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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Organic C and N mineralization as affected by dissolved organic matter in paddy soils of subtropical China
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Organic C and N mineralization as affected by dissolved organic matter in paddy soils of subtropical China

机译:亚热带稻田土壤可溶性有机质对有机碳和氮矿化的影响

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摘要

In this study, dynamics of dissolved organic matter (DOM) and mineralization of soil organic C and N in subtropical China were investigated. Paddy and upland soils were derived from Tertiary sandstone, Quaternary red clay and river alluvium with low, middle, and high levels of soil fertility. Dissolved organic carbon contents (DOC) varied from 3.8 to 68.7 mg/kg and dissolved organic nitrogen contents (DON) ranged from 2.9 to 18.3 mg/kg, respectively, during the experimental period. Both DOC and DON increased with increasing soil fertility. The content of DOM was characterized by strong seasonal fluctuation in soils, and seasonal patterns showed the maximum value in Nov and the minimum in July. The contribution of DOM to mineralization of C and N was significantly affected by soil types and seasons. DOM removal significantly decreased the cumulative organic C mineralization in soils derived from Tertiary sandstone and River alluvium (by 1.6%-20.3% with an average of 7.1%), while it did not significantly change those in soils derived from Quaternary red clay. Similarly, the cumulative mineralization of N in paddy soils after DOM removal decreased by 6.7%-27.3% over seasons. In this study, DOM played an important role in soil C and N mineralization in subtropical China. It appears that contribution of DOM to minerilization of C and N in paddy soils was possibly related to DOM content and composition
机译:本文研究了亚热带中国土壤中可溶性有机质(DOM)的动态变化以及土壤有机碳和氮的矿化作用。稻田和旱地土壤均来自第三纪砂岩,第四纪红粘土和河冲积层,土壤肥力水平低,中和高。在实验期间,溶解有机碳含量(DOC)在3.8至68.7 mg / kg之间,溶解有机氮含量(DON)在2.9至18.3 mg / kg之间。 DOC和DON都随着土壤肥力的增加而增加。 DOM的含量以土壤的季节性剧烈波动为特征,季节模式显示11月的最大值,7月的最小值。 DOM对碳和氮矿化的贡献受土壤类型和季节的影响很大。 DOM的去除显着降低了第三纪砂岩和河冲积层土壤中的累积有机碳矿化(降低了1.6%-20.3%,平均为7.1%),而对第四纪红黏土土壤中的有机碳矿化没有明显改变。同样,DOM去除后,水稻土中氮的累积矿化量随季节下降了6.7%-27.3%。在这项研究中,DOM在中国亚热带的土壤碳和氮矿化中起着重要作用。似乎DOM对水稻土中C和N矿化的贡献可能与DOM的含量和组成有关

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