Literature DB >> 17341055

Quantitative hydrogen analysis of zircaloy-4 using low-pressure laser plasma technique.

Koo Hendrik Kurniawan1, Marincan Pardede, Rinda Hedwig, Zener Sukra Lie, Tjung Jie Lie, Davy Putra Kurniawan, Muliadi Ramli, Ken-ichi Fukumoto, Hideaki Niki, Syahrun Nur Abdulmadjid, Nasrullah Idris, Tadashi Maruyama, Kiichiro Kagawa, May On Tjia.   

Abstract

It is found in this work that variation of laser power density in low-pressure plasma spectrochemical analysis of hydrogen affects sensitively the hydrogen emission intensity from the unwanted and yet ubiquitous presence of ambient water. A special experimental setup has been devised to allow the simple condition of focusing/defocusing the laser beam on the sample surface. When applied to zircaloy-4 samples prepared with various hydrogen impurity concentrations using low-pressure helium surrounding gas, good-quality hydrogen emission lines of very high signal to background ratios were obtained with high reproducibility under weakly focused or largely defocused laser irradiation. These measurements resulted in a linear calibration line with nonzero intercept representing the residual contribution from the recalcitrant water molecules. It was further shown that this can be evaluated and taken into account by means of the measured intensity ratio between the oxygen and zirconium emission lines. We have demonstrated the applicability of this experimental approach for quantitative determination of hydrogen impurity concentrations in the samples considered.

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Year:  2007        PMID: 17341055     DOI: 10.1021/ac061713o

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  2 in total

1.  High sensitivity hydrogen analysis in zircaloy-4 using helium-assisted excitation laser-induced breakdown spectroscopy.

Authors:  Marincan Pardede; Indra Karnadi; Rinda Hedwig; Ivan Tanra; Javed Iqbal; Mangasi Alion Marpaung; Maria Margaretha Suliyanti; Eric Jobiliong; Syahrun Nur Abdulmadjid; Nasrullah Idris; Ali Khumaeni; Muhandis Shiddiq; Mario Gracio Anduinta Rhizma; Zener Sukra Lie; Muhammad Bilal; Davy Putra Kurniawan; Tjung Jie Lie; Koo Hendrik Kurniawan; Kiichiro Kagawa
Journal:  Sci Rep       Date:  2021-11-09       Impact factor: 4.379

2.  Suppression of self-absorption in laser-induced breakdown spectroscopy using a double pulse orthogonal configuration to create vacuum-like conditions in atmospheric air pressure.

Authors:  Indra Karnadi; Marincan Pardede; Ivan Tanra; Rinda Hedwig; Alion Mangasi Marpaung; Zener Sukra Lie; Eric Jobiliong; Dennis Kwaria; Maria Margaretha Suliyanti; Muliadi Ramli; Kurnia Lahna; Tjung Jie Lie; Hery Suyanto; Koo Hendrik Kurniawan; Kiichiro Kagawa
Journal:  Sci Rep       Date:  2020-08-06       Impact factor: 4.379

  2 in total

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