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首页> 外文期刊>Soil Science >Soil carbon characterization 10 to 15 years after organic residual application: carbon (1s) K-edge near-edge X-ray absorption fine-structure spectroscopy study.
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Soil carbon characterization 10 to 15 years after organic residual application: carbon (1s) K-edge near-edge X-ray absorption fine-structure spectroscopy study.

机译:施用有机残留物后10到15年的土壤碳特征:碳(1s)K边缘近边缘X射线吸收精细结构光谱研究。

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摘要

Application of organic residuals (e.g., biosolids and composts) to soil may provide an effective method for sequestering carbon (C), but the long-term stability of such C is not well known. Two field sites were investigated to characterize soil C status 10 to 15 years after amendment with biosolids and composts. Particulate organic matter (POM) was extracted from soil samples by physical separation methods. Near-edge X-ray absorption fine-structure spectroscopy was used to characterize the organic C in the POM fraction. Near-edge X-ray absorption fine-structure spectra revealed, on average, the presence of O-alkyl C (43%), aromatic C (17%), alkyl C (17%), carboxylic C (11%), and phenolic C (11%) in the POM. The alkyl C/O-alkyl C ratio was within the range of 0.19 to 0.69. The addition of organic residuals maintained higher proportions of alkyl C and aromatic C and lower O-alkyl C in the POM fraction than the control, thus revealing a higher degree of organic C decomposition. The results suggest that the application of organic residuals can increase soil C decomposition and thus improves long-term soil C stability.
机译:在土壤中施用有机残留物(例如生物固体和堆肥)可能提供一种隔离碳(C)的有效方法,但是这种碳的长期稳定性尚不为人所知。对两个野外地点进行了调查,以表征在用生物固体和堆肥改良后10至15年的土壤碳状况。通过物理分离方法从土壤样品中提取了颗粒状有机物(POM)。近缘X射线吸收精细结构光谱用于表征POM馏分中的有机碳。近边缘X射线吸收精细结构光谱显示,平均而言,存在O-烷基C(43%),芳族C(17%),烷基C(17%),羧基C(11%)和POM中的酚C(11%)。烷基C / O-烷基C之比在0.19至0.69的范围内。有机残留物的添加保持了POM馏分中的烷基C和芳族C的比例较高,而O-烷基C的比例低于对照,因此显示出较高的有机C分解度。结果表明,有机残留物的施用可以增加土壤碳的分解,从而提高土壤碳的长期稳定性。

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