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A Microsensor for Nitrate Based on Immobilized Denitrifying Bacteria

机译:固定化反硝化细菌的硝酸盐微传感器

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摘要

A biosensor for NO(inf3)(sup-) was constructed by attaching a 30- to 70-(mu)m-wide capillary with immobilized denitrifying bacteria in front of an N(inf2)O microsensor. These bacteria reduced O(inf2) so that only bacteria in the very tip of the sensor were exposed to O(inf2) whereas bacteria at a greater depth could carry out the anaerobic process of denitrification. In the presence of acetylene, which inhibits nitrous oxide reductase, bacteria reduced NO(inf3)(sup-) (or NO(inf2)(sup-)) from the surrounding medium to N(inf2)O and the concentration sensed by the N(inf2)O microsensor was directly proportional to the concentration of NO(inf3)(sup-) in the medium. By applying a 250-(mu)m-long capillary in front of the N(inf2)O microsensor, the 90% response time of the biosensor was 50 s. Biosensors may also be made with nitrous oxide-deficient strains so that acetylene inhibition can be omitted.
机译:NO(inf3)(sup-)的生物传感器是通过在N(inf2)O微型传感器前面连接宽30至70μm的固定有反硝化细菌的毛细管而构建的。这些细菌还原了O(inf2),因此只有传感器最末端的细菌才暴露于O(inf2),而更深层的细菌可以进行反硝化的厌氧过程。在乙炔的存在下,乙炔抑制一氧化二氮还原酶,细菌将周围介质中的NO(inf3)(sup-)(或NO(inf2)(sup-))还原为N(inf2)O,并由N感应到(inf2)O微型传感器与培养基中NO(inf3)(sup-)的浓度成正比。通过在N(inf2)O微型传感器前面应用250μm长的毛细管,生物传感器的90%响应时间为50 s。生物传感器也可以用一氧化二氮不足的菌株制成,从而可以省略乙炔的抑制作用。

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