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Institut
- Fakultät Nachhaltigkeit (128) (entfernen)
Das Ausrichten der Abwasserentsorgung erfolgt in engen kommunalpolitischen und rechtlich-ökologischen Grenzen. Dabei werden weder die Rahmenbedingungen analysiert oder hinterfragt noch werden anhand akzeptierter Ziele langfristige Konzepte zur Ausgestaltung der Abwasserentsorgung entwickelt. Die Diskussion um die Wahrnehmung von Aufgaben durch die öffentliche Hand oder durch private Träger ist vielmehr durch die Kontroverse zwischen Effizienz und hoheitlicher Aufgabenerfüllung geprägt. Die gegenwärtige Problemhandhabung wird den komplexen Zusammenhängen, die mit der Abwasserentsorgung verbunden sind, nicht gerecht. Die schlechte Finanzsituation der Kommunen sollte genutzt werden, um zu neuen Formen der Aufgabenerfüllung zu gelangen.
Ein wesentlicher Beitrag zur rationalen Verwendung unserer Energieresourcen kann durch die konsequente Nutzung diskontinuierlich anfallender Wärmeenergie erbracht werden, was aufgrund der zeitlichen Verschiebung von Wärmeangeboten und Wärmebedarf auf direktem Wege oft nicht möglich ist. Dies gilt sowohl für die Nutzung anfallender Abwärme aus Kühlprozessen als auch den ökonomiaschen Einsatz von Solarenergie. Dazu ist erforderlich, mit Hilfe eines effizienten Energiespreichers den überschüssigen Energieanfall zu verlagern.
In der vorliegenden Arbeit wurde ein ICP-QMS mit integrierter Reaktions- /Kollisionszelle erfolgreich eingesetzt, um die Elemente Vanadium, Chrom, Mangan, Eisen, Nickel, Kobalt, Kupfer, Zink, Arsen, Molybdän, Cadmium, Blei und Uran direkt in verdünntem Meerwasser zu bestimmen. Die Bestimmung von Elementspuren in Meerwasser wurde realisiert, indem alle zur Verfügung stehenden Möglichkeiten zur Minimierung von Interferenzen bei der Bestimmung von Elementen mit ICP-QMS angewendet wurden.
Zur Ermittlung der Belastung der Elbe mit Pestiziden wurden chemische Analyseverfahren entwickelt, wobei das untersuchte Stoffspektrum insgesamt 106 Analyte umfasste. Die Untersuchungen ermöglichten 1989 eine erstmalige Identifizierung und Quantifizierung von Pestiziden in hohen Konzentrationen (unterer µg/L-Bereich) im Elbeästuar, nach der Wiedervereinigung deren Rückverfolgung zu industriellen Punktquellen in der ehemaligen DDR (Längsprofile), eine Erfassung der historischen Entwicklung der Belastungssituation in den 90er Jahren, die Feststellung der zunehmenden Bedeutung von Einträgen aus diffusen Quellen im Vergleich zu Punktquellen sowie die Ermittlung des Stoffspektrums und der zeitlichen und örtlichen Variabilität innerhalb eines Zeitraumes von drei Jahren (Monatsmischproben und Zeitreihen an unterschiedlichen Querschnitten der Elbe sowie Längsprofile). Der Fokus richtete sich im weiteren Verlauf auf die Entwicklung chemischer Analyseverfahren zur sicheren Identifizierung und Quantifizierung von Wirkstoffen mit niedrigen Qualitätszielen/-kriterien (unterer ng/L- bzw. sub-ng/L-Bereich). Zur Bewertung der Belastungssituation und zur Diskussion von Monitoring-Strategien wurden national und international verfügbare Qualitätsziele/-kriterien insbesondere für die aquatische Lebensgemeinschaft herangezogen.
Gegenwärtige atmogene N-Einträge in die Lüneburger Heide überschreiten die durch den critical-load für Sandheiden definierte Belastungsgrenze von 10-20 kg ha-1 und zeigen den Handlungsbedarf für eine langfristige Erhaltung dieser geschützten Lebensräume. Die traditionelle Schafbeweidung im NSG Lüneburger Heide kann diese hohen atmogenen N-Einträge kompensieren. Das Herdenmanagement minimiert den Nährstoffeintrag über die Exkremente der Tiere, so dass diesem Transfer nur eine geringe Bedeutung zukommt. Die N-Austräge über das Sickerwasser vor, während und nach den Pflegemaßnahmen spielen nur eine untergeordnete Rolle. Extensive Pflegemaßnahmen wie die Mahd und das kontrollierte Brennen sind nicht geeignet die atmogenen N-Einträge langfristig zu kompensieren. Intensiven Pflegemaßnahmen (Schoppern, Plaggen) gelingt dieses, benötigen aber einen zu langen Bearbeitungszyklus, innerhalb dessen kombinierte Verjüngungsmaßnahmen notwenig werden. Die Pflegemaßnahmen haben Auswirkungen auf die N- und P-Vorräte im Heidesystem und führen großteils zu einer P-Verarmung. Das kontrollierte Brennen beeinflusst den P-Haushalt am geringsten. Eine Kombination des Feuereinsatzes mit anderen extensiven Maßnahmen erscheint daher sinnvoll.
