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Die UN-Behindertenrechtskonvention von 2008 formuliert einen Rechtsanspruch auf inklusive Bildung für Menschen mit Beeinträchtigungen. Diesem wird in Deutschland seit 2009 durch Schulgesetzänderungen Rechnung getragen, mit denen inklusive Bildung durch ein Elternwahlrecht implementiert wird. Bislang ist vor dem Hintergrund der neu geschaffenen elterlichen Entscheidungsmöglichkeiten noch nicht untersucht worden, welche Vorstellungen Eltern von Kindern mit komplexen Beeinträchtigungen mit dem inklusiven Bildungsanspruch ihres Kindes verbinden und in welcher Weise sie diesen an der Schulform ihrer Wahl eingelöst sehen. Im Zentrum der vorliegenden Arbeit steht die Rekonstruktion des Bildungsangebots aus der Perspektive der Eltern im Abgleich mit der Sicht der pädagogischen Klassenteams. Den Fragen nach den elterlichen Erwartungen und Erfahrungen wurde aus der systemtheoretischen Perspektive von Luhmann nachgegangen. In der qualitativ angelegten Untersuchung geht es um Schülerinnen und Schüler mit komplexen Beeinträchtigungen, die nach der Schulgesetznovellierung in Hamburg (2009) in den Jahren 2010 und 2011 eingeschult worden sind und aufgrund der Entscheidung ihrer Eltern in unterschiedlichen Settings an Grund- und Sonderschulen lernen. Die Datenerhebung erfolgte durch leitfadengestützte Interviews mit Eltern, Pädagoginnen und Pädagogen sowie Schulleitungen, ergänzt durch Hospitationen im Schuljahr 2011/12 und Dokumente, die von den Schulen zur Verfügung gestellt wurden. Die Datenanalyse erfolgt mithilfe der Grounded Theory nach Strauß/Corbin (1996). Die Ergebnisse der Untersuchung zeigen elterliche Bildungserwartungen im Hinblick auf ein Ermöglichen von Autonomie und Teilhabe ihrer Kinder und eine differenzierte Wahrnehmung der Umsetzung ihrer Erwartungen im Schulalltag. Einen besonderen Stellenwert messen Eltern der Zusammenarbeit zwischen Schule und Familie bei, die für das Entstehen von Vertrauen bzw. Misstrauen bedeutsam ist. Aus den Erkenntnissen und deren Rückbindung an die Systemtheorie wurde ein Modell des Professionsvertrauens/-misstrauens entwickelt.
Die Auswertung ergibt Hinweise zu Qualitätskriterien eines inklusiven Bildungsangebots und zu Entwicklungsanforderungen in der Professionalisierung, die sowohl auf die Ebene der Organisation Schule als auch der Interaktion zwischen schulischen Akteurinnen und Akteuren sowie Eltern abzielen.
In the new epoch of Anthropocene, global freshwater resources are experiencing extensive degradation from a multitude of stressors. Consequently, freshwater ecosystems are threatened by a considerable loss of biodiversity as well as substantial decrease in adequate and secured freshwater supply for human usage, not only on local scales, but also on regional to global scales. Large scale assessments of human and ecological impacts of freshwater degradation enable an integrated freshwater management as well as complement small scale approaches. Geographic information systems (GIS) and spatial statistics (SS) have shown considerable potential in ecological and ecotoxicological research to quantify stressor impacts on humans and ecological entitles, and disentangle the relationships between drivers and ecological entities on large scales through an integrated spatial-ecological approach. However, integration of GIS and SS with ecological and ecotoxicological models are scarce and hence the large scale spatial picture of the extent and magnitude of freshwater stressors as well as their human and ecological impacts is still opaque. This Ph.D. thesis contributes novel GIS and SS tools as well as adapts and advances available spatial models and integrates them with ecological models to enable large scale human and ecological impacts identification from freshwater degradation. The main aim was to identify and quantify the effects of stressors, i.e climate change and trace metals, on the freshwater assemblage structure and trait composition, and human health, respectively, on large scales, i.e. European and Asian freshwater networks. The thesis starts with an introduction to the conceptual framework and objectives (chapter 1). It proceeds with outlining two novel open-source algorithms for quantification of the magnitude and effects of catchment scale stressors (chapter 2). The algorithms, i.e. jointly called ATRIC, automatically select an accumulation threshold for stream network extraction from digital elevation models (DEM) by assuring the highest concordance between DEM-derived and traditionally mapped stream networks. Moreover, they delineate catchments and upstream riparian corridors for given stream sampling points after snapping them to the DEM-derived stream network. ATRIC showed similar or better performance than the available comparable algorithms, and is capable of processing large scale datasets. It enables an integrated and transboundary management of freshwater resources by quantifying the magnitude of effects of catchment scale stressors. Spatially shifting temporal points (SSTP), outlined in chapter 3, estimates pooled within-time series (PTS) variograms by spatializing temporal data points and shifting them. Data were pooled