Electrochemical nitrite sensing for urine nitrification
We found that the influences of various ambient conditions, such as temperature, pH, electric conductivity and aeration rate, in the ranges expected in urine nitrification systems, are negligible. For low nitrite concentrations, as expected in municipal wastewater treatment, the tested amperometric...
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2021
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oai:localhost:DHTL-104632021-01-22T04:16:28Z Electrochemical nitrite sensing for urine nitrification Britschgi, L. Villez,, K. Schrems, P. Udert, K.M. Continuous measurement In-situ measurement Electrochemical measurement Amperometric sensor Critical nitrite concentration Nitrite measurement We found that the influences of various ambient conditions, such as temperature, pH, electric conductivity and aeration rate, in the ranges expected in urine nitrification systems, are negligible. For low nitrite concentrations, as expected in municipal wastewater treatment, the tested amperometric nitrite sensor was not sufficiently sensitive. Nevertheless, the sensor delivered reliable measurements for nitrite concentrations of 5–50 mgN/L or higher. This means that the amperometric nitrite sensor allows detection of critical nitrite concentrations without difficulty in high-strength nitrogen conversion processes, such as the nitrification of human urine. https://www.sciencedirect.com/science/article/pii/S2589914720300153 2021-01-22T04:16:28Z 2021-01-22T04:16:28Z 2020 BB 2589-9147 http://tailieuso.tlu.edu.vn/handle/DHTL/10463 en Water Research X, Volume 9, 1 December 2020, 100055 |
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Trường Đại học Thủy Lợi |
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English |
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Continuous measurement In-situ measurement Electrochemical measurement Amperometric sensor Critical nitrite concentration Nitrite measurement |
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Continuous measurement In-situ measurement Electrochemical measurement Amperometric sensor Critical nitrite concentration Nitrite measurement Britschgi, L. Electrochemical nitrite sensing for urine nitrification |
description |
We found that the influences of various ambient conditions, such as temperature, pH, electric conductivity and aeration rate, in the ranges expected in urine nitrification systems, are negligible. For low nitrite concentrations, as expected in municipal wastewater treatment, the tested amperometric nitrite sensor was not sufficiently sensitive. Nevertheless, the sensor delivered reliable measurements for nitrite concentrations of 5–50 mgN/L or higher. This means that the amperometric nitrite sensor allows detection of critical nitrite concentrations without difficulty in high-strength nitrogen conversion processes, such as the nitrification of human urine. |
author2 |
Villez,, K. |
author_facet |
Villez,, K. Britschgi, L. |
format |
BB |
author |
Britschgi, L. |
author_sort |
Britschgi, L. |
title |
Electrochemical nitrite sensing for urine nitrification |
title_short |
Electrochemical nitrite sensing for urine nitrification |
title_full |
Electrochemical nitrite sensing for urine nitrification |
title_fullStr |
Electrochemical nitrite sensing for urine nitrification |
title_full_unstemmed |
Electrochemical nitrite sensing for urine nitrification |
title_sort |
electrochemical nitrite sensing for urine nitrification |
publishDate |
2021 |
url |
http://tailieuso.tlu.edu.vn/handle/DHTL/10463 |
work_keys_str_mv |
AT britschgil electrochemicalnitritesensingforurinenitrification |
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