Süßwasserökosysteme stellen für menschliche Gesellschaften verschiedene Ökosystemdienstleistungen wie zum Beispiel Trinkwasser oder Fischressourcen bereit. In der modernen Landwirtschaft kommen große Mengen von Agrochemikalien zum Einsatz, die in die Fließgewässer gelangen und dort zur Schädigung des Ökosystems führen können. Die vorliegende Arbeit trägt wichtige Erkenntnisse zur Abschätzung von Exposition und Effekten bei, die aus dem Eintrag von Pestiziden in Fließgewässerökosysteme resultieren können. Dabei wird eine der umfangreichsten Feldstudien zu den Auswirkungen der Pestizidbelastung in kleinen landwirtschaftlichen Fließgewässern vorgestellt. Die Feldstudie wurde an 29 Bächen in zwei Gebieten Finnlands und Frankreichs durchgeführt und umfaßte die Aufnahme der Zusammensetzung der Invertebratengemeinschaften und eines wichtigen Ökosystemprozesses, dem Blattabbau. Des Weiteren wurde ein Pestizidmonitoring für Verbindungen durchgeführt, die nach den Ergebnissen behördlicher Untersuchungen in ökotoxikologisch relevanten Konzentrationen in den Gewässern vorkommen. Nach der Einleitung (Kapitel 1), werden in den Kapiteln 2-4 neue Methoden zur Erfassung der Pestizidbelastung von Fließgewässern vorgestellt und bewertet. Die Ergebnisse aus der Feldstudie zu den Auswirkungen von Pestiziden werden im Kapitel 5 präsentiert. Im 2. Kapitel wird eine neue Methode zur Erfassung von schwebstoffadsorbierten Pestiziden vorgestellt, bei der die Extraktion mit der beschleunigten Lösemittelextraktion (ASE) durchgeführt wurde. Die Methode zeigte gute Ergebnisse bezüglich Exaktheit und Genauigkeit der Wiederfindung bei der Extraktion 10 polarer und semi-polarer Pestizide verschiedener chemischer Klassen. Bei der Anwendung der Methode auf Schwebstoffproben aus den französischen Bächen wurden Konzentrationen gefunden, die auf Invertebraten toxisch wirken könnten. Zusätzlich wurde in dieser Studie die Geeignetheit von deuterierten Standards der Analyten zur Verwendung als interne Standards während der Extraktion, Aufreinigung und Analytik untersucht. Dabei zeigte sich, daß bei deuterierten Standards mit weniger als 10 Deuteriumatomen Unterschiede im Verhalten zur nicht-deuterierten Verbindung auftreten können. Das folgende Kapitel stellt ein Kalibrationsexperiment zur Ermittlung von Sammelraten für den Chemcatcher® Passivsammler mit polarer Empfängerphase vor. Sammelraten für Passivsammler werden benötigt, um nach der Ausbringung in Gewässern zeitlich-gewichtete Durchschnittskonzentrationen (engl. TWA) berechnen zu können. Für den Chemcatcher® bewegten sich die Sammelraten im Bereich von 0.1 bis 0.5 L pro Tag. Das Kalibrationsexperiment ergab zudem, daß der Chemcatcher® ohne diffusionslimitierende Membran für Felduntersuchungen mit bis zu 14 Tagen Expositionszeit geeignet ist. Die ermittelten Sammelraten werden im 4. Kapitel verwendet, um TWAs für die Freilandexposition des Chemcatchers® in den französischen Bächen zu berechnen. Ferner wird die Leistungsfähigkeit des Chemcatchers® mit zwei weiteren Verfahren zur Erfassung von gewässerbezogener Pestizidbelastung verglichen. Dabei zeigte sich, daß die Probenahme der Wasserphase mit dem Chemcatcher® oder einem ereignisbezogenen Wasserprobenehmer bei polaren und semipolaren Pestiziden ein angemesseneres Bild der Belastung liefert als die Probenahme der Schwebstoffphase. Das 5. Kapitel ist den Auswirkungen von Pestiziden gewidmet und präsentiert eine Risikoabschätzung für die Auswirkungen der Pestizideinträge in die französischen und finnischen Gewässer. Zusätzlich werden potentielle Effekte auf den Blattabbau untersucht und die Anwendbarkeit des „Gefährdete Arten“ (SPEcies At Risk - SPEAR) Index für das länderübergreifende Biomonitoring beurteilt. Das Hauptergebnis der Studie ist, daß Pestizide selbst in Konzentrationen, die bisher als unbedeutend angesehen wurden, sowohl die Struktur der Invertebratengemeinschaften verändern als auch den Blattabbau hemmen können. Des Weiteren war der SPEAR Indikator geeignet, Effekte von Pestiziden über verschiedene Regionen hinweg nachzuweisen. Zusammenfassend weist diese Arbeit nach, daß Pestizide einen wichtigen Störfaktor für Fließgewässerökosysteme darstellen können und liefert Methoden zur Expositions- und Effektabschätzung die in zukünftigen Studien Anwendung finden könnten.
The world wide population growth and the increasing water scarcity endanger more and more the human society. Water saving measures alone will not be sufficient to solve all associated problems. Therefore, people in arid countries might come back to any kind of water available. In this context the way people regard wastewater must change in terms that it has to be recognized as a water resource. The reuse of wastewater, treated and untreated, for irrigation purposes in agriculture is already established in some semi-arid and arid countries. Countries with absolute water scarcity like Israel might not only be forced to reduce their water consumption, but even to transfer reused water to other sectors. Concerns of authorities and the general public about potential health risks are completely understandable. The health risks of wastewater are mainly originating from pathogens which are negatively correlated with its treatment. Therefore, the quality of a wastewater effluent derived from mechanical-biological treatment can be further improved by additional treatment steps like soil aquifer treatment (SAT). This process is adopted at the Israeli Shafdan facility in the south of Tel Aviv. Conventionally treated wastewater is applied on surface basins from where it percolates into the coastal plain aquifer which supplies approximately one quarter of Israel ́s drinking water. After a certain residence time in the subsurface the water is recovered by wells surrounding the recharge area. Although the pumping regime creates a hydraulic barrier to the pristine groundwater, concerns exist that a contamination of the surrounding drinking water wells could occur. So far, little is known about the removal of organic trace pollutants during the SAT process in general and for the Shafdan site in particular. Consequently, the need arose to study the purification power of the SAT process in terms of the removal of organic trace pollutants. For this purpose reliable wastewater tracers are essential to be able to differentiate between degradation and sorption processes on the one hand and dilution with pristine groundwater on the other hand. Based on their chemical properties, their worldwide usage in a variety of foodstuffs and beverages, and first data about the fate and occurrence of sucralose, artificial sweeteners came into the focus as promising tracer candidates.
