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Updated: Jul 2, 2026

Standards for Quantitative Metalloproteomic Analysis Using Size Exclusion ICP-MS
Published on: April 13, 2016
LA-ICP-MS protocols for U-Pb geochronology and trace element analysis of zircons: Optimized implementation at the
Maria Pârlea1, Vlad Ene2, Mihai Ducea1,2
1Doctoral School of Geology, Faculty of Geology and Geophysics, University of Bucharest, Romania.
Abstract:
This article presents a standardized analytical protocol for zircon characterization using a 193 nm ArF excimer laser (Teledyne Photon Machines IRIDIA) coupled to a single quadrupole ICP-MS (Thermo Scientific iCAP RQ). The method optimizes two primary workflows: high-resolution U-Pb geochronology and the simultaneous acquisition of U-Pb isotopic ratios with trace element (TE) concentrations. By systematically calibrating operational parameters-including carrier gas flow, repetition rates, and laser fluence-this approach maximizes analytical sensitivity while minimizing sample consumption, providing a robust framework for investigating detrital, igneous, and metamorphic zircons.•Optimized Workflows: Establishes precise parameters for both standalone U-Pb dating and integrated U-Pb/Trace Element analysis to ensure high spatial resolution and analytical throughput.•Performance Metrics: Demonstrates U-Pb age accuracy within 5% (precision <3%) and trace element accuracy better than 10% for most analytes based on extensive data acquisition.•Petrogenetic Application: Delivers a reliable, integrated framework for complex geological characterization, maintaining high-standard precision across diverse zircon populations.
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