© 2018 Elsevier Masson SAS Urban soils play an essential role in delivering ecosystem services due to soil microbial functions but there is limited evidence of the role of urban soils in the global carbon cycle. Inorganic nitrogen (N) reduces microbial respiration of soil organic matter (SOM) in pristine and managed forest soils but there is less evidence available on the extent to which this occurs in contrasting urban soils. This study examined the ephemeral effect of inorganic N and SOM (woodland versus grassland urban soil) on microbial functions represented by extracellular enzyme activities and microbial respiration of added substrates of contrasting quality. It was hypothesized that inorganic N stimulates extracellular enzyme activit...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increased atmospheric nitrogen (N) deposition can alter the processing and storage of organic carbon...
© 2018 Elsevier Masson SAS Urban soils play an essential role in delivering ecosystem services due t...
Urban soils play an essential role in delivering ecosystem services due to soil microbial functions ...
Background: Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by...
Anthropogenic nitrogen enrichment alters decomposition processes that control the flux of carbon (C)...
Background Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by ...
Background Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by ...
The effects of atmospheric nitrogen (N) deposition on organic matter decomposition vary with the bio...
To assess how microbial processing of organic C inputs to forest soils may be influenced by elevated...
To assess how microbial processing of organic C inputs to forest soils may be influenced by elevated...
Rising carbon dioxide (CO2) concentrations and temperatures are expected to stimulate plant producti...
To assess how microbial processing of organic C inputs to forest soils may be influenced by elevated...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increased atmospheric nitrogen (N) deposition can alter the processing and storage of organic carbon...
© 2018 Elsevier Masson SAS Urban soils play an essential role in delivering ecosystem services due t...
Urban soils play an essential role in delivering ecosystem services due to soil microbial functions ...
Background: Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by...
Anthropogenic nitrogen enrichment alters decomposition processes that control the flux of carbon (C)...
Background Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by ...
Background Nitrogen (N) deposition alters litter decomposition and soil carbon (C) sequestration by ...
The effects of atmospheric nitrogen (N) deposition on organic matter decomposition vary with the bio...
To assess how microbial processing of organic C inputs to forest soils may be influenced by elevated...
To assess how microbial processing of organic C inputs to forest soils may be influenced by elevated...
Rising carbon dioxide (CO2) concentrations and temperatures are expected to stimulate plant producti...
To assess how microbial processing of organic C inputs to forest soils may be influenced by elevated...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increasing subsoil organic carbon inputs could potentially mitigate climate change by sequestering a...
Increased atmospheric nitrogen (N) deposition can alter the processing and storage of organic carbon...