Thus, in the present work an analytical method for the simultaneous determination of seven commonly used artificial sweeteners in different water matrices, like surface water and wastewater, was developed (see chapter 2). The method is based on the solid phase extraction (SPE) of the analytes by a styrene-divinylbenzene (SDB) copolymer material, and the analysis by liquid chromatography-electrospray ionization tandem mass-spectrometry (LC-ESI- MS/MS). The sensitivity in negative ionization mode was considerably enhanced by postcolumn addition of the alkaline modifier tris(hydroxymethyl) aminomethane. In potable water, except for aspartame and neohesperidine dihydrochalchone, absolute recoveries >75 % were obtained for all analytes under investigation, but were considerably reduced due to matrix effects in treated wastewater. The widespread distribution of the artificial sweeteners acesulfame, saccharin, cyclamate, and sucralose in the aquatic environment was proven. Concentrations in two German wastewater treatment plant (WWTP) influents ranged up to 190 μg/L for cyclamate, several tens of μg/L for acesulfame and saccharin, and about 1 μg/L for sucralose. For saccharin and cyclamate removal rates >90 % during wastewater treatment were observed, whereas acesulfame and sucralose turned out to be very persistent. As a result of high influent concentrations and low removal rates in WWTPs, acesulfame was the dominant sweetener in German surface waters with concentrations up to 2.7 μg/L. The detection of acesulfame and sucralose in recovery wells in the Shafdan SAT site in Israel in the μg/L range was a promising sign for their possible use as anthropogenic markers. As acesulfame and sucralose showed a pronounced stability in WWTPs and were detected in recovery wells of the SAT site in Israel it became worthwhile to assess their tracer suitability compared to other organic trace pollutants suggested as anthropogenic markers in the past (see chapter 3). Therefore, the prediction power of the two sweeteners was evaluated in comparison with the antiepileptic drug carbamazepine (CBZ), the X-ray contrast medium diatrizoic acid (DTA) and two benzotriazoles (1H-benzotriazole (BTZ) and its 4-methyl analogue (4TTri)). The concentrations of these compounds and their ratios were tracked from WWTPs with different treatment technologies, to recipient waters and further to river bank filtration (RBF) wells. Additionally, acesulfame and sucralose were compared with CBZ during advanced wastewater treatment by SAT in Israel. Only the persistent compounds acesulfame, sucralose, and CBZ showed stable ratios when comparing influent and effluent
concentrations of four German WWTPs with conventional wastewater treatment. However, by the additional application of powdered activated carbon in a fifth WWTP CBZ, BTZ, and 4-TTri were selectively removed resulting in a pronounced shift of the concentration ratios towards the nearly unaffected sweeteners. Results of a seven months monitoring program along the rivers Rhine and Main showed an excellent correlation between CBZ and acesulfame concentrations (r2 = 0.94), and still good values when correlating the concentrations with both benzotriazoles (r2 = 0.66 - 0.82). In RBF wells acesulfame and CBZ were again the compounds with the best concentration correlation (r2 = 0.85).
The importance of a social perspective on the relationships between humans and nature has longbeen acknowledged. The field of social-ecological systems research in particular is striving toachieve a holistic understanding of human-nature relationships by balancing social andecological perspectives. Here I sought to develop a social understanding of the Saxon area inCentral Romania, by exploring aspects of human-nature relationships as seen from theperspective of local people. To this end, I employed the concepts of social-ecological systems(SES), ecosystem services (ES) and cultural landscapes to assess perceptions of locals throughempirical case studies.I first conducted a literature review to acquire an overview of a particular type of human-naturerelationship mediated by non-consumptive use and non-use values (“cultural ecosystemservices”). Second, to isolate and address the interaction from the social system to the ecologicalsystem, I investigated the different ways locals perceived the role of landscapes in SouthernTransylvania. I conceptually mapped these landscape preferences by revealing their potentialland use and management implications. Third, to approach the human-nature relationship fromthe ecological system to the social system, I studied the flow of ES to disaggregated humanbeneficiaries. Specifically, I studied which factors, beyond ecosystem processes and functions,influenced nature derived human well-being from the perspective of potential beneficiaries. Iconceptualised the mediating role of a range of contextual factors underpinning the currentdistribution of ES, with regard to the relation between ES and human well-being. Fourth, inorder to explore an example of bidirectional human-nature relationship, I studied the particularcase of human-carnivore coexistence and the suite of mechanisms shaping it.Despite building throughout this thesis a more complex and in-depth understanding of the humandimensions of the studied system, I chose four main cross-cutting themes to explain the human-nature connection in Southern Transylvania. These four themes may serve as pillars of a sociallyminded understanding, as well as potential research and policy foci. First, the values held bylocals are key for understanding the endemic human-nature relationships and should not beoverlooked in future social-ecological assessments or policy interventions. Second, the culturallandscape of Southern Transylvania is both a physical and virtual space of social-ecologicalinteraction fostering human-nature experiences and social-ecological knowledge integration.Third, the identified diversity of the social system in terms of landscape aspirations and ESbeneficiaries is expanding the range of human-nature connections, but at the same time, may infuture be a source of conflict or disconnection if not managed appropriately. Finally, small-scalefarmers, through their interactions with the land and resultant belief system, play a major role inmaintaining the human-nature relationships, but their values and lifestyle are threatened.
