Litter Decomposition Rate at Ebony Fraser blog

Litter Decomposition Rate. The rate of decomposition is high in species with extreme ash and nitrogen contents and the lowest c/n ratios and lignin contents. To account for the differences in the incubation duration of field exposure between the different regions, we expressed decomposition as. Our results showed that the litter decomposition rates in the secondary forests were significantly higher than those in the chinese fir. Therefore, initial differences in litter diversity and composition may have translated into varying levels of faunal presence and,. The response of litter decomposition rate to n addition was positively correlated with initial n and phosphorous (p) concentrations, but. The rate of litter decomposition is negatively correlated with c/n and lignin/n ratio of the initial litter, while it is positively correlated with n content of the initial litter (berg and.

Variation of litter rates with mean annual temperature
from www.researchgate.net

The rate of decomposition is high in species with extreme ash and nitrogen contents and the lowest c/n ratios and lignin contents. The rate of litter decomposition is negatively correlated with c/n and lignin/n ratio of the initial litter, while it is positively correlated with n content of the initial litter (berg and. Therefore, initial differences in litter diversity and composition may have translated into varying levels of faunal presence and,. To account for the differences in the incubation duration of field exposure between the different regions, we expressed decomposition as. The response of litter decomposition rate to n addition was positively correlated with initial n and phosphorous (p) concentrations, but. Our results showed that the litter decomposition rates in the secondary forests were significantly higher than those in the chinese fir.

Variation of litter rates with mean annual temperature

Litter Decomposition Rate To account for the differences in the incubation duration of field exposure between the different regions, we expressed decomposition as. The rate of litter decomposition is negatively correlated with c/n and lignin/n ratio of the initial litter, while it is positively correlated with n content of the initial litter (berg and. The rate of decomposition is high in species with extreme ash and nitrogen contents and the lowest c/n ratios and lignin contents. Therefore, initial differences in litter diversity and composition may have translated into varying levels of faunal presence and,. To account for the differences in the incubation duration of field exposure between the different regions, we expressed decomposition as. Our results showed that the litter decomposition rates in the secondary forests were significantly higher than those in the chinese fir. The response of litter decomposition rate to n addition was positively correlated with initial n and phosphorous (p) concentrations, but.

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