Preview

Zhurnal Prikladnoii Spektroskopii

Advanced search

ANALYSIS OF MANGANESE IN SOIL USING LASER-INDUCED BREAKDOWN SPECTROSCOPY

Abstract

Laser-induced breakdown spectroscopy (LIBS) has been applied to measure spectral characteristics and to perform quantitative analysis of the concentration of manganese in soil, an issue of great concern for precision agriculture. For the analysis, soil samples were compressed into pellets and a pulsed Nd:YAG laser was employed to produce the plasma in air at atmospheric pressure. Using this approach, we analyzed the time evolution of spectral characteristics and their dependence on the laser pulse energy. A calibration curve was constructed using reference sandy soil samples collected from a farm. An internal standard curve was used to improve the accuracy of the LIBS metrology for soil analyses. The results of this analysis demonstrated the usefulness of this method for analyzing the concentration of manganese in soil.

About the Authors

J. . Yongcheng
School of Electric Engineering and Automation, Anhui University; School of Mechanical and Automotive Engineering, Hefei University of Technology
Russian Federation


H. . Jiang
School of Mechanical and Automotive Engineering, Hefei University of Technology
Russian Federation


J. . Benchi
School of Mechanical and Automotive Engineering, Hefei University of Technology
Russian Federation


L. . Dong
School of Electronics & Information Engineering, Anhui University
Russian Federation


References

1. A. W. Miziolek, V. Palleschi, I. Schechter, Laser-Induced Breakdown Spectroscopy (LIBS): Fundamentals and Applications, Cambridge University Press, New York (2006).

2. D. W. Hahn, N. Omenetto, Appl. Spectrosc., 64, No. 12, 335A-366A (2010).

3. D. A. Cremers, L. J. Radziemski, Handbook of Laser-Induced Breakdown Spectroscopy, Cambridge University Press, New York, 110-111 (2006).

4. D. Alamelu, A. Sarkar, S. K. Aggarwal, Talanta, 77, No. 1, 256-261 (2008).

5. M. Corsi, G. Cristoforetti, M. Hidalgo, S. Legnaioli, V. Palleschi, A. Salvetti, E. Tognoni, C. Vallebona, Appl. Opt., 42, No. 30, 6133-6137 (2003).

6. F. J. Wallis, B. L. Chadwick, R. J. S. Morrison, Appl. Spectrosc., 54, No. 8,1231-1235 (2000).

7. A. C. Samuels, F. C. Delucia Jr, K. L. McNesby, A. W. Miziolek, Appl. Opt., 42, No. 30, 6205-6209 (2003).

8. Z. A. Arp, D. A. Cremers, R. C. Wiens, D. M. Wayne, B. Salle, S. Maurice, Appl. Spectrosc., 58, No. 8, 897-909 (2004).

9. Gao Xun, Du Chuang, Shao Yan, Song Xiao-Wei, Zhao Zhen-Ming, Hao Zuo-Qiang, Lin Jing-Quan, Acta Phys. Sin., 63, No. 9, 045202 (2014).

10. D. Diaz, D. W. Hahn, A. Molina, Appl. Spectrosc., 66, No. 1, 99-106 (2012).

11. M. da Silva Gomes, D. Santos Jr., L. Cristina Nunes, G. Gustinelli Arantes de Carvalhob, F. de Oliveira Leme, F. José Krug, Talanta, 85, 1744-1750 (2011).

12. Shunchun Yao, Jidong Lu, Junyan Li, Kai Chen, Jun Li, Meirong Dong, J. Anal. At. Spectrom., 25, 1733-1738 (2010).

13. Krishna K. Ayyalasomayajula, Fang Yu-Yueh, Jagdish P. Singh, Dustin L.McIntyre, Jinesh Jain, Appl. Opt., 51, B149-B154 (2012).

14. R. S. Bricklemyer, D. J. Brown, J. E. Barefield, S. M. Clegg, Soil Sci. Soc. Am. J., 75, No. 3, 1006-1018 (2001).

15. D. M. Dong, C. J. Zhao, W. G. Zheng, X. D. Zhao, L. Z. Jiao, Spectrosc. Lett., 46, 421-426 (2013).

16. Cuiping Lu, Liusan Wang, Haiying Hu, Zhong Zhuang, Yubing Wang, Rujing Wang, Liangtu Song, Chin. Opt. Lett., 11, 053004 (2013).

17. F. Capitelli, F. Colao, M. R. Provenzano, R. Fantoni, G. Brunetti, N. Senesi, Geoderma, 106, No. 1-2, 45-62 (2002).

18. G. S. Senesi, M. Dell’Aglio, R. Gaudiuso, A. DeGiacomo, C. Zaccone, O. DePascale, T. M. Miano, M. Capitelli, Environ. Res., 109, No. 4, 413-420 (2009).

19. A. M. Popov, F. Colao, R. Fanton, J. Anal. At. Spectrom., 25, 837-848 (2010).

20. Tian Qiuying, Liu Nana,Bai Wenming, Li Linghao, Chen Jiquan, Reich Peter B, Yu Qiang, Guo Dali, Smith Melinda D., Knapp. Alan K., Cheng, Weixin, Lu Peng, Gao Yan, Yang An, Wang Tianzuo, Li Xin, Wang Zhengwen, Ma Yibing, Han Xingguo, Zhang Wen-Hao, Ecology, 97, 65-74 (2016).

21. I. Bassiotis, A. Diamantopolou, A. Giannoudakos, F. Roubani-Kalantzopoulou, M. Kompitsas, Spectrochim. Acta, B, 56, No. 6, 671-683 (2001).

22. Zhang Yu-zhu, Wang Guang-an, Shen Zhong-hua, Ni Xiao-wu, Lu Jian, High Power Laser Particle Beams, 19, No. 4, 585-588(2007).

23. A. H. Galmed, M. A. Harith, Appl. Phys. B, 91, No. 3-4, 651-660 (2008).

24. Cui Zhifeng, Zhang Xianyi, Yao Guanxin, Wang Xiaoli, Xu Xinsheng, Zheng Xianfeng, Feng Eryin, Ji Xuehan, Acta Phys. Sin., 55, No. 9, 4506-4513 (2006).

25. J. B. Sirven, B. Bousquet, L. Canioni, L. Sarger, Anal. Chem., 78, No. 5,1462-1469 (2006).


Review

For citations:


Yongcheng J., Jiang H., Benchi J., Dong L. ANALYSIS OF MANGANESE IN SOIL USING LASER-INDUCED BREAKDOWN SPECTROSCOPY. Zhurnal Prikladnoii Spektroskopii. 2017;84(1):120-126. (In Russ.)

Views: 307


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0514-7506 (Print)