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Monitoring of Nitrates and Phosphates in Wastewater: Current Technologies and Further Challenges


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E. Council, Directive 2000/60/EC of the European Parliament and of the Council of 23 October 2000 establishing a framework for Community action in the field of water policy, OJ L, 327 (2000) 1-73. Search in Google Scholar

O. Thomas, F. Théraulaz, V. Cerdà, D. Constant, P. Quevauviller, Wastewater quality monitoring, TrAC Trends in Analytical Chemistry, 16 (1997) 419-424. Search in Google Scholar

R.P. Schwarzenbach, B.I. Escher, K. Fenner, T.B. Hofstetter, C.A. Johnson, U. von Gunten, B. Wehrli, The Challenge of Micropollutants in Aquatic Systems, Science, 313 (2006) 10721077. Search in Google Scholar

M. Stuart, D. Lapworth, E. Crane, A. Hart, Review of risk from potential emerging contaminants in UK groundwater, Science of The Total Environment, 416 (2012) 1-21. Search in Google Scholar

S. Rodriguez-Mozaz, M.J. Lopez de Alda, D. Barceló, Advantages and limitations of on-line solid phase extraction coupled to liquid chromatography–mass spectrometry technologies versus biosensors for monitoring of emerging contaminants in water, Journal of Chromatography A, 1152 (2007) 97-115. Search in Google Scholar

C. Slater, J. Cleary, C.M. McGraw, W.S. Yerazunis, K.T. Lau, D. Diamond, Autonomous field-deployable device for the measurement of phosphate in natural water, in: V.-D. Tuan, A.L. Robert, G. Gunter (Eds.), SPIE, 2007, pp. 67550L.10.1117/12.733754 Search in Google Scholar

N. Al-Dasoqi, A. Mason, R. Alkhaddar, A. Al-Shamma’a, Use of Sensors in Wastewater Quality Monitoring - a Review of Available Technologies, in: I. R. Edward Beighley, W.K. Mark (Eds.) World Environmental and Water Resources Congress 2011: Bearing Knowledge for Sustainability ASCE, 2011, pp. 354. Search in Google Scholar

L. Gilbert, A.T.A. Jenkins, S. Browning, J.P. Hart, Development of an amperometric, screen-printed, single-enzyme phosphate ion biosensor and its application to the analysis of biomedical and environmental samples, Sensors and Actuators B: Chemical, 160 (2011) 1322-1327. Search in Google Scholar

M.M. Villalba, K.J. McKeegan, D.H. Vaughan, M.F. Cardosi, J. Davis, Bioelectroanalytical determination of phosphate: A review, Journal of Molecular Catalysis B: Enzymatic, 59 (2009) 1-8.10.1016/j.molcatb.2008.12.011 Search in Google Scholar

A. Amine, G. Palleschi, Phosphate, Nitrate, and Sulfate Biosensors, Analytical Letters, 37 (2004) 1-19. Search in Google Scholar

I.J. Allan, B. Vrana, R. Greenwood, G.A. Mills, J. Knutsson, A. Holmberg, N. Guigues, A.-M. Fouillac, S. Laschi, Strategic monitoring for the European Water Framework Directive, TrAC Trends in Analytical Chemistry, 25 (2006) 704-715.10.1016/j.trac.2006.05.009 Search in Google Scholar

I.J. Allan, B. Vrana, R. Greenwood, G.A. Mills, B. Roig, C. Gonzalez, A “toolbox” for biological and chemical monitoring requirements for the European Union’s Water Framework Directive, Talanta, 69 (2006) 302-322.10.1016/j.talanta.2005.09.04318970569 Search in Google Scholar

W. Bourgeois, J.E. Burgess, R.M. Stuetz, On-line monitoring of wastewater quality: a review, Journal of Chemical Technology & Biotechnology, 76 (2001) 337-348.10.1002/jctb.393 Search in Google Scholar

