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Institut
- Chemie (21) (entfernen)
Herbizide, die durch Spray-Drift, Volatilisation oder Winderosion aus landwirtschaftlichen Flächen ausgetragen werden können wiederum auf Nichtzielpflanzen gelangen. Es wird angenommen, dass Wälder eine Senke für luftgetragene Pestizide darstellen. Wirkungen von luftgetragenen Herbiziden auf Nichtzielpflanzen können nicht ausgeschlossen werden. An Blättern von Nichtzielpflanzen haftende Herbizide können wiederum durch Regenereignisse aus der Laubschicht ausgewaschen werden und in den Boden gelangen. Welche Stoffe nach deren Deposition ausgewaschen werden oder aber in der Laubschicht verbleiben hängt vom Verteilungsverhalten an der Blattoberfläche ab. In der vorliegenden Dissertation wurde das Verteilungsverhalten von current-use Herbiziden und einiger ihrer Abbauprodukte an der Oberfläche von Nichtzielpflanzen bestimmt. Als Modellorganismus diente die Waldkiefer Pinus Sylvestris L. mit deren Nadeln Versuche zur Charakterisierung des Adsorptions- und Desorptionsverhaltens von 55 Herbiziden aus wässrigen Lösungen durchgeführt wurden. Es wurden Verteilungsversuche sowohl mit rekonstituiertem epikutikulärem Wachs als auch mit intakten Kiefernnadeln durchgeführt. Für den Stoff Terbuthylazin konnte bei Versuchen mit rekonstituierten epikutikulären Wachsen eine Aufnahme aus der wässrigen Lösung in das Wachs festgestellt werden. Der Verteilungskoeffizient zwischen Wachs und Wasser betrug für die Adsorption log KWachsW = 3, 0. Für die Desorption wurde ein höherer Verteilungskoeffizient von log KWachsW = 3, 3 ermittelt und auf Grund der Differenz eine teilweise irreversible Bindung des Terbuthylazins an das epikutikuläre Wachs angenommen. Sorptionsversuche mit wässrigen Lösungen und intakten Kiefernnadeln zeigten für 19 weitere Herbizide mit einem log KOW > 3,8 eine schnelle Adsorption aus der wässrigen Phase an die Nadeloberfläche mit einer mittleren Lebensdauer für die Adsorption von 12 Minuten (Aclonifen, Bifenox, Bromoxynil-octanoat, Diflufenican, Fenoxaprop-p-ethyl, Fluazifop-p-butyl, Fluroxypyrmeptyl, Haloxyfop-ethoxyethyl, Haloxyfop-methyl, Mefenpyr-diethyl, PCP, Pendimethalin, Picolinafen, Propaquizafop, Prosulfocarb, Pyridate, Quizalofop-ethyl, Triallate und Trifluralin). Die für diese Stoffe ermittelten Kutikula/Wasser-Verteilungskoeffizienten liegen im Bereich log KCW = 3,3 bis 4,8. Für 7 Stoffe war nach einer schnellen Verringerung der Konzentration in der wässrigen Phase eine weitere stetige Abnahme der Herbizidkonzentration mit einer Lebensdauer unter 2000 Minuten zu beobachten (Fluroxypyr-meptyl, Fenoxaprop-p-ethyl, Propaquizafop, Quizalofop-ethyl, Trifluralin, Fluazifop-p-butyl und Haloxyfop-methyl), was durch eine Aufnahme der Stoffe über die epikutikuläre Wachsschicht in das innere Gewebe der Kiefernnadeln erklärt werden kann. Die Stoffe Bromoxynil-octanoat, Fluroxypyr-meptyl, Propaquizafop, Quizalofop-ethyl und Trifluralin zeigten eine irreversible Aufnahme aus wässrigen Lösungen in Kiefernnadeln. In einem Laborversuch wurde die Deposition von Herbiziden auf intakten Kiefernnadeln simuliert. Die Verteilung zwischen der epikutikulären Wachsschicht, Niederschlagswasser und den nach Extraktion mit Dichlormethan verbleibenden Nadeln wurde für das Herbizid Isoproturon und seine Abbauprodukte ermittelt. Das hierfür entwickelte Versuchsdesign erlaubte die Messung der Verteilungsvorgänge an intakten, noch am Zweig befindlichen Kiefernnadeln. Die Translokation, Volatilisation und die Bildung von Abbauprodukten konnten quantifiziert werden. Die Laborversuche ergaben, dass Isoproturon bei Kontakt mit wässrigen Lösungen sofort (Lebensdauer unter 1 Minute) von der Oberfläche der Kiefernnadeln desorbiert und nicht in das innere Gewebe der Kiefernnadel aufgenommen wird. Darüber hinaus treten bei Driftrückständen kleiner Stoffmenge und Schichtdicke (1 ng/mm²) für Isoproturon hohe Verluste (zwischen 47 und 88 % der ursprünglich applizierten Menge) durch Volatilisation und abiotischen Abbau auf. Aus den Ergebnissen der Laborversuche können Rückschlüsse zum Verbleib des Herbizids Isoproturon im Waldökosystem getroffen werden. Sie zeigen, dass Driftrückstände von polaren Herbiziden durch Regenereignisse aus der Vegetationsoberfläche von Nichtzielpflanzen ausgetragen werden und in andere Umweltkompartimente gelangen können.
