Optics and Precision Engineering, Volume. 28, Issue 10, 2215(2020)

Design and application of miniature multi-parameter water quality sensor chip

WANG Xin1... SUN Li-ning1,2 and SHI Yun-bo1 |Show fewer author(s)
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    References(40)

    [1] [1] ZHOU B, BIAN C, TONG J H, et al.. Fabrication of a miniature multi-parameter sensor chip for water quality assessment[J]. Sensors, 2017, 17(1): 157.

              ZHOU B, BIAN C, TONG J H, et al.. Fabrication of a miniature multi-parameter sensor chip for water quality assessment[J]. Sensors, 2017, 17(1): 157.

    [2] [2] COTRUVO J A. 2017 WHO guidelines for drinking water quality: first addendum to the fourth edition[J]. Journal - American Water Works Association, 2017, 109(7): 44-51.

              COTRUVO J A. 2017 WHO guidelines for drinking water quality: first addendum to the fourth edition[J]. Journal - American Water Works Association, 2017, 109(7): 44-51.

    [3] [3] YUSOF K A, ABDUL RAHMAN R, ZULKEFLE M A, et al.. EGFET pH sensor performance dependence on sputtered TiO2Sensing membrane deposition temperature[J]. Journal of Sensors, 2016, 2016: 1-9.

              YUSOF K A, ABDUL RAHMAN R, ZULKEFLE M A, et al.. EGFET pH sensor performance dependence on sputtered TiO2Sensing membrane deposition temperature[J]. Journal of Sensors, 2016, 2016: 1-9.

    [4] [4] ALITALO A, KYR A, AURA E. Ammonia stripping of biologically treated liquid manure[J]. Journal of Environmental Quality, 2012, 41(1): 273-280.

              ALITALO A, KYR A, AURA E. Ammonia stripping of biologically treated liquid manure[J]. Journal of Environmental Quality, 2012, 41(1): 273-280.

    [5] [5] BIAN H M, BIAN CH, TONG J H, et al.. Ammonia nitrogen measurement system based on miniaturized ammonia sensing unit[J]. Chinese Journal of Scientific Instrument, 2011, 32(9): 1936-1940.(in Chinese)

              BIAN H M, BIAN CH, TONG J H, et al.. Ammonia nitrogen measurement system based on miniaturized ammonia sensing unit[J]. Chinese Journal of Scientific Instrument, 2011, 32(9): 1936-1940.(in Chinese)

    [7] [7] WEN Y Z, MAO Y F, KANG Z F, et al.. Application of an ammonium ion-selective electrode for the real-time measurement of ammonia nitrogen based on pH and temperature compensation[J]. Measurement, 2019, 137: 98-101.

              WEN Y Z, MAO Y F, KANG Z F, et al.. Application of an ammonium ion-selective electrode for the real-time measurement of ammonia nitrogen based on pH and temperature compensation[J]. Measurement, 2019, 137: 98-101.

    [8] [8] TAI H J, YANG Y T, LIU S Y, et al.. A review of measurement methods of Dissolved oxygen in water[J]. Computer and Computing Technologies in Agriculture V, 2012: DOI: 10.1007/978-3-642-27278-3_58.

              TAI H J, YANG Y T, LIU S Y, et al.. A review of measurement methods of Dissolved oxygen in water[J]. Computer and Computing Technologies in Agriculture V, 2012: DOI: 10.1007/978-3-642-27278-3_58.

    [9] [9] XU X L, JIA J B, YANG X R, et al.. One-step route to fabrication of Pd nanoparticles modified Au electrode and its electrocatalytic activity for Dissolved oxygen[J]. Chinese Journal of Analytical Chemistry, 2010, 38(12): 1687-1691.(in Chinese)

              XU X L, JIA J B, YANG X R, et al.. One-step route to fabrication of Pd nanoparticles modified Au electrode and its electrocatalytic activity for Dissolved oxygen[J]. Chinese Journal of Analytical Chemistry, 2010, 38(12): 1687-1691.(in Chinese)

    [10] [10] BHADRA S, TAN D S Y, THOMSON D J, et al.. A wireless passive sensor for temperature compensated remote pH monitoring[J]. IEEE Sensors Journal, 2013, 13(6): 2428-2436.

              BHADRA S, TAN D S Y, THOMSON D J, et al.. A wireless passive sensor for temperature compensated remote pH monitoring[J]. IEEE Sensors Journal, 2013, 13(6): 2428-2436.

    [11] [11] LI H Y, SHI A B, LI M Y, et al.. Effect of pH, temperature, dissolved oxygen, and flow rate of overlying water on heavy metals release from storm sewer sediments[J]. Journal of Chemistry, 2013, 2013: 1-11.