by ensuring consistency of spatial structure and temporal stationarity within a time series, while pooling sufficient number of data points and increasing data density for a reliable variogram estimation. SSTP estimated PTS variograms showed higher precision than the available method. The method enables regional scale stressors quantification by filling spatial data gaps integrating temporal information in data scarce regions. In chapter 4, responses of the assumed climate-associated traits from six grouping features to 35 bioclimatic indices for five insect orders were compared, their potential for changing distribution pattern under future climate change was evaluated and the most influential climatic aspects were identified (chapter 4). Traits of temperature preference grouping feature and the insect order Ephemeroptera exhibited the strongest response to climate as well as the highest potential for changing distribution pattern, while seasonal radiation and moisture were the most influential climatic aspects that may drive a change in insect distribution pattern. The results contribute to the trait based freshwater monitoring and change prediction. In chapter 5, the concentrations of 10 trace metals in the drinking water sources were predicted and were compared with guideline values. In more than 53% of the total area of Pakistan, inhabited by more than 74 million people, the drinking water was predicted to be at risk from multiple trace metal contamination. The results inform freshwater management by identifying potential hot spots. The last chapter (6) synthesizes the results and provides a comprehensive discussion on the four studies and on their relevance for freshwater resources conservation and management.
Factors triggering the ecotoxicity of metal-based nanoparticles towards aquatic invertebrates
(2015)
Nanoparticles are produced and used in huge amounts increasing their probability to end up in surface waters. There, they are subject to environmentally driven modification processes. Consequently, aquatic life may be exposed to different nanoparticle agglomerate sizes, while after sedimentation benthic organisms are more likely to be affected.
However, most ecotoxicity studies with nanoparticles exclusively investigated implications of their characteristics (e.g. size) on pelagic organisms, ignoring environmentally modified nanoparticles. Therefore, a systematic assessment of factors triggering the fate and toxicity of nanoparticles under environmentally relevant conditions is needed. The present thesis, therefore, investigates the implications of nanoparticle related factors (i.e., inherent material-properties and nanoparticle characteristics) as well as environmental conditions towards the pelagic living organism Daphnia magna and the benthic species Gammarus fossarum. In detail, inert titanium dioxide (nTiO2) and ion-releasing silver nanoparticles (nAg), both of varying particle characteristics (e.g. initial size), were tested for their toxicity under different environmental conditions (e.g. ultraviolet-light (UV-light)).
The results indicate that the toxicity of nTiO2 and nAg is mainly determined by: their adsorption potential onto biota, and their fate in terms of reactive oxygen species or Ag+ ion release. Thus, inherent material-properties, nanoparticle characteristics and environmental conditions promoting or inhibiting these aspects revealed significant implications in the toxicity of nTiO2 and nAg towards daphnids.
Furthermore, the presence of ambient UV-light, for example, adversely affected gammarids at 0.20 mg nTiO2/L, while under darkness no effects occurred even at 5.00 mg nTiO2/L. Hence, the currently associated risk of nanoparticles might be underestimated if disregarding their interaction with environmental parameters
The formulation of the decoding problem for linear block codes as an integer program (IP) with a rather tight linear programming (LP) relaxation has made a central part of channel coding accessible for the theory and methods of mathematical optimization, especially integer programming, polyhedral combinatorics and also algorithmic graph theory, since the important class of turbo codes exhibits an inherent graphical structure. We present several novel models, algorithms and theoretical results for error-correction decoding based on mathematical optimization. Our contribution includes a partly combinatorial LP decoder for turbo codes, a fast branch-and-cut algorithm for maximum-likelihood (ML) decoding of arbitrary binary linear codes, a theoretical analysis of the LP decoder's performance for 3-dimensional turbo codes, compact IP models for various heuristic algorithms as well as ML decoding in combination with higher-order modulation, and, finally, first steps towards an implementation of the LP decoder in specialized hardware. The scientific contributions are presented in the form of seven revised reprints of papers that appeared in peer-reviewed international journals or conference proceedings. They are accompanied by an extensive introductory part that reviews the basics of mathematical optimization, coding theory, and the previous results on LP decoding that we rely on afterwards.
