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The fate of fertilizer nitrogen in a high nitrate accumulated agricultural soil

机译:高硝酸盐积累的农业土壤中肥料氮的命运

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摘要

Well-acclimatized nitrifiers in high-nitrate agricultural soils can quickly nitrify NH4+ into NO3 subject to leaching and denitrifying loss. A 120-day incubation experiment was conducted using a greenhouse soil to explore the fates of applied fertilizer N entering into seven soil N pools and to examine if green manure (as ryegrass) co-application can increase immobilization of the applied N into relatively stable N pools and thereby reduce NO3 accumulation and loss. We found that 87–92% of the applied 15N-labelled NH4+ was rapidly recovered as NO3 since day 3 and only 2–4% as microbial biomass and soil organic matter (SOM), while ryegrass co-application significantly decreased its recovery as NO3 but enhanced its recovery as SOM (17%) at the end of incubation. The trade-off relationship between 15N recoveries in microbial biomass and SOM indicated that ryegrass co-application stabilized newly immobilized N via initial microbial uptake and later breakdown. Nevertheless, ryegrass application didn’t decrease soil total NO3 accumulation due to its own decay. Our results suggest that green manure co-application can increase immobilization of applied N into stable organic N via microbial turnover, but the quantity and quality of green manure should be well considered to reduce N release from itself.
机译:在高硝酸盐含量的农业土壤中,经过良好驯化的硝化器可以将NH4 + 迅速硝化为NO3 -,这会使其浸出和反硝化损失。使用温室土壤进行了120天的温育实验,以探索进入七个土壤N库的施肥N的命运,并检查绿肥(作为黑麦草)的共同施肥是否可以增加施肥N固定为相对稳定的N的能力。从而减少NO3 -的积累和损失。我们发现,自第3天起,施用的 15 N标记的NH4 + 的87-92%被迅速回收为NO3 -。黑麦草共施用时,微生物生物量和土壤有机质(SOM)占4%,显着降低其以NO3 -的回收率,但在培养结束时以SOM(17%)的形式回收。微生物生物量中 15 N回收率与SOM之间的权衡关系表明,黑麦草共施用可通过初始微生物吸收和随后的分解来稳定新固定的N。尽管如此,黑麦草的施用并不会由于其自身的腐烂而减少土壤总NO3 -的积累。我们的结果表明,绿肥的共施用可通过微生物更新增加将施用的N固定在稳定的有机N中的作用,但应充分考虑绿肥的数量和质量,以减少其自身的N释放。

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