锶
放射性核素
锶同位素
成岩作用
同位素分析
地质学
化学
同位素
辐射定年
环境化学
黑色素
矿物学
人骨
同位素特征
稳定同位素比值
地球化学
人体乳房
放射化学
法医学
风化作用
裸鳃类
作者
Saskia Ammer,Lisette M. Kootker
标识
DOI:10.1016/j.forsciint.2026.113123
摘要
Human hair, primarily composed of the protein keratin, is one of the most frequently recovered forms of trace evidence in forensic investigations. Radiogenic strontium isotope analysis ( 87 Sr/ 86 Sr) of human hair shows considerable promise for forensic provenancing. However, its application remains challenging because hair contains both biogenic strontium incorporated during growth, and exogenous and diagenetic strontium acquired through environmental exposure. Existing decontamination protocols, largely developed for stable isotope analyses, have not been validated for radiogenic strontium isotope research. This experimental study evaluated the effects of 17 chemical pre-treatment protocols including acetone, methanol:chloroform (2:1), Milli-Q and 0.1 M p.a. hydrochloric acid on the 87 Sr/ 86 Sr and Sr concentrations of modern and experimentally buried human hair. The results demonstrate that chemical pre-treatment itself can alter measured 87 Sr/ 86 Sr, with the magnitude of these shifts depending on hair colour. This effect is likely related to differences in melanin content, as melanin easily binds metal cations, potentially influencing the retention and removal of strontium during chemical pre-treatment. Although the inclusion of a final Milli-Q rinse effectively recovers the biogenic 87 Sr/ 86 Sr in an experimental context, even the most complex and elaborate protocol 13 (AC-MQ-MC2-HCl-MQ) did not remove diagenetic strontium incorporated in pubic, forearm and scalp hair after burial (<14 months). These findings indicate that currently available cleaning procedures cannot reliably recover the original biogenic strontium isotope composition of buried hair and highlight the need for caution when using hair 87 Sr/ 86 Sr data for forensic provenancing.
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