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This study was conducted in Nyungwe National Park (NNP); a biodiversity hotspot Mountain rainforest of high conservation importance in Central Africa, but with little knowledge of its insect communities including butterflies, good indicators of climate change, and forest ecosystem health. The study aimed at availing baseline data on butterfly species diversity and distribution in NNP, for future use in monitoring climate change-driven shifts and the effects of forest fragmentation on the biodiversity of Nyungwe. Butterflies were collected seasonally using fruit-baited traps and hand nets along elevational transects spanning from 1700 m up to 2950 m of altitude. Two hundred forty-two species including 28 endemics to the Albertine Rift and 18 potential local climate change indicators were documented. Species richness and abundance declined with increasing elevation and higher seasonal occurrence was observed during the dry season. This was the first study on the spatial and temporal distribution of butterflies in NNP and further studies could be conducted to add more species and allow a depth understanding of the ecology of Nyungwe butterflies.
Die in dieser Studie beschriebene Forschungsarbeit hatte primär das Ziel, den Einfluss partikelgebundener Pestizide auf Organismen in der flockenartigen Schicht zwischen Sediment und Wasser in einem temporär offenen Ästuar zu erfassen. Dabei wurde die Hypothese aufgestellt, dass natürliche Variablen wie Salzgehalt und Temperatur sowie anthropogene Stressfaktoren wie partikelgebundene Pestizide zur Variabilität des Systems beitragen. Die Variabilität der Sedimentzusammensetzung, der Verteilung der Kontamination, sowie der räumlichen und zeitlichen Unterschiede im Ökosystem, speziell in temporär offenen Ästuaren, macht hier einen kompositionellen Ansatz notwendig. Das erste Ziel dieser Arbeit war die Identifikation der partikelgebundenen Pestizide, die zur Kontamination des Lourens-River-Ästuars beitragen, unter Berücksichtigung ihrer Umweltkonzentrationen sowie physikalisch-chemischer und toxischer Eigenschaften (Expositionsanalyse). Das zweite Ziel war die Identifikation räumlicher und temporärer Variabilität partikelgebundener Pestizide, natürlicher Umweltvariablen und benthischer Artenzusammensetzung (Wirkungsanalyse). Das dritte Ziel der Studie war es, die Hypothese zu testen, ob Anpassung an schwankende Salzgehalte die Überlebensrate von einem harpacticoiden Copepoden Mesochra parva fördert, bei gleichzeitiger Aussetzung von Chlorpyrifos und hypoosmotischem Stress während eines 96-stündigen Sedimenttoxizitätstests. Das letzte Ziel der Studie beinhaltete die Identifikation jener Umweltvariablen (einschließlich natürlicher und anthropogener Stressoren), die ein Ästuar beinflussen. Zu diesem Zweck wurde ein natürliches Ästuar (Rooiels River) mit einem anthropogen beeinflussten Ästuar (Lourens River) verglichen. Die Ergebnisse dieser Arbeit sind somit für das Verständis der Wirkung von Pestiziden und ihrer Interaktion mit natürlichen Parametern in einem temporär offenen Ästuar von großer Bedeutung. Zusammenfassend zeigt diese Arbeit mit ihrem kompositionellen Ansatz auf, dass Pestizide wie Endosulfan und Chlopyrifos ein Risiko für die benthische Artengemeinschaft in einem temporär offenen Ästuar darstellen, insbesondere während des Frühjahrs. Desweiteren wurde nachgewiesen, dass Exposition und Toxizität von Pestiziden eng mit dem Salzgehalt in temporär offenen Ästuaren verknüpft sind. Diese Erkenntnis hat wichtige Folgen für den Schutz von temporär offenen Ästuaren.
