Studies
An individual study is a summary of a specific scientific study, providing background context, the conservation action(s) taken and their consequences.
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Study | Published | Actions | |
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Ectomycorrhizal fungi promote growth of Shorea balangeran in degraded peat swamp forests Based on: Turjaman M., Santoso E., Susanto A., Gaman S., Limin S.H., Tamai Y., Osaki M. & Tawaraya K. (2011). Study Link |
2011 | 2 | |
Controls on plot-scale growing season CO2 and CH4 fluxes in restored peatlands: do they differ from unrestored and natural sites? Based on: Strack M., Cagampan J., Hassanpour Fard G., Keith A.M., Nugent K., Rankin T., Robinson C. & Strachan I.B. (2016). Study Link |
2016 | 1 | |
Mechanisms involved in the re-establishment of Sphagnum-dominated vegetation in rewetted bog remnants Based on: Smolders A.J.P., Tomassen H.B.M., van Mullekom L.P.M. & Roelofs J.G.M. (2003). Study Link |
2003 | 1 | |
Restoration of cut-over raised bogs in southern Germany – a comparison of methods Based on: Sliva J. & Pfadenhauer J. (1999). Study Link |
1999 | 9 | |
Restoring cut-over restiad peat bogs: a factorial experiment of nutrients, seed and cultivation Based on: Schipper L.A., Clarkson B.R., Vojvodic-Cukovic M. & Webster R. (2002). Study Link |
2002 | 5 | |
Reintroduction of Sphagnum to an exploited bog: evaluation of various methods for protection against desiccation Réintroduction de sphaignes dans une tourbière exploitée: évaluation de divers moyens de protection contre la dessiccation Based on: Rochefort L. & Bastien D.F. (1998). Study Link |
1998 | 5 | |
Comparing survey methods for monitoring vegetation change through time in a restored peatland Based on: Rochefort L., Isselin-Nondedeu F., Boudreau S. & Poulin M. (2013). Study Link |
2013 | 1 | |
Sphagnum reintroduction in degraded peatlands: the effects of aggregation, species identity and water table Based on: Robroek B.J.M., van Ruijven J., Schouten M.G.C., Breeuwer A., Crushell P.H., Berendse F. & Limpens J. (2009). Study Link |
2009 | 2 | |
The influence of rewetting on vegetation development and decomposition in a degraded fen Based on: Richert M., Dietrich O., Koppisch D. & Roth S. (2000). Study Link |
2000 | 2 | |
Energy and moisture considerations on cutover peatlands: surface microtopography, mulch cover and Sphagnum regeneration Based on: Price J., Rochefort L. & Quinty F. (1998). Study Link |
1998 | 3 | |
A new approach for tracking vegetation change after restoration: a case study with peatlands Based on: Poulin M., Andersen R. & Rochefort L. (2013). Study Link |
2013 | 1 | |
Growth performance of three indigenous tree species (Cratoxylum arborescens Vahl. Blume, Alstonia spathulata Blume, and Stemonurus scorpioides Becc.) plated at burned area in Klias Peat Swamp Forest, Beaufort, Sabah, Malaysia Based on: Mojol A.R., Wahyudi W. & Nasly N. (2014). Study Link |
2014 | 1 | |
The regeneration capabilities of bryophytes for rich fen restoration Based on: Mälson K. & Rydin H. (2007). Study Link |
2007 | 6 | |
Peat disturbance, mowing, and ditch blocking as tools in rich fen restoration Based on: Mälson K., Sundberg S. & Rydin H. (2010). Study Link |
2010 | 5 | |
Rewetting of a cutover peatland: hydrologic assessment Based on: LaRose S., Price J. & Rochefort L. (1997). Study Link |
1997 | 1 | |
Factors affecting re-vegetation dynamics of experimentally restored extracted peatland in Estonia Based on: Karofeld E., Müür M. & Vellak K. (2016). Study Link |
2016 | 3 | |
Functional diversity analysis helps to identify filters affecting community assembly after fen restoration by top-soil removal and hay transfer Based on: Hedberg P., Kozub Ł. & Kotowski W. (2014). Study Link |
2014 | 2 | |
Plant community establishment in a restored wetland: effects of soil removal Based on: Hausman C.E., Fraser L.H., Kershner M.W. & de Szalay F.A. (2007). Study Link |
2007 | 1 | |
Agroforesty [sic] system for rehabilitation of degraded peatland in Central Kalimantan Based on: Harun M.K. & Yuwati T.W. (2015). Study Link |
2015 | 1 | |
Shorea balangeran and Dyera polyphylla (syn. Dyera lowii) as tropical peat swamp forest restoration transplant species: effects of mycorrhizae and level of disturbance Based on: Graham L.L.B., Turjaman M. & Page S.E. (2013). Study Link |
2013 | 2 | |
Artificial bird perches for the regeneration of degraded tropical peat swamp forest: a restoration tool with limited potential Based on: Graham L.L.B. & Page S.E. (2011). Study Link |
2011 | 1 | |
Techniques for restoring fen vegetation on cut-away peatlands in North America Based on: Graf M.D. & Rochefort L. (2008). Study Link |
2008 | 2 | |
Sphagnum farming in Germany – a review of progress Based on: Gaudig G., Fengler F., Krebs M., Prager A., Schulz J., Wichmann S. & Joosten H. (2013). Study Link |
2013 | 1 | |
Plant diversity associated with pools in natural and restored peatlands Based on: Fontaine N., Poulin M. & Rochefort L. (2007). Study Link |
2007 | 1 | |
Testing protocols to restore disturbed Sphagnum-dominated peatlands in the Hudson Bay Lowland Based on: Corson A. & Campbell D. (2013). Study Link |
2013 | 6 |
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