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The role of non-crystalline Fe in the increase of SOC after long-term organic manure application to the red soil of southern China

机译:长期施用有机肥对华南红壤中非晶态铁在SOC增加中的作用

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摘要

Because of the important role of soil organic carbon (SOC) in nutrient cycling and global climate changes, there has been an interest in understanding how different fertilizer practices affect the SOC preservation and promotion. The results from this study showed that long-term application of manure (21years) could increase significantly the content of SOC, total nitrogen (N) and soil pH in the red soil of southern China. The chemical structure of SOC was characterized by using solid-state cross-polarization magic angle spinning (CPMAS) C-13 nuclear magnetic resonance (NMR) spectroscopy, and the aromatic C, ratio of alkyl C:O-alkyl C, aromaticity and hydrophobicity of mineral fertilizers N, P and K plus organic manure (NPKM) and organic manure (M) treatments were less than those of mineral fertilizer nitrogen (N) and mineral fertilizers N, P and K (NPK) treatments. Both poorly crystalline (Fe-o) and organically complexed (Fe-p) iron contents were influenced significantly (P<0.05) by different fertilizers, and it was observed that NPKM and M treatments increased the non-crystalline Fe (Fe-o-Fe-p) content. There was a significant (P<0.01) positive correlation between soil organic C and non-crystalline Fe in both the surface (0-20cm) and subsurface (20-40cm) soils. The results suggested that non-crystalline Fe played an important role in the increase of SOC by long-term application of organic manure (NPKM and M) in the red soil of southern China.
机译:由于土壤有机碳(SOC)在养分循环和全球气候变化中的重要作用,因此有兴趣了解不同肥料的使用方式如何影响SOC的保存和促进。这项研究的结果表明,长期施用肥料(21年)可以显着提高中国南方红壤的SOC含量,总氮(N)和土壤pH值。 SOC的化学结构通过固态交叉极化幻角旋转(CPMAS)C-13核磁共振(NMR)光谱进行表征,并给出了芳族C,烷基C:O-烷基C的比例,芳香性和疏水性矿物肥料N,P和K加上有机肥(NPKM)和有机肥料(M)的处理量均少于矿物肥料氮(N)和矿物肥料N,P和K(NPK)的处理量。不同肥料对低结晶度(Fe-o)铁和有机络合物(Fe-p)铁含量都有显着影响(P <0.05),并且观察到NPKM和M处理增加了非晶态Fe(Fe-o- Fe-p)含量。在表层(0-20cm)和表层(20-40cm)土壤中,有机碳与非晶态铁之间存在显着(P <0.01)正相关。结果表明,在中国南方的红壤中,长期施用有机肥(NPKM和M)后,非晶态铁在SOC的增加中起了重要作用。

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