wirkstoffen gemessen: 1,2-Benzisothiazol-3(2H)-on (BIT), C12-Benzalkoniumchlorid, Carbendazim, 5-Chlor-2-methyl-2H-isothiazol-3-on (CMIT), Dichloroctylisothiazolinon (DCOIT), N,NDiethyl-meta-toluamid (DEET), Diuron, Icaridin, 2-Octyl-2H-isothiazol-3-on (OIT), Piperonylbutoxid (PBO), Triclosan, Tebuconazol, Terbutryn und Tetramethrin. Vielen Befragten war nicht bewusst, dass sie Biozidprodukte nutzen. Der Begriff "Biozid" war oft nicht bekannt und wurde inhaltlich häufig falsch verstanden. Die Auswertungen der inventarisierten Produkte und der darin enthaltenen bioziden Wirkstoffe zeigten, dass ein Großteil der Wirkstoffe nicht aus Biozidprodukten in das Abwasser gelangt, sondern aus Körperpflegeprodukten und Wasch- und Reinigungsmitteln. Insgesamt 64 % der Anwendungen von bioziden Wirkstoffen in den inventarisierten Produkten wurden nicht unter der Umweltrisikobewertung der Verordnung (EU) 528/2012 über die Bereitstellung auf dem Markt und die Verwendung von Biozidprodukten berücksichtigt, was zu einer erheblichen Unterschätzung der Umweltrisiken führt. Die Ergebnisse der Abwasseruntersuchungen deuten ebenfalls darauf hin, dass biozide Wirkstoffe aus Wasch- und Reinigungsmitteln, Körperpflegeprodukten und Biozidprodukten gleichermaßen in das Abwasser eingetragen werden. Die Messergebnisse können gut mit den Produktinventaren in Verbindung gebracht werden. Einige Wirkstoffe scheinen maßgeblich durch Biozidprodukte eingetragen zu werden. Auch Konservierungsmittel wurden regelmäßig nachgewiesen. Für Triclosan hingegen ist gemäß den Inventaren Zahnpasta vermutlich die Produktgruppe, die in dem untersuchten Wohngebiet maßgeblich für den Eintrag ins Abwasser verantwortlich ist. Diese Arbeit zeigt zum ersten Mal, welche Produkte im Haushalt eine wichtige Quelle für biozide Wirkstoffe im Abwasser sind. Sie müssen mit einbezogen werden, wenn Emissionen an der Quelle reduziert werden sollen. Es sollten Maßnahmen ergriffen werden, die über die Produktzulassung von Biozidprodukten hinausgehen, um die Emissionen so gering wie möglich zu halten. Diese Maßnahmen sollten sich nicht darauf beschränken, die Bevölkerung über Biozidprodukte aufzuklären und zu sensibilisieren. Stattdessen sollten Maßnahmen früher in der Wertschöpfungskette ansetzen, wie zum Beispiel beim Design der Wirkstoffe oder der Formulierung der Produkte, um so Einträge biozider Wirkstoffe in die Umwelt zu verringern.
Metals fulfill crucial functions in areas as diverse as renewable energy, digitization and life style appliances, mobility, communication, or medicine. In the context of sustainability, achieving a more sustainable metal use means (i) minimizing the adverse effects associated with metal production and use and (ii) sustaining the availability of metals in a way that benefits present and future generations. Urgent need to act to avoid bottlenecks as well as meeting the challenge of possible conflicts of use among those areas of application calls for appropriate strategy making to intervene in the complex field of metal production and use that involves various, often interlinked operating levels, actors, and spatial and temporal scales. This dissertation focuses on strategies as a means to intervene in a system. It pursues the question, which design features could guide future strategy making to foster sustainability along the whole metal life cycle, and especially, how a better understanding of temporalities, i.e. understanding time in a diverse sense, could improve strategy design and help to bridge the assumed "transformation-material gap". This research converges the results from four research studies. A conceptual part explores the role of temporalities for interventions in complex and interlinked systems, which adds to the conceptual basis, on which the empirical part builds up to explore present and future interventions in metal production and use. The research revealed three essential needs that future strategies must tackle: (i) managing the complex interlinkages of processes and activities on various operational levels and spatial and temporal scales, (ii) providing clear guidance concerning the operationalization of sustainability principles, and (iii) keeping activities within the planet’s carrying capacity and embracing constant change as an inherent system characteristic. In response to these needs, the author developed three guidelines with two design features each (one relating to content, and one to the process of formulating and implementing the strategy) to guide future strategy making. The results show that time matters in this respect. If considered in close relation to space and diversely understood in the sense of temporalities, it serves to (i) understand the impact (duration and magnitude) of an intervention, (ii) recognize patterns of change that go beyond establishing linear, one-dimensional connections, and (iii) design interventions in a way that considers the resilience of a system. These findings can contribute to closer considering our understanding of transformation processes towards sustainability in future interventions in metal production and use.