This PhD thesis examines the connections between sustainability knowledge management (SKM) and sustainability management tools in small and medium-sized enterprises (SMEs). While previous literature has established that knowledge is essential for the application of sustainability management tools, the effects of such tools on knowledge management are under-researched in the sustainability context. Drawing on multiple academic papers and utilizing various research methods, including a systematic literature review, several quantitative surveys and a multiple case study approach, the thesis systematically examines how such tools can facilitate the identification, acquisition, conversion, application and retention of sustainability knowledge, and potentially lead to the improvement of SKM effectiveness in SMEs. Furthermore, it examines how support functions for sustainability management tools and SKM correspond with each other. The findings reveal that sustainability management tools facilitate the SKM processes (identification, acquisition, conversion, application and retention), and align with the support factors (e.g. top management support, shared vision, employee qualifications) to advance SKM in SMEs. Particularly, such tools permit the institutionalization of sustainability knowledge into the daily routines and practices in SMEs. Additionally, tools create a support structure for SKM, embedding and preserving sustainability knowledge in documents, policies, procedures and norms for an enterprise´s collective knowledge for sustainability management. The thesis concludes with complementing areas of future research and offers practical implications for SME management.
Fire plays an important role in the earth system by influencing ecosystems and climate, but climate in turn also influences fire. The system became more complex when humans started using fire as a tool. Understanding the interaction between humans, fire and climate is the major aim of paleofire research. Understanding changes in these three aspects in the past will help predicting future climate, fire and human interactions. The use of lake sediment cores as natural archives for reconstructing past fire activity by counting charcoal particles is well established. This present dissertation is dedicated to the evaluation and application of specific organic molecular markers for biomass burning: levoglucosan, mannosan and galactosan were used as proxies for reconstructing past fire activity in lake sediments thorough the entire Holocene. First, a new analytical method was developed using high-performance anion exchange chromatography combined with mass spectrometry to separate and detect these three monosaccharide anhydrides in lake sediments. The suitability of this analytical method was proven by comparing the levoglucosan, mannosan and galactosan results in selected lake sediment samples from Lake Kirkpatrick, New Zealand and by correlating the results with macroscopic charcoal. Furthermore, the method was successfully applied to a lake sediment core from Lake Petén Itzá, Guatemala to reconstruct regional Holocene fire history. The analyses of levoglucosan were combined with fecal sterols to reconstruct late Holocene human fire interactions at Lake Trasimeno, Italy, demonstrating low fire activity during the Roman period. This combination of studies proves that these molecular markers are valid fire proxies in sediments from multiple locations around the globe. Comparison of levoglucosan, mannosan and galactosan concentrations with macroscopic charcoal trends in Lake Kirkpatrick and Lake Petén Itzá, suggests that the molecular markers represent more regional fire history and low temperature fires in contrast to macroscopic charcoal, which is a local fire proxy. In addition, vegetation changes (Lake Kirkpatrick and Lake Petén Itzá) and charcoal morphotypes (Lake Petén Itzá) were compared to the levoglucosan/mannosan and levoglucosan/(mannosan+galactosan) ratios suggesting that these ratios may be a suitable tool to track burned fuel. Biodegradation tests demonstrate the potential degradation of levoglucosan, mannosan and galactosan if dissolved in water, but findings in ancient sediment samples suggest that particle-bound levoglucosan, mannosan and galactosan can be buried in sediments over millennial time scales. Although uncertainties still exist, the results of this research suggests that organic molecular markers are a suitable regional fire proxy and isomer ratios may help understand changes in burned vegetation.
Vor dem Hintergrund der steigenden Relevanz unternehmerischer Nachhaltigkeit beschäftigt sich die Wissenschaft verstärkt mit der Frage, welche Kompetenzen Entscheider benötigen, um Nachhaltigkeitsstrategien in Unternehmen erfolgreich umsetzen zu können. Denn entgegen der weit verbreiteten Meinung, dass bei der Umsetzung von Nachhaltigkeitsstrategien nur Win-win-Situationen auftreten, stoßen Manager bei der Integration ökologischer und sozialer Ziele ins Ziel-System der Unternehmen auf widersprüchliche ökonomische Rationalitäten (zwischen Effizienz und einzelnen/mehreren Dimensionen von Nachhaltigkeit) und inhärente Konflikte nachhaltiger Entwicklung (zwischen den Dimensionen sozial, ökologisch und ökonomisch). In der Folge entstehen vielfältige dilemmatische Entscheidungssituationen. Um Nachhaltigkeit langfristig in Unternehmen etablieren zu können, müssen die Dilemmata wahrgenommen und bewältigt werden. Voraussetzung hierfür sind vielfältige persönliche Kompetenzen bei den Entscheidern. Die vorliegende Arbeit untersucht die auftretenden dilemmatischen Entscheidungssituationen und den Umgang mit diesen. Darüber hinaus bestimmt sie die für die Dilemma-Bewältigung relevanten Kompetenzen sowie die zur Umsetzung von CS-Strategien erforderlichen Rahmenbedingungen im Unternehmen. Im Ergebnis wird ein Framework zu Dilemmata, den notwendigen Kompetenzen und den Rahmenbedingungen erarbeitet. Basierend darauf werden entsprechende Handlungsempfehlungen gegeben. Der erarbeitete CS-Dilemmata-Kompetenz-Atlas stellt praxisrelevantes Wissen für Unternehmen und Berater zur erfolgreicheren Umsetzung von Nachhaltigkeitsstrategien zur Verfügung.
