Xenotime at the Nanoscale: U-Pb Geochronology and Optimisation of Analyses by Atom Probe Tomography

被引:10
作者
Joseph, Cilva [1 ,2 ]
Fougerouse, Denis [1 ,2 ]
Saxey, David W. [2 ]
Verberne, Rick [3 ]
Reddy, Steven M. [1 ,2 ]
Rickard, William D. A. [2 ]
机构
[1] Curtin Univ, Sch Earth & Planetary Sci, Perth, Australia
[2] Curtin Univ, John Laeter Ctr, Geosci Atom Probe Facil, Perth, Australia
[3] Univ Copenhagen, Globe Inst, Ctr Star & Planet Format, Copenhagen, Denmark
基金
澳大利亚研究理事会;
关键词
atom probe tomography; APT; nanogeochronology; Pb-206/U-238; Pb-207/Pb-206; radiometric dating; AUTHIGENIC XENOTIME; DIAGENETIC XENOTIME; SEDIMENTARY-ROCKS; FLUID-FLOW; MONAZITE; ZIRCON; AUSTRALIA; DEPOSIT; AGES; MASS;
D O I
10.1111/ggr.12398
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Xenotime (YPO4) is an accessory phase common in low to high-temperature geological environments. Xenotime is an established geochronometer, though its small size, low modal abundance and textural complexity make it more difficult to analyse with traditional techniques but makes a prime candidate for nanoscale analysis. In this study, we develop an atom probe tomography (APT) protocol to determine the Pb-206/U-238 and Pb-207/Pb-206 ages of micro-scale xenotime crystals with analytical volumes four to six orders of magnitude smaller than typical geochronology techniques. A linear correlation between the Pb-206/U-238 fractionation and (UO22+)-U-238/(UO2+)-U-238 was used to correct for the atom probe instrument parameters variability between specimens. For Pb-207/Pb-206 ages, we employed two methods of background correction owing to the Pb-206(2+) thermal tail contribution to the Pb-207(2+) counts: A constant background correction for the younger (similar to 1000 Ma) Y1 reference material and a variable correction of background for Archaean age reference material xtc to correct for the thermal tail influence. This contribution also proposes strategies for optimisation of xenotime analysis using APT and permits us to explore the various geological problems in the nanoscale realm. This methodology potentially allows determining the age of small xenotime crystals in sedimentary rocks, low metamorphic grade settings and deformation microstructures.
引用
收藏
页码:443 / 456
页数:14
相关论文
共 69 条
[11]   Pb and rare earth element diffusion in xenotime [J].
Cherniak, D. J. .
LITHOS, 2006, 88 (1-4) :1-14
[12]   Potential minerals for determining U-Th-Pb chemical age using electron microprobe [J].
Cocherie, Alain ;
Legendre, Olivier .
LITHOS, 2007, 93 (3-4) :288-309
[13]   Defining the Potential of Nanoscale Re-Os Isotope Systematics Using Atom Probe Microscopy [J].
Daly, Luke ;
Bland, Phil A. ;
Tessalina, Svetlana ;
Saxey, DavidW. ;
Reddy, StevenM. ;
Fougerouse, Denis ;
Rickard, William D. A. ;
Forman, Lucy V. ;
La Fontaine, Alexandre ;
Cairney, Julie M. ;
Ringer, Simon P. ;
Schaefer, Bruce F. ;
Schwander, Daniel .
GEOSTANDARDS AND GEOANALYTICAL RESEARCH, 2018, 42 (03) :279-299
[14]   Atom probe tomography analysis of the reference zircon gj-1: An interlaboratory study [J].
Exertier, F. ;
La Fontaine, A. ;
Corcoran, C. ;
Piazolo, S. ;
Belousova, E. ;
Peng, Z. ;
Gault, B. ;
Saxey, D. W. ;
Fougerouse, D. ;
Reddy, S. M. ;
Pedrazzini, S. ;
Bagot, P. A. J. ;
Moody, M. P. ;
Langelier, B. ;
Moser, D. E. ;
Botton, G. A. ;
Vogel, F. ;
Thompson, G. B. ;
Blanchard, P. T. ;
Chiaramonti, A. N. ;
Reinhard, D. A. ;
Rice, K. P. ;
Schreiber, D. K. ;
Kruska, K. ;
Wang, J. ;
Gairney, J. M. .
CHEMICAL GEOLOGY, 2018, 495 :27-35
[15]   SHRIMP U-Pb geochronology of authigenic xenotime and its potential for dating sedimentary basins [J].
Fletcher, IR ;
Rasmussen, B ;
McNaughton, NJ .
AUSTRALIAN JOURNAL OF EARTH SCIENCES, 2000, 47 (05) :845-859
[16]   Improved calibration procedures and new standards for U-Pb and Th-Pb dating of Phanerozoic xenotime by ion microprobe [J].
Fletcher, IR ;
McNaughton, NJ ;
Aleinikoff, JA ;
Rasmussen, B ;
Kamo, SL .
CHEMICAL GEOLOGY, 2004, 209 (3-4) :295-314
[17]   Mechanical twinning of monazite expels radiogenic lead [J].
Fougerouse, D. ;
Reddy, S. M. ;
Seydoux-Guillaume, A-M ;
Kirkland, C. L. ;
Erickson, T. M. ;
Saxey, D. W. ;
Rickard, W. D. A. ;
Jacob, D. ;
Leroux, H. ;
Clark, C. .
GEOLOGY, 2021, 49 (04) :417-421
[18]   Nanoscale distribution of Pb in monazite revealed by atom probe microscopy [J].
Fougerouse, D. ;
Reddy, S. M. ;
Saxey, D. W. ;
Erickson, T. M. ;
Kirkland, C. L. ;
Rickard, W. D. A. ;
Seydoux-Guillaume, A. -M. ;
Clark, C. ;
Buick, I. S. .
CHEMICAL GEOLOGY, 2018, 479 :251-258
[19]   Nanoscale Isotopic Dating of Monazite [J].
Fougerouse, Denis ;
Kirkland, Christopher L. ;
Saxey, David W. ;
Seydoux-Guillaume, Anne-Magali ;
Rowles, Matthew R. ;
Rickard, William D. A. ;
Reddy, Steven M. .
GEOSTANDARDS AND GEOANALYTICAL RESEARCH, 2020, 44 (04) :637-652
[20]   Time-resolved, defect-hosted, trace element mobility in deformed Witwatersrand pyrite [J].
Fougerouse, Denis ;
Reddy, Steven M. ;
Kirkland, Christopher L. ;
Saxey, David W. ;
Rickard, William D. ;
Hough, Robert M. .
GEOSCIENCE FRONTIERS, 2019, 10 (01) :55-63