Zu Mechanismen der Uraneinlagerung in Apatit -was auch für andere Mitglieder der Apatit-Gruppe gelten dürfte - ebenso wie zu Uranyl in Pyromorphite gibt es durchaus Literatur, z.B.
Altschulter, Z. S., Clarke Jr, R. S., & Young, E. J. (1958). Geochemistry of uranium in apatite and phosphorite (No. 314-D). pdf verfügbar
Panczer, G., Gaft, M., Reisfeld, R., Shoval, S., Boulon, G., & Champagnon, B. (1998). Luminescence of uranium in natural apatites. Journal of alloys and compounds, 275, 269-272. pdf verfügbar
Raicevic, S., Wright, J. V., Veljković, V., & Conca, J. L. (2006). Theoretical stability assessment of uranyl phosphates and apatites: selection of amendments for in situ remediation of uranium. Science of the Total Environment, 355(1-3), 13-24.
Rakovan, J., Reeder, R. J., Elzinga, E. J., Cherniak, D. J., Tait, C. D., & Morris, D. E. (2002). Structural characterization of U (VI) in apatite by X-ray absorption spectroscopy. Environmental science & technology, 36(14), 3114-3117. .pdf verfügbar
Sordyl, J., Chamberlain, C. E., Sweet, T. F., Burns, P. C., Cronberger, K., & Manecki, M. (2024). Immobilization of uranium from aqueous solutions by room-temperature precipitation of pyromorphite [Pb5 (PO4) 3Cl]. Polyhedron, 252, 116891.
Sordyl, J. (2025). Experimental immobilization of REE, Th and U by precipitation of pyromorphite [Pb5 (PO4) 3Cl] (Doctoral dissertation, AGH University of Krakow). pdf verfügbar