In Situ Ammonium Profiling Using Solid-Contact Ion-Selective Electrodes in Eutrophic Lakes
A promising profiling setup for in situ measurements in lakes with potentiometric solid-contact ion-selective electrodes (SC-ISEs) and a data processing method for sensor calibration and drift correction are presented. The profiling setup consists of a logging system, which is equipped with a syring...
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Published in | Analytical chemistry (Washington) Vol. 87; no. 24; pp. 11990 - 11997 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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United States
American Chemical Society
15.12.2015
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Abstract | A promising profiling setup for in situ measurements in lakes with potentiometric solid-contact ion-selective electrodes (SC-ISEs) and a data processing method for sensor calibration and drift correction are presented. The profiling setup consists of a logging system, which is equipped with a syringe sampler and sensors for the measurement of standard parameters including temperature, conductivity, oxygen and photosynthetically active radiation (PAR). The setup was expanded with SC-ISEs in galvanically separated amplifiers. The potential for high-resolution profiling is investigated by deploying the setup in the eutrophic Lake Rotsee (Lucerne, Switzerland), using two different designs of ammonium sensing SC-ISEs. Ammonium was chosen as a target analyte, since it is the most common reduced inorganic nitrogen species involved in various pathways of the nitrogen cycle and is therefore indicative of numerous biogeochemical processes that occur in lakes such as denitrification and primary production. One of the designs, which uses a composite carbon-nanotube–PVC-based membrane, suffered from sulfide poisoning in the deeper, sulfidic regions of the lake. In contrast, electrodes containing a plasticizer-free methacrylate copolymer-based sensing layer on top of a conducting polymer layer as a transducer did not show this poisoning effect. The syringe samples drawn during continuous profiling were utilized to calibrate the electrode response. Reaction hotspots and steep gradients of ammonium concentrations were identified on-site by monitoring the electrode potential online. Upon conversion to high-resolution concentration profiles, fine scale features between the calibration points were displayed, which would have been missed by conventional limnological sampling and subsequent laboratory analyses. Thus, the presented setup with SC-ISEs tuned to analytes of interest can facilitate the study of biogeochemical processes that occur at the centimeter scale. |
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AbstractList | A promising profiling setup for in situ measurements in lakes with potentiometric solid-contact ion-selective electrodes (SC-ISEs) and a data processing method for sensor calibration and drift correction are presented. The profiling setup consists of a logging system, which is equipped with a syringe sampler and sensors for the measurement of standard parameters including temperature, conductivity, oxygen and photosynthetically active radiation (PAR). The setup was expanded with SC-ISEs in galvanically separated amplifiers. The potential for high-resolution profiling is investigated by deploying the setup in the eutrophic Lake Rotsee (Lucerne, Switzerland), using two different designs of ammonium sensing SC-ISEs. Ammonium was chosen as a target analyte, since it is the most common reduced inorganic nitrogen species involved in various pathways of the nitrogen cycle and is therefore indicative of numerous biogeochemical processes that occur in lakes such as denitrification and primary production. One of the designs, which uses a composite carbon-nanotube-PVC-based membrane, suffered from sulfide poisoning in the deeper, sulfidic regions of the lake. In contrast, electrodes containing a plasticizer-free methacrylate copolymer-based sensing layer on top of a conducting polymer layer as a transducer did not show this poisoning effect. The syringe samples drawn during continuous profiling were utilized to calibrate the electrode response. Reaction hotspots and steep gradients of ammonium concentrations were identified on-site by monitoring the electrode potential online. Upon conversion to high-resolution concentration profiles, fine scale features between the calibration points were displayed, which would have been missed by conventional limnological sampling and subsequent laboratory analyses. Thus, the presented setup with SC-ISEs tuned to analytes of interest can facilitate the study of biogeochemical processes that occur at the centimeter scale. |
Author | Bakker, Eric Athavale, Rohini Kokorite, Ilga Dinkel, Christian Brand, Andreas Crespo, Gastón A Wehrli, Bernhard |
AuthorAffiliation | Institute of Biology University of Latvia Institute of Biogeochemistry and Pollutant Dynamics Department of Inorganic and Analytical Chemistry University of Geneva Faculty of Geography and Earth Sciences Department of Surface Waters Research and Management ETH Zurich Eawag−Swiss Federal Institute of Aquatic Science and Technology |
AuthorAffiliation_xml | – name: Department of Surface Waters Research and Management – name: Institute of Biogeochemistry and Pollutant Dynamics – name: ETH Zurich – name: Eawag−Swiss Federal Institute of Aquatic Science and Technology – name: Institute of Biology – name: University of Geneva – name: Department of Inorganic and Analytical Chemistry – name: Faculty of Geography and Earth Sciences – name: University of Latvia |
Author_xml | – sequence: 1 givenname: Rohini surname: Athavale fullname: Athavale, Rohini – sequence: 2 givenname: Ilga surname: Kokorite fullname: Kokorite, Ilga – sequence: 3 givenname: Christian surname: Dinkel fullname: Dinkel, Christian – sequence: 4 givenname: Eric surname: Bakker fullname: Bakker, Eric – sequence: 5 givenname: Bernhard surname: Wehrli fullname: Wehrli, Bernhard – sequence: 6 givenname: Gastón A surname: Crespo fullname: Crespo, Gastón A email: Gaston.Crespo@unige.ch – sequence: 7 givenname: Andreas surname: Brand fullname: Brand, Andreas email: andreas.brand@eawag.ch |
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SubjectTerms | Ammonia Ammonium Compounds - analysis Ammonium Compounds - chemistry Calibration Design analysis Design engineering Detection Electrodes Environmental Monitoring - instrumentation Environmental Monitoring - methods Eutrophication Freshwater Ion-Selective Electrodes Ions Lakes Lakes - chemistry Profiling Sensors Sulfides - analysis Syringes |
Title | In Situ Ammonium Profiling Using Solid-Contact Ion-Selective Electrodes in Eutrophic Lakes |
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