Perfluoroalkyl and polyfluoroalkyl substances (PFASs) have been widely used since 1950 in various consumer products as well as in industrial applications owing to their unique properties, e.g. being hydrophobic and lipophobic at the same time. Nowadays, some of these persistent and man-made PFASs can ubiquitously be found in humans, wildlife and various environmental media. One prominent representative of concern, belonging to the subgroup of perfluorocarboxylates (PFCs) and their conjugate acids (PFCAs), is perfluorooctanoat (PFO) and its conjugate acid (PFOA). Because of its adverse effects on human health and its persistency in the environment industry has started to replace PFO(A) and related long chain chemicals (with seven and more fully fluorinated carbon atoms) with so-called short chain PFASs (less than seven fully fluorinated carbon atoms), including precursors of PFC(A)s. Also these short chain PFC(A)s are persistent and can already be found in humans, ground- and drinking water and in remote regions. However, knowledge gaps exist in understanding the partitioning and the resulting mobility of short chain PFC(A)s in the environment. This is due to the fact that partitioning data of PFC(A)s from standardised experiments can easily be biased by various artefacts, e.g. self-aggregation of the molecules. Therefore, the objectives of this thesis are (i) to quantify the partitioning of PFC(A)s into mobile environmental media, (ii) to show how results from non-standard tests can be used to assess substance properties of concern and (iii) to conclude on whether the environmental exposure to short chain PFC(A)s is of concern from a regulatory point of view. In the first part of this thesis, the environmental mobility of short chain C4-7-PFC(A)s was investigated by quantifying their partitioning under non-standardised semi-environmental conditions into mobile environmental media, focusing on water and air, and comparing it to long chain PFC(A)s. Results are: Partitioning between water and particles in the aeration tank, primary and secondary clarifier of a wastewater treatment plant (WWTP) showed no distinct differences for short chain PFC(A)s compared to their long chain homologues (Paper 1). In a water-saturated sandy sediment column short chain PFC(A)s were not retarded, whereas long chain homologues were retarded by sorption to the sediment (Paper 2). Atmospheric particle-gas partitioning showed a lower fraction sorbed to particles for short chain PFC(A)s compared to long chain ones in samples from a WWTP (Paper 3). Air-water concentration ratios based on samples from the tanks of a WWTP were found to be higher for short chain PFC(A)s compared to long chain PFC(A)s (Paper 1). Additionally, in a newly developed experimental set-up the water to air transfer was used to derive that the pKa of C4-11-PFCAs must be <1.6 instead of up to 3.8 as reported in the literature (Paper 4). Overall, in the investigated systems short chain PFC(A)s showed a higher mobility due to a more pronounced partitioning into mobile environmental media compared to long chain PFC(A)s. In the second part of the thesis it was shown how PFO(A) - owing to its persistent, bioaccumulative and toxic (PBT-)properties – was in the context of this thesis successfully assessed as a substance of very high concern according to the criteria of the European REACH Regulation (EC No 1907/2006) by using data from non-standard tests (Paper 5). In conclusion, based on the knowledge of the high environmental mobility of short chain PFC(A)s and taking into account the argumentation of the PBT-concern of PFO(A), environmental exposure to short chain PFC(A)s is of concern and existing knowledge is already sufficient to initiate measures to prevent emissions of short chain PFC(A)s and their precursors into the environment.
