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Characterization of Tubular Chrysotile by Thermoporometry, Nitrogen Sorption, Drifts, and TEM
Chrysotile asbestos Infrared spectroscopy N2 adsorption and desorption Thermoporometry Transmission electron microscopy X-ray diffraction
2011/12/30
The maximum crystal radius Rn of ice in hollow wet chrysotile tubes is established by thermoporometry to be between 2.8 and 3.2 nm, and the internal pore volume Vn of the tubes to be between 0.008 and...
Effects of Dry Grinding and Leaching on the Crystal Structure of Chrysotile
Acid leaching Asbestos Chrysotile Dry grinding Infrared spectroscopy Thermal gravimetric analysis Transmission electron microscopy
2012/1/6
The structural damage produced by dry grinding and acid leaching of chrysotile was studied by transmission and scanning electron microscopy, infrared spectroscopy, X-ray powder diffraction, and thermo...
Authigenic Chrysotile Formation in the Matrix of Quaternary Debris Flows, Northern Southland, New Zealand
Authigenesis Chrysotile Debris flow Pseudoboehmite Serpentine
2011/11/25
Abstract: Quaternary debris flows derived from ophiolite melange in northern Southland, New Zealand, are locally cemented and veined by cross-fiber and fine-grained chrysotile. Chrysotile was identifi...
Adsorption of Stearic Acid by Chrysotile
Adsorption Chrysotile Infrared spectroscopy Magnesium Stearic acid
2012/2/7
Stearic acid adsorption by chrysotile asbestos in hexane was shown to occur by the formation of a Mg-stearate complex on the mineral surface. Infrared spectroscopy showed no evidence of physically ads...
Unusual Application of Chrysotile Asbestos: The Elimination of Used Oil Emulsions
Adsorption Asbestos Chrysotile Oil emulsion Surface treatment
2011/11/22
Unusual Application of Chrysotile Asbestos: The Elimination of Used Oil Emulsions.
Grinding of Chrysotile in Hydrocarbons, Alcohol, and Water
Amorphization Asbestos Chrysotile Defiberization Grinding Morphology
2012/2/8
The change of the properties of chrysotile after ball milling in organic liquids (aromatics, alcohols, silicone oils) or water was studied by gas adsorption, electron microscopy, X-ray powder diffract...
Thermal Transformation of Chrysotile Studied by High Resolution Electron Microscopy
Asbestos Chrysotile Electron Microscopy Enstatite Forsterite Lattice-imaging Selected Area Diffraction
2012/2/9
Thermal transformation of chrysotile from Uruaçu District, state of Goiás, Brazil, heated in dry conditions at temperatures from 600°C to 1300°C was studied by high resolution electron microsco...
A Comparative Study of Thermal Effects on Surface and Structural Parameters of Natural Californian and Quebec Chrysotile Asbestos up to 700°C
Thermal Effects Quebec Chrysotile Asbestos surface area
2012/2/13
The effect of heat treatment on surface area, pore volume, pore size distribution, physical and chemical structure up to 700°C have been studied on samples of naturally occurring chrysotile minerals f...