Wildbienen sind unerlässlich für die Bestäubung von Wild- und Kulturpflanzen. Die zunehmende Intensivierung der Landwirtschaft führte jedoch sowohl zu einer Verringerung und Fragmentierung als auch zu einer Wertminderung der von ihnen benötigten Lebensräume innerhalb der letzten Jahrzehnte. Die damit einhergehenden Verluste von Bestäubern und ihrer Bestäubung stellt die weltweite Nahrungsmittelproduktion vor eine immense Herausforderung. Zur Förderung von Wildbienen ist die Verfügbarkeit von Blüteressourcen essentiell. Die Blühdauer einzelner Ressourcen ist jedoch zeitlich begrenzt und hat, je nach Blütezeitpunkt, unterschiedliche Effekte auf Bestäuber und deren Bestäubung.
Um Wildbienen als Bestäuber in Agrarlandschaften effizient fördern und nutzen zu können, identifizierten wir deshalb die artspezifischen Schlüsselressourcen dreier ausgewählter Wildbienen und deren räumliche und zeitliche Verfügbarkeit (KAPITEL 2, 3 & 4). Wir untersuchten, welche Habitatstypen diese Ressourcen überwiegend bereitstellen (KAPITEL 3 & 4). Wir untersuchten zudem, ob Blütenressourcenkarten, die auf der Nutzung dieser Schlüsselressourcen und deren räumlich zeitlicher Verfügbarkeit basieren, die Abundanzen und die Entwicklung der ausgewählten Wildbienen (KAPITEL 3 & 4) und die Bestäubung (KAPITEL 5) besser erklären als Habitatkarten, die die Verfügbarkeit von Blüteressourcen nur indirekt beschreiben.
Für jede der untersuchten Arten konnten wir unterschiedliche, im frühen Saisonverlauf (April/Mai) überwiegend holzige im späteren Verlauf (Juni/Juli) auch zunehmend krautige, Schlüsselarten identifizieren (KAPITEL 2, 3 & 4). Die Wildobst- und Wildheckengehölze unserer Agrarlandschaften stellten rund 75% der Blütenressourcen für Erdhummeln, 60% für Rote Mauerbienen und 55% für Gehörnte Mauerbienen bereit, obwohl sie einen Flächenanteil von nur 3% ausmachten (KAPITEL 3 & 4). Obstplantagen stellten zusätzlich rund 35% des Blütenangebots für Gehörnte Mauerbienen auf 4% der Fläche bereit (KAPITEL 3). Wir konnten zeigen, dass beide Mauerbienenarten von der Ressourcenverfügbarkeit in den umliegenden Landschaften profitierten (KAPITEL 3). Bei Erdhummeln zeigte sich dieser Zusammenhang jedoch nicht (KAPITEL 4). Stattdessen waren die Gewichtszunahme ihrer Kolonien, die Anzahlen der darin ausgebildeten Königinnenzellen und die Überlebensdauer der Kolonie mit zunehmender Nähe zum Wald höher. Ebenfalls auf die beiden Mauerbienenarten wirkte sich die Waldnähe positiv aus (KAPITEL 3). Daneben profitierten Rote Mauerbienen durch krautige halbnatürliche Habitate. Nachteilig wirkten sich Siedlungsflächen auf die Gehörnten Mauerbienen, und Ackerland auf die Roten Mauerbienen aus. Habitatkarten erklärten die Abundanzen der Gehörnten Mauerbienen gleich gut wie Blütenressourcenkarten, jedoch wurden die Abundanzen der Roten Mauerbienen deutlich besser durch Schlüsselressourcen erklärt. Die Bestäubung der Ackerbohne erhöhte sich mit höheren Anteilen früher Blütenressourcen (KAPITEL 5). Dabei zeigte sich keine messbare Reduktion der Bestäubung durch gleichzeitig blühende Ressourcen. Habitatkarten erklärten die Bestäubung der Ackerbohne auch besser als Blütenressourcenkarten. Dabei nahm die Bestäubung mit zunehmenden Anteilen an Siedlungsflächen in den Landschaften zu und reduzierte sich mit zunehmenden Anteilen von Ackerland.
