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Rising atmospheric CO2 concentrations may change soil fauna abundance.
Thus, ICLS may change soil acidification processes and rates.
Green manure (GM) cultivation and incorporation (i.e., GM management) may change soil organic matter (SOM) composition and the agroecosystem functioning.
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Trees growing close to buildings in urban landscapes may change the soil moisture around foundations, producing shrinkage and swelling.
As an ecological process, grazing may change vegetation, soils, waterways, and the species profile.
The trapping method of CO2 with airtight plastic container for 7 days may have changed soil microenvironment and thus soil respiration.
Characterizing spatial heterogeneity of urban soil properties, which may change with land use or urbanization, is crucial for understanding urban ecosystem functions.
The take-home message, she says, is that global warming may change the composition of soil organic matter, leading to shifts in the ability of soil to sustain plant and microbial life.
Although the use of activated carbon (AC) as a soil amendment, has use in determining distinct differences between allelopathy and resource competition (Inderjit and Callaway 2003), AC may change the availability of soil nutrients (Weißhuhn and Prati 2009).
Microbial flora of the soil may change by long time waterlogging which works in favour of anaerobic microorganisms that use, as alternative, electron acceptors to oxygen.
The TP content in soils may change very slowly even after drastic changes in land use [23].
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