It is well established that tropical forest ecosystems are often limited by phosphorus (P) availability, and elevated atmospheric nitrogen (N) deposition may further enhance such P limitation. However, it is uncertain whether P availability would affect soil fluxes of greenhouse gases, such as methane (CH4) uptake, and how P interacts with N deposition. We examine the effects of N and P additions on soil CH4 uptake in an N saturated old-growth tropical forest in southern China to test the following hypotheses: (1) P addition would increase CH4 uptake; (2) N addition would decrease CH4 uptake; and (3) P addition would mitigate the inhibitive effect of N addition on soil CH4 uptake. Four treatments were conducted at the following levels from ...
To date, few studies are conducted to quantify the effects of reduced ammonium (NH4 +) and oxidized ...
National Natural Science Foundation of China 31290222 31130009 31290221 31070435 41071166;Developme...
Background and aims: Deposited NH4+ and NO3- differently affect soil carbon (C) and nitrogen (N) cyc...
Chronically elevated nitrogen (N) deposition has led to severe nutrient imbalance in forest soils. P...
Tropical forests contribute about one third to global annual CH4 uptake by soils. Understanding the ...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
Chronic nitrogen (N) deposition may alter the amount and direction of methane (CH4) uptake in boreal...
To date, few studies are conducted to quantify the effects of reduced ammonium (NH4+) and oxidized n...
Nitrogen (N) deposition has been conventionally thought to decrease forest soil methane (CH4) uptake...
Elevated nitrogen (N) deposition to tropical forests may accelerate ecosystem phosphorus (P) limitat...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
Nitrogen (N) deposition has been conventionally thought to decrease forest soil methane (CH4) uptake...
Elevated nitrogen (N) deposition to tropical forests may accelerate ecosystem phosphorus (P) limitat...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
To date, few studies are conducted to quantify the effects of reduced ammonium (NH4 +) and oxidized ...
National Natural Science Foundation of China 31290222 31130009 31290221 31070435 41071166;Developme...
Background and aims: Deposited NH4+ and NO3- differently affect soil carbon (C) and nitrogen (N) cyc...
Chronically elevated nitrogen (N) deposition has led to severe nutrient imbalance in forest soils. P...
Tropical forests contribute about one third to global annual CH4 uptake by soils. Understanding the ...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
Chronic nitrogen (N) deposition may alter the amount and direction of methane (CH4) uptake in boreal...
To date, few studies are conducted to quantify the effects of reduced ammonium (NH4+) and oxidized n...
Nitrogen (N) deposition has been conventionally thought to decrease forest soil methane (CH4) uptake...
Elevated nitrogen (N) deposition to tropical forests may accelerate ecosystem phosphorus (P) limitat...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
Nitrogen (N) deposition has been conventionally thought to decrease forest soil methane (CH4) uptake...
Elevated nitrogen (N) deposition to tropical forests may accelerate ecosystem phosphorus (P) limitat...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
To date, few studies are conducted to quantify the effects of reduced ammonium (NH4 +) and oxidized ...
National Natural Science Foundation of China 31290222 31130009 31290221 31070435 41071166;Developme...
Background and aims: Deposited NH4+ and NO3- differently affect soil carbon (C) and nitrogen (N) cyc...