Econ. Environ. Geol. 2007; 40(5): 563-574

Published online October 31, 2007

© THE KOREAN SOCIETY OF ECONOMIC AND ENVIRONMENTAL GEOLOGY

Application of Laser-Induced Breakdown Spectroscopy (LIBS) for In-situ Detection of Heavy Metals in Soil

Eun-Joung Ko1, Se-Yeong Hamm1 and Kyoung-Woong Kim2*

1Division of Earth Environmental System, College of Natural Science, Busan National University
2Deparment of Environmental Science and Engineering, Gwangju Institute of Science and Technology

Correspondence to :

Kyoung-Woong Kim

kwkim@gist.ac.kr

Received: September 11, 2007; Accepted: October 22, 2007

Abstract

Laser induced breakdown spectroscopy (LIBS) is a recently developed analytical technique that is based upon the measurement of emission lines generated by atomic species close to the surface of the sample, thus allowing their chemical detection, identification and quantification. With powerful advantages of LIBS compared to the conventional analytical methodology, this technique can be applied in the detection of heavy metals in the field. LIBS allows the rapid analysis by avoiding laborious chemical steps. LIBS have already been applied for the determination of element concentration in a wide range of materials in the solid, liquid and gaseous phase with simplicity of the instrument and diversity of the analytical application. These feasibility of rapid multi elemental analysis are appealing proprieties for the in- situ analytical technique in geochemical investigation, exploration and environmental analysis. There remain still some limitations to be solved for LIBS to be applied in soil environment as an insitu analytical technology. We would like to provide the basic principle related to the plasma formation and laserinduced breakdown of sample materials. In addition, the matrix effect, laser properties and the various factors affecting on the analytical signal of LIBS was dealt with to enhance understanding of LIBS through literature review. Ultimately, it was investigated the feasibility of LIBS application in soil environment monitoring by considering the basic idea to enhance the data quality of LIBS including the calibration method for the various effects on the analytical signal of LIBS.

Keywords Heavy metal, In-situ analysis, LIBS, Soil, Matrix effect

Article

Econ. Environ. Geol. 2007; 40(5): 563-574

Published online October 31, 2007

Copyright © THE KOREAN SOCIETY OF ECONOMIC AND ENVIRONMENTAL GEOLOGY.

Application of Laser-Induced Breakdown Spectroscopy (LIBS) for In-situ Detection of Heavy Metals in Soil

Eun-Joung Ko1, Se-Yeong Hamm1 and Kyoung-Woong Kim2*

1Division of Earth Environmental System, College of Natural Science, Busan National University
2Deparment of Environmental Science and Engineering, Gwangju Institute of Science and Technology

Correspondence to:

Kyoung-Woong Kim

kwkim@gist.ac.kr

Received: September 11, 2007; Accepted: October 22, 2007

Abstract

Laser induced breakdown spectroscopy (LIBS) is a recently developed analytical technique that is based upon the measurement of emission lines generated by atomic species close to the surface of the sample, thus allowing their chemical detection, identification and quantification. With powerful advantages of LIBS compared to the conventional analytical methodology, this technique can be applied in the detection of heavy metals in the field. LIBS allows the rapid analysis by avoiding laborious chemical steps. LIBS have already been applied for the determination of element concentration in a wide range of materials in the solid, liquid and gaseous phase with simplicity of the instrument and diversity of the analytical application. These feasibility of rapid multi elemental analysis are appealing proprieties for the in- situ analytical technique in geochemical investigation, exploration and environmental analysis. There remain still some limitations to be solved for LIBS to be applied in soil environment as an insitu analytical technology. We would like to provide the basic principle related to the plasma formation and laserinduced breakdown of sample materials. In addition, the matrix effect, laser properties and the various factors affecting on the analytical signal of LIBS was dealt with to enhance understanding of LIBS through literature review. Ultimately, it was investigated the feasibility of LIBS application in soil environment monitoring by considering the basic idea to enhance the data quality of LIBS including the calibration method for the various effects on the analytical signal of LIBS.

Keywords Heavy metal, In-situ analysis, LIBS, Soil, Matrix effect

    KSEEG
    Feb 28, 2025 Vol.58 No.1, pp. 1~97

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