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The basis for the daddy model will be consumption and use data for various plastics and the identification of the flows during use and disposal. The project will focus on polyethylene, polypropylene, polystyrene and pet, which are the main plastics detected in freshwater environments. Microplastics release from textiles and other products. The occurrence of microplastics, small plastic pieces less than a few mm, in natural systems such as soils and sediments is currently a topic that receives a lot of attention. Very little is known about actual sources of microplastics. The aim of this work is to investigate one possible source, the release of microplastics from textiles during washing. In this work a systematic approach will be used to understand the processes that result in release of microplastics from various fabric and polymer types. The results of this work will be very useful to quantify the contribution of washing to the microplastics load in wastewater.
Exposure modeling of microplastics in the environment. Plastics are one of the most important materials of our time and the way we live would not be possible without them. Because plastics are not biodegradable, they are stable in the environment once they have been released and are only moved around by flow processes and are broken into smaller and smaller pieces. The large plastic litter only represents the visible part of the problem. Of equal importance are so-called microplastics, small pieces of broken-down plastic in the mm to sub-mm range that have first been identified in the oceans. It is the aim in this project to connect the available measurements in the environment with information on regional plastic flows. A material flow model will be developed for plastics in Switzerland with special emphasis on the release to the environment.
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D, she received Master of Science from Materials for Energy Storage and Conversion' an Erasmus Mundus Programme, which was focused on the studies of electrode materials and characterization techniques for li-ion batteries. As part of the master programme, she studied in Aix-Marseille Universite (France warsaw University of Technology (Poland) and Universidad de cordoba (Spain) before she spent 7 months in University of Uppsala (Sweden) for her Master thesis on nanomaterials for photocatalyst. She is currently a post-doc researcher in cic energigune. Her research interest book is focused on the new electrode materials and electrolytes for li-s batteries. Exposure and risk modeling of nanomaterials in the environment. Engineered nanomaterials (ENM) are already contained in many products and high growth rates are expected in the next years. During various stages of the life cycle of a product enm can be released into the environment,.
During production, use, recycling or disposal. In order to conduct a realistic environmental risk assesment of enm, we have to know the expected concentrations in environmental compartments such as water, soil and sediments. These concentrations can then be compared to ecotoxicological limits. The aim of this work is: - to model the concentrations and the effects of enm in the environment based on a life-cycle perspective - to evaluate the ecotoxicological literature - to perform an environmental risk assessment for nanoimaterials. Risk modeling of nanomaterials is a core topoic of the eram group. Topics for a specific master thesis can be in one or all of these three points, depending on the interest of the student and the state of the projects where the thesis will be embedded.
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Chunmei li obtained a european joined. D degree on Material Science in 2014. D thesis was carried out between University of St Andrews (UK) with Prof. Bruce and Universite de picardie jules Verne (France) with Prof. The research was focused on the fundamental studies of non-aqueous li-o2 batteries, mainly the mechanism of O2 reduction in aprotic solvents. Prior to her.
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Specifically, our interests lie in nanostructured material developments for polymer electrolyte membrane fuel cells (pemfc), lithium ion (li-ion) batteries, metal-air batteries, lithium sulfur (li-s) batteries and various next-generation batteries. These include nitrogen-doped carbon nanotubes and graphenes, unique nanostructured metal and metal oxides, along with innovatively combined nanocomposite materials. Sri lanka plant names in Sinhala, tamil, thesis on fake coumarins botany, ethnobotany, etymology, computer science sinhala glossary links to place names, old and new maps, philological. Thesis on coumarins read pdf. Over the years, chemistry essay medicinal plant several natural dyes. Santanu mukherjee was born in hooghly, india, in critical essay macroeconomic modern theory 1980. After obtaining his. Phenolic compounds are well-known phytochemicals found in all plants. Their effects on apa term paper cover page format the volume.
conferences and collaborations or exchange visits with international partners are a regular ingredient of a phD programme at the institute. In addition, all PhD candidates follow the bi-annual Spring School and DO! The institute contains approximately 100 PhD students. Postdocs, the institute employs some 40 postdoctoral fellows, who typically make a transition from running an individual research project (as PhD candidates) towards running (a part of) a group. At the institute postdocs carry out a well defined project with many opportunities for acquiring a more independent research attitude. Scientific guests, the institute welcomes a large number of guests from all over the world, visiting the institute for periods ranging from a few days to a year (sabbatical). Our group focuses on the development of unique nanostructured materials for use in clean, sustainable energy technologies.
While for the first- and second-year the projects are relatively short and are mostly aimed on getting students acquainted with the research work in different groups, the third-year bachelor students spend about 3 months (15 ects) to perform an independent study under supervision of a phD candidate,. Every year many bachelor students join the groups within the debye institute. Also students of other Masters programmes such as Science business education and Science business Management perform their thesis research projects within the debye institute. The last but not least group of students regularly joining the debye institute for Nanomaterials Science are the students from outside Utrecht, who come to perform their internship. This provides the students with an opportunity to learn more about top research topics, which are investigated within the institute. There are a number of exchange programmes with other universities, which can support students visits to Utrecht. The institute welcomes Dutch and international PhD candidates. PhD programmes take a maximum of 4 years and aim on the highest level of education and research training. Each PhD candidate has a well defined individual research programme, which is part of the research programme of the group.
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The debye institute for Nanomaterials Science provides excellent facilities and an environment for ambitious research, teaching and training programmes at various levels ranging from advanced Bachelor's and Master's to PhD candidates and postdocs. The programmes have a truly interdisciplinary character, in which chemists and physicists have collaborated closely since 1989, and they are recognized for their excellent record and strong ties with industry. Below we briefly summarize the opportunities on different levels. Master's students, the debye institute provides teaching and research in the. Nanomaterials Science and, experimental Physics, master's programmes (120 ects). Thesis research projects (50 of the programme) can be carried out in one of the research groups of the institute. Opportunities for other students, performing a research project is a compulsory part of the bachelor's programme of Utrecht roles University at the final part of every academic year.