Agricultural production of smallholder farmers in Myanmar is facing soil fertility degradation and in consequence, crop yields decline due to the imbalances of nutrient supply. In most cases, all above ground biomass is removed from the fields after harvesting the crops and during land preparation for the next crop. Higher temperatures also stimulate the higher mineralisation rates and released mineral nutrients are lost from fallow lands before sowing the next crops. Regarding the addition of mineral fertilizers, except for cash crops, farmers are reluctant to apply fertilizers for the crops that are sown for household’s self-sufficiency. In the Dry Zone, irrigated agriculture is available in recent years and farmers could overcome water scarcity through irrigation. With the availability of irrigation water, farmers could prolong the cropping period, nevertheless crop yields are decreasing year by year. In recent decades, research findings are indicating the benefits of biochar application for soil fertility improvement and food security. Smallholder farmers can produce biochar from agricultural by-products such as pigeon pea stems, cotton stems and rice husks by using biochar stoves. Large-scale production is possible by producing both biochar and thermal energy simultaneously, such as getting rice husk biochar and producing thermal energy by burning rice husks. By those means, environmental pollution due to the smokes from stubble burnings and the health hazards from smokes arise from kitchens can also be reduced. Present research was conducted to test the effects of the application of biochars produced from different crop residues together with NPK fertilizers on crop yields and soil properties in the rice-chickpea-cotton cropping system of the Central Dry Zone area of Myanmar during 2012 and 2013 cropping seasons at Shwe Daung Farm, Mandalay Division, Myanmar. Effects of biochar applications in combination with NPK fertilizers were compared with NPK fertilizer (without biochar) application and the control (without biochar and NPK fertilizers). Biochars used in the experiments were produced from three kinds of locally available raw materials (rice husk, rice straw and, pigeon pea stem) at temperature above 550°C by using a kiln made from a 200-Liter diesel barrel. Field experiments were conducted on sandy loam soil in the Central Dry Zone of Myanmar. After harvesting rice in 2012, chickpea was sown without application of both organic and inorganic fertilizers. After harvesting chickpea in 2013, cotton was sown on the same experimental plots. Treatments were rice husk biochar (Rh) 20 Mg ha-1 + NPK fertilizers; rice straw biochar (Rs) 20 Mg ha-1 + NPK fertilizers; pigeon pea stem biochar (Ps) 20 Mg ha-1 + NPK fertilizers; rice husk biochar and farmyard manure mixture (Rh biochar + FYM) 10 Mg ha-1 + NPK fertilizers; NPK fertilizers (without biochar); and the control (without fertilizer and biochar). Biochar weights represented fresh biochar weights. Equal rate of NPK fertilizers were applied in all treatments. However, fertilizer rates were different with respect to the crops. In rice experiment, 100:50:50 kg ha-1 rate of Urea (N): Triple Super Phosphate (P): Muriate of potash (K) was applied. In cotton experiment, 100:30:117 kg ha-1 rate of Urea (N): Triple Super Phosphate (P): Muriate of potash (K) was applied. Crop growth data, yield component data and yield data of each treatment were recorded. Soil samples from topsoil (0-0.2 m) were taken before starting the experiments, after harvesting rice and cotton, respectively, and analysed. A biogeochemical model, denitrification decomposition (DNDC) model, was used to estimate soil organic carbon storage and greenhouse gas emissions during crop growing seasons and to quantify the long-term impact of biochar applications on rice, chickpea and cotton yields.The results from soil analyses indicated that although initial soil pH was at 8.0 and pH values of biochars ranged between 8.0 and 10.0 soil pH after two years of biochar application did not increase. pH values were below 8.0. That value was lower than initial soil pH. That could be due to the effect of the change of cropping system from upland to lowland rice cultivation and the effects of biochar additions to the alkaline sandy loamy soil of the experimental site. Although total exchangeable cation value was not significantly different among the treatments, compositions of major cations were significantly different among the treatments. Exchangeable potassium increased in Rs biochar + NPK applied soils. Exchangeable sodium increased in control, and conventional NPK fertilizer applied soils. Reduction of soil bulk density from 1.8 g cm-3 to 1.6-1.7 g cm-3 occurred in biochar treatments compared to control and conventional NPK fertilizer application treatments. Positive changes of total carbon and total nitrogen of soils were found in biochar treatments compared to control and conventional NPK fertilizer application. Application of pigeon pea stem biochar + NPK fertilizers showed the highest crop growth and the highest yield in rice. The highest chickpea yield was obtained from the plot that applied rice husk biochar + NPK fertilizers. Cotton crop growth and yield was the highest in rice husk biochar and farmyard manure mixture + NPK fertilizer application. The lowest crop growth and yield was obtained from the control in cotton. The results of this study suggested that biochars from different biomass materials had different effects on soil properties and crop yields under different growing conditions and cultivated crops. Although the applied biochars had a high pH, soil pH did not increase after biochar applications. The growth and yield of tested crops were higher than that of the control and conventional NPK fertilizer application. Rice husk biochar and farmyard manure mixture + NPK fertilizer application can be assumed as a suitable soil amendment application under upland crop cultivation. Pigeon pea stems biochar + NPK fertilizers should be applied in rice cultivation. Rice husk biochar + NPK fertilizers and rice husk biochar-farmyard manure mixture + NPK fertilizers showed as the appropriate biochar soil amendments for the study area compared to rice straw biochar + NPK fertilizers and pigeon pea stem biochar + NPK fertilizers. Application of these biochars increased total exchangeable cations, reduced bulk density, increased organic carbon, regulated soil pH and, can easily be accessed by smallholder farmers by promising crop yields for sustainable agricultural production. Rice straw biochar + NPK fertilizers and pigeon pea stem biochar + NPK fertilizers also showed positive influences on soil fertility and crop growth. However, extensive application of those biochars might require large-scale productions and distributions. To obtain the detail information regarding the impact of biochar application on the agro-ecosystem and surrounding atmosphere, further research activities may need to carry out under different agricultural production conditions. When model fitness was tested, it was found that DNDC model was fit for the simulation of crop yields and soil organic carbon under the conditions of the experimental site. Simulation of soil organic carbon dynamics and crop yields for 30 years and 50 years after the addition of biochars in combination with NPK fertilizers showed that such applications could maintain the crop yields at the same level up to 50 years. That could maintain soil organic carbon at a level higher than conventional NPK fertilizer application. Regarding the simulation of GHGs emissions, the model simulated nitrous oxide emission close to actual emissions of agricultural soils of Myanmar. Simulated CH4 emissions from control and conventional NPK fertilizer application variant were consistent with the well-known emissions of Myanmar rice fields. To confirm the accuracy of simulated CH4 emissions from biochar applied soils, it may need field investigations and validations of model results. Simulated effects of rice husk-, rice straw- and pigeon pea stem fresh biomass applications and that of rice husk-, rice straw- and pigeon pea stem biochar applications on rice, chickpea, cotton yields and soil organic carbon (SOC) were compared. Objective of this simulation was to compare the effects of fresh biomass-applications and the application of biochars produced from the same biomass on crop yields and SOC by using DNDC model. The results showed that simulated rice yields of rice husk biochar and rice straw biochar applications were 33% and 31%, respectively, higher than that of pigeon pea green manure applications. However, simulated rice yield from pigeon pea stem biochar application was 4% higher than that of iv pigeon pea stem green manure application. Simulated chickpea yield from pigeon pea green manure treatment was the highest among all of biochar and biomass applications. Simulated cotton yields obtained from fresh biomass applications were lower than that of biochar applications. In estimating the future yields, all crop yields from rice husk and rice straw biomass applications were lower than that of rice husk and rice straw biochar applications in the initial year of simulation. However, in the following years, the yields remained at the same level up to the end of simulated years. In pigeon pea stem green manure application, crop yields were higher than the other treatments since the initial year up to the end of simulated years. Simulated SOC was lower in fresh biomass applications compared to biochar applications.