Despite the great progress that has been made in the prophylaxis of oral diseases over the past decades, dental caries and periodontal diseases remain major challenges in the field of dentistry. Biofilm formation on dental hard tissues is strongly associated with the etiology of these oral diseases. Therefore, the process of bioadhesion and biofilm formation on tooth surfaces is of particular interest for dental research. The first stage of bioadhesion on dental surfaces is the formation of the pellicle layer. This mainly acellular film, composed largely of adsorbed proteins, glycoproteins, and lipids, is distinguished from the microbial biofilm (plaque). As the interface between teeth and the oral environment, the pellicle plays a key role in the maintenance of oral health and is of great physiological and pathophysiological importance. On the one hand, the pellicle shows protective properties for the underlying dental hard tissues. On the other hand, it also serves as the basis for dental plaque and therefore, for the development of oral diseases such as caries and periodontitis. Hydrophobic interactions, which are governed by lipophilic substances, are of high relevance for bacterial adherence. Therefore, pellicle lipids, which are a significant constituent of this biological structure, are an interesting target for dental research, as they could modulate oral surfaces, influence microbial interactions, and potentially impede bacterial adherence. Compared to the extensive work on the pellicle´s ultrastructure and protein/amino acid composition, little attention has been given to its lipid profile. Knowledge of the lipid composition of the pellicle may provide insight into several oral pathological states, including caries, dental erosion, and periodontal disease processes and could contribute to novel approaches in preventive dentistry. The principle aim of this thesis was the comprehensive characterization of the fatty acid (FA) profile of the in situ formed pellicle layer. This includes the influence of pellicle maturation on the FA profile as well as intra- and interindividual differences. Furthermore, investigations on the effect of rinses with edible oils on the pellicle´s FA composition were a focus of this work. For these purposes, an analytical method based on a combination of innovative specimen generation and convenient sample preparation with sensitive mass spectrometric analysis was successfully developed and comprehensively validated within this thesis. Pellicle samples were formed in situ on bovine enamel slabs mounted on individual upper jaw splints. After a comprehensive sample preparation, gas chromatography coupled with electron impact ionization mass spectrometry (GC-EI/MS) was used in order to characterize qualitatively and quantitatively a wide range of FA (C12-C24). The individual FA profiles of pellicle and saliva samples collected from ten research participants were investigated. The relative FA profiles of the pellicle samples gained from the different subjects were very similar, whereas the amount of FAs showed significant interindividual variability. Compared to the pellicle´s characteristic FA profile, higher proportions of unsaturated FAs were detected in the saliva samples, highlighting that FAs available in saliva are not adsorbed equivalently to the pellicle layer. This, in turn, shows that pellicle formation is a highly selective process that does not correlate directly with salivary composition. Additionally, pellicle samples collected after 3, 30, 60, 120, and 240 min of intraoral exposure were analyzed. It could be shown that pellicle maturation has only a minor impact on the FA composition. However, the FA content increased substantially with increasing oral exposure time. Modifying the pellicle´s lipid composition by using edible oils as a mouthwash could alter the physicochemical characteristics of the pellicle and strengthen its protective properties by delaying bacterial adhesion. Therefore, the impact of rinses with safflower oil on the pellicle´s FA composition was determined. The application of rinses with safflower oil resulted in an accumulation of its specific FAs in the pellicle, thus representing a possibility for modifying the pellicle´s lipid profile. The present work is the first to apply a validated method that combines in situ pellicle formation, sample preparation, and the comprehensive determination of FAs via a sensitive analytical method. The results provide valuable information regarding the pellicle´s FA composition which closes an existing knowledge gap in pellicle research. A broader knowledge of the lipid composition of the pellicle contributes to the understanding of oral bioadhesion processes and may help facilitate novel approaches in preventive dentistry.
