Publications and projects according to DDC
Publications
Publications and projects according to DDC 660: Chemical engineering
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Ott, Vivian; Ott, Jan; Eibl, Dieter; Eibl-Schindler, Regine,
2024.
Processes.
12(4), pp. 806.
Available from: https://doi.org/10.3390/pr12040806
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Ott, Jan; Ott, Vivian; Neubauer, Peter; Eibl, Dieter; Eibl-Schindler, Regine,
2024.
Process intensification by inoculating antibody production bioreactors directly from cryovials .
Chemie Ingenieur Technik.
96(4), pp. 453-461.
Available from: https://doi.org/10.1002/cite.202300189
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Teale, Misha Alexander; Schneider, Samuel Lukas; Eibl, Dieter; Eibl-Schindler, Regine,
2024.
Process intensification in human pluripotent stem cell expansion with microcarriers.
Processes.
12(3), pp. 426.
Available from: https://doi.org/10.3390/pr12030426
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Wiesinger, Helene; Bleuler, Christophe; Christen, Verena; Favreau, Philippe; Hellweg, Stefanie; Langer, Miriam; Pasquettaz, Roxane; Schönborn, Andreas; Wang, Zhanyun,
2024.
Environmental Science & Technology.
58(4), pp. 1894-1907.
Available from: https://doi.org/10.1021/acs.est.3c04851
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Dang, Chau Huyen; Cappai, Giovanna; Chung, Jae-Wook; Jeong, Changyoon; Kulli Honauer, Beatrice; Marchelli, Filippo; Ro, Kyoung S.; Román, Silvia,
2024.
Research needs and pathways to advance hydrothermal carbonization technology [paper].
In:
3rd Symposium on Hydrothermal Carbonization : ECD HTC Roadmap Workshop, Seoul, South Korea, 10-13 May 2023.
MDPI.
pp. 247.
Available from: https://doi.org/10.3390/agronomy14020247
Projects
Projects according to DDC 660: Chemical engineering
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Active modified surfaces for contained drug release
In this project, a protocol for immobilization of novel anti-fibrotic drug compounds within electrospun meshes of polymer fibres will be established. These meshes will allow for a local and sustained release of the incorporated drug molecules for the treatment of chronic wounds or to prevent implant associated ...
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Improved distillation of bio-based acetic acid
Improved distillation of bio-based acetic Acid.
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PURAMMON (Main Project) – Renewable Nitrogen-Mineral Fertiliser from Slurry
Adapted to the Swiss agricultural structure, the mobile ammonia recycling process makes it possible to recover valuable nitrogen from agriculture, to return it well-directed as fertiliser via a recycling model and thus to support important environmental goals.
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HONDA MES 2
In situ infrared spectroscopic approach to elucidate reaction mechanisms of exhaust gas purification catalysts
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Flow Chemistry für Enzymkaskaden