Unsere Ergebnisse verdeutlichen die Wichtigkeit der räumlich-zeitlichen Verfügbarkeit bestimmter Schlüsselarten als Ressourcenpflanzen von Wildbienen in Agrarlandschaften. Sie zeigen, dass Habitatkarten detaillierten Blütenressourcenkarten in der Vorhersage der Entwicklung von Wildbienen und deren Bestäubung voraus oder zumindest ebenbürtig sind. Dennoch ermöglichen es
Blütenressourcenkarten, genauere Schlüsse zwischen den einzelnen Ressourcen und den untersuchten Organismen zu ziehen. Die Nähe zu Waldrändern wirkte sich positiv auf jede der drei untersuchten Wildbienenarten aus. Neben der reinen Nahrungsverfügbarkeit scheinen jedoch weitere Faktoren das Vorkommen von Wildbienen in Agrarlandschaften mitzubestimmen.
Statistical eco(-toxico)logy
(2017)
Freshwaters are of immense importance for human well-being.
Nevertheless, they are currently facing unprecedented levels of threat from habitat loss and degradation, overexploitation, invasive species and
pollution.
To prevent risks to aquatic ecosystems, chemical substances, like agricultural pesticides, have to pass environmental risk assessment (ERA) before entering the market.
Concurrently, large-scale environmental monitoring is used for surveillance of biological and chemical conditions in freshwaters.
This thesis examines statistical methods currently used in ERA.
Moreover, it presents a national-scale compilation of chemical monitoring data, an analysis of drivers and dynamics of chemical pollution in streams and, provides a large-scale risk assessment by combination with results from ERA.
Additionally, software tools have been developed to integrate different datasets used in ERA.
The thesis starts with a brief introduction to ERA and environmental monitoring and gives an overview of the objectives of the thesis.
Chapter 2 addresses experimental setups and their statistical analyses using simulations.
The results show that current designs exhibit unacceptably low statistical power, that statistical methods chosen to fit the type of data provide higher power and that statistical practices in ERA need to be revised.
In chapter 3 we compiled all available pesticide monitoring data from Germany.
Hereby, we focused on small streams, similar to those considered in ERA and used threshold concentrations derived during ERA for a large-scale assessment of threats to freshwaters from pesticides.
This compilation resulted in the most comprehensive dataset on pesticide exposure currently available for Germany.
Using state-of-the-art statistical techniques, that explicitly take the limits of quantification into account, we demonstrate that 25% of small streams are at threat from pesticides.
In particular neonicotinoid pesticides are responsible for these threats.
These are associated with agricultural intensity and can be detected even at low levels of agricultural use.
Moreover, our results indicated that current monitoring underestimates pesticide risks, because of a sampling decoupled from precipitation events.
Additionally, we provide a first large-scale study of annual pesticide exposure dynamics.
Chapters 4 and 5 describe software solutions to simplify and accelerate the integration of data from ERA, environmental monitoring and ecotoxicology that is indispensable for the development of landscape-level risk assessment.
Overall, this thesis contributes to the emerging discipline of statistical ecotoxicology and shows that pesticides pose a large-scale threat to small streams.
Environmental monitoring can provide a post-authorisation feedback to ERA.
However, to protect freshwater ecosystems ERA and environmental monitoring need to be further refined and we provide software solutions to utilise existing data for this purpose.
