Department of Chemistry, Inha University, 253, Yonghyun-dong, Nam-gu, Incheon 402-751, Korea.
Anal Chem. 2011 Oct 15;83(20):7970-7. doi: 10.1021/ac201956h. Epub 2011 Sep 21.
Our previous work on the speciation of individual mineral particles of micrometer size by the combined use of attenuated total reflectance FT-IR (ATR-FT-IR) imaging and a quantitative energy-dispersive electron probe X-ray microanalysis technique (EPMA), low-Z particle EPMA, demonstrated that the combined use of these two techniques is a powerful approach for looking at the single-particle mineralogy of externally heterogeneous minerals. In this work, this analytical methodology was applied to characterize six soil samples collected at arid areas in China, in order to identify mineral types present in the samples. The six soil samples were collected from two types of soil, i.e., loess and desert soils, for which overall 665 particles were analyzed on a single particle basis. The six soil samples have different mineralogical characteristics, which were clearly differentiated in this work. As this analytical methodology provides complementary information, the ATR-FT-IR imaging on mineral types, and low-Z particle EPMA on the morphology and elemental concentrations, on the same individual particles, more detailed information can be obtained using this approach than when either low-Z particle EPMA or ATR-FT-IR imaging techniques are used alone, which has a great potential for the characterization of Asian dust and mineral dust particles.
我们之前使用衰减全反射傅里叶变换红外(ATR-FT-IR)成像和定量能量色散电子探针 X 射线微分析技术(EPMA),低 Z 粒子 EPMA,对单个微米大小的矿物颗粒进行了种态分析,结果表明,这两种技术的结合是研究外部异质矿物中单颗粒矿物学的有力方法。在这项工作中,该分析方法被应用于表征在中国干旱地区采集的六个土壤样本,以确定样品中存在的矿物类型。这六个土壤样本分别取自黄土和沙漠土壤两种类型,对每个样本的 665 个颗粒进行了分析。这六个土壤样本具有不同的矿物学特征,在这项工作中得到了明确区分。由于这种分析方法提供了互补信息,ATR-FT-IR 成像可用于分析矿物类型,低 Z 粒子 EPMA 可用于分析形态和元素浓度,对同一样品颗粒进行分析,与单独使用低 Z 粒子 EPMA 或 ATR-FT-IR 成像技术相比,可获得更详细的信息,这种方法在表征亚洲沙尘和矿物尘颗粒方面具有很大的潜力。