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High Temperature and Salinity Enhance Soil Nitrogen Mineralization in a Tidal Freshwater Marsh

机译:高温和盐分增强潮汐淡水沼泽土壤氮的矿化作用

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摘要

Soil nitrogen (N) mineralization in wetlands is sensitive to various environmental factors. To compare the effects of salinity and temperature on N mineralization, wetland soils from a tidal freshwater marsh locating in the Yellow River Delta was incubated over a 48-d anaerobic incubation period under four salinity concentrations (0, 10, 20 and 35‰) and four temperature levels (10, 20, 30 and 40°C). The results suggested that accumulated ammonium nitrogen (NH4 +-N) increased with increasing incubation time under all salinity concentrations. Higher temperatures and salinities significantly enhanced soil N mineralization except for a short-term (≈10 days) inhibiting effect found under 35‰ salinity. The incubation time, temperature, salinity and their interactions exhibited significant effects on N mineralization (P<0.001) except the interactive effect of salinity and temperature (P>0.05), while temperature exhibited the greatest effect (P<0.001). Meanwhile, N mineralization processes were simulated using both an effective accumulated temperature model and a one-pool model. Both models fit well with the simulation of soil N mineralization process in the coastal freshwater wetlands under a range of 30 to 40°C (R2 = 0.88–0.99, P<0.01). Our results indicated that an enhanced NH4 +-N release with increasing temperature and salinity deriving from the projected global warming could have profound effects on nutrient cycling in coastal wetland ecosystems.
机译:湿地中的土壤氮(N)矿化对各种环境因素敏感。为了比较盐度和温度对氮矿化的影响,将位于黄河三角洲的潮汐淡水沼泽湿地土壤在四个盐度(0、10、20和35‰)下于48 d厌氧温育期进行了温育。四个温度水平(10、20、30和40°C)。结果表明,在所有盐度下,随着培养时间的延长,铵态氮累积量(NH4 + -N)均增加。较高的温度和盐度可显着增强土壤氮的矿化作用,但在35‰的盐度下具有短期(约10天)的抑制作用。孵化时间,温度,盐分及其相互作用对氮矿化有显着影响(P <0.001),但盐分和温度的相互作用影响(P> 0.05),而温度的影响最大(P <0.001)。同时,使用有效积温模型和单池模型模拟了N个矿化过程。两种模型都与30-40°C沿海淡水湿地土壤氮矿化过程的模拟非常吻合(R 2 = 0.88–0.99,P <0.01)。我们的研究结果表明,由于预计的全球变暖导致的温度和盐分升高,NH4 + -N释放量增加,可能对沿海湿地生态系统的养分循环产生深远影响。

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