Article ID Journal