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Changes in carbon and nitrogen storage along a restoration gradient in a semiarid sandy grassland

机译:半干旱沙质草地草地碳氮存储量沿恢复梯度的变化

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Understanding carbon (C) and nitrogen (N) pools in degraded ecosystems is useful to predict future C and N sequestration potential during restoration. Here we examined the distribution of C and N pools in plant -soil system at four successional stages: mobile dune, semi-fixed dune, fixed dune and grassland. The four stages reflect the successional sequence during sandy grassland restoration in Horqin Sandy Land, Northern China. C and N storage in plant biomass, litter and soil increased significantly with advancing sandy grassland restoration. With the conversion from mobile dune to semi-fixed dune, fixed dune and grassland, total ecosystem C and N storage increased by 1.9, 4.8, 7.1 and 3.3, 15.7, 20.6 times, respectively. More than 80% of C and N storage were stored in soil in sandy grassland restoration. C or N storage in plant and root biomass, litter and soil was positively correlated to species richness. Soil C and N storage was positively correlated to the C and N in plant and root biomass. These results suggest that sandy grassland restoration has a high potential to sequester C and N in the soil. Increasing plant production and species diversity via restoration likely enhance the C and N sequestration in sandy grassland ecosystems. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:了解退化的生态系统中的碳(C)和氮(N)库有助于预测恢复期间未来的碳和氮固存潜力。在这里,我们研究了植物-土壤系统中碳和氮池在四个连续阶段的分布:移动沙丘,半固定沙丘,固定沙丘和草地。这四个阶段反映了中国北方科尔沁沙地沙质草地恢复过程中的演替顺序。随着沙质草地的恢复,植物生物量,凋落物和土壤中的碳和氮存储量显着增加。从移动沙丘转换为半固定沙丘,固定沙丘和草地后,生态系统的总碳和氮存储量分别增加了1.9、4.8、7.1和3.3、15.7、20.6倍。沙质草地恢复土壤中储存了超过80%的碳和氮。植物和根生物量,凋落物和土壤中的碳或氮存储量与物种丰富度呈正相关。土壤碳和氮的储存量与植物和根系生物量中的碳和氮呈正相关。这些结果表明,沙质草地恢复具有将土壤中的碳和氮螯合的巨大潜力。通过恢复增加植物产量和物种多样性可能会增强沙质草地生态系统中的碳和氮固存。 (C)2015 Elsevier Masson SAS。版权所有。

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