P.K. Varshney, Multisensor data fusion, Electronics & Communications Engineering Journal, 9 (1997) 245-253.10.1049/ecej:19970602 Search in Google Scholar

EnviroTech-Instruments, Reliable, Real-time Nitrate, Phosphate & Ammonia Monitoring Systems, http://www.envirotechinstruments.com, (2011). Search in Google Scholar

J. Cleary, D. Maher, C. Slater, D. Diamond, In situ monitoring of environmental water quality using an autonomous microfluidic sensor, in: 2010 IEEE Sensors Applications Symposium, SAS 2010, February 23, 2010 - February 25, 2010, IEEE Computer Society, Limerick, Ireland, 2010, pp. 36-40.10.1109/SAS.2010.5439385 Search in Google Scholar

E. Sten O, The phosphate sensor, Biosensors and Bioelectronics, 13 (1998) 981-994. Search in Google Scholar

M.G. Almeida, C.M. Silveira, J.J.G. Moura, Biosensing nitrite using the system nitrite redutase/Nafion/methyl viologen—A voltammetric study, Biosensors and Bioelectronics, 22 (2007) 2485-2492. Search in Google Scholar

L.F. Capitán-Vallvey, A.J. Palma, Recent developments in handheld and portable optosensing—A review, Analytica Chimica Acta, 696 (2011) 27-46. Search in Google Scholar

W.B. Lyons, H. Ewald, C. Flanagan, E. Lewis, A multi-point optical fibre sensor for condition monitoring in process water systems based on pattern recognition, Measurement, 34 (2003) 301-312. Search in Google Scholar

R.P. McCue, J.E. Walsh, F. Walsh, F. Regan, Modular fibre optic sensor for the detection of hydrocarbons in water, Sensors and Actuators, B: Chemical, 114 (2006) 438-444. Search in Google Scholar

A. Ahmad, A. Paschero, E. Moore, Amperometric immunosensors for screening of polycyclic aromatic hydrocarbons in water, in: 16th Conference in the Biennial Sensors and Their Applications, September 12, 2011 - September 14, 2011, Institute of Physics Publishing, Cork, Ireland, 2011. Search in Google Scholar

K. Arshak, O. Korostynska, Advanced materials and techniques for radiation dosimetry, Artech House, 2006. Search in Google Scholar

V. Velusamy, K. Arshak, O. Korostynska, K. Oliwa, C. Adley, An overview of foodborne pathogen detection: In the perspective of biosensors, Biotechnology Advances, 28 (2010) 232254. Search in Google Scholar

M.R. Ganjali, P. Norouzi, M. Ghomi, M. Salavati-Niasari, Highly selective and sensitive monohydrogen phosphate membrane sensor based on molybdenum acetylacetonate, Analytica Chimica Acta, 567 (2006) 196-201. Search in Google Scholar

T. Jianhua, B. Chao, L. Yang, B. Yin, X. Shanhong, Design of a MEMS-Based Total Phosphorus Sensor with a Microdigestion System, in: Bioinformatics and Biomedical Engineering (iCBBE), 2010 4th International Conference on, 2010, pp. 1-4. Search in Google Scholar

J.-H. Lee, T.-S. Lim, Y. Seo, P.L. Bishop, I. Papautsky, Needle-type dissolved oxygen microelectrode array sensors for in situ measurements, Sensors and Actuators B: Chemical, 128 (2007) 179-185. Search in Google Scholar

W.H. Lee, Y. Seo, P.L. Bishop, Characteristics of a cobalt-based phosphate microelectrode for in situ monitoring of phosphate and its biological application, Sensors and Actuators B: Chemical, 137 (2009) 121-128. Search in Google Scholar

D. Xiao, H.-Y. Yuan, J. Li, R.-Q. Yu, Surface-Modified Cobalt-Based Sensor as a Phosphate-Sensitive Electrode, Analytical Chemistry, 67 (1995) 288-291. Search in Google Scholar

