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Journal of Experimental Botany|January 15, 2013
Elevated CO2 levels affect the activity of nitrate reductase and carbonic anhydrase in the calcifying rhodophyte Corallina officinalisLaurie C Hofmann, Sandra Straub, Kai Bischof
Frontiers in Plant Science|October 16, 2018
Arctic Coralline Algae Elevate Surface pH and Carbonate in the DarkLaurie C Hofmann, Kathryn Schoenrock, Dirk de Beer
Bioresource Technology|June 7, 2026
Rapid organic acid mechanochemical extraction of alginate from Laminaria digitataKiri Belcher, Franziska Traeger, Sebastian Primpke, et al.
Environmental Microbiology Reports|March 3, 2015
Seagrass biofilm communities at a naturally CO2 -rich ventChristiane Hassenrück, Laurie C Hofmann, Kai Bischof, et al.
Journal of Phycology|March 18, 2016
Microsensor studies on Padina from a natural CO2 seep: implications of morphology on acclimation to low pHLaurie C Hofmann, Artur Fink, Kai Bischof, et al.
Oecologia|February 5, 2015
CO₂ and inorganic nutrient enrichment affect the performance of a calcifying green alga and its noncalcifying epiphyteLaurie C Hofmann, Kai Bischof, Cecilia Baggini, et al.
Scientific Reports|May 28, 2021
Calcification in free-living coralline algae is strongly influenced by morphology: Implications for susceptibility to ocean acidificationNadine Schubert, Laurie C Hofmann, Antonella C Almeida Saá, et al.
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