以罗丹明B肼为化学传感器的连续流系统测量环境氮氧化物[NO + NO2]。

Analytical Chemistry Insights Pub Date : 2014-08-17 eCollection Date: 2014-01-01 DOI:10.4137/ACI.S16890
Pandurangappa Malingappa, Venkataramanappa Yarradoddappa
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引用次数: 1

摘要

一种新的化学传感器已被用于监测大气中十亿分之一(ppb)水平的氮氧化物[NO + NO2]。它是基于氮氧化物与罗丹明B酰肼(RBH)的催化反应,通过水解分子的酰胺键生成有色化合物。一种简单的比色计被用来监测大气中ppb水平的二氧化氮。空气样品通过含有RBH溶液的取样试管通过蠕动泵进行净化。该方法已成功地应用于城市范围内交通枢纽环境二氧化氮水平的监测,并与标准的Griess-Ilosvay方法进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Continuous Flow System for the Measurement of Ambient Nitrogen Oxides [NO + NO2] Using Rhodamine B Hydrazide as a Chemosensor.

A Continuous Flow System for the Measurement of Ambient Nitrogen Oxides [NO + NO2] Using Rhodamine B Hydrazide as a Chemosensor.

A Continuous Flow System for the Measurement of Ambient Nitrogen Oxides [NO + NO2] Using Rhodamine B Hydrazide as a Chemosensor.

A Continuous Flow System for the Measurement of Ambient Nitrogen Oxides [NO + NO2] Using Rhodamine B Hydrazide as a Chemosensor.

A new chemosensor has been used to monitor atmospheric nitrogen oxides [NO + NO2] at parts per billion (ppb) level. It is based on the catalytic reaction of nitrogen oxides with rhodamine B hydrazide (RBH) to produce a colored compound through the hydrolysis of the amide bond of the molecule. A simple colorimeter has been used to monitor atmospheric nitrogen dioxide at ppb level. The air samples were purged through a sampling cuvette containing RBH solution using peristaltic pump. The proposed method has been successfully applied to monitor the ambient nitrogen dioxide levels at traffic junction points within the city limits and the results obtained are compared with the standard Griess-Ilosvay method.

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