In der vorliegenden Arbeit geht es um eine Bildpraxis, die an die Fotografie gekoppelt ist. Die Forschungsarbeit von Vera Brandner baut auf der These auf, dass die Fotografie aufgrund ihrer ´Undiszipliniertheit´ speziell in inter- und transdisziplinären sowie interkulturellen Forschungsfeldern dem gemeinsamen Lernen und Forschen dienen kann, da sie für viele Menschen - egal woher sie kommen, welchen lebensweltlichen oder disziplinären Hintergrund sie mitbringen - leicht zugänglich und nutzbar ist. Auf diesen Zusammenhang beruht der methodologische Rahmen Generative Bildarbeit, den Vera Brandner in ihrer Doktorarbeit konzipiert, empirisch erprobt und konsolidiert hat. Verschiedene Aspekte fotografisch-visueller Methoden werden mit postkolonialer, fotokritischer und emanzipatorischer Theorienbildung verschränkt. Konzeptuelle und praktische Basisarbeit für die Entwicklung Generativer Bildarbeit wurde in der Arbeit des Vereins ipsum1 zwischen 2003 und 2010 in Angola, Pakistan, Afghanistan, Israel, Palästina und Österreich geleistet. Es handelt sich dabei um eine Systematisierung der verschiedenen Blickakte, Interaktions- und Reflexionsformen, die im fotografischen Geflecht möglich sind, um diese für das dialogische Arbeiten mit Menschen verschiedener Erkenntniskulturen nutzbar zu machen. Die Fotografie wird als Praxisform in Situationen eingesetzt, in denen die beteiligten Akteur_innen einander aufgrund ihrer unterschiedlichen Herkunft, Sozialisierung und Spezialisierung fremd sind, durch geteilte Problemstellungen jedoch miteinander in Verbindung stehen. Es geht bei Generativer Bildarbeit um ein Arbeiten an den Grenzen des Eigenen und des Anderen, wobei diese Problemstellungen zugänglich, beforschbar und transformierbar gemacht werden. Die Fotografie wird zum Übungs- und Forschungsfeld für das Umgehen mit Kultureller Differenz. In diesem Übungsfeld entwickeln die Teilnehmer_innen Gestaltungs- und Reflexionsformen, um mit bestehenden Widersprüchen und Unsicherheiten ihrem jeweiligen Kontext entsprechend umzugehen.
This study aims to answer four main research questions regarding the roles, strategies, barriers, and representation of the media and environmental nongovernmental organisations (ENGOs) in environmental communication in Malaysia. From a theoretical lens, this study has incorporated the essential concepts of media, ENGOs, and environmental communication from both Western and Asian, particularly Malaysian perspectives as primary points of reference. For the purpose of this study, a total of 13 interviewees from Media A and Media B and 11 interviewees from ENGO A and ENGO B were chosen for the qualitative interview while 2,050 environmental articles were collected as samples from Media A´s and Media B´s newspapers along with ENGO A´s and ENGO B´s newsletters from the period 2012 to 2014 for the quantitative content analysis. Specifically, the findings from interview confirmed that both the Malaysian media and ENGOs have shared quite similar roles in environmental communication, particularly in environmental legitimacy (creating trust, credibility, and relationships with the public), in democracy (acting as a watchdog and mobilising the public sphere), and in constructing public mind about environmental problems. Pictures undoubtedly were one of the most vital tools in social construction, especially for presenting the reality of the environmental problems to the public. This was in harmony with the results of the quantitative content analysis, where more than 60% of pictures were found on environmental articles in media newspapers and ENGOs newsletters. Malaysian media and ENGOs have shared two common strategies in environmental communication, namely campaigning and collaboration with other stakeholders, while the ENGOs have two extra strategies: advocacy and lobbying strategies. Malaysian media and ENGOs also have collaborated with each other and the level of collaboration between them was at the coordination (medium) level. Both social actors especially the media were also relied heavily on their sources for environmental articles and the result of quantitative content analysis showed that the government was the main source for media newspapers, whereas other ENGOs and laypersons were the main sources for ENGOs´ newsletters. There are also colossal barriers faced by both Malaysian media and ENGOs throughout the process of environmental communication and some of the barriers faced by both media and ENGOs include the problem with limited knowledge of the environment, while some other barriers, like media laws and ownership, were only faced by the media; other barriers such as funding problems were specifically faced by the ENGOs. In terms of representation of environmental information, the Malaysian media make more presentations on environmental problems, especially on topics like floods, wildlife and water crises in their newspapers, while ENGOs have given more attention to environmental effort topics such as conservation and sustainable living in their newsletters. Surprisingly, not only the media but also the ENGOs used the same (news) values like timeliness, proximity, and impact as criteria for the selection of environmental issues for their publications. Other factors such as the background of the organisation and the interest of journalists or editors also influence the selection of environmental issues. It is hoped that the proposed theoretical framework of this study can serve as a crucial guideline for the development of environmental communication studies, especially among the media and ENGOs not only in Malaysia but also in other (Southeast) Asian regions that share a similar background.