Diese Arbeit betrachtet das Thema Führung und Gesundheit und hat hierzu verschiedene Erkenntnisse der Literatur zusammengefasst, um diese von Führungskräften aus Wirtschaft und Polizei sowie von Personal- und Organisationsentwicklern bewerten zu lassen. Das Ziel war hierbei herauszufinden, ob die Führungskräfte und die Personal- und Organisationsentwickler das Thema als wichtig erachten, welche Hauptursachen sie für Fehlzeiten sehen und wie sie verschiedene Erkenntnisse der Literatur zum Gesundheitsmanagement einschätzen. Zusätzlich sollten sie bewerten, welche Maßnahmen sie als geeignet betrachten und welche Ressourcen notwendig sind, um die Mitarbeiter bei der Gesunderhaltung zu unterstützen. Schließlich sollten die Führungskräfte und die Personal- und Organisationsentwickler beurteilen, welcher Führungsstil als gesundheitsförderlich angesehen wird. Die Wirtschafts- und Polizeiführungskräfte sowie die Personal- und Organisationsentwickler erachten das Thema Gesundheit als wichtig und sehen es nicht nur als Modetrend an. Ihre Einschätzungen zu geeigneten Maßnahmen, die die Gesundheit der Mitarbeiter verbessern können, entsprechen überwiegend den aus der Literatur abgeleiteten Vorschlägen zur gesundheitsgerechten Führung. Die weitgehende Übereinstimmung der Sichtweisen in Forschung und Praxis legt nahe, dass die Erkenntnisse der Literatur zum Gesundheitsmanagement vermutlich von Praktikern als plausibel wahrgenommen werden.
A fundamental understanding of attachment of engineered nanoparticles to environmentalrnsurfaces is essential for the prediction of nanoparticle fate and transport in the environment.
The present work investigates the attachment of non-coated silver nanoparticles and citraterncoated silver nanoparticles to different model surfaces and environmental surfaces in thernpresence and absence of humic acid. Batch sorption experiments were used for this investigation.
The objective of this thesis was to investigate how silver nanoparticles interactrnwith surfaces having different chemical functional groups. The effect of presence of HA, on the particle-surface interactions was also investigated. In the absence of humic acid, nanoparticle-surface interactions or attachment was influencedrnby the chemical nature of the interacting surfaces. On the other hand, in the presence ofrnhumic acid, nanoparticle-surface attachment was influenced by the specific surface area of the sorbent surfaces. The sorption of non-coated silver nanoparticles and citrate coatedrnnanoparticles to all the surfaces was nonlinear and best described by Langmuir isotherm, indicating monolayer sorption of nanoparticles on to the surfaces. This can be explained as due to the blocking effect generated by the particle-particle repulsion. In the presence of humic acid, sorption of nanoparticles to the surfaces was linear. When the humic acid was present in the interacting medium, both the nanoparticles and surfaces were getting coated with humic acid and this masks the chemical functionalities of the surfaces. This leads to the change in particle-surface interactions, in the presence of humic acid. For the silver nanoparticle sorption from an unstable suspension, the sorption isotherms did not follow any classical sorption models, suggesting interplay between aggregation and sorption. Citrate coated silver nanoparticles and humic acid coated silver nanoparticles showed arndepression in sorption compared to the sorption of non-coated silver nanoparticles. In therncase of citrate coated silver nanoparticles the decrease in sorption can be explained by thernmore negative zeta potential of citrate coated nanoparticles compared to non-coated ones. For humic acid coated nanoparticles the sorption depression can be due to the steric hindrance caused by the free humic acid molecules which may coat the sorbent surface or due to the competition for sorption sites between the nanoparticle and free humic acid molecules present in the suspension. Thus nanoparticle surface chemistry is an important factor that determines the attachment of nanoparticles towards surfaces and it makes the characterization of nanoparticle surface an essential step in the study of their fate in the environment.
Another aim of this study was to introduce the potential of chemical force microscopy for nanoparticle surface characterization. With the use of this technique, it was possible to distinguish between bare silver nanoparticles, citrate coated silver nanoparticles, and humic acid coated silver nanoparticles. This was possible by measuring the adhesion forces between the nanoparticles and five different AFM probes having different chemical functionalization.
The intention of this thesis was to characterise the effect of naturally occurring multivalent cations like Calcium and Aluminium on the structure of Soil Organic Matter (SOM) as well as on the sorption behaviour of SOM for heavy metals such as lead.
The first part of this thesis describes the results of experiments in which the Al and Ca cation content was changed for various samples originated from soils and peats of different regions in Germany. The second part focusses on SOM-metal cation precipitates to study rigidity in dependence of the cation content. In the third part the effects of various cation contents in SOM on the binding strength of Pb cations were characterised by using a cation exchange resin as desorption method.