Thousands of chemicals from daily use are being discharged from civilization into the water cycle via different pathways. Ingredients of personal care products, detergents, pharmaceuticals, pesticides, and industrial chemicals thus find their way into the aquatic ecosystems and may cause adverse impacts on the ecology. Pharmaceuticals for instance, represent a central group of anthropogenic chemicals, because of their designed potency to interfere with physiological functions in organisms. Ecotoxicological effects from pharmaceutical burden have been verified in the past. Therapeutic groups with pronounced endocrine disrupting potentials such as steroid hormones gain increasing focus in environmental research as it was reported that they cause endocrine disruption in aquatic organisms even when exposed to environmentally relevant concentrations. This thesis considers the comprehensive investigation of the occurrence of corticosteroids and progestogens in wastewater treatment plant (WWTP) effluents and surface waters as well as the elucidation of the fate and biodegradability of these steroid families during activated sludge treatment. For the first goal of the thesis, a robust and highly sensitive analytical method based on liquid chromatography-tandem mass spectrometry (LC-MS/MS) was developed in order to simultaneously determine the occurrence of around 60 mineralocorticoids, glucocorticoids and progestogens in the aquatic environment. A special focus was set to the compound selection due to the diversity of marketed synthetic steroids. Some analytical challenges have been approved by individual approaches regarding sensitivity enhancement and compound stabilities. These results may be important for further research in environmental analysis of steroid hormones. Reliable and low quantification limits are the perquisite for the determination of corticosteroids and progestogens at relevant concentrations due to low consumption volumes and simultaneously low effect-based trigger values. Achieved quantification limits for all target analytes ranged between 0.02 ng/L and 0.5 ng/L in surface water and 0.05 ng/L to 5 ng/L in WWTP effluents. This sensitivity enabled the detection of three mineralocorticoids, 23 glucocorticoids and 10 progestogens within the sampling campaign around Germany. Many of them were detected for the first time in the environment, particularly in Germany and the EU. To the best of our knowledge, this in-depth steroid screening provided a good overview of single steroid burden and allowed for the identification of predominantly steroids of each steroid
type analyzed for the first time. The frequent detection of highly potent synthetic steroids (e.g. triamcinolone acetonide, clobetasol propionate, betamethasone valerate, dienogest, cyproterone acetate) highlighted insufficient removal during conventional Summary wastewater treatment and indicated the need for regulation to control their emission since the steroid concentrations were found to be above the reported effect-based trigger values for biota. Overall, the study revealed reliable environmental data of poorly or even not analyzed steroids. The results complement the existing knowledge in this field but also providednew information which can beused particularly for compound prioritization in ecotoxicological research and environmental analysis. Based on the data obtained from the monitoring campaign, incubation experiments were conducted to enable the comparison of the biodegradability and transformation processes in activated sludge treatment for structure-related steroids under aerobic and standardized experimental conditions. The compounds were accurately selected to cover manifold structural moieties of commonly used glucocorticoids, including non-halogenated and halogenated steroids, their mono- and diesters, and several acetonide-type steroids. This approach allowed for a structure-based interpretation of the results. The obtained biodegradation rate constants suggested large variations in the biodegradability (half-lifes ranged from < 0.5 h to > 14 d). An increasing stability was identified in the order from non-halogenated steroids (e.g. hydrocortisone), over 9α-halogenated steroids (e.g. betamethasone), to C17-monoesters (e.g. betamethasone 17-valerate, clobetasol propionate), and finally to acetonides (e.g. triamcinolone acetonide), thus suggesting a strong relationship of the biodegradability with the glucocorticoid structure. Some explanations for this behavior have been received by identifying the transformation products (TPs) and elucidating individual transformation pathways. The results revealed the identification of the likelihood of transformation reactions depending on the chemical steroid structure for the first time. Among the identified TPs, the carboxylates (e.g. TPs of fluticasone propionate, triamcinolone acetonide) have been shown persistency in the subsequent incubation experiments. The newly identified TPs furthermore were frequently detected in the effluents of full-scale wastewater treatment plants. These findings emphasized i) the transferability of the lab-scale degradation experiments to real world and that ii) insufficient removals may cause adverse effects in the aquatic environment due to the ability of the precursor steroids and TPs to interact with the endocrine system in biota. For the last goal, the conceptual study for glucocorticoids was applied to progestogens.
