Functional identity explains carbon sequestration in a 77-year-old experimental tropical plantation

被引:16
作者
Bauters, Marijn [1 ]
Ampoorter, Evy [2 ]
Huygens, Dries [1 ,3 ,4 ]
Kearsley, Elizabeth [1 ,5 ,6 ]
De Haulleville, Thales [6 ,7 ]
Sellan, Giacomo [8 ]
Verbeeck, Hans [5 ]
Boeckx, Pascal [1 ]
Verheyen, Kris [2 ]
机构
[1] Univ Ghent, Isotope Biosci Lab ISOFYS, B-9000 Ghent, Belgium
[2] Univ Ghent, Dept Forest & Water Management, Forest & Nat Lab, B-9090 Gontrode, Belgium
[3] Univ Nacl Cordoba, Fac Ciencias Exactas Fis & Nat, Consejo Nacl Invest Cient & Tecn Argentina, Inst Multidisciplinario Biol Vegetal IMBIV, RA-5000 Cordoba, Argentina
[4] Univ Austral Chile, Fac Agr Sci, Inst Agr Engn & Soil Sci, Valdivia, Chile
[5] Univ Ghent, Computat & Appl Vegetat Ecol, Dept Appl Ecol & Environm Biol, CAVElab, B-9000 Ghent, Belgium
[6] Royal Museum Cent Africa, Serv Wood Biol, B-3080 Tervuren, Belgium
[7] Univ Liege, Biodivers & Landscape Unit, Gembloux Agrobio Tech, B-5030 Gembloux, Belgium
[8] Univ Padua, Dipartimento Territorio & Sistemi Agroforestali, I-35020 Legnaro, Italy
关键词
carbon sequestration; Democratic Republic of Congo; forest plantations; functional biodiversity; identity effect; linear mixed effects models; tree diversity experiments; tropics; NITROGEN-FIXING TREES; CLIMATE-CHANGE; BIODIVERSITY; BENEFITS; FORESTS; AFRICA; STOCKS; AFFORESTATION; EUCALYPTUS; STABILITY;
D O I
10.1890/ES15-00342.1
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Planting forests is an important practice for climate change mitigation, especially in the tropics where the carbon (C) sequestration potential is high. Successful implementation of this mitigation practice requires knowledge of the role of species identity and diversity on carbon accrual of plantations. Despite this need, solid data on the long-term development of forest plantations are still very scarce. Monospecific and two species mixture plots of a 77-year-old tree diversity experiment in Yangambi in the Congo basin were fully inventoried. We calculated above-ground C stocks using allometric equations, and soil C stocks by analyzing soil samples at multiple depths. Linear mixed effects models were used to analyze the effect of taxonomic and functional identity and diversity on the aboveground and soil carbon stocks. A high variability in aboveground C stocks across tree species combinations was observed. Apart from a species identity effect, the proportion of planted species in the total stand basal area (BA(pl)) and effective species richness were identified as compositional parameters with a significant effect on the aboveground carbon (AGC), with BApl being more important. Both AGC and BA(pl) were coupled to the functional identity of the planted species; the planting of short-lived pioneers led to low AGC. We found no clear benefits, but also no drawbacks, for AGC of two species mixture plots over monospecific plots or including nitrogen fixing species in the plantation scheme. However, the latter was the only compositional parameter with a significant positive effect on the soil carbon stock up to 1 m depth. We conclude that the different plantation configurations gave rise to a wide range in carbon stocks. This was predominantly caused by large differences in AGC sequestration over the past 77 years. Altogether, short-lived pioneer species had a low BApl resulting in low carbon sequestration, while partial shade tolerant species achieved the highest AGC stocks. Tolerating spontaneous ingrowth during the plantation development can further increase the AGC stock, given that the appropriate functional type is planted.
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页数:11
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