Aquafin NV, R&D, Dijkstraat 8, 2610, Aartselaar, Belgium.
Environ Sci Pollut Res Int. 2020 Jan;27(1):890-898. doi: 10.1007/s11356-019-07047-0. Epub 2019 Dec 9.
A liquid-phase nitrous oxide sensor can be used as a proxy to estimate the gas emissions. Experiments conducted in a pilot-scale Anammox reactor, at different degrees of aeration intermittency, indicate a predictive error in the range of 13.4-19.3% during the stripping phase, with a higher error range in the unaerated phases (23.4-62.8%). The total emissions not explained by the aerated model amounted to 14.1%. Only a negligible fraction (3.6%) of the total nitrous oxide emissions were not captured by the unaerated phase model, indicating thus a minor concern for full-scale application. A sensitivity analysis performed on the present study indicates that the quality of the nitrous oxide measurement is of extreme importance to decrease the load prediction uncertainty. Air flow measurement errors have lower impact on the overall load prediction. The financial attractivity of this monitoring approach is significant in completely mixed tank reactors. In presence of a multi-point analysis, and starting from two monitoring points, the financial interest deteriorates by the relatively short lifetime of the commercially available liquid-phase nitrous oxide sensor.
液相一氧化二氮传感器可用作估算气体排放的替代物。在不同曝气间歇性程度的中试规模厌氧氨氧化反应器中进行的实验表明,在吹脱阶段,预测误差在 13.4-19.3%范围内,未曝气阶段的误差范围更高(23.4-62.8%)。充气模型无法解释的总排放量为 14.1%。未充气阶段模型未捕获的总一氧化二氮排放量可忽略不计(3.6%),因此在大规模应用中无需过多担心。对本研究进行的敏感性分析表明,一氧化二氮测量的质量对于降低负荷预测的不确定性至关重要。空气流量测量误差对整体负荷预测的影响较小。在完全混合罐式反应器中,这种监测方法具有显著的经济吸引力。在多点分析的情况下,从两个监测点开始,由于市售液相一氧化二氮传感器的相对短寿命,经济利益会恶化。