It was found for soil and peat samples as well as precipitates that matrix rigidity was affected by both type and content of cation. The influence of Ca on rigidity was less pronounced than the influence of Al and of Pb used in the precipitation experiments. For each sample one cation content was identified where matrix rigidity was most pronounced. This specific cation content is below the cation saturation as expected by cation exchange capacity. These findings resulted in a model describing the relation between cation type, content and the degree of networking in SOM. For all treated soil and precipitate samples a step transition like glass transition was observed, determined by the step transition temperature T*. It is known from literature that this type of step transition is due to bridges between water molecules and organic functional groups in SOM. In contrast to the glass transition temperature this thermal event is slowly reversing after days or weeks depending on the re-conformation of the water molecules. Therefore, changes of T* with different cation compositions in the samples are explained by the formation of water-molecule-cation bridges between SOM-functional groups. No influence on desorption kinetics of lead for different cation compositions in soil samples was observed. Therefore it can be assumed that the observed changes of matrix rigidity are highly reversible by changing the water status, pH or putting agitation energy by shaking in there.
Die vorliegende Arbeit betrachtet den Einfluss von Wald- und Wirtschaftswegen auf Abflussentstehung und Bodenerosionsraten innerhalb eines bewaldeten Einzugsgebiets im Naturschutzgebiet Laacher See. Hierfür wurden sowohl bestehende Erosions- und Akkumulationsformen im Gelände kartiert, als auch Erosionssimulationen mittels einer Kleinberegnungsanlage durchgeführt. Zuletzt erfolgte eine Modellierung des Erosionspotentials auf Grundlage der Simulationsergebnisse.
Die Analyse bestehender Erosions- und Akkumulationsformen im Gelände gab einen Hinweis auf Bodenerosionsraten von Wegoberflächen, die zwischen 27,3 und 93,5 t ha-1 a-1 und somit in derselben Größenordnung wie Erosionsraten unter intensiver ackerbaulicher Nutzung lagen.
Die Simulationsläufe zeigten, dass persistente Waldwege ein deutlich verändertes Infiltrationsverhalten aufwiesen. Auf natürlichen Waldböden lag der Anteil des infiltrierten Niederschlags bei durchschnittlich 96%. Im Falle von Waldwegen nahm dieser Anteil im Mittel auf 14% bis 7% ab. Besonders auffällig waren die Ergebnisse auf Rückegassen, auf denen ein erheblicher Einfluss der Bodenverdichtung durch Befahrung nachgewiesen werden konnte. Hier sank der Anteil des infiltrierten Niederschlags auf 31% in den Fahrspuren, zwischen den Spuren wurden noch 76 % infiltriert.
Während der Simulationsläufe konnten maximale Sedimentmengen von 446 g m-2 erodiert werden, was einer mittleren Bodenerosionsrate von 4,96 g m-2 min-1 entspricht. Diese hohen Abtragsraten wurden auf persistenten Wegen mit geringer Befestigung gemessen. Rückegassen wiesen die geringsten Abtragswerte auf, maximal konnten 37 g m-2 erodiert werden, gleichbedeutend mit einer Abtragsrate von 0,41 g m-2 min-1. Die erodierten Sedimentmengen betrugen im Mittel bei Wegen 167 bis 319 g m-2 und im Falle von Rückegassen 17 g m-2. Anhand von Vergleichsmessungen auf Waldstandorten, bei denen ein mittlerer Bodenabtrag von ca. 5 g m-2 festgestellt wurde, konnte eine erhöhte Erodierbarkeit für jedwede Form der Weganlage bestätigt werden.
Auf Basis der im Gelände gemessenen Abtragsraten wurden die Modellierungen kalibriert. Die Ergebnisse der ABAG / DIN 19708 zeigten für das betrachtete Untersuchungsgebiet eine mittlere jährliche Bodenerosionsgefährdung von 2,4 - 5,8 t ha-1 a-1 für persistente Wege und von 0,5 t ha-1 a-1 für Rückegassen. Im Vergleich zum Mittelwert weitgehend unbeeinflusster Waldflächen im Untersuchungsgebiet von 0,1 t ha-1 a-1 zeigte sich abermals ein erhöhtes Abtragspotential. Die physikalisch basierte Modellierung der Beregnungsversuche mittels WEPP zeigte ein zufriedenstellendes Ergebnis bei der Einschätzung des Abflussverhaltens, so wurden für persistente Wege nur Abweichungen von maximal -5% festgestellt. Die Abflussmodellierung auf Rückegassen sowie die generelle Modellierung der Bodenerosion während der Beregnungsversuche zeigte sich im Kontrast hierzu noch fehlerbehaftet, was ursächlich mit der für ein physikalisches Modell relativ geringen Eingangsdatentiefe zu begründen ist.