Here, two sub-types of the steroid family frequently used for hormonal contraception were selected (17α-hydroxyprogesterone and 19-norstestosterone type). The progestogens showed a fast and complete degradation within six hours, and thus empathizes pronounced biodegradability. However, cyproterone acetate and dienogest Summary have been found to be more recalcitrant in activated sludge treatment. This was consistent with their ubiquitously occurrence during the previous monitoring campaign. The elucidation of TPs again revealed some crucial information regarding the observed behavior and highlighted furthermore the formation of hazardous TPs. It was shown that 19-nortestosterone type steroids are able to undergo aromatization at ring A in contact with activated sludge, leading to the formation of estrogen-like TPs with a phenolic moiety at ring A. In the case of norethisterone the formation of 17α-ethinylestradiol was confirmed, which is a well-known potent synthetic estrogen with elevated ecotoxicological potency. Thus, the results indicated for the very first time an unknown source of estrogenic compounds, particularly for 17α-ethinylestradiol. In conclusion, some steroids were found to be very stable in activated sludge treatment, others degrade well, and others which do degrade but predominantly to active TPs depending on their chemical structure. Fluorinated acetal steroids such as triamcinolone acetonide and fluocinolone acetonide are poorly biodegradable, which is reflected in high concentrations detected ubiquitously in WWTP effluents. Endogenous steroids and their most related synthetic once such as hydrocortisone, prednisolone or 17α-hydroxyprogesterone are readily biodegradable. Regardless their high influent concentrations, they are almost completely removed in conventional WWTPs. Steroids between this range have been found to form elevated quantities of TPs which are partially still active, which particularly the case for betamethasone, fluticasone propionate, cyproterone acetate or dienogest. The thesis illustrates the need for an extensive evaluation of the environmental risks and carried out that corticosteroids and progestogens merit more attention in environmental regulatory and research than it is currently the case
Student misbehavior and its treatment is a major challenge for teachers and a threat to their well-being. Indeed, teachers are obliged to punish student misbehavior on a regular basis. Additionally, teachers’ punishment decisions are among the most frequently reported situations when it comes to students’ experiences of injustice in school. By implication, it is crucial to understand teachers’ treatment of student misbehavior vis-à-vis students’ perceptions. One key dimension of punishment behavior reflects its underlying motivation and goals. People generally intend to achieve three goals when punishing misbehavior, namely, retribution (i.e., evening out the harm caused), special prevention (i.e., preventing recidivism of the offender), and general prevention (i.e., preventing imitation of others). Importantly, people’s support of these punishment goals is subject to hierarchy and power, implying that teachers’ and students’ punishment goal preferences differ. In this dissertation, I present three research projects that shed first light on teachers’ punishment and its goals along with the students’ perception of classroom intervention strategies pursuing these goals. More specifically, I first examined students’ (i.e., children’s) general support of each of the three punishment goals sketched above. Furthermore, I applied an attributional approach to understand and study the goals teachers intend to achieve when punishing student misbehavior. Finally, I investigated teachers’ and students’ support of the punishment goals regarding the same student misbehavior to directly compare their views on these goals and reactions pursuing them. In sum, the findings show that students generally prefer retribution and special prevention to general prevention, whereas teachers prefer general prevention and special prevention to retribution. This ultimately translates into a "mismatch" of teachers and students in their preferences for specific punishment goals, and the findings suggest that this may indeed enhance students’ perception of injustice. Overall, the results of the present research program may be valuable for the development of classroom intervention strategies that may reduce rather than enhance conflicts in student-teacher-interactions.
The distributed setting of RDF stores in the cloud poses many challenges. One such challenge is how the data placement on the compute nodes can be optimized to improve the query performance. To address this challenge, several evaluations in the literature have investigated the effects of existing data placement strategies on the query performance. A common drawback in theses evaluations is that it is unclear whether the observed behaviors were caused by the data placement strategies (if different RDF stores were evaluated as a whole) or reflect the behavior in distributed RDF stores (if cloud processing frameworks like Hadoop MapReduce are used for the evaluation). To overcome these limitations, this thesis develops a novel benchmarking methodology for data placement strategies that uses a data-placement-strategy-independent distributed RDF store to analyze the effect of the data placement strategies on query performance.
With this evaluation methodology the frequently used data placement strategies have been evaluated. This evaluation challenged the commonly held belief that data placement strategies that emphasize local computation, such as minimal edge-cut cover, lead to faster query executions. The results indicate that queries with a high workload may be executed faster on hash-based data placement strategies than on, e.g., minimal edge-cut covers. The analysis of the additional measurements indicates that vertical parallelization (i.e., a well-distributed workload) may be more important than horizontal containment (i.e., minimal data transport) for efficient query processing.