In der Wasser- und Abwasseruntersuchung hat der Summenparameter eine heraus-ragende Bedeutung. Sowohl in der gesetzlichen Überwachung als auch der Bemes-sung von Abwasserbehandlungsanlagen werden Belastungen vielfach über die Zu-sammenfassung von Einzelstoffen in Stoffgruppen ausgedrückt. Stoffgruppen lassen sich mit Hilfe von Summenparametern zuverlässig und im Vergleich zu Einzelstoffen mit geringerem Aufwand bestimmen. Im Rahmen dieser Arbeit werden die Verfahrens-grundlagen der Summenparameter und ihre Verwendung in der Wasser- und Abwas-seruntersuchung erläutert. Ein bedeutender wie auch umstrittener Summenparameter ist der AOX - Adsorbier-bare organisch gebundene Halogene (AOX). Bedeutend ist er deshalb, weil er ein ord-nungs- und abgaberechtlich relevanter Abwasserparameter ist. Umstritten ist er unter anderem, weil er ursprünglich für andere Zwecke als die Abwasseruntersuchung ent-wickelt wurde. Seinerzeit war der AOX ein Überwachungsparameter für Trinkwasser. Als Abwasserparameter dient er zur Erfassung einer im Abwasser unerwünschten Stoffgruppe, der besorgnisauslösende Eigenschaften wie Persistenz, Bioakkumulier-barkeit und Toxizität (PBT-Eigenschaften) zugeschrieben wird. Im zweiten Teil der Ar-beit wurden exemplarisch am Parameter AOX die Zusammenhänge zwischen Stoff-parametern und besorgnisauslösenden Eigenschaften bzw. Wirkungen der ausge-wählten parameterausmachenden Substanzen untersucht. Die Untersuchungsergeb-nisse wurden vor allem in Zusammenhang mit der Ermittlung und Verankerung von Mindestanforderungen für das Einleiten von Abwasser bewertet.
Water is an essential natural resource, yet we are experiencing a global water crisis. This crisis is first and foremost a crisis of governance rather than of actual physical resources. Capacities of single, unitary states are severely challenged by the complex, multi-scalar, and dynamic structure of contemporary problems in water resource management. New modes of governance stress the potential of public participation and scalar restructuring for effective and legitimate environmental decision-making. However, a lack evidence on the actual implementation and instrumental value of novel governance modes stands in stark contrast to the strong beliefs and assumptions that often see these being propagated as ´panaceas´ or ´universal remedies´. With this doctoral dissertation I aim to contribute to a deeper understanding of the implementation and performance of public participation and scalar restructuring in environmental governance, and particularly to engage in systematic research into the contextual factors that shape the performance of such governance innovations. Based on the conceptual approaches of participatory, multi-level governance and scale, I advance a conceptual framework specifying mechanisms and important contextual factors describing the potential of participation and rescaling to impact on the efficacy of environmental decision-making. Applying this framework, I employ a mixed-methods approach combining qualitative, quantitative, set-theoretic, and review methods, with the aim of maximising the validity of results. Drawing on the institutional frame of the European Water Framework Directive (WFD), I first assess the extent and conditions under which participation and rescaling are actually implemented in the European water resource management regime. Subsequent analyses examine whether these governance shifts, where implemented, actually lead to environmentally effective and legitimate political decisions, and foster social outcomes. Results indicate that actual changes in governance structures remain modest, whereas previous institutional structures and experiences prove rather durable. Hence, despite recent shifts distributing authority towards alternative actors and scales, the state has persisted in its role as central authority in the European water resource management regime. To the extent that they were implemented, public participation and rescaling were generally positively related with the environmental effectiveness and legitimacy of political outcomes. The analysis provides a context-sensitive understanding, by unravelling the supposedly linear relationship between governance inputs and outputs to develop a more nuanced picture of the governance process rather as a composition of multiple, interdependent causal mechanisms that, depending on their actual configuration, lead to various outcomes. In this way, particularly the tension between legitimacy and effectiveness of political outcomes is disentangled, with both being seen as the result of distinct but interrelated properties of the governance system and its contextual circumstances. The thesis furthermore provides insights of practical and policy relevance, highlighting the need and potential to take a context-sensitive perspective in policy design and decision-making. The framework paper and the Ph.D. thesis thus together enhance academic understanding of environmental governance and its potential contributions to sustainability transitions.
