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Organic carbon and nitrogen contents and their fractions in soils with onion crops in different management systems

机译:不同管理系统中洋葱作物土壤中的有机碳和氮含量及其馏分

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摘要

The use of plant species in rotation or succession of crops can increase C and N contents and their fractions in the soil. The objective of this study was to evaluate the effect of using soil cover crops in succession and rotation with onion crops in different soil management systems on the total organic carbon (TOC), total nitrogen (TN), and C and N fractions in soil aggregates, and bulk soil. The experiment was implemented in April 2007 with eight treatments: succession of onion and maize in a no-tillage system (NTS) (T1); rotation of soil cover crops (winter) and biennial onion in a NTS (T2); rotation of maize, winter grasses, and onion in a NTS (T3); succession of summer legume and annual onion in a NTS (T4); rotation of summer grass, winter grasses, and annual onion in a NTS (T5); succession of summer legume, winter grass, and annual onion in a NTS (T6); succession of maize and onion in a conventional tillage system (CTS) (T7); and succession of intercrops of soil cover crops (summer), and annual onion in a NTS (T8). Undisturbed soil samples were collected in the 0.0-5.0, 5.0-10.0, and 10.0-20.0 cm soil layers in July 2014, and their aggregate (8.0 to 2.0 mm) and bulk soil (2 mm) fractions were separated to evaluate their TOC, TN, particulate organic carbon and particulate organic nitrogen (OCP and ONP respectively), and mineral-associated organic carbon and mineral-associated organic nitrogen (OCM and ONM respectively). Soil turning due to the CTS in T7 (0.0-5.0 cm) reduced TOC, OCP, OCM, TN, ONP, and ONM, in the soil aggregates and in the bulk soil, when compared with the NTS with the use of soil cover crops in succession or rotation with onion crops (T1-T6 and T8). T6 increased the TOC, TN, OCP, OCM, ONP, and ONM contents in the soil aggregates and bulk soil when compared with the successions with only grasses or only legumes. T1 increased the soil TOC and TN contents in aggregates compared with the same succession in CTS. T8 had higher OCP (0.0-20.0 cm) and ONP (5.0-10.0 cm) contents in aggregates than in the bulk soil. In general, aggregates had higher TOC and OCM contents, and bulk soil had higher TN, OCP, ONP and ONM contents. The main changes resulting from the management systems and soil cover crop combinations used were observed in the particulate fraction, especially in the soil aggregates.
机译:在旋转或继承中使用植物物种可以增加C和N含量及土壤中的馏分。本研究的目的是评估使用土壤覆盖作物连续和旋转在不同土壤管理系统中的洋葱作物对土壤聚集体中的总有机碳(TOC),总氮(TN)和C和N分数旋转的影响和散装土壤。该实验于2007年4月实施,八个治疗方法:在无耕作系统(NTS)中的洋葱和玉米连续(T1);土壤覆盖作物(冬季)和NTS中的两年洋葱旋转(T2);玉米,冬季草和洋葱在NTS中的旋转(T3);夏季豆类的连续和NTS中的洋葱(T4);夏季草,冬季草和每年洋葱的旋转(t5);夏季豆类,冬季草和每年洋葱的连续(t6);常规耕作系统(CTS)中的玉米和洋葱的连续(T7);土壤覆盖作物(夏季)的跨性工间和NTS(T8)中的年洋葱连续。在2014年7月,0.0-5.0,5.0-10.0和10.0-20.0厘米的土壤层收集未受干扰的土壤样品,它们的聚集体(8.0至2.0mm)和散装土壤(& 2mm)级分分离以评估它们TOC,TN,微粒有机碳和颗粒状有机氮(分别为OCP和ONP)和矿物相关的有机碳和矿物相关的有机氮(分别为OCM和ONM)。由于T7(0.0-5.0cm)的CTS,土壤转弯减少了TOC,OCP,OCM,TN,ONP和ONM,与使用土壤覆盖作物的NTS相比,在土壤骨料和散装土壤中减少连续或与洋葱作物旋转(T1-T6和T8)。与只有草或仅豆类的演替相比,T6增加了土壤骨料和散装土壤中的TOC,TN,OCP,OCM,ONP和ONM含量。与CTS相同的连续相比,T1增加了聚集体中的土壤TOC和TN含量。 T8在聚集体中具有较高的OCP(0.0-20.0cm)和ONP(5.0-10.0cm)的含量而不是散装土壤。通常,聚集体具有更高的TOC和OCM内容物,并且散装土壤具有较高的TN,OCP,ONP和ONM内容。由管理系统和土壤覆盖作物组合产生的主要变化在颗粒级分中观察到,特别是在土壤聚集体中。

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