Es wurde nachgewiesen, dass Waldwege einen bedeutenden Einfluss auf den Wasserhaushalt und das Bodenerosionsgeschehen haben. Der Rückhalt von Niederschlägen wird gemindert und es kommt zu intensivierten Bodenerosionsprozessen. Schlecht befestigte Wege zeigten einen stark erhöhten Bodenabtrag, der zu ökologischen Folgeschäden führen kann. Der Abtrag kann ebenso zu einer Beeinträchtigung der Befahrbarkeit führen. Anhand der Folgen lässt sich die Relevanz der Betrachtung von Abfluss- und Bodenerosionsprozessen auf Wald- und Wirtschaftswegen deutlich machen. Die vorliegende Arbeit stellt die erste Studie dar, innerhalb derer Abfluss- und Bodenerosionspozesse für Walderschließungsnetzwerke in Mitteleuropa untersucht wurden.
Demographic change forces companies in the social sector, which already face more difficulties recruiting from the primary labor market and keep qualified workers committed then other enterprises, to deal with the increase of employees satisfaction. This research paper analyses the context of dialogic management in the relation between the manager and her staff and satisfaction of employees. It measures the personal preferences of leaders and staff from the employee perception.
The following personal preferences are distinguished: Harmony-seeking relation preference versus dominant autonomy preferencern Thrill-seeking stimulant preference versus controlling balance preference according to Riemann, 1999 und Pashen Dihsmaier 2011. The empiric research was done with help of a survey at the Samaritan institution Fürstenwalde with a 364 out of 560 employees´ participation. It finds significant correlation between the satisfaction of the employees with their managers and their dialogic expertise as well as with their skill to create confidence and spread appreciation. It determines differences in job satisfication of employees between the perceived psychological preferences of the staff and the perceived preference of their managers. It can be proved that relationship-oriented leaders show a higher degree of willingness for dialogue then autonomy-oriented managers. The satisfaction of employees with these leaders is clearly higher then with managers who are perceived as autonomy- oriented. A higher degree of correlation between the contentment and dialogic behavior of management could be determined with stimulant- and relationship-oriented employee against employees with a preference for autonomy or balance. The highest value of contentment could be reached by relationship- oriented workers, who perceive their management also relationship-oriented. The foundation of dialogic thought and behavior based on trust and appreciation must be developed upon managers and employees, first, before dialogic management can be introduced to a company.
In this context the relationship-oriented management approaches should be taken into consideration when recruiting managers and should also have a high priority in the human resources development.
Change of ecosystems and the associated loss of biodiversity is among the most important environmental issues. Climate change, pollution, and impoundments are considered as major drivers of biodiversity loss. Organism traits are an appealing tool for the assessment of these three stressors, due to their ability to provide mechanistic links between organism responses and stressors, and consistency over wide geographical areas.
Additionally, traits such as feeding habits influence organismal performance and ecosystem processes. Although the response of traits of specific taxonomic groups to stressors is known, little is known about the response of traits of different taxonomic groups to stressors. Additionally, little is known about the effects of small impoundments on stream ecosystem processes, such as leaf litter decomposition, and food webs.
After briefly introducing the theoretical background and objectives of the studies, this thesis begins by synthesizing the responses of traits of different taxonomic groups to climate change and pollution. Based on 558 peer-reviewed studies, the uniformity (i.e., convergence) in trait response across taxonomic groups was evaluated through meta-analysis (Chapter 2). Convergence was primarily limited to traits related to tolerance.
In Chapter 3, the hypothesis that small impoundments would modify leaf litter decomposition rates at the sites located within the vicinity of impoundments, by altering habitat variables and invertebrate functional feeding groups (FFGs) (i.e., shredders), was tested. Leaf litter decomposition rates were significantly reduced at the study sites located immediately upstream (IU) of impoundments, and were significantly related to the abundance of invertebrate shredders.
In Chapter 4, the invertebrate FFGs were used to evaluate the effect of small impoundments on stream ecosystem attributes. The results showed that heterotrophic production was significantly reduced at the sites IU. With regard to food webs, the contribution of methane gas derived carbon to the biomass of chironomid larvae was evaluated through correlation of stable carbon isotope values of chironomid larvae and methane gas concentrations.
The results indicated that the contribution of methane gas derived carbon into stream benthic food web is low. In conclusion, traits are a useful tool in detecting ecological responses to stressors across taxonomic groups, and the effects of small impoundments on stream ecological integrity and food web are limited.