A Rapid In Situ Monitoring System for the Determination of Total Phosphorus in Waters

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Abstract:

Total phosphorus is an much important key water quality parameter . In view of the technical defects of existing detection methods and instruments for in situ monitoring total phosphorus, a new detection method based on ultrasonic assisted sample digestion and spectrum analysis was put forward in this paper, and the automatic monitoring system prototype based on such detection method had been developed. Aiming at wastewater treatment, the spot experiment had been carried out to contrast prototype with Chinas national standard analysis method for on line measuring total phosphorus in the water, and the results of the comparative experiment showed that the automatic monitoring instrument prototypes had good repeatability (10%) and high accuracy (±10%), which met the technical qualifications of Chinas environmental protection industry standards.

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Periodical:

Advanced Materials Research (Volumes 779-780)

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1526-1531

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September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] B. Shyla, Mahadevaiah, G. Nagendrappa, Spectrochimica Acta Part A78(2011)497.

Google Scholar

[2] Michael V. Storey, WATER RESEARCH45(2011)741.

Google Scholar

[3] Brady S. Gentle, Peter S. Ellis, Analytica Chimica Acta674(2010)117.

Google Scholar

[4] Zhang, Shanqing; Li, Lihong, Sensors and Actuators141(2009)634.

Google Scholar

[5] G. Schwotzer, H. Lehmann, WATER RESEARCH45(2011)1423.

Google Scholar

[6] P. Hrynczyszyn, A. Jastrzebska, Analytica Chimica Acta673(2010)73.

Google Scholar

[7] B. Shyla, Mahadevaiah, G. Nagendrappa, Spectrochimica Acta Part A78(2011)497.

Google Scholar

[8] O. Toole, Analytica chimica597(2007)290.

Google Scholar

[9] Dong, Mei Mei, Mezyk, Stephen P, Environmental Science and Technology44(2011)5714.

Google Scholar

[10] ZHANG, Bo-Tao; ZHAO, Li-Xia, Journal of Environmental Sciences20(2008)1006.

Google Scholar

[11] Real, Francisco J; Acero, Juan L, Chemical Engineering Journal160(2010)72.

Google Scholar

[12] Claudia E. Domini, Ultrasonics Sonochemistry16(2009) 686.

Google Scholar

[13] Pentti Pirkonen, Ultrasonics Sonochemistry12(2005)115.

Google Scholar

[14] Fernanda V.M. Pontes, Bruna A. de O. Mendes, Analytica Chimica Acta 659(2010)55.

Google Scholar