Recent studies have confirmed that the aquatic ecosystem is being polluted with an unknown cocktail of pharmaceuticals, their metabolites and/or their transformation products (TPs). Although individual pharmaceuticals are typically present at low concentrations, their continuous input into the aquatic ecosystem and their toxic and persistent presence are the major environmental concerns. Therefore, it is necessary to assess the environmental risk caused by these aquatic pollutants. Data on exposure are required for quantitative risk assessment of parent compounds and their transformation products (TPs) and/or metabolites. Such data are mostly missing, especially for TPs, because of the non-availability of TPs and very often metabolites for experimental testing. Therefore, the application of different in silico tools for qualitative risk assessment can be used. Also, the presence of these micro-pollutants (active pharmaceutical ingredients, APIs) in the aquatic cycle are increasingly seen as a challenge to the sustainable management of water resources worldwide due to ineffective effluent treatment and other measures for their input prevention. Given the poor prognosis for effluent treatment (‘end of the pipe’ approach) for input prevention of APIs in the environment, it is necessary to focus on the ‘beginning of the pipe’ strategy. The very beginning of the pipe is the molecules themselves. Therefore, novel approaches are needed like designing greener pharmaceuticals, i.e. better biodegradable ones in the aquatic environment after their release. Therefore, the present research work focused on two important topics a) assessment of the environmental risk associated with the presence of highly prescribed drugs and their TPs; b) demonstrating the feasibility of the ‘benign by design’ concept for designing biodegradable drug derivatives, which will have the better biodegradability in the environment after their release. The present thesis includes four research articles (1-4) which address these approaches. The first article is about the qualitative environmental risk assessment using the example of transformation products formed during photolysis (photo-TPs) of Diatrizoic acid (DIAT). Photolysis is the chemical reaction in which the compound is broken down by photons and often in combination with hydroxyl radicals. Photolysis is the most common abatement process of micro-pollutants in the environment. The qualitative risk assessment of DIAT and selected photo-TPs was performed by the PBT approach (i.e. Persistence, Bioaccumulation and Toxicity), using chemical analysis, experimental biodegradation test assays, QSAR models with several different toxicological endpoints and in silico read-across approaches. The second article addresses a tiered approach of implementing green and sustainable chemistry principles for theoretically designing better biodegradable and pharmacologically potent pharmaceuticals derivatives. Photodegradation process coupled with LC-MSn analysis, biodegradability testing and in silico tools such as quantitative structure-activity relationships (QSAR) analysis and molecular docking proved to be a very significant approach for the preliminary stages of designing chemical structures that would fit into the ´benign by design´ concept in the direction of green and sustainable pharmacy. Metoprolol (MTL) was used as an example. The third article was also the conceptual framework to get new drug derivatives that are biodegradable in order to tackle the global challenge of micro-pollutants in the aquatic cycle. This study increased the knowledge about the role of the attachment of certain functionalities to the parent drug molecule for its biodegradability whilst conserving drug-likeness. This approach was in the past a totally neglected issue within drug development. Atenolol (ATL), a selective β1 blocker, was selected as an example to incorporate the additional attribute such as biodegradability into its molecular structure while conserving its substructures responsible for β adrenergic receptor blocker activity. In fourth article, the concept of designing green biodegradable pharmaceuticals has been proven through expanded experimental analysis setting out from the experiences collected as described in article two and three. This study could be considered as a more extensive feasibility study of rational design of green drug derivatives. The non-selective β-blocker Propranolol (PPL) was used as an example. The risk assessment study (Article #1) contributes in enhancing the existing knowledge about the life cycle and behavior (fate) of pharmaceuticals with a special focus on photo-TPs which are generally formed during advanced effluent treatment and enter as such into the environment. Based on the obtained results, the application of the in silico tools for qualitative risk assessment analysis increased knowledge space about the environmental fate of TPs in case of their non-availability for experimental testing. The benign by design studies (Article #2-4) were based on the knowledge and experience collected during the work on DIAT. It demonstrated the feasibility of a novel approach of designing comparatively better degradable and pharmacological potent derivatives through the implementation of ´green chemistry´ principles. However, the present approach is in the juvenile stage and further knowledge has to be collected beforehand for the full implementation of this approach into drug development.
As modern society progresses, waste treatment becomes a pressing issue. Not only are global waste amounts increasing, but there is also an unmet demand for sustainable materials (e.g. bioplastics). By identifying and developing processes, which efficiently treat waste while simultaneously generating sustainable materials, potentially both these issues might be alleviated. Following this line of thought, this dissertation focuses on procedures for treatment of the organic fraction of waste. Organic waste is a suitable starting material for microbial fermentation, where carbohydrates are converted to smaller molecules, such as ethanol, acetic acid, and lactic acid. Being the monomer of the thermoplastic poly-lactic acid, lactic acid is of particular interest with regard to bioplastics production and was selected as target compound for this dissertation. Organic waste acted as substrate for non-sterile batch and continuous fermentations. Fermentations were initiated with inoculum of Streptococcus sp. or with indigenous consortium alone. During batch mode, concentration, yield, and productivity reached maximum values of 50 g L−1, 63%, and 2.93 g L−1 h −1. During continuous operation at a dilution rate of 0.44 d−1, concentration and yield were increased to 69 g L−1 and 86%, respectively, while productivity was lowered to 1.27 g L−1 h −1 . To fully exploit the nutrients present in organic waste, phosphate recovery was analyzed using seashells as adsorbent. Furthermore, the pattern of the indigenous consortium was monitored. Evidently, a very efficient Enterococcus strain tended to dominate the indigenous consortium during fermentation. The isolation and cultivation of this consortium gave a very potent inoculum. In comparison to the non-inoculated fermentation of a different organic waste batch, addition of this inoculum lead to an improved fermentation performance. Lactic acid yield, concentration, and molar selectivity could be increased from 38% to 51%, 49 g L−1 to 65 g L−1, and 46% to 86%, respectively. Eventually, fermentation process data was used to perform techno-economic analysis proposing a waste treatment plant with different catchment area sizes ranging from 50,000 to 1,000,000 people. Economically profitable scenarios for both batch and continuous operation could be identified for a community with as few as 100,000 inhabitants. With the experimental data, as well as techno-economic calculations presented in this dissertation, a profound contribution to sustainable waste treatment and material production was made.
