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Sphagnum growth under N saturation: interactive effects of water level and P or K fertilization

  • Abstract Sphagnum biomass is a promising material that could be used as a substitute for peat in growing media and can be sustainably produced by converting existing drainage‐based peatland agriculture into wet, climate‐friendly agriculture (paludiculture). Our study focuses on yield maximization of Sphagnum as a crop. We tested the effects of three water level regimes and of phosphorus or potassium fertilization on the growth of four Sphagnum species (S. papillosum, S. palustre, S. fimbriatum, S. fallax). To simulate field conditions in Central and Western Europe we carried out a glasshouse experiment under nitrogen‐saturated conditions. A constant high water table (remaining at 2 cm below capitulum during growth) led to highest productivity for all tested species. Water table fluctuations between 2 and 9 cm below capitulum during growth and a water level 2 cm below capitulum at the start but falling relatively during plant growth led to significantly lower productivity. Fertilization had no effect on Sphagnum growth under conditions with high atmospheric deposition such as in NW Germany (38 kg N, 0.3 kg P, 7.6 kg K·ha−1·year−1). Large‐scale maximization of Sphagnum yields requires precise water management, with water tables just below the capitula and rising with Sphagnum growth. The nutrient load in large areas of Central and Western Europe from atmospheric deposition and irrigation water is high but, with an optimal water supply, does not hamper Sphagnum growth, at least not of regional provenances of Sphagnum.

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Metadaten
Author: G. Gaudig, M. Krebs, H. Joosten
URN:urn:nbn:de:gbv:9-opus-40908
DOI:https://doi.org/10.1111/plb.13092
ISSN:1438-8677
Parent Title (English):Plant Biology
Publisher:Wiley
Place of publication:Hoboken, New Jersey
Editor: J. T. M. Elzenga
Document Type:Article
Language:English
Date of first Publication:2020/05/02
Release Date:2020/12/08
Tag:Sphagnum farming; biomass productivity; growing media; paludiculture; peatland; renewable resource; sustainable land use
GND Keyword:-
Volume:22
Issue:3
First Page:394
Last Page:403
Faculties:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Botanik und Landschaftsökologie & Botanischer Garten
Licence (German):License LogoCreative Commons - Namensnennung