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首页> 外文期刊>European Journal of Soil Biology >Short-term responses of soil enzyme activities and carbon mineralization to added nitrogen and litter in a freshwater marsh of Northeast China.
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Short-term responses of soil enzyme activities and carbon mineralization to added nitrogen and litter in a freshwater marsh of Northeast China.

机译:东北淡水沼泽土壤酶活性和碳矿化对氮和垫料增加的短期响应。

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摘要

Soil organic matter decomposition is regulated by nutrient availability. Adding nitrogen (N) and litter could affect the stability of soil organic carbon (SOC). An incubation experiment was conducted to examine the effects of ammonium nitrate (AN), urea (U), and litter amendment on activities of soil microbial extracellular enzyme, soil microbial biomass C (MBC), dissolved organic C (DOC), and C mineralization in freshwater marsh. The results showed that adding N including AN and U decreased soil urease activity, MBC, DOC, and soil pH. However, litter amendment and combined litter and N amendment increased the enzymes activities of urease and invertase, MBC and DOC concentrations. The response of soil C mineralization to N and litter additions was different, being inhibited with AN addition while stimulated with littler addition and the combined litter and N addition, initially stimulated but inhibited thereafter with urea addition. Our results suggest that adding N is helpful for improving marshland soil C stocks via decreasing soil cumulative CO2-C emissions, labile organic carbon concentration of MBC and DOC. However, adding litter could reduce C storage stability by stimulating soil C mineralization and increasing soil labile C fractions and enzyme activities.
机译:土壤有机质的分解受养分有效性的调节。添加氮(N)和垫料会影响土壤有机碳(SOC)的稳定性。进行了一个孵化实验,以检验硝酸铵(AN),尿素(U)和垃圾改良剂对土壤微生物细胞外酶,土壤微生物生物量碳(MBC),溶解性有机碳(DOC)和碳矿化作用的影响在淡水沼泽。结果表明,添加氮(包括AN和U)会降低土壤脲酶活性,MBC,DOC和土壤pH。但是,凋落物改良剂和组合的凋落物与N改良剂增加了脲酶和转化酶的酶活性,MBC和DOC浓度。土壤C矿化对氮和凋落物添加的响应是不同的,添加AN会抑制土壤C的矿化,而添加少量和添加凋落物和N的组合会首先刺激,但随后添加尿素会抑制土壤C矿化的反应。我们的研究结果表明,添加N有助于通过减少土壤累积CO 2 -C排放,MBC和DOC的不稳定有机碳浓度来改善沼泽地土壤C储量。但是,添加凋落物可能会通过刺激土壤碳矿化和增加土壤中不稳定的碳组分和酶活性而降低碳储藏稳定性。

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