Among all attenuation processes, biodegradation plays one of the most important role and is one of the most desirable processes in the environment. To assess biodegradation, a variety of biodegradation test procedures have been developed by several international organizations. OECD guidelines for ready biodegradability testing represent one of the most prominent group of internationally used screening biodegradation tests (series 301A-F). These tests are usually very simple in their designs and allow for the fast and cheap screening of biodegradability. However, because of their stringency, the test conditions are not close to simulating environmental conditions and may lead to unrealistic results. To overcome these limitations, OECD introduced simulation tests which are designed to investigate the behavior of chemicals in specified environmentally relevant compartments. Despite the fact that simulation tests give more insight into the fate of chemicals in the environment, they are not applied frequently as they are often tedious, time consuming and expensive. Consequently, there is a need to provide a new biodegradation testing method that would combine complex testing environment as in simulation tests, easiness in handling and good data repeatability as in screening biodegradation tests. Another challenge is an adaption of the existing biodegradation testing methods to new types of samples, i.e. mixtures of transformation products (TPs). The research on the presence of pharmaceuticals in the environment gained momentum in the 1990s; since then, it has been growing. Their presence in the environment is a wellestablished fact. A wide range of pharmaceuticals is continuously detected in many environmental compartments such as surface waters, soils, sediments, or ground waters. After pharmaceuticals reach the natural aquatic environment they may undergo a number of processes such as: photolysis (under direct sunlight), hydrolysis, oxidation and reduction reactions, sorption, biodegradation (by bacteria of fungi), and bioaccumulation. These processes, may cause their elimination from aquatic environment, if reaction is complete, or creation of new compounds i.e., transformation products (TPs). What is more, processes, like chlorination and advanced oxidation processes (AOPs), such as H2O2/UV, O3/UV, TiO2/UV, Fenton, and photo-Fenton, or UV treatment which might be applied in water or wastewater treatment, may also lead to the TPs introduction into aquatic environment. The research on the TPs brings many new challenges. From one side, there is a constant need for the the development of a sensitive and reliable analytical separation, detection, and structure elucidation methods. Additionally, there is a need for the preparation of appropriate assays for the investigation of properties of new compounds, especially those answering the question if TPs pose a higher risk to the aquatic ecosystems than their parent compounds. Among numerous groups of pharmaceuticals, two are of great importance: antibiotics since they might promote emergence and maintenance of antimicrobial resistance in the aquatic environment; and cytostatic drugs. Cytostatic drugs can exert carcinogenic, mutagenic and/or teratogenic effects in animals and humans. The challenges of biodegradation testing presented in this thesis, encompasses these different areas of interest and was divided into three objectives: 1) Identification of the knowledge gaps and data distribution of the two groups of pharmaceuticals antibiotics and cytostatic drugs (article I); 2) Increasing the knowledge on biodegradation of cytostatic drugs and their TPs (articles II, III, and IV) and 3) Establishment of a biodegradation test with closer to simulation tests conditions, that could be affordable and to support better understanding on processes in water sediment interface construction - screening water-sediment test. Further validation of the test with an insight into sorption and desorption processes (articles V and VI).
The dissertation project focuses on empirically investigating consumers' attitudes, motivations and purchasing decisions regarding sustainable products. The focus on this micro perspective, however, does not reflect consumers' roles within the transformation towards sustainable consumption. Therefore, the present framework paper puts the included papers into a greater context and evaluates the findings on a meta-level by applying an enhanced transition management theory. The analysis underlines that consumers' limited personal capabilities are an underlying reason for unsustainable practices. Therefore, the active engagement not only of consumers, but also of companies is required if the transformation is to be successful. If companies actively support consumers in making sustainable choices, consumers can engage in sustainable consumption with only low cognitive efforts. On this basis, genuine sustainable choices are enabled. The dissertation provides practical implications by highlighting potential measures which will help to promote sustainable products from niches to mainstream. In sum, the dissertation project enhances academic understanding of consumers´ sustainable purchasing behavior and reveals the potential of integrating such insights into the management of transformations towards sustainable consumption.
This thesis aims at contributing to the better understanding of the roles of international and domestic institutional and governance patterns for corporate sustainability practices. By combining governance and new institutionalism approaches it bridges the gap between the close look at specific corporate sustainability (CS) policies and the broader view on institutional frameworks. The qualitative comparative approach aims to provide deeper insights on the implementation of different governance schemes by transnational corporations ((TNC). Finally, the conclusions might allow for the development of a) recommendations for the balancing of TNCs' CS management between global and domestic requirements, and b) policy recommendations in the field of CS governance. The overarching research question is as follows: What role do national governance patterns play in comparison to global governance practices in shaping the corporate sustainability (CS) management of transnational corporations (TNCs)? In order to further operationalize this research objective, it is structured into three subquestions: (1) What are relevant institutional factors and global governance patterns for corporate sustainability/ Corporate Social Responsibility (CSR)? (2) What are relevant institutional factors and national governance patterns for corporate sustainability/CSR in Germany, the US, and India? (3) How do these national and global governance patterns influence TNCs' CS management? The first two questions aim at tracing the institutional framework and governance patterns at both national and international levels by identifying norms, stakeholder expectations, prevalent modes of governance and actors involved in governance processes. On this basis, the third question targets TNCs' reaction to internationally varying governance patterns. Here, it is of main interest how relevant governance instruments are perceived by business actors and to which extent their sustainability management at the companies' headquarters and subsidiaries reflect global and national institutional and governance patterns. In order to answer these questions, literature research and a structured qualitative analysis have been conducted. The concepts of CS and CSR build the basis to analyze how TNCs and their subsidiaries manage their social and ecological corporate responsibilities. Against this conceptual background, the research question is approached empirically by the means of an international comparison. Three institutionally highly diverse countries were chosen: Germany, India and the US. India, an emerging market economy, was included to increase the diversity of the sample and to close the research gap indicated above. In order to identify the differences in governance for CS in these three countries, document analyses and 42 guideline-based interviews with experts from governments, NGOs, trade unions and trade associations were carried out. At the same time, global governance instruments for corporate sustainability – which are already relatively well researched - were identified by analyzing the relevant secondary literature. In a second step, in order to explore how TNCs strategically deal with the multitude of different governance approaches at their headquarters and subsidiaries, three case studies of Germany-headquartered transnational corporations in the chemical and engineering industries (Siemens, BASF and Bayer) have been conducted.