              LI H Y, SHI A B, LI M Y, et al.. Effect of pH, temperature, dissolved oxygen, and flow rate of overlying water on heavy metals release from storm sewer sediments[J]. Journal of Chemistry, 2013, 2013: 1-11.

    [13] [13] ESSOUSI H, BARHOUMI H, BIBANI M, et al.. Ion-imprinted electrochemical sensor based on copper nanoparticles-polyaniline matrix for nitrate detection[J]. Journal of Sensors, 2019, 2019: 1-14.

              ESSOUSI H, BARHOUMI H, BIBANI M, et al.. Ion-imprinted electrochemical sensor based on copper nanoparticles-polyaniline matrix for nitrate detection[J]. Journal of Sensors, 2019, 2019: 1-14.

    [14] [14] GHOLIVAND M B, HEYDARI H, ABDOLMALEKI A, et al.. Nanostructured CuO/PANI composite as supercapacitor electrode material[J]. Materials Science in Semiconductor Processing, 2015, 30: 157-161.

              GHOLIVAND M B, HEYDARI H, ABDOLMALEKI A, et al.. Nanostructured CuO/PANI composite as supercapacitor electrode material[J]. Materials Science in Semiconductor Processing, 2015, 30: 157-161.

    [15] [15] SEDIGHI A, MONTAZER M, MAZINANI S. Synthesis of wearable and flexible NiP0.1-SnOx/PANI/CuO/cotton towards a non-enzymatic glucose sensor[J]. Biosensors and Bioelectronics, 2019, 135: 192-199.

              SEDIGHI A, MONTAZER M, MAZINANI S. Synthesis of wearable and flexible NiP0.1-SnOx/PANI/CuO/cotton towards a non-enzymatic glucose sensor[J]. Biosensors and Bioelectronics, 2019, 135: 192-199.

    [16] [16] LEE J H, LIM T S, SEO Y, et al.. Needle-type dissolved oxygen microelectrode array sensors for in situ measurements[J]. Sensors and Actuators B: Chemical, 2007, 128(1): 179-185.

              LEE J H, LIM T S, SEO Y, et al.. Needle-type dissolved oxygen microelectrode array sensors for in situ measurements[J]. Sensors and Actuators B: Chemical, 2007, 128(1): 179-185.

    [17] [17] XU Z H, DONG Q C, OTIENO B, et al.. Real-time in situ sensing of multiple water quality related parameters using micro-electrode array (MEA) fabricated by inkjet-printing technology (IPT)[J]. Sensors and Actuators B: Chemical, 2016, 237: 1108-1119.

              XU Z H, DONG Q C, OTIENO B, et al.. Real-time in situ sensing of multiple water quality related parameters using micro-electrode array (MEA) fabricated by inkjet-printing technology (IPT)[J]. Sensors and Actuators B: Chemical, 2016, 237: 1108-1119.

    [18] [18] SEMWAL V, GUPTA B D. Highly sensitive surface plasmon resonance based fiber optic pH sensor utilizing rGO-Pani nanocomposite prepared by in situ method[J]. Sensors and Actuators B: Chemical, 2019, 283: 632-642.

              SEMWAL V, GUPTA B D. Highly sensitive surface plasmon resonance based fiber optic pH sensor utilizing rGO-Pani nanocomposite prepared by in situ method[J]. Sensors and Actuators B: Chemical, 2019, 283: 632-642.

    [19] [19] ZHYBAK M T, VAGIN M Y, BENI V, et al.. Direct detection of ammonium ion by means of oxygen electrocatalysis at a copper-polyaniline composite on a screen-printed electrode[J]. Microchimica Acta, 2016, 183(6): 1981-1987.

              ZHYBAK M T, VAGIN M Y, BENI V, et al.. Direct detection of ammonium ion by means of oxygen electrocatalysis at a copper-polyaniline composite on a screen-printed electrode[J]. Microchimica Acta, 2016, 183(6): 1981-1987.

    [20] [20] GIANNOPOULOU I, PANIAS D, PASPALIARIS I. Electrochemical modeling and study of copper deposition from concentrated ammoniacal sulfate solutions[J]. Hydrometallurgy, 2009, 99(1/2): 58-66.

              GIANNOPOULOU I, PANIAS D, PASPALIARIS I. Electrochemical modeling and study of copper deposition from concentrated ammoniacal sulfate solutions[J]. Hydrometallurgy, 2009, 99(1/2): 58-66.

    Tools

    Get Citation

    Copy Citation Text

    WANG Xin, SUN Li-ning, SHI Yun-bo. Design and application of miniature multi-parameter water quality sensor chip[J]. Optics and Precision Engineering, 2020, 28(10): 2215

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Apr. 30, 2020

    Accepted: --

    Published Online: Nov. 25, 2020

    The Author Email:

    DOI:10.37188/ope.20202810.2215

    Topics