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Quinone-mediated extracellular electron transfer (EET) is a well-known and important microbial respiration process in many natural and engineering systems.
In a subsequent paper, [34] they used geochemical parameters, rate measurements and bacterial counts to conclude that Fe reduction was the predominant microbial respiration process in either bioturbated or vegetated sediments at their study site.
These data suggest that in the studied Amazonian rainforest, tree canopy composition is an important driver of the microbial respiration process via leaf litter fall, resulting in potentially strong plant-soil feedbacks.
Here we tested the hypothesis that the variability in leaf litter quality produced by a highly diverse tree community determines the spatial variability of the microbial respiration process in the underlying soil.
The microbial respiration process was assessed using substrate-induced respiration (SIR) and compared to a wide range of quality parameters of the associated litter layer (litter nutrients, carbon forms, stoichiometry, litter mass and pH).
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This was due to the continuous loss of C through microbial respiration during the process.
This is also evident by the higher value of temperature that was achieved in the grain dust piles, which resulted from the microbial respiration during the biodegradation process.
Soil respiration refers to the carbon flowing from soil to atmosphere in the form of CO2, including three biological processes (plant root respiration, soil microbial respiration, soil animal respiration) and a biology process (chemical oxidation process of carbon material).
Correlation analysis indicated that during the reclamation process higher levels of microbial respiration, SOC, water stable aggregates and macro-pore fraction were associated with greater soil hydraulic conductivity.
pH dropped steadily with depth, most steeply in the ∼1-mm-wide oxic zone, as expected when oxygen is consumed by noncathodic oxidation processes, such as metal oxidation, nitrification, or organotrophic microbial respiration.
Most of the enzymatic activities (β-GLA, URA, and APA) and microbiological parameters determined (microbial respiration and qCO2) showed that the compost soil mixtures were able to maintain biochemical processes during the incubation time.
Related(20)
microbial respiratory process
microbial desulphurization process
microbial disinfection process
microbial fermentation process
microbial soil process
microbial pretreatment process
microbial respiration water
microbial storage process
microbial masonry process
microbial respiration activity
microbial growth process
microbial evolution process
microbial decomposition process
microbial respiration rate
microbial conversion process
microbial degradation process
microbial synthesis process
microbial biodegradation process
microbial foundation process
microbial denitrification process
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