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October 01, 1990
Thermal stability of halloysite by high-pressure differential thermal analysis Available to Purchase
Sheryl L. Johnson;
Sheryl L. Johnson
Univ. Ill. Chicago, Dep. Geol. Sci., Chicago, IL, United States
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Sheryl L. Johnson
Univ. Ill. Chicago, Dep. Geol. Sci., Chicago, IL, United States
Stephen Guggenheim
A. F. Koster van Groos
Publisher: Clay Mineral Society
First Online:
02 Mar 2017
Online ISSN: 1552-8367
Print ISSN: 0009-8604
GeoRef, Copyright 2004, American Geological Institute.
Clays and Clay Minerals (1990) 38 (5): 477–484.
Article history
First Online:
02 Mar 2017
Citation
Sheryl L. Johnson, Stephen Guggenheim, A. F. Koster van Groos; Thermal stability of halloysite by high-pressure differential thermal analysis. Clays and Clay Minerals 1990;; 38 (5): 477–484. doi:
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Index Terms/Descriptors
- Appalachians
- Australasia
- clay mineralogy
- clay minerals
- crystal structure
- dehydration
- dehydroxylation
- DTA data
- experimental studies
- halloysite
- high pressure
- Indiana
- Lawrence County Indiana
- low pressure
- metahalloysite
- mineral data
- minerals
- Mitchell County North Carolina
- morphology
- New Zealand
- North America
- North Carolina
- North Island
- pressure
- sedimentary petrology
- sheet silicates
- silicates
- stability
- United States
- western North Carolina
- south-central Indiana
- Spruce Pine North Carolina
- Huron Indiana
- Te Puke
Latitude & Longitude
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