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LU-gemensamt Mejlutskick Nr 16-v18-2021

NYTT FRÅN LUNDS UNIVERSITET Mejlutskick på svenska och engelska som vänder sig till fakultetskommunikatörer vid Lunds universitet för vidarespridning i fakultets- och institutionskanaler – Nr 16 v 18 - 2021. UNIVERSITETSGEMENSAMT Webbmötesutmattning – hur undviker du det? Resfria/digitala möten i myndigheter - REMM har information och tips om hur du optimerar dina digitala möten och hur du undvike

https://www.cec.lu.se/sites/cec.lu.se/files/2021-05/LU-gemensamt%20Mejlutskick%20Nr%2016-v18-2021.pdf - 2026-06-06

Tomas Naeraa

Forskare Kontaktinformation E-post: tomas [dot] naeraa [at] mgeo [dot] lu [dot] seOrganisation Miljö- och geovetenskapliga institutionen (MGeo) Hämtställe: 16 WebbplatsTomas Naeraas profil i Lunds universitets forskningsportalAndra roller Forskare Geologiska institutionenMy research interests focuses on crust forming processes in the Archaean aeon, and on igneous and metamorphic processes in oroge

https://www.geologi.lu.se/tomas-naeraa - 2026-06-06

Priming of carbon and nitrogen mineralization in forest soils

Decomposition of soil organic matter (SOM) contributes significantly to the global carbon (C) cycle and climate feedbacks. SOM decomposition depends on soil microbial activities, and these activities are driven by the availability of C and other nutrients. Plant root exudates are known to alter decomposition of SOM, a phenomenon referred to as rhizosphere priming effects (RPE). In order to predictDecomposition of soil organic matter (SOM) contributes significantly to the global carbon (C) cycle and climate feedbacks. SOM decomposition depends on soil microbial activities, and these activities are driven by the availability of C and other nutrients. Plant root exudates are known to alter decomposition of SOM, a phenomenon referred to as rhizosphere priming effects (RPE). In order to predict

Engineering of pyranose 2-oxidase: Improvement for biofuel cell and food applications through semi-rational protein design

Pyranose 2-oxidase (P20x) has several proposed biotechnological applications such as a bio-component in biofuel cells or for carbohydrate transformations. To improve some of the catalytic properties of P20x from Trametes multicolor, we selected a semi-rational approach of enzyme engineering, saturation mutagenesis of active-site residues and subsequent screening of mutant libraries for improved ac