W.H. Lee, J.H. Lee, P.L. Bishop, I. Papautsky, Biological Application of Micro-Electro Mechanical Systems Microelectrode Array Sensors for Direct Measurement of Phosphate in the Enhanced Biological Phosphorous Removal Process, Water Environ. Res., 81 (2009) 748-754. Search in Google Scholar

A. Jang, Z. Zou, K.K. Lee, C.H. Ahn, P.L. Bishop, State-of-the-art lab chip sensors for environmental water monitoring, Measurement Science and Technology, 22 (2011) 032001. Search in Google Scholar

M.A.M. Yunus, S. Mukhopadhyay, A. Punchihewa, Application of independent component analysis for estimating nitrate contamination in natural water sources using planar electromagnetic sensor, in: Sensing Technology (ICST), 2011 Fifth International Conference on, 2011, pp. 538-543.10.1109/ICSensT.2011.6137037 Search in Google Scholar

M.A.M. Yunus, S.C. Mukhopadhyay, Novel Planar Electromagnetic Sensors for Detection of Nitrates and Contamination in Natural Water Sources, Sensors Journal, IEEE, 11 (2011) 14401447. Search in Google Scholar

N. Al-Dasoqi, A. Mason, R. Alkhaddar, A. Shaw, A. Al-Shamma’a, Real-time nondestructive microwave sensor for nutrient monitoring in wastewater treatment, in: 16th Conference in the Biennial Sensors and Their Applications, September 12, 2011 - September 14, 2011, Institute of Physics Publishing, Cork, Ireland, 2011. Search in Google Scholar

B. Kapilevich, B. Litvak, Microwave sensor for accurate measurements of water solution concentrations, in: Microwave Conference, 2007. APMC 2007. Asia-Pacific, 2007, pp. 1-4.10.1109/APMC.2007.4554682 Search in Google Scholar

J.D. Boon, J.M. Brubaker, Acoustic-microwave water level sensor comparisons in an estuarine environment, in: OCEANS 2008, 2008, pp. 1-5.10.1109/OCEANS.2008.5151893 Search in Google Scholar

B. Jackson, T. Jayanthy, A novel method for water impurity concentration using microstrip resonator sensor, in: Recent Advances in Space Technology Services and Climate Change (RSTSCC), 2010, 2010, pp. 376-379.10.1109/RSTSCC.2010.5712872 Search in Google Scholar

C. Bernou, D. Rebière, J. Pistré, Microwave sensors: a new sensing principle. Application to humidity detection, Sensors and Actuators B: Chemical, 68 (2000) 88-93. Search in Google Scholar

T. Nacke, A. Barthel, C. Pflieger, U. Pliquett, D. Beckmann, A. Goller, Continuous process monitoring for biogas plants using microwave sensors, in: Electronics Conference (BEC), 2010 12th Biennial Baltic, 2010, pp. 239-242.10.1109/BEC.2010.5630738 Search in Google Scholar

O. Korostynska, A. Arshak, P. Creedon, K. Arshak, L. Wendling, A.I. Al-Shamma’a, S. O’Keeffe, Glucose monitoring using electromagnetic waves and microsensor with interdigitated electrodes, in: Sensors Applications Symposium, 2009. SAS 2009. IEEE, 2009, pp. 34-37.10.1109/SAS.2009.4801772 Search in Google Scholar

A. Mason, S. Wylie, A. Thomas, H. Keele, A. Shaw, A. Al-Shamma’a, HEPA Filter Material Load Detection Using a Microwave Cavity Sensor, International Journal on Smart Sensing and Intelligent Systems, 3 (2010) 16. Search in Google Scholar

B. O’Flynn, F. Regan, A. Lawlor, J. Wallace, J. Torres, C. O’Mathuna, Experiences and recommendations in deploying a real-time, water quality monitoring system, Measurement Science and Technology, 21 (2010) 124004. Search in Google Scholar

