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Carbon stock and fluxes in Nyungwe forest and Ruhande Arboretum in Rwanda

Abstract
Conservation and sequestration of carbon in forest ecosystems are potential strategies to reduce or stabilize the atmospheric greenhouse gas concentrations and mitigate climate change. Estimating the degree to which forest ecosystems may achieve that function requires continuous measurements of forest carbon stocks and fluxes from all over the world. The aim of this thesis was to collect quantitative data on climate, carbon stocks, annual carbon increment, litter production, and soil CO2 effluxes in Ruhande Arboretum, a plantation of both non-native and native tree species, and Nyungwe forest, a national park of afromontane tropical forest vegetation, both situated in Rwanda. The annual mean air temperature at the Ruhande Arboretum (19 ºC) was higher than in the Nyungwe forest (14.4 ºC), but both sites showed small seasonal variation in air temperature and Nyungwe forest received a higher monthly precipitation than the Ruhande Arboretum. The carbon stocks were dominated by above-ground biomass in both forests which was 70% in the Ruhande Arboretum and 57% in the Nyungwe forest. The annual litter production was 3.4 Mg C ha−1 yr−1, and followed a seasonal pattern. The mean annual soil CO2 efflux was 13.5 Mg C ha−1 yr−1 in the Ruhande Arboretum and 10.2 Mg C ha−1 yr−1 in the Nyungwe forest. No significant effect by the species on soil CO2 efflux was observed. The seasonal variation in soil CO2 efflux was strongly influenced by precipitation patterns and soil water content. Diurnal variation of soil CO2 efflux was bimodal and described a hysteresis relationship with soil temperature. Although, the daytime soil CO2 efflux correlated with soil temperature, the most of diurnal pattern was most likely affected by the supply of photosynthetic products to the roots. Spatial variation of soil CO2 efflux was mainly correlated to soil C and N stocks. The observed spatial, seasonal and annual soil CO2 effluxes were comparable to those observed in other tropical forests. This study should be replicated in other forests and in other land cover types in Rwanda, which can help to calculate a carbon balance for Rwanda.
Parts of work
I. Nsabimana D., Klemedtsson L., Kaplin B.A., Wallin G., 2008. Soil carbon and nutrient accumulation under forest plantations in Southern Rwanda. African Journal of Environmental Science and Technology 2 (6), 142-149.::URL::http://www.academicjournals.org/AJEST/PDF/pdf%202008/Jun/Nsabimana%20et%20al.pdf
 
II. Nsabimana D., Klemedtsson L., Kaplin B.A., Wallin G., 2009. Soil CO2 flux in six monospecific forest plantations in southern Rwanda. Soil Biology and Biochemistry 41, 396-402. ::doi::10.1016/j.soilbio.2008.12.004
 
III. Nsabimana D., Klemedtsson L., Wallin G. Seasonal and diurnal variation of soil respiration in monospecific stands of Entandrophragma excelsum and Eucalyptus maculata in Rwanda. In manuscript.
 
IV. Nsabimana D. and Wallin G. Spatial and temporal variations of soil CO2 efflux in Nyungwe mountain tropical forest in Rwanda. In manuscript.
 
V. Nsabimana D. and Wallin G. Carbon stock, annual carbon increment and litterfall production in Ruhande Arboretum and Nyungwe forest in Rwanda. In manuscript.
 
Degree
Doctor of Philosophy
University
Göteborgs universitet. Naturvetenskapliga fakulteten
Institution
Department of Plant and Environmental Sciences ; Institutionen för växt- och miljövetenskaper
Disputation
This thesis will be defended in public at 10:00 on December 11th, 2009 in the Lecture Hall Föreläsningssalen, Department of Plant and Environmental Sciences, Carl Skottsbergs Gata 22B.
Date of defence
2009-12-11
E-mail
donat.nsabimana@dpes.gu.se
dnsabimana@nur.ac.rw
URI
http://hdl.handle.net/2077/21225
Collections
  • Doctoral Theses / Doktorsavhandlingar Institutionen för växt- och miljövetenskaper
  • Doctoral Theses from University of Gothenburg / Doktorsavhandlingar från Göteborgs universitet
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Spikblad & Abstract (44.89Kb)
Thesis frame (3.682Mb)
Date
2009-11-20
Author
Nsabimana, Donat
Keywords
Carbon stock
Litterfall production
Soil CO2 efflux or soil respiration
Soil temperature
Soil water content
Spatial variation
Seasonal and diurnal variations
Publication type
Doctoral thesis
ISBN
978-91-85529-30-8
Language
eng
Metadata
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