Moreover, to find a data placement strategy with a high vertical parallelization, the thesis tests the hypothesis that collocating small connected triple sets on the same compute node while balancing the amount of triples stored on the different compute nodes leads to a high vertical parallelization. Specifically, the thesis proposes two such data placement strategies. The first strategy called overpartitioned minimal edge-cut cover was found in the literature and the second strategy is the newly developed molecule hash cover. The evaluation revealed a balanced query workload and a high horizontal containment, which lead to a high vertical parallelization. As a result these strategies showed a better query performance than the frequently used data placement strategies.
Previous research concerned with early science education revealed that guided play can support young children’s knowledge acquisition. However, the questions whether guided play maintains other important prerequisites such as children’s science self-concept and how guided play should be implemented remain unanswered. The present dissertation encompasses three research articles that investigated 5- to 6-year-old children’s science knowledge, science theories, and science self-concept in the stability domain and their relation to interindividual prerequisites. Moreover, the articles examined whether children’s science knowledge, science theories, and science self-concept can be supported by different play forms, i.e., guided play with material and verbal scaffolds, guided play with material scaffolds, and free play. The general introduction of the present dissertation first highlights children’s cognitive development, their science self-concept, and interindividual prerequisites, i.e., fluid and crystallised intelligence, mental rotation ability, and interest in block play. These prerequisites are applied to possible ways of supporting children during play. The first article focused on the measurement of 5-to-6-year-old children’s stability knowledge and its relation to interindividual prerequisites. Results suggested that children’s stability knowledge could be measured reliably and validly, and was related to their fluid and crystallised intelligence. The second article was concerned with the development of children’s intuitive stability theories over three points of measurement and the effects of guided and free play, children’s prior theories as well as their intelligence on these intuitive theories. Results implied that guided play with material and verbal scaffolds supported children’s stability theories more than the other two play forms, i.e., guided play with material scaffolds and free play. Moreover, consistency of children’s prior theories, their fluid and crystallised intelligence were related to children’s theory adaptation after the intervention. The third article focused on the effect of the playful interventions on children’s stability knowledge and science self-concept over three points of measurement. Furthermore, the reciprocal effects between knowledge acquisition and science self-concept were investigated. Results implied that guided play supported knowledge acquisition and maintained children’s science self-concept. Free play did not support children’s stability knowledge and decreased children’s science self-concept. No evidence for reciprocal effects between children’s stability knowledge and their science self-concept was found. Last, in a general discussion, the findings of the three articles are combined and reflected amidst children’s cognitive development. Summarising, the present dissertation shows that children’s science knowledge, science theories, and science self-concept can be supported through guided play that considers children’s cognitive development.
