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首页> 外文期刊>Forest Ecology and Management >How does residue management impact soil organic matter composition and quality under Eucalyptus globulus plantations in Southwestern, Australia?
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How does residue management impact soil organic matter composition and quality under Eucalyptus globulus plantations in Southwestern, Australia?

机译:在澳大利亚西南部的桉树人工林下,残留物管理如何影响土壤有机质的组成和质量?

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This study investigated the influence of harvest residue management practices on soil, organic matter (SOM) composition and quality from two second-rotation Eucalyptus globulus plantations in southwestern Australia, using solid-state C-13 nuclear magnetic resonance (NMR) spectroscopy with cross-polarisation and magic-angle-spinning (CPMAS). Soil samples (0-5 cm) were collected every 12 months for 5 years from two sites that had. contrasting soil types and fertility. Harvest residue management treatments established at both sites were (a) no harvest residues; and (b) double harvest residues. The use of C-13 CPMAS and DD NMR spectroscopy enabled the successful non-destructive detection of SOM quality changes in the two E. globulus plantations. Relative intensities of C-13 CPMAS NMR spectral regions were similar at both sites, and for both harvest residue treatments, indicating that SOM composition was also similar.. Dipolar. dephasing (DD) NMR. spectra revealed resonances in SOM assigned to lignin and tannin structures, with larger resonances in the carbonyl and alkyl C regions that were indicative of cuticular material, enabling detection of changes in SOM quality. Retention of double harvest residues on the soil surface increased the soil quality compared with removal of all harvest residues at both sites as indicated by the NMR aromaticities, but this was most noticeable at Manjimup, which had greater initial soil fertility.
机译:这项研究使用固态C-13核磁共振(NMR)光谱和交叉光谱技术,研究了澳大利亚西南部两个第二轮自转桉树人工林的收获物残留管理实践对土壤,有机质(SOM)组成和质量的影响。极化和魔角旋转(CPMAS)。每五年从两个地点收集土壤样本(0-5厘米),历时5年。对比土壤类型和肥力。在两个地点都建立了收获残余物管理措施:(a)没有收获残余物; (b)两次收获的残留物。使用C-13 CPMAS和DD NMR光谱技术可以成功地无损检测​​两个小球藻人工林中SOM的质量变化。 C-13 CPMAS NMR光谱区域的相对强度在两个位置相似,并且对于两个收获残余物处理,均表明SOM组成也相似。移相(DD)NMR。光谱揭示了分配给木质素和单宁结构的SOM共振,在羰基和烷基C区域的较大共振表明表皮材料,从而能够检测SOM质量的变化。与NMR芳烃表明,去除两个地点的所有收获残留物相比,在土壤表面保留双收获残留物可提高土壤质量,但这在Manjimup最为明显,后者具有较高的初始土壤肥力。

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