F. Regan, A. Lawlor, B.O. Flynn, J. Torres, R. Martinez-Catala, C. O’Mathuna, J. Wallace, A demonstration of wireless sensing for long term monitoring of water quality, in: Local Computer Networks, 2009. LCN 2009. IEEE 34th Conference on, 2009, pp. 819-825.10.1109/LCN.2009.5355047 Search in Google Scholar

B. O’Flynn, R. Martinez-Catala, S. Harte, C. O’Mathuna, J. Geary, C. Slater, F. Regan, D. Diamond, H. Murphy, SmartCoast: A Wireless Sensor Network for water quality monitoring, in: 32nd IEEE Conference on Local Computer Networks, LCN 2007, October 15, 2007 - October 18, 2007, IEEE Computer Society, Dublin, Ireland, 2007, pp. 815-816.10.1109/LCN.2007.34 Search in Google Scholar

J. Tschmelak, G. Proll, J. Riedt, J. Kaiser, P. Kraemmer, L. Bárzaga, J.S. Wilkinson, P. Hua, J.P. Hole, R. Nudd, M. Jackson, R. Abuknesha, D. Barceló, S. Rodriguez-Mozaz, M.J. López de Alda, F. Sacher, J. Stien, J. Slobodník, P. Oswald, H. Kozmenko, E. Korenková, L. Tóthová, Z. Krascsenits, G. Gauglitz, Automated Water Analyser Computer Supported System (AWACSS): Part II: Intelligent, remote-controlled, cost-effective, on-line, water-monitoring measurement system, Biosensors and Bioelectronics, 20 (2005) 1509-1519. Search in Google Scholar

I. Campos, R. Masot, M. Alcañiz, L. Gil, J. Soto, J.L. Vivancos, E. García-Breijo, R.H. Labrador, J.M. Barat, R. Martínez-Mañez, Accurate concentration determination of anions nitrate, nitrite and chloride in minced meat using a voltammetric electronic tongue, Sensors and Actuators B: Chemical, 149 (2010) 71-78. Search in Google Scholar

E. Garcia-Breijo, J. Atkinson, J. Garrigues, L. Gil, J. Ibanez, M. Glanc, C. Olguin, An electronic tongue for monitoring drinking waters using a fuzzy ARTMAP neural network implemented on a microcontroller, in: Industrial Electronics (ISIE), 2011 IEEE International Symposium on, 2011, pp. 1270-1275.10.1109/ISIE.2011.5984341 Search in Google Scholar

M. Hong, W. Zhong, J. Jiyong, G. Zhongnian, W. Ping, Electronic tongue analysis system for detection of heavy metal, in: Control and Decision Conference, 2008. CCDC 2008. Chinese, 2008, pp. 1768-1771. Search in Google Scholar

P.K. Kundu, A. Chatterjee, P.C. Panchariya, Electronic Tongue System for Water Sample Authentication: A Slantlet-Transform-Based Approach, Instrumentation and Measurement, IEEE Transactions on, 60 (2011) 1959-1966.10.1109/TIM.2011.2115410 Search in Google Scholar

M. Lindquist, P. Wide, New sensor system for drinking water quality, in: Sensors for Industry Conference, 2004. Proceedings the ISA/IEEE, 2004, pp. 30-34. Search in Google Scholar

A. Scozzari, P. Wide, The Process from a Redundant and General Sensor Concept - Towards an Optimal Sensor Strategy for the Assessment of Drinking Water Quality, in: Instrumentation and Measurement Technology Conference Proceedings, 2008. IMTC 2008. IEEE, 2008, pp. 836841.10.1109/IMTC.2008.4547153 Search in Google Scholar

X. Qin, F. Gao, G. Chen, Wastewater quality monitoring system using sensor fusion and machine learning techniques, Water Research, 46 (2012) 1133-1144. Search in Google Scholar

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