Evaluation of a Solid-State Electrode for the Rapid Detection of Soil Nitrate-Nitrogen

Article Preview

Abstract:

In recent years, the prolific usage of nitrogenous fertilizers in the agricultural area of China has resulted in inefficient nitrogen usage, environmental pollution and the degradation of the soil fertility. As such, a rapid, low-cost and reliable soil detection method is urgently needed. This study reported on the laboratory evaluation of a solid-state ion-selective electrode, based on a nitrate doped polypyrrole polymer (PPy(NO3-)), for the simultaneous detection of soil nitrate-nitrogen. The potentiometric slope of these PPy(NO3-) electrodes for nitrate was found to be -(53.3±0.8) mV/decade over a linear range of three decades of concentration 10-4~10-1mol/L. It was also found that these electrodes had a nitrate detection limit of 5.0 ×10-5 mol/L. Impacts of soil extractant conditions were also tested. The electrodes displayed better performances for nitrate solutions with pH lower than 7.0. The potentiometric responses of electrodes exhibited a negative drift tendency of 0.6 mV/°C, which was probably caused by changes of the polymer morphology and the solution ionic activity. In order to reduce the interferences of coexisting anion, deionized water was chosen as soil extractant. It is shown that a fast determination of soil nitrate levels for site-specific control of fertilizer application could be realized using the PPy(NO3-) electrodes together with an automatic fluidic control system.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

96-101

Citation:

Online since:

December 2011

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] D.Q. Lv, Y.N. Dong, B.H. Sun and E. Ove. Plant Nutr. and Fert. Sci.. Vol. 4(1998), P. 8 - 15.

Google Scholar

[2] W.L. Zhang, Z. X. Tian, N. Zhang and X.Q. Li. Plant Nutr. and Fert. Sci.. Vol. 1(1995), pp.80-87.

Google Scholar

[3] Y.L. Bai, L.P. Yang and J.Y. Jin: Principle and Practice of Soil testing and fertilizer recommendation (China Agricultural Press, BJ, China 2007).

Google Scholar

[4] R.H. Gelderman and D. Beegle, in: Recommended chemical soil test procedures for the North Central Region, edited by North Central Regional Research Publication, Missouri, USA(2011).

Google Scholar

[5] R. Jiang, Y.E. Jin and G.Q. Wang. Anal. Ins.. Vol. 1(2003), pp.29-31.

Google Scholar

[6] V.S. Joseph, F. Daniel and C. Oliver. Comp. and Elec.s in Ag.. Vol. 70(2010), pp.1-18.

Google Scholar

[7] G.J. Moody, J.D.R. Thomas and J.M. Slater. Analyst.. Vol. 113(1988), pp.1703-1707.

Google Scholar

[8] J.B. Allen and R.F. Larry: Electrochemical Methods: Fundamentals and Applications (John Wiley and Sons Ltd, NY, USA, 2001).

Google Scholar

[9] J.H. Lin, M.H. Wang and Y.E. Zhang. Lec. Series on Comp. and Computational Sci.. Vol. 3(2007), pp.413-416.

Google Scholar

[10] D.M. Roland, C. Graeme and P. Bobby. Electroanal.. Vol. 19-20(2007), pp.1987-2001.

Google Scholar

[11] S.H. Richard and G.B. Leonidas. Anal. Chem.. Vol. 10(1995), pp.1654-1660.

Google Scholar

[12] V.M. Jovanović, L.J. Markičević, S. Stanković, R. Stanković, and M.S. Jovanović. Electroanal.. Vol. 7(1995), pp.574-578.

DOI: 10.1002/elan.1140070613

Google Scholar

[13] A.A.R. Giaan, E.P.P. Manuel and T.R.S. María. Anal. and Bioanal. Chem.. Vol. 387(2007), pp.1533-1541.

Google Scholar

[14] A.Reza. E-J. of Chem., Vol. 3(2006), pp.186-201.

Google Scholar

[15] J. Bobacka, Z. Gao, A. Ivaska and A. Lewenstam. J. Electroanal. Chem.. Vol. 386(1994), pp.33-41.

Google Scholar

[16] S. Saïd, S. Philippe, B. Nancy, and S. Guillaume. Chem. Soc. Rev.. Vol. 29 (2000), pp.283-293.

Google Scholar

[17] Y.F. Li. Polymer Bulletin. Vol. 4(2005), pp.51-57.

Google Scholar

[18] T.A. Bendikov, J. Kim and T.C. Harmon. Sens. and Actu. B. Vol. 106(2005), pp.512-517.

Google Scholar

[19] M. Zhang: Rapid detection of Soil Nitrate-Nitrogen based on Electrochemical Principles. (Ph.D. Dissertation, China Agricultural University, BJ, 2009).

Google Scholar

[20] X.L. Zhang and J. Tian. Chinese J. of Sen. and Actu.. Vol. 19(2006), pp.309-312, 317.

Google Scholar

[21] X.P. Mo, J.X. Wang, S.Y. Wang, and S.C. Wang. Chem.. Vol. 68(2005), pp.918-922.

Google Scholar

[22] P.B. Richard and L. Erno. Pure and App. Chem.. Vol. 66(1994), pp.2527-2536.

Google Scholar

[23] M. Zhang, S.S. Ang, V.C. Nguyen, and L. Li. Trans. of the CSAE. Vol. 25(2009), pp.235-239.

Google Scholar

[24] L.P. Li, J.B. Zhang, W.Q. Xing, J. Zhang, and X.L. Xin. Soil. Vol. 36(2004), pp.243-250.

Google Scholar