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STP747
New Analytical Techniques for Trace Constituents of Metallic and Metal-Bearing Ores

Javier-Son A
Pages: 144
Published: 1981

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This publication contains methodology and instrumentation for determination of trace constituents of metals, alloys and ores. 10 papers cover modification of instruments, special preparation of samples, optimization of matrix effects, automation, new excitation sources, and computer-controlled background corrections.



Table of Contents

Introduction
Javier-Son A.

Summary
Javier-Son A.

Trace Constituent Analysis for Metallic Systems: State of the Art
Javier-Son A.

Progression of Analytical Technology for Trace Constituents in Metal-Bearing Systems
McMahon M.

Analysis of Low-Alloy Steel Using a Sequential Atomic Absorption Spectrophotometer Equipped with an Autosampler
Klein A.

Determination of Aluminum, Barium, Calcium, Lead, Magnesium, and Silver in Ferrous Alloys by Atomic Emission and Absorption Spectrometry
Rains T.

A Comparison of the Capabilities of Atomic Absorption and Inductively Coupled Plasma Spectroscopy for the Analysis of Metallurgical Samples
Wallace G.

Background Correction Used with a High-Resolution Spectrometer for Plasma Emission Spectrochemical Analysis
Zander A.

Multielement d-c Plasma Emission Spectrometric Analysis of Steels and Irons
Belliveau J., Griffin H., Savolainen A.

Quantitative Measurement of Trace Impurities in 99.95 Percent Palladium by d-c Plasma Emission Spectrometry
Worthington M.

Spectrochemical Determination of Impurities in Uranium Following Solvent Extraction Using Tributyl Phosphate in Methyl Isobutyl Ketone
Chang J., Graff R.

Isotope Dilution Spark Source Mass Spectrometric Determination of Sulfur in Selected NBS Iron-Base Alloys
Burke R., Lambert G., Maienthal E., Paulsen P.

Index


Committee: E03
Paper ID: STP747-EB
DOI: 10.1520/STP747-EB
ISBN-EB: 978-0-8031-4813-0

ASTM International is a member of CrossRef.
0-8031-0743-9
978-0-8031-0743-4
STP747-EB