To improve the properties of thermochemical heat storage materials, salt mixtures were evaluated for their heat storage capacity and cycle stability as part of the innovation incubator project "Thermochemical battery" of the Leuphana university Lüneburg. Based on naturally occurring compound minerals, 16 sulfates, 18 chlorides and 5 chloride multi-mixtures, 18 bromides and 5 intermixtures between sulfates, chlorides and bromides were synthesized either from liquid solution or by dry mixing for TGA/DSC screening before continuing the heat storage evaluation with five different measurement setups at a laboratory scale. The TGA/DSC analysis served as a screening process to reduce the number of testing materials for the upscaled experiments. The evaluation process consisted of a three-cycle dehydration/hydration measurement at Tmax=100°C and Tmax=200°C. In case of the bromide samples a measurement of hydration conditions with Tmax=110°C and a water flow at e=18.68mbar, were added to the procedure to detect the maximum water uptake temperature. Also, a single dehydration to a temperature of Tmax=500°C was implemented to observe melting behavior and to easier calculate the samples’ stages of hydration from the remaining anhydrous mass. Materials which showed high energy storage density and improved cycle stability during this first evaluation were cleared for multi-cycle measurements of 10 to 25 dehydration and hydration cycles at Tmax = 100 to 120°C and the evaluations at m=20 to 100g scale. An estimate for the specific heat capacities at different temperatures of the materials which passed the initial stage was calculated from the TGA/DSC results as well. The laboratory scale measurement setup went through five stages of refining, which led to reducing the intended maximum sample mass from m=100g to m=20g. A switch from supplied liquid water to water vapor as the used reactant was also implemented in exchange for improved dehydration conditions. Introducing a vacuum pump for evaporating the water limited the influence of outside heat sources during hydration and in-situ dehydration was enabled as to not disturb the state the samples were settling in between measurements. Baseline calculation from blanc measurements with glass powder and attempts to calculate the specific heat capacity cp of the tested materials by 6 applying the Joule-Lenz-law to the measurement apparatus was another step of method development. The evaluation process of the laboratory scale tests at the final setting consisted of 1 to 5 cycle measurements of in-situ dehydration and hydrations with applied vacuum for t=30 minutes at p~30mbar. Upscaling the sample mass to m=20g allowed for a close observation of different material behaviors. Agglomeration, melting and dissolving of the m=10mg samples during the TGA/DSC analysis can be deducted from the recorded measurement curves and the state of the sample after measurement. However, at laboratory scale the visible volume changes, observed sample consistency after agglomeration and an automatic removal of molten and dissolved sample mass during the measurement allowed for a better characterization and understanding of the magnitude of the actual changes. This was done for the first time, particularly for mixed salts. Of the original number of 62 samples, 4 mixtures which passed the initial TGA/DSC screening namely {2MgCl2+ KCl}, {2MgCl2+CaCl2}, {5SrBr2+8CaCl2} and {2ZnCl2 + CaCl2} were chosen for further evaluation. The multi-cycle TGA/DSC measurements of {2MgCl2+ KCl}, {2MgCl2+CaCl2} and {5SrBr2+8CaCl2} showed an improved cycle stability for all three materials over the untreated educts. Of the four materials {2ZnCl2 + CaCl2} displayed the strongest deliquescence during hydration in the upscaled experimental setup. {2MgCl2+CaCl2} proved to be the most stable material regarding the heat storage density. The {MgCl2} content of the mixture is likely to partially or completely react to {Mg(OH)Cl} at temperatures of T>110°C, which however does not impede the heat storage density. {5SrBr2+8CaCl2} displayed a low melting point in hydrated state, causing a fast material loss. This makes it an undesirable storage material. A lower heating rate may still help to avoid an early melting. The {2MgCl2+KCl} mixture was the most temperature stable of the mixtures showing no melting or dissolving behavior. A reaction of the {MgCl2} component of the mixture to {Mg(OH)Cl} was not observed within the applied temperature range of T=25 to 200°C.
