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Element composition of soils to assess the success of wetland restoration

Dados Bibliográficos

ID21649321
AutoresGuodong Wang (0000-0001-8088-849X, Key Laboratory of Wetland Ecology and Environment, Northeast Institute of Geography and Agroecology Chinese Academy of Sciences Changchun PR China), Ming Jiang (0000-0002-1661-0538, Key Laboratory of Wetland Ecology and Environment, Northeast Institute of Geography and Agroecology Chinese Academy of Sciences Changchun PR China), Ming Wang (0000-0001-8056-4604, State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Institute for Peat and Mire Research Northeast Normal University Changchun PR China, autor correspondente), Zhenshan Xue (0000-0002-7294-361X, Key Laboratory of Wetland Ecology and Environment, Northeast Institute of Geography and Agroecology Chinese Academy of Sciences Changchun PR China)
Ano2020
Volume31
Fascículo13
Páginas1641-1649
Data de publicação2020-08-15
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoLand Degradation and Development (JOURNAL)
Identificadores do periódicoISSN: 1085-3278 • E-ISSN: 1099-145X
EditoraWiley (PUBLISHER • GB)
DOI10.1002/ldr.3561
OpenAlexW3005877638
IdiomaEN
Citações recebidas2
Referências citadas40

The main purpose of this study is to assess if wetland restoration is associated with a directional shift in soil element concentration toward the original prefarming status in the peatlands of northeastern China. The concentrations of 55 soil elements and related environmental factors including organic matter content, electrical conductivity, and pH were investigated in natural, restored, and farmed wetlands in the Xingkai Lake Watershed of northeastern China. All but four of the soil element concentrations varied by wetland type (natural, restored, and farmed wetlands), and the soil concentrations of 41 elements increased from natural to restored to farmed wetlands. Soil organic matter and electrical conductivity explained 87.8% and 3.3% of the variation in element concentration based on ordination analysis using redundancy analysis. Both nonmetric multidimensional scaling analysis and cluster analysis indicated that the restored wetlands had a higher similarity with the farmed wetlands than the natural wetlands. Our findings suggest that restoration led to an increase in soil organic matter content and shifts in level of element concentration that was more similar to natural wetlands. However, differences remained so that the biogeochemistry of restored wetlands was not the same as the original prefarming level. This information is very important for wetland restoration, because to be successful, not only biodiversity and hydrology, but also the soil element composition and biogeochemistry need to be restored. Our approach can be used to assess the success of wetland restoration

Biogeochemistry · Biology · Organic matter · Soil organic matter · Soil water · Wetland · Coastal wetland ecosystem dynamics · Environmental Science · Peatlands and Wetlands Ecology · Soil and Water Nutrient Dynamics · Ecology · Geology · Soil Science

  • Coastal salt marsh restoration drives element composition of soils toward its original state by recovering soil organic matter

    Open Access•Guodong Wang, Ming Jiang et al.•Land Degradation and Development•2022

  • Spatiotemporal dynamics in soil iron affected by wetland conversion on the Sanjiang Plain

    Open Access•Guangyu Chi, Bin Zhu et al.•Land Degradation and Development•2021

  • Persistence of soil organic matter as an ecosystem property

    Open Access•Michael W Schmidt, Michael W I Schmidt et al.•Nature•2011

Obras citantes distintas2
Citações por ano0,4
Intervalo de citações2021 - 2022 (2)
Velocidade de citaçãohistorical
Altamente citadoNão
Tipos de citaçãoNeutras: 2
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