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High-heat Effects on the Physical and Chemical Properties of Soil Organic Matter and Its Water-soluble Components in Japan’s Forests A Comprehensive Approach Using Multiple Analytical Methods

机译:对土壤有机质物理和化学性质的高热效应及日本森林水溶性成分的综合方法,使用多种分析方法

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Wildfires that expose the soil organic layer to high heat levels can alter soil organic matter (SOM), which includes water-soluble organic matter (WSOM) components. Various evaluation methods were used to characterize and quantify the effects of high heat levels on SOM and WSOM, including ion chromatography, thermogravimetry–differential thermal analysis (TG-DTA), colorimetry, elemental analysis, pyrolysis–gas chromatography–mass spectrometry using tetramethylammonium hydroxide (TMAH-py-GC/MS), total organic carbon (TOC) analysis, three-dimensional excitation-emission matrix (3DEEM) spectroscopy, and high-performance size-exclusion chromatography. In this study, we applied each of these evaluation methods using soil samples that were collected from broadleaf, coniferous, and bamboo forests and peatland in Japan and exposed to different initial high heat levels. Based on the TG-DTA results, the remaining mass in select soil samples markedly decreased when reheated to approximately 200°C. Comparatively, the TMAH-py-GC/MS results indicated a drastic change in SOM composition and the production of low molecular organic components (
机译:将土壤有机层暴露于高热水平的野火可以改变土壤有机物(SOM),其包括水溶性有机物质(WSOM)组分。各种评价方法用于表征和量化高热水平对SOM和WSOM的影响,包括离子色谱,热重分析器差异热分析(TG-DTA),比色法,元素分析,热解 - 气相色谱 - 质谱使用四甲基铵氢氧化氧化物(TMAH-PY-GC / MS),总有机碳(TOC)分析,三维激励 - 发射矩阵(3DEEME)光谱和高性能尺寸排除色谱。在这项研究中,我们使用从日本的阔叶,针叶树和竹林和泥炭地收集的土壤样品应用这些评估方法中的每一个,并暴露于不同的初始高温水平。基于TG-DTA结果,当重新加热至约200℃时,选择土壤样品中的剩余质量显着降低。相比之下,TMAH-PY-GC / MS结果表明SOM组合物的激烈变化和在该温度下产生低分子有机组分(

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