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1.
Water Res ; 88: 575-585, 2016 Jan 01.
Article in English | MEDLINE | ID: mdl-26558709

ABSTRACT

In this study, N2O formation and emissions from a full-scale partial nitritation (SHARON) reactor were identified through a three-weeks monitoring campaign during which the off-gas was analysed for N2O, O2, CO2 and NO. The overall N2O emission was 3.7% of the incoming ammonium load. By fitting the N2O emission to a theoretical gas stripping profile, the N2O emissions could be assigned to aerobically formed N2O and N2O formed under anoxic conditions. This was further substantiated by liquid N2O measurements. Under standard operation, 70% of the N2O emission was attributed to anoxic N2O formation. Dedicated experiments revealed that low dissolved oxygen concentrations (<1.0 gO2·m(-3)) and longer anoxic periods resulted in an increased N2O emission. Minimising or avoiding anoxic conditions has the highest effect in lowering the N2O emissions. As an additional result, the use of the off-gas N2O concentration measurements to monitor the gas-liquid mass transfer rate coefficient (kLa) during dynamic reactor operation was demonstrated.


Subject(s)
Air Pollutants/analysis , Bioreactors , Nitrification , Nitrous Oxide/metabolism , Waste Disposal, Fluid/methods , Ammonium Compounds/analysis , Waste Disposal, Fluid/instrumentation
2.
Environ Technol ; 36(13-16): 1680-90, 2015.
Article in English | MEDLINE | ID: mdl-25573615

ABSTRACT

Nitrous oxide emissions from wastewater treatment plants are currently measured by online gas phase analysis or grab sampling from the liquid phase. In this study, a novel method is presented to monitor the liquid phase N2O concentration for aerated as well as non-aerated conditions/reactors, following variations both in time and in space. The monitoring method consists of a gas stripping device, of which the measurement principle is based on a continuous flow of reactor liquid through a stripping flask and subsequent analysis of the N2O concentration in the stripped gas phase. The method was theoretically and experimentally evaluated for its fit for use in the wastewater treatment context. Besides, the influence of design and operating variables on the performance of the gas stripping device was addressed. This method can easily be integrated with online off-gas measurements and allows to better investigate the origin of the gas emissions from the treatment plant. Liquid phase measurements of N2O are of use in mitigation of these emissions. The method can also be applied to measure other dissolved gasses, such as methane, being another important greenhouse gas.


Subject(s)
Air Pollutants/analysis , Algorithms , Nitrous Oxide/analysis , Wastewater/analysis , Water Purification/instrumentation , Equipment Design , Equipment Failure Analysis , Online Systems , Wastewater/chemistry
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