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.
Subaquatic ammunition dumpsites of both, conventional as well as chemical ammunition do practically exist in every single ocean and even in a significant number of inland waters. Most of these dumpsites are based on related post world war dumping actions, when victorious and defeated states had to get rid of their enormous surplus stocks of ammunition and especially the not easy to be handled chemical warfare agents like mustard, phosgene and even nerve agents. After first attempts of conventional destruction like burning, explosion or even simple emptying of chemical agents into pits or holes in the ground, those attempts soon emerged to be very time-consuming and dangerous. Adequate destruction technologies of today’s standards like detonation chambers or plasma kiln did just not exist at that time. The persons in charge soon focused on a much more promising solution attempt: the dumping of this ammunition into surrounding water bodies. In the case of the post World War II dumping actions, the focusing on the former deep water sites soon turned out to be not practicable, based on related enormous costs and logistical problems. The Baltic Sea – with maximum water depths of about 150 m – seemed then to represent the easiest way to get rid of the problematic ammunition. By these activities 65,000 to up to 300.000 tons of chemical ammunition ended up in the Baltic Sea. Concerning conventional ammunition like water mines, torpedo warheads, high explosive devices etc., there is practically no information available but experts assume at least another 100.000 tons of conventional material in the Baltic Sea. Environmental aspects and the issue of protection of the sea were – like in other cases of subaquatic dumping actions worldwide – completely ignored at that time. Nevertheless, subaquatic dumping actions took place until the late 1980ies. Today these dumping sites – whether based on conventional or on chemical ammunition – do represent a very problematic and highly dangerous heritage to present and future generations: Corrosion of the containers and shells results in a not to be forecasted diffuse emission or rather leaking of the ammunition contents into the water body. Substances that are in most cases highly or even extremely toxic for humans, flora as well as fauna contaminate the marine environment with mostly unknown toxicological and ecotoxicological effects. The majority of these substances are known to have carcinogenic, teratogenic and/or mutagenic effects and practically nothing is known about the potential of these substances to end up in the food chains. Especially in recent years there are more and more findings of significantly increased arsenic values in fish that cannot be explained but there are strong signs that these values are based on ammunition dumpsites. Besides the mentioned toxicological and ecotoxicological effects, there are further significant risks as e.g. the possible access to the ammunition also in the context of terrorist and right-wing extremist activities, the continuous catching of and resulting injuring of fishermen by ammunition, the constant endangering of the civil and commercial shipping by direct contact or rather too close convergence to dumped ammunition especially in the context of self detonation or a sudden release of significant amounts of these substances e.g. in the context of an accident and last but not least the uncontrollable landing of containers and ammunition as well as already flushed out contents on coasts and beaches. Basically can be stated that there is still a significant need of action and scientific investigation in the general topic of subaquatic ammunition dumpsites and that related measures have to be taken immediately – especially concerning our sense of responsibility for future generations.
