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Legacy effect of 25 years reduced atmospheric sulphur deposition on spruce tree nutrition

2024/10/22 by Jeroen H. T. Zethof, Stefan Jülich, Karl‐Heinz Feger +1 · 1 voice
Agricultural and Biological Sciences · Earth and Planetary Sciences · #Atmospheric chemistry and aerosols #Plant responses to elevated CO2 #Soil Carbon and Nitrogen Dynamics

paper · pdf · doi:10.1002/jpln.202400097

openalex publication_date 2024/10/22 · openalex created_date 2025/10/10 · openalex updated_date 2026/05/26

Abstract

Abstract Background Since the mid‐1990s, sulphur (S) pollution was drastically reduced in Central Europe. Over time, this has led to a distinct reduction in S availability for Norway spruce ( Picea abies Karst.), which is still the most important timber species in Central European forestries. Aims Determination of the Norway spruce nutritional status of former strongly affected areas by S pollution (Saxony) with different degrees of liming by assessing their foliar element contents and comparing them to regions remote from historical high S deposition. Methods Sites were selected based on levels of S deposition in the 1970–1990s with historical high deposition in Saxony (NE Germany), low deposition at Schluchsee (SW Germany) and Davos (Switzerland) as a clean air reference. Needles were sampled in late autumn 2019/2020 and elemental contents determined. Additional historical data on foliar S contents were available. Results Historical data showed a clear decrease in foliar S contents in the Saxonian sites over the last 25 years, independent of liming. No difference between all study sites was found in the most recent sampling, whereas S together with other macronutrients strongly indicates deficiencies for forest growth and health. Conclusions After 25 years of reduced S deposition, S nutrition became low for Norway spruce trees in Saxony, whereas soil parent material determines the overall tree nutritional status with respect to other nutrients. As such, no difference between sites with historical high, low or no S deposition was found. Further studies should focus on the mineralization of organic S in the topsoil to understand if S is effectively recycled within the forest ecosystem and on the effect of other diminishing nutrients such as Mg and P.

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