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  • Infrared transmission and emission spectroscopic study of selected Chinese palygorskites.

Infrared transmission and emission spectroscopic study of selected Chinese palygorskites.

Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy (2011-10-01)
Hongfei Cheng, Jing Yang, Ray L Frost, Zeguang Wu
摘要

Infrared transmission and emission spectroscopy were used to analyze the difference in structure and thermal behavior of two Chinese palygorskites. The position of the main bands identified in the infrared spectra of the palygorskites studied is similar for these two Chinese samples, but there are some differences in their intensity, which is significant. This discrepancy is attributed to the existence of impurities and the geological environments in different regions. The infrared emission spectra clearly show the structural changes and dehydroxylation of the palygorskites when the temperature is raised. The dehydration of the palygorskites is followed by the loss of intensity of the OH stretching vibration bands in the region of 3600-3200 cm(-1). Dehydroxylation is followed by the decrease in intensity in the bands between 3700 and 3550 cm(-1). Dehydration of pure palygorskite was completed by 600°C. Partial loss of coordinated water was observed at 400°C. Infrared emission spectroscopy is an effective method to determine the stability of the mineral.

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Supelco
Florisil® 色谱吸附剂, 60-100 mesh
Sigma-Aldrich
弗洛里西®, 100-200 mesh
Sigma-Aldrich
海泡石, powder
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弗洛里西®, <200 mesh, fine powder
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弗洛里西®, PR grade, 60-100 mesh, coarse powder
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Florisil®, for the determination of hydrocarbon acc. to ISO 9377-2
Supelco
弗洛里西®, 100-200 mesh, fine powder
Supelco
色谱用 Florisil ® 吸附剂, 30-60 mesh
Supelco
过弗罗里 ® PR, PR grade (analysis acc. to FDA)