Polyzyklische Aromatische Verbindungen (PAV) im Grundwasser teerölkontaminierter Altlastenstandorte
(2010)
Es wurde das Grundwasser von sieben verschiedenen mit teerölkontaminierten Altlastenstandorten in Deutschland (Stuttgart, Düsseldorf, Wülknitz, Lünen, Offenbach, Karlsruhe) und Österreich (Brunn am Gebirge) untersucht. 45 Einzelverbindungen, darunter PAK, NSO(hetero)-PAV sowie Derivate und Metabolite der PAK und PAV, konnten dabei in signifikanten Konzentrationen nachgewiesen werden. Für alle betrachteten Standorte ergab sich ein vergleichbares Schadstoffmuster. Allein 22 Verbindungen konnten für alle Standorte nachgewiesen werden. Die Identifizierung und Quantifizierung der PAK und PAV erfolgte mittels flüssig-flüssig-Extraktion und an-schließender GC-(EI)-MS Messung der Proben. Besonders zwei Standorte (Karlsruhe, Brunn a.G.) mit einer reaktiven Wand als Sanierungsverfahren wurden genauer betrachtet. Die Untersuchungen ergaben, dass es ab Inbetriebnahme der Anlagen mit Hilfe des reaktiven Reaktormaterials Aktivkohle über 10 Jahre möglich war, neben den hinlänglich bekannten EPA-PAK, auch die polareren, gut wasserlöslichen und in erhöhten Konzentrationen auftretenden NSO(hetero)-PAV sowie deren Derivate und Metabolite erfolgreich aus dem kontaminierten Grundwasserstrom zu entfernen.
Recently polyfluoroalkyl compounds (PFCs) were discovered as emerging persistentorganic pollutants. Because of their unique physicochemical properties due to theircombination of lipophilic and hydrophilic characteristics, PFCs have been widely used inmany consumer products, such as polymerisation aids, stain repellents on carpets, textiles, andpaper products for over 50 years. From the production and use of these products, PFCs can bereleased into the environment. Scientific concern about PFCs increased due to their globaldistribution and ubiquitous detection in the environment, especially in marine mammals.An analytical protocol was developed for the analysis of PFCs in water samples andvarious biological matrices. The samples were analysed for 40 PFCs plus 20 isotope-labelledinternal standards using high performance liquid chromatography/negative electrosprayionisation-tandem mass spectrometry (HPLC/(-)ESI-MS/MS). Furthermore, the analyticalquality of the laboratory has been approved in interlaboratory studies.In the first part of this Ph.D. thesis was investigated the occurrence, distribution patternand transportation mechanisms of PFCs in seawater. The rivers had a high influence on thedistribution of PFCs in offshore surface water in the German Bight, with decreasingconcentrations with increasing distance from the coast (see publication I). The research onthe spatial distribution of PFCs in coastal area is very important for the understanding of thetransportation and fate of PFCs in the marine environment. Furthermore, the longitudinal andlatitudinal distribution of PFCs in surface water of the Atlantic Ocean was investigated (seepublication II). The results indicate that trans-Atlantic Ocean currents caused the decreasingconcentration gradient from the Bay of Biscay to the South Atlantic Ocean and theconcentration drop-off close to the Labrador Sea. These data are very useful for globaltransportation models, in which industrial areas are considered as sources, and ocean watersas sinks of PFCs.The second part of this Ph.D. thesis examined the mechanisms and pathways of PFCs inharbor seals (Phoca vitulina) and their temporal trends in the German Bight. Firstly, thewhole body burden of PFCs and their tissue distribution (i.e., liver, kidney, lung, heart, blood,brain, muscle, thyroid, thymus, and blubber) was investigated in harbor seals (seepublication III). This study is relevant for calculation of the bioaccumulation potential ofthese compounds in marine mammals. Secondly, the temporal trends over the last decade andassociations between PFC concentration and the evidence of diseases, spatial distribution, ageand sex were evaluated in archived harbor seal livers (see publication IV). The results showsignificant declining concentrations of many PFCs indicating the replacement of these PFCsby shorter chained and less bioaccumulative compounds.Several studies were performed besides the main issue of the Ph.D. work. Firstly, watersamples were collected along the river Elbe into the North Sea to examine the distribution ofPFCs in the dissolved and particulate phase, their discharge into the North Sea, and theinfluence of waste water treatment plant effluents to the riverine mass flow. Furthermore,surface water samples were collected in the North Sea, Baltic Sea and Norwegian Sea, wherethe occurrence and spatial distribution between river estuaries, coastal waters, in brackish aswell as salt water, and open sea water were compared. Finally, within the frame of a researchstay at the National Institute of Advanced Industrial Science and Technology (AIST) in Japan,the partitioning behaviour of PFCs between pore water and sediment in two sediment coresfrom Tokyo Bay was investigated.This Ph.D. thesis has improved our knowledge of the occurrence and distribution of PFCsin water and biota highlighting association between PFCs and pathological conditions,potential sources and sinks, spatial distribution, and changes in their pattern and long-termperspective trends.
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.
