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FTIR photoacoustic spectroscopy for identification and assessment of soil components: Chernozems and their size fractions

机译:FTIR光声光谱用于鉴定和评估土壤成分:Chernozems及其大小分数

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摘要

FTIR photoacoustic spectroscopy was used to approach inorganic matrix components and organic-matter constituents of chernozem size fractions (1–5000 μm, by dry sieving) with a different history of use (from intact steppe to permanent bare fallow, a continuous long-term field experiment). The conditions of FTIR photoacoustic measurements in continuous-scan modes were compared with attenuated total reflection measurements, the advantages of photoacoustic measurements resulting from a higher intensity of the incident radiation and signal-generating volume were discussed. Overtone peaks of quartz as a soil matrix component at 2000–1700 cm–1 were selected as a possible internal-standard (guide) bands for the comparison of photoacoustic spectra. For different land-use samples, differences in the composition were found, which are differently manifested in normalized spectra of size fractions, with millimeter-size, 20–100 μm, and silt fraction bearing the maximum information.
机译:FTIR光声光谱学用于接近Chernozem尺寸分数(1-5000μm,干燥筛分)的无机基质组分和有机物质成分,使用不同的使用历史(从完整的草原到永久裸露的休耕,是连续的长期场实验)。将与衰减的总反射测量进行比较连续扫描模式的FTIR光声测量的条件,讨论了由入射辐射和信号产生体积的更高强度产生的光声测量的优点。在2000-1700cm-1的泛音峰值作为土壤基质组分,选择了用于比较光声光谱的可能的内标(引导)带。对于不同的土地利用样品,发现组合物的差异,其在尺寸分数的标准化光谱中不同地表现出毫米尺寸,20-100μm和承载最大信息的淤泥部分。

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