Non-traditional stable isotope signatures in geological matrices as a tool for interpreting environmental changes – A review

7Citations
Citations of this article
8Readers
Mendeley users who have this article in their library.

Abstract

The development of new analytical techniques enabled the precise determination of the expand-ed set of stable isotopes and provided new insight into existing geological issues. This review outlines recent studies of non-traditional isotope signatures in geological matrices, summarizing in one place, new data for the stable isotopes of Ca, Mg, Sr, Li, Ni, Cr, and Cu and their application in the interpretation of environmental processes. Although some, such as δ44Ca and δ26Mg, have previously been used to track changes in seawater chemistry throughout geological his-tory, recent studies report their application as geochemical proxies of post-depositional process-es. Similarly, isotopic signatures of strontium, previously used in radioactive isotope chronology, and δ7Li, used in tracing plate subduction and crust/mantle material cycling, found a new application in studies of weathering patterns. The use of δ53Cr and δ65Cu isotope signatures, on the other hand, reflects their fractionation under different redox conditions, whereas δ60Ni, due to its adsorption and co-precipitation with sulfide species and Fe-Mn phases, is used in interpreting the contributions of different material sources. And while the isotopic signatures of all these ele-ments indicate certain environmental conditions and processes (e.g. post-depositional process-es, redox conditions, organic matter input, the contribution of sources, etc.), by combining them a more comprehensive insight into the investigated environment can be achieved.

Cite

CITATION STYLE

APA

Fiket, Ž., Turk, M. F., Ivanić, M., & Kniewald, G. (2021). Non-traditional stable isotope signatures in geological matrices as a tool for interpreting environmental changes – A review. Geologia Croatica. Croatian Geological Survey. https://doi.org/10.4154/gc.2021.12

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free