Im Rahmen der vorliegenden Arbeit wurde eine umfangreiche chemische Charakterisierung der Grundwasserbelastung an vier teerbelasteten Altlaststandorten und in angrenzenden Fließgewässern durchgeführt. Darüber hinaus wurde in diesem Zusammenhang auch die Reinigungsleistung von zwei Funnel & Gate Systemen mit Aktivkohle überprüft. Neben den typischen Verbindungen wie den BTEX, PAK und Phenolen lag der Fokus dabei auf der Analytik der NSO-Heterocyclen (NSO-HET), die sich durch eine zum Teil erheblich gesteigerte Wasserlöslichkeit von den homocyclischen Verbindungen unterscheiden. Weiterhin wurde die Adsorbierbarkeit der NSO-HET auf Aktivkohle in Form von Batch- und Säulenversuchen untersucht. Erhaltene Adsorptionsisothermen wurden nach Freundlich ausgewertet und zur Validierung mit Ergebnissen der Säulenversuche verglichen. Insgesamt wurden analytische Verfahren zur Quantifizierung von 100 Verbindungen, darunter 40 NSO-HET, aus wässrigen und festen Proben über Headspace GC-FID, HPLC-DAD/FLD, GC-MS und LC-MSMS entwickelt. Zur Analyse im ng l-1 Bereich wurde ein SPE-Extraktionsverfahren angewendet, welches nach einer Fraktionierung des Probenextraktes die Vorteile der GC-MS und LC-MSMS Analytik kombiniert. An allen vier untersuchten Standorten konnten sehr hohe Konzentrationen aromatischer Verbindungen nachgewiesen werden. Darunter sind im Besonderen auch Vertreter der NSO-HET wie z.B. 1-Benzothiophen und Dibenzofuran. Abgesehen von Carbazol konnten allgemein jedoch nur geringe Konzentrationen der N-HET quantifiziert werden. Nahezu alle Verbindungen des Substanzspektrums wurden im Grundwasser der Standorte gefunden. In den angrenzenden Fließgewässern wurde ein eindeutiger Eintrag der Verbindungen erkannt, die auch im Uferbereich der Standorte in hohen Konzentrationen vorlagen. Hierzu gehören neben den PAK wie z.B. Acenaphthen, Naphthalin und 1-Methylnaphthalin auch die Heterocyclen 1-Benzothiophen und Dibenzofuran. Die Ergebnisse unterstreichen damit die Bedeutung von heterocyclischen Verbindungen an teerbelasteten Altlaststandorten. Der Eintrag wurde an einem Standort in Form von Frachtberechnungen quantifiziert und beträgt in Summe ca. 5 kg/Jahr. Gegenüber der Hintergrundbelastung wird damit in der wässrigen Phase eine Zunahme der Gesamtfracht an aromatischen Verbindungen in Höhe von ca. 50 % verursacht. Vergleichsweise hohe Konzentrationen der N-HET und hier im Besonderen für Acridin und 2-Methylchinolin wurden in den zwei untersuchten Fließgewässern bestimmt. Die Altlaststandorte besitzen jedoch keinen Einfluss auf die Konzentrationen dieser Verbindungen und müssen demnach auf andere Quellen zurückzuführen sein. Diesbezüglich wurden Zusammenhänge zwischen Acridin und dem Arzneistoff Carbamazepin in explorativen Messungen untersucht und diskutiert. Adsorptionsisothermenparameter sind für insgesamt 24 Verbindungen beschrieben und wurden für 2-Methylchinolin auch bei verschiedenen pH-Werten erfasst. Die Ergebnisse der Batchversuche stehen in guter Übereinstimmung mit den Säulenversuchsdaten. Neben artifiziellen Lösungen wurde hier auch ein Säulenlauf mit Realwasser eines Altlaststandortes durchgeführt. Im Allgemeinen zeigen die N-HET und O-HET im Vergleich mit den verwandten Homocyclen eine geringere Adsorbierbarkeit. Das geringste Adsorptionspotential unter den untersuchten Verbindungen wurde jedoch für monocyclische Verbindungen wie Phenol und Benzol gefunden. Für beide Funnel & Gate Systeme konnte eine hervorragende Reinigungsleistung von über 99% bezüglich des erfassten Grundwassers bestätigt werden. Gegenüber den Zulauf-konzentrationen wurden im Ablauf keine nennenswerten Konzentrationen quantifiziert.