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Field
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persistent contaminants, and minimize greenhouse gas emissions. Within this context, the SUSPLASM project develops an innovative electrified thermal plasma gasification platform that converts these challenging
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will develop genetic engineering platforms for diverse non‑model microbes, including aerobic and anaerobic community members for microbiome engineering and organisms capable of converting waste plastics
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scaling cost-effective methods for separating and converting materials using mechanical and hydrometallurgical techniques. The researcher may also work with companies to research and validate unique lithium
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-lympic "living lab" and translate the results into recommendations for converting urban gas stations into multimodal hubs. The ideal candidate holds a PhD in transport, operations research, civil
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to convert biomass into valuable products. We use advanced computational technologies to discover how biomolecules and organisms function and interact. We pioneer new methods for prediction, prevention
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-energy systems. Experience with switching converters, modulation methods, real-time control or hardware-oriented implementation. Strong programming skills, for example in MATLAB/Simulink, Python or related
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assessment in converters to AD. The modeling approach will utilize The Virtual Brain neuroinformatics platform. The work entails significant effort in computational neuroscience and biophysics. This position
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. Siegfried Vlaeminck. This international multi-partner project will develop a near-zero-waste biorefinery using microalgae and bacterial gas fermentation to convert residual biomass and captured CO
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applications. To achieve desired properties, locally abundant biomass material will be converted into highly added value components and incorporating these materials with other fertilizers and/or biobased
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scale up (0.5 to 400 L) arrested methanogenesis systems to convert diverse low-value organic waste streams into value-added products (e.g., carboxylic acids), and support the development and scale-up