Analysis of the polydispersity of soil-like bodies in glacier environments by the laser light scattering (diffraction) method

Q3 Agricultural and Biological Sciences
E. Abakumov, T. Nizamutdinov, V. Polyakov
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引用次数: 3

Abstract

This study presents the results of polydispersity analysis of soil-like bodies from two various polar regions using the laser light scattering method. The differences in the particle size distribution of cryoconite samples from the Anuchin Glacier (Antarctica) and the Mushketov Glacier (Arctic) are described. The samples obtained from the Mushketov Glacier are characterized by a finer particle size distribution than samples collected on the Anuchin Glacier. While comparing our results with previously published studies, it was found that the method of laser light scattering shows a lower content of small fractions (<0.05 mm) compared to the classical methods of sedimentation, since these methods are based on fundamentally different physical principles. The laser method used requires low amounts of samples (0.2–0.5 g), while the classical sedimentary method uses a higher gravimetric portion of cryoconite (5–10 g), which is critical for field sampling.
用激光散射(衍射)法分析冰川环境中类土体的多分散性
本文介绍了用激光散射方法对两个不同极地的类土体进行多分散性分析的结果。介绍了南极阿努钦冰川和北极穆什凯托夫冰川冰晶样品粒度分布的差异。从穆什凯托夫冰川获得的样本比在阿努钦冰川收集的样本具有更细的粒度分布。在将我们的研究结果与先前发表的研究结果进行比较时,发现激光散射方法与经典的沉积方法相比,显示出更低的小组分(<0.05 mm)的含量,因为这些方法基于根本不同的物理原理。激光法所需的样品量很少(0.2-0.5 g),而经典的沉积法使用的低温晶砂重量较高(5-10 g),这对现场采样至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biological Communications
Biological Communications Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.70
自引率
0.00%
发文量
21
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