Das ubiquitäre Vorkommen von Arzneimittelrückständen ist eng mit möglichen Risiken für Mensch und Umwelt verbunden. Das übergeordnete Ziel dieser Forschungsarbeit ist die Weiterentwicklung methodischer Ansätze für die Identifizierung prioritärer Arzneimittelrückstände vor dem Hintergrund bestehender Wissens- und Regulierungslücken. Unter diesem Gesichtspunkt wurden drei aktuelle Problemfelder aus dem Themenkomplex "Arzneimittel in der Umwelt " ausgewählt und anhand konkreter Fallbeispiele betrachtet. Tierarzneimittel werden häufig mit der Ausbringung von Wirtschaftsdünger in landwirtschaftlich genutzte Böden eingetragen. Gegenstand der ersten Publikation ist die Frage, inwiefern Anwendungsschemata aus der Nutztierhaltung für die retrospektive Identifizierung prioritärer Tierarzneimittelrückstände genutzt werden können. Hierzu wurde eine spezielle Herangehensweise entwickelt und am Beispiel von Antibiotika erprobt. Die durchgeführte Eintragsabschätzung ermöglichte erstmalig eine umfassende Einschätzung der potenziellen Antibiotikabelastung in Wirtschaftsdünger und landwirtschaftlich genutzten Böden im nordwestdeutschen Raum. Die Ergebnisse deuten auf erhebliche Umwelteinträge hin, die eine Neubewertung bestehender Wirkstoffzulassungen notwendig erscheinen lassen. In der zweiten Publikation wurden am Beispiel einer Mischung aus 18 Arzneistoffen verschiedene Bewertungsansätze verfolgt, um das Risiko einer kombinierten antimikrobiellen Wirkung genauer zu charakterisieren und prioritäre Mischungsbestandteile zu identifizieren. Das Risiko einer antimikrobiellen Wirkung wurde sowohl durch eine experimentelle Prüfung der Mischung als auch durch einen komponentenbasierten Berechnungsansatz bestätigt. Der komponentenbasierte Ansatz verdeutlichte zudem die besondere Relevanz der in der Mischung enthaltenen Fluorchinolon-Antibiotika. Die notwendige Grundlage für eine belastbare Abschätzung von Kombinationseffekten sind jedoch harmonisierte Einzelstoffdaten, die bisher nicht im benötigten Umfang zur Verfügung stehen. Deshalb sollte speziell für Antibiotika eine systematische Prüfung der Wirkung auf Umweltmikroorganismen durchgeführt werden. Arzneistoffe können entlang ihres Lebenszyklus verschiedene biotische und abiotische Transformationsprozesse durchlaufen, die oft zur Bildung von unvollständig charakterisierten Transformationsprodukten (TPs) führen. Die Publikationen 3-7 leisten einen allgemeinen Beitrag zur Einschätzung des möglichen Gefahrenpotenzials von pharmazeutischen TPs im Wasserkreislauf und generieren neue methodische Erkenntnisse vor dem Hintergrund einer vorausschauenden Identifizierung von prioritären Abbauprodukten. Die durchgeführten Fallstudien bestätigten, dass photochemische Transformationsprozesse nicht nur zur Abschwächung bereits vorhandener, sondern im Gegenteil auch zur Entstehung gänzlich neuer Gefahrenpotenziale beitragen können. Es ist somit stark in Frage zu stellen, ob die alleinige Fokussierung auf bekannte Aktivitäten der Muttersubstanz für eine sichere Bewertung von TPs ausreicht.