Verschiedene Methoden (Gewichtsverlust, elektrochemische und Sprühkorrosionsmessungen) wurden eingesetzt, um die Korrosionsinhibierung von vier Sarkosinderivaten und einer kommerziellen Verbindung als Synergist zu bewerten. Das Basismetall war kohlenstoffarmer Stahl CR4, der unter verschiedenen Bedingungen getestet wurde. Als Arbeitsmedien wurden hauptsächlich neutrales Wasser und 0.1 M NaCl eingesetzt. Der Schutzfilm wurde auf der Stahloberfläche durch direkte Apsorption der Prüfsubstanzen während des Eintauchprozesses gebildet. Ein stark verbesserter Korrosionsschutz mit direkter Korrelation zwischen Molekulargewicht und Kohlenstoffkettenlänge der Prüfsubstanzen konnte nachgewiesen werden. Die Schutzwirkung der ausgewählten Sarkosinverbindungen auf Stahl CR4 erhöht sich in 0.1 M NaCl mit zunehmender Konzentration. In allen getesteten Methoden und Konzentrationen erwies sich Oleoylsarcosin (O) als bester Inhibitor. Es wurden Wirksamkeiten bis zu 97 % in der potentiodynamischen Polarisation (PP), 83 % bei der elektrochemische Impedanzspektroskopie (EIS) und 85 % in der Gewichtsabnahme (WL) bei 100 mmol/L als höchster hier getesteten Konzentration erzielt. Der zweitbeste Inhibitor ist Myristoylsarcosin (M) mit Effektivitäten bis zu 82 % in PP, 69 % in EIS und 75 % in WL ebenfalls bei der höchsten Konzentration. Der Inhibitor mit der kürzesten Kette in dieser Testreihe ist Lauroylsarcosin (L). L ergab Schutzwirkungen von etwas über 50 % bei 75 und 100 mmol/L und unter 50 % bei 25 und 50 mmol/L in allen angewandten Methoden. Zudem werden die Gesamteffizienzen aller verwendeten Prüfsubstanzen durch längere Einwirkzeiten beim Eintauchen der CR4 Stahlproben erhöht, wie für 50 mmol/L gezeigt werden konnte. Die Untersuchung ergab 10 Minuten als beste Zeit bezüglich Kosten- und Schutzeffizienz. Der kommerzielle Inhibitor Oley-Imidazol (OI) verbesserte die Wirksamkeit von Cocoylsarcosin (C), der natürlichen Mischung aus Kokosnussöl mit Kohlenstoffkettenlängen von C8 - C18, und verbesserte den Schutz in einer 1:1 (mol) Kombination (C+OI). Hierbei stieg der Wirkungsgrad von 47 % auf 91 % in PP, von 40 % auf 84 % in EIS und von 45 % auf 82 % in WL bei der höchsten Konzentration. Mit Hilfe von Sprühkorrosionstests wurden alle vorliegenden Sarkosinsubstanzen auf Stahl CR4 in einem realistischeren System untersucht. Der beste Inhibitor nach einem 24 Stunden-Test war O, gefolgt von der Kombination C+OI und M mit entsprechenden Wirkungsgraden von bis zu 99 % (O), 80 % (C+OI) bzw. 79 % (M). Die erhaltenen Ergebnisse zeigen eine gute Stabilität der Prüfsubstanzen bezüglich des gebildeten Schutzfilms auch nach 24 h. Alle verwendeten Methoden ergaben in der aktuellen Untersuchung übereinstimmende Ergebnisse und die gleiche Reihenfolg der Inhibitoren. Darüber hinaus wird angenommen, dass der Adsorptionsprozess der Prüfsubstanzen der Langmuir-Isotherme folgt. Die Response Surface Methodik (RSM) ist eine vom Box-Behnken Design (BBD) abhängige Optimierungsmethode. Diese wurde im aktuellen System angewandt, um die optimale Effektivität für Inhibitor O beim Korrosionsschutz von Stahl CR4 in Salzwasser zu ermitteln. Hierfür wurden vier unabhängige Variablen benutzt: Inhibitorkonzentration (A), Tauchbeschichtungszeit (B), Temperatur (C) und NaCl-Konzentration (D); jeweils in drei Stufen: untere (-1), mittlere (0) und obere (+1). Nach dem vorliegenden Ergebnis hat die Temperatur als Einzelparameter den größten Einfluss auf den Schutzprozess, gefolgt von der Inhibitorkonzentration. Anhand der Berechnung ergibt sich ein optimaler Wirkungsgrad von 99 % durch folgende Parameter- und Pegelkombination: oberer Wert (+1) jeweils für Inhibitorkonzentration, Tauchbeschichtungszeit und NaCl-Konzentration sowie ein unterer Wert (-1) für die Temperatur.
A taxonomic revision of the genus Pteris in tropical Africa revealed 26 species. An identification key to the species is provided. Morphological characters were used to prepare a cladistic analysis of the relevant taxa. Each species was evaluated concerning the IUCN red list status. Only Pteris mkomaziensis was considered as Near Threatened, and all other species only as Least Concern. An inventory of the ferns of Kakamega Forest / Kenya and Budongo Forest / Uganda revealed 85 species in Kakamega and 66 species in Budongo. Life form spectra were analysed and the ferns were studied for their value for bioindication.