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Estoques de carbono e nitrogênio nas fra??es da matéria organica em argissolo sob eucalipto e pastagem

机译:桉树和草场下Argossol有机质组分中的碳和氮储量

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The cultivation of eucalyptus in areas of pasture has resulted in changes of C and N storage in soil, mainly due to the different characteristics of each plant and their biomass management; the largest stock of C and N can be found under eucalyptus, originating from the biomass at the soil surface layer and increasing the C/N in decomposition of plant residues. These differences may cause a decrease in the storage of C and N fractions in the chemical, physical and biological soil, both in the more labile, an the more recalcitrant fractions. This study aimed to evaluate the stocks of total organic carbon (TOC) and total N (TN), the stock of C and N in humic substances (fulvic acids, humic and humin), the light fraction (C-MOL and N-MOL) and the microbial biomass (C-BM and N-BM) in samples of collected from the layers 0-0.10, 0.10-0.20, 0.20-0.40, 0.40-0.60 and 0.60-1.00 m in depth, line (EL) and interline (EEL) from the soil under eucalyptus in the fourth rotation with six years of age, and from an area of cultivated pasture with Brachiaria (P). The total organic carbon stock and carbon in the light fraction in the first layers of soil (0.60 m) was higher in the interline of eucalyptus compared with that from the cultivated pasture and the line of eucalyptus, probably favored by harvest residue from the previous cycle of eucalyptus buried in the current interline. By determining the natural abundance of 13 C in the 0-0.20m soil, it was found that 29% and 37% of carbon present in the soil organic matter (SOM) after 28 years of cultivation in the line and interline, respectively, was derived from eucalyptus (C 3 plants), which corresponded to an average rate of cycling of SOM in this soil of 1.04% (line) and 1.32% (interline) per year. In the soil interline it was observed that the C-C 3 from the eucalyptus increased the stock of soil organic C, even with the replacement of C-C 4 from the pasture, after 28 years of eucalyptus cultivation. For nitrogen in humic substances, a similar stock was obtained for the soil of the interline of eucalyptus and that of the pasture, which was higher than that of the soil line of eucalyptus, up to 1 m deep. The soil of eucalyptus (EL and EEL) showed a stock of C and N in microbial biomass similar to that of cultivated pasture.
机译:牧场地区桉树的种植导致土壤中碳和氮的存储量发生变化,这主要是由于每种植物的特性不同以及它们的生物量管理所致。桉树下碳和氮的最大储量来自土壤表层的生物量,并增加了植物残渣分解过程中的碳/氮。这些差异可能会导致化学,物理和生物土壤中C和N馏分的存储量减少,二者在不稳定的部分和难降解的馏分中均会减少。这项研究旨在评估总有机碳(TOC)和总氮(TN)的含量,腐殖质(富里酸,腐殖质和腐殖质)中C和N的含量,轻质馏分(C-MOL和N-MOL) )以及从层0-0.10、0.10-0.20、0.20-0.40、0.40-0.60和0.60-1.00 m的深度,线(EL)和线间收集的样品中的微生物生物量(C-BM和N-BM) (EEL)来自六岁以下的第四轮桉树下的土壤,以及带有腕足动物(P)的牧场地。在桉树中间,土壤第一层(0.60 m)的总有机碳储量和轻质碳含量高于耕种牧场和桉树中间的有机碳储量和轻质碳含量,这很可能受到前一个周期的收获残余物的支持的桉树埋在当前的中间层中。通过确定0-0.20m土壤中13 C的自然丰度,发现在28年的品系和品系间耕作后,土壤有机质(SOM)中分别存在29%和37%的碳。来源于桉树(C 3植物),相当于该土壤中SOM的平均循环率每年为1.04%(品系)和1.32%(品系)。在土壤界线中,观察到桉树种植28年后,桉树中的C-C 3甚至增加了牧场中C-C 4的添加,增加了土壤有机碳的储量。对于腐殖质中的氮,在桉树和牧草交界处的土壤中也获得了类似的储量,该储量比桉树土壤系中的土壤高,最高可达1 m。桉树土壤(EL和EEL)的微生物生物量中碳和氮的储量与牧草相似。

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