Effects of Elevated Carbon Dioxide on Litter Chemistry and Decomposition
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Effects of Elevated Carbon Dioxide on Litter Chemistry and Decomposition
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Appendix B. Litter cellulose content in grams at each sampling point.
Litter cellulose content in grams at each sampling point.
NIAID Data Ecosystem50
Table_1_Responses of Litter Decomposition and Nutrient Dynamics to Nitrogen Addition in Temperate Shrublands of North China.XLSX
Plant litter decomposition is a crucial ecosystem process that regulates nutrient cycling, soil fertility, and plant productivity and is strongly influenced by increased nitrogen (N) deposition. Howev
NIAID Data Ecosystem50
Prather litter ratio data.xlsx
This data is the ratio of fast to slow decomposing litter (dry Piper glabrescens litter to dry Miconia prasina litter) from an enclosure experiment manipulating the presence of two consumer invertebra
NIAID Data Ecosystem30
Soil&Litter_Fung. Soil&Litter_Fung
In our experiment, involving nine detritivore species from three functional groups (isopods, snails, and earthworms) and two leaf litter species, we found that decomposability is not solely a litter-s
NIAID Data Ecosystem50
Appendix C. The relationships of response ratio of N:P ratio (RRN:P) with that of N pool or P pool (RRNp or RRPp) in cropland, grassland, and forest ecosystems, respectively, under elevated CO2 in different ecosystem types.
The relationships of response ratio of N:P ratio (RRN:P) with that of N pool or P pool (RRNp or RRPp) in cropland, grassland, and forest ecosystems, respectively, under elevated CO2 in different ecosy
NIAID Data Ecosystem40



