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Response of nitrogen transformation to glucose additions in soils at two subtropical forest types subjected to simulated nitrogen deposition

机译:模拟氮沉降下两种亚热带森林类型土壤氮素转化对葡萄糖添加的响应

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摘要

Purpose Soil nitrogen (N) transformation is an important phenomenon in forest ecosystems and it is regulated by carbon (C) input. This study aimed to evaluate the impacts of labile C levels on soil N mineralization under different simulated N deposition rates.Materials and methods Soils at 0-15-cm depth were collected from two contrasting subtropical forests, a coniferous fir forest (CFF) and an evergreen broadleaf forest (EBF); both soils had been subjected to 3 years of artificial NH4NO3 input or deposition (no-N control, N-0; low N (30kg N ha(-1) year(-1); N30), and high N (100 kg N ha(-1) year(-1)); N100). The impacts of external glucose-C (G) on N mineralization of these N-deposited soils were investigated by the addition of six C rates (mg C kg(-1) dry weight soil-0, G0; 100, G100; 300, G300; 1000, G1000; 2000, G2000; and 5000, G5000), at a temperature of 25 degrees C, and a 60% water-holding capacity for 21 days.Results and discussion The results showed that, after 21days of incubation, concentrations of inorganic N (NH4+-N and NO3--N) decreased significantly (P 0.05) with increasing C rates and reached a minimum value when the added C rate was G1000. The lowest NH4+-N under G1000 was 9.2 mg kg(-1) in all of these three N-deposited soils at the CFF site while 11.6 mg kg(-1) in the N30 soil at the EBF site. The concentration of NO3- -N was decreased to 0 under G1000 and G2000 in the CFF and EBF soils, respectively. These results revealed that the higher the soil NO3--N concentration was, the greater the NO3--N reduced, with a maximum decrease of 80 mg NO3--N kg(-1) in the N100 soil from the EBF site. In addition, the soil mineralization and nitrification rates were significantly higher (P0.05) in soils from the EBF than from the CFF site and increased with N in soils subjected to simulated N deposition. However, the net N transformation rates also decreased with C addition and had the minimum value at G1000.Conclusions Our results suggested that there could be a critical C level at which N transformation being altered in certain soils, based on their N status, and that the impacts of C on soil N mineralization were independent of soil N availability.
机译:目的土壤氮(N)的转化是森林生态系统中的一种重要现象,它受碳(C)输入的调节。本研究旨在评估在不同模拟氮沉降速率下不稳定碳水平对土壤氮矿化的影响。材料和方法收集了两种对比的亚热带森林,针叶冷杉林(CFF)和针叶冷杉林中0-15厘米深度的土壤。常绿阔叶林(EBF);两种土壤都经历了3年的人工NH4NO3输入或沉积(无氮控制,N-0;低氮(30kg N ha(-1)年(-1); N30)和高氮(100kg N) ha(-1)year(-1)); N100)。通过添加六个碳比率(mg C kg(-1)干重土壤-0,G0、100,G100、300, G300; 1000,G1000; 2000,G2000;和5000,G5000),温度为25摄氏度,持水量为60%,可保持21天。结果与讨论结果表明,经过21天的培养后,无机氮(NH4 + -N和NO3--N)的含量随C速率的增加而显着降低(P <0.05),当添加的C速率为G1000时达到最小值。 G1000下最低的NH4 + -N在CFF站点的所有这三种N沉积土壤中均为9.2 mg kg(-1),而在EBF站点的N30土壤中则为11.6 mg kg(-1)。在CFF和EBF土壤中,在G1000和G2000下,NO3- -N的浓度分别降至0。这些结果表明,土壤NO3--N浓度越高,NO3--N减少的程度就越大,从EBF站点开始,N100土壤中的最大NO3--N kg(-1)减少量最大。此外,来自EBF的土壤中的矿化和硝化率显着高于CFF站点(P <0.05),并且随着模拟N沉降的土壤中N的增加,土壤矿化和硝化率也随之增加。但是,氮的净转化率也随着碳的添加而降低,并且在G1000处达到最小值。结论我们的结果表明,根据土壤的氮状况,某些土壤中可能存在一个临界的碳水平,氮的变化发生了改变,并且碳对土壤氮矿化的影响与土壤氮素有效性无关。

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  • 来源
    《Journal of soil & sediments》 |2019年第5期|2166-2175|共10页
  • 作者单位

    Fujian Normal Univ, Key Lab Humid Subtrop Ecogeog Proc, Minist Educ, Fuzhou 350007, Fujian, Peoples R China|Fujian Normal Univ, Sch Geog Sci, Fuzhou 350007, Fujian, Peoples R China;

    Fujian Normal Univ, Key Lab Humid Subtrop Ecogeog Proc, Minist Educ, Fuzhou 350007, Fujian, Peoples R China|Fujian Normal Univ, Sch Geog Sci, Fuzhou 350007, Fujian, Peoples R China;

    Fujian Normal Univ, Key Lab Humid Subtrop Ecogeog Proc, Minist Educ, Fuzhou 350007, Fujian, Peoples R China|Fujian Normal Univ, Sch Geog Sci, Fuzhou 350007, Fujian, Peoples R China;

    Univ Agr, Faisalabad Sub Campus, Burewala, Pakistan;

    Southwest Univ, Ctr Excellence Soil Biol, Coll Resources & Environm, Chongqing 400716, Peoples R China|Univ Western Australia, Sch Biol Sci, Perth, WA 6009, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Carbon level; Forest soil; Nitrogen deposition; Nitrate immobilization; Nitrogen transformation;

    机译:碳水平;森林土壤;氮沉降;硝酸盐固定化;氮转化;

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