首页> 外文期刊>Geoderma: An International Journal of Soil Science >Preparing a soil spectral library using the Internal Soil Standard (ISS) method: Influence of extreme different humidity laboratory conditions
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Preparing a soil spectral library using the Internal Soil Standard (ISS) method: Influence of extreme different humidity laboratory conditions

机译:使用内部土壤标准(ISS)方法制备土壤光谱库:极端不同湿度实验室条件的影响

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Extensive efforts are currently being devoted to the establishment of soil spectral libraries on regional, national, continent-wide and global domains. In particular, a new development goes in the direction of global harmonized soil spectral databases that shall be acquired following common standards and procedures so that they can be merged with other soil spectral libraries. The choice of standards is important, especially with respect to their behaviors when laboratory conditions, such as humidity, change. In this study, we test the application and robustness of the Internal Soil Standard (ISS) spectral re-alignment procedure on an extended number of soil samples acquired at different laboratories. In particular, a focus is placed on the comparison between two standards Lucky Bay (LB) and Wylie Bay (WB), for their performance with different humidity laboratory conditions. LB and WB are almost pure quartz sands from Australia. For this, 71 soil samples from Israel with different mineralogical background and variable soil organic matter contents are scanned at two laboratories. The scanning took place with different spectral measurement protocols and extreme diverse conditions in terms of laboratory humidity and moist. All scans are completed by the repeated scans of the two Australian white sands through all scan batches to harmonize the spectral measurements. Our results show that the ISS minimizes the visual spectral variation, aligns the minor and extreme systematic changes of the protocols, and makes them more stable. Furthermore, the LB and WB standards do not exhibit equal performance regarding to relatively dry and humid conditions. The WB standard provides more stable and satisfactory results in humid condition. However, the high performance of the LB sample in spectral correction is still observed, particularly in laboratories with lower moist. Accordingly, these analyses suggest that in the ISS re-alignment procedure, the WB sample is more reliable to be used in humid laboratory condition.
机译:目前正在致力于在区域,国家,大陆和全球领域建立土壤光谱库的广泛努力。特别是,新的开发朝着全球协调的土壤谱数据库方向进行,这些数据库应在共同的标准和程序之后获得,以便它们可以与其他土壤光谱库合并。标准的选择是重要的,特别是当实验室条件(例如湿度)发生变化时的行为。在这项研究中,我们在不同实验室获得的延长数量的土壤样本上测试内部土壤标准(ISS)光谱重新排列程序的应用和鲁棒性。特别是,对两个标准幸运湾(LB)和Wylie湾(WB)之间的比较进行了焦点,用于其具有不同湿度实验室条件的性能。 LB和WB几乎是来自澳大利亚的纯粹石英砂。为此,来自以色列的71种土壤样品,具有不同的矿物学背景和可变土壤有机物质含量在两个实验室扫描。在实验室湿度和湿润方面,扫描在不同的光谱测量协议和极端不同的条件下进行。所有扫描通过所有扫描批次通过所有扫描批次进行协调,所有扫描都是由两只澳大利亚白沙的重复扫描完成。我们的结果表明,该商会最大限度地减少了视觉频谱变化,对准协议的次要和极端系统的变化,使它们更稳定。此外,LB和WB标准在表现出对相对干燥和潮湿的病症的同等性能。 WB标准在潮湿条件下提供更稳定和令人满意的结果。然而,仍然观察到LB样品在光谱校正中的高性能,特别是在具有较低湿润的实验室中。因此,这些分析表明,在ISS重新排列程序中,WB样品更可靠地用于潮湿实验室条件。

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