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sieve membranes for gas separation application. The project represents a true intersection of various disciplines, offering you the opportunity to actively participate in the design and synthesis
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molecular sieve membranes for gas separation application. The project represents a true intersection of various disciplines, offering you the opportunity to actively participate in the design and synthesis
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the clarification of raw beet juice using ultrafiltration as a key separation unit. The ultrafiltration process will first be optimized on lab-scale with regards to membranes and process conditions
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mining" technologies with the aim of transforming resource extraction and utilization. Through synthesizing nanocomposites from biopolymers and porous materials, coupled with advanced separation techniques
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with advanced separation techniques, the main objective of the project is to extract precious metals efficiently and cost-effectively from secondary sources. These recovered precious metals will serve as
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fractionation and separation processes. A driving force behind the research in this area is the aim to replace fossil sources in the production of fuels and materials. The BUL position will be part of
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advanced analytical techniques for studies of organic compounds and biomolecules. Project description Project title: Nanoporous ionic separators for Na-ion batteries Supervisors: Prof. Jiayin Yuan (main
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multiphase flows is the key to improved heat transfer mechanisms and more efficient use of energy. Approximately 30 colleagues work at the division, including 20 PhD. On the international level we collaborate
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), NMR spectroscopy, photo or heterogeneous catalysis with porous materials, gas separation, water extraction, computer modeling of porous materials, membranes, biomedical applications of MOF/COF, etc. We
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biomolecules. Project description Project title: Nanoporous ionic separators for Na-ion batteries Supervisors: Prof. Jiayin Yuan (main supevisor); Prof. Aji Mathew and Dr. Yu Zhang (co-supervisor) The position