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Combined Oxygen and Nitrous Oxide Microsensor for Denitrification Studies

机译:结合氧和氧化物微生物,用于反硝化研究

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The construction of a microsensor which can be used to measure O2 and N2O simultaneously is described. The microsensor exhibited a linear response to both O2 and N2O, and the response to N2O was independent of the O2 concentration and vice versa. The N2O detection limit of a microsensor with a tip diameter of 20 μm was around 1 μmol liter?1. The signals for O2 and N2O were affected by hydrogen sulfide, but other interfering agents were not observed in the biofilms and sediments analyzed. Microprofiles of O2 and N2O were measured in a biofilm which was exposed to acetylene to block the N2O reductase activity of denitrifying bacteria. O2 penetrated about 0.5 mm into the biofilm and was not affected by acetylene, but the N2O concentration at 1.4 mm depth increased from 32 to 411 μmol liter?1 after the addition of the inhibitor. The shape of the N2O profile after the addition of acetylene showed that denitrification (denitrifying activity) was detectable in all anoxic layers of the biofilm.
机译:描述了可同时用于测量O2和N2O的微传感器的结构。微传感器对O2和N2O的线性响应表现出对O2和N2O的线性响应,并且对N2O的响应与O 2浓度无关,反之亦然。尖端直径为20μm的微传感器的N2O检测极限为约1μmol升升。 O 2和N2O的信号受硫化氢的影响,但在分析的生物膜和沉积物中未观察到其他干扰剂。在生物膜下测量O 2和N 2 O的微碾压,其暴露于乙炔中以阻断反硝化细菌的N2O还原酶活性。 O2渗透到生物膜中约0.5mm,并不受乙炔的影响,但在添加抑制剂后,1.4mm深度的N 2 O浓度从32-411μmol升升1。在加入乙炔后,N2O曲线的形状表明,在生物膜的所有缺氧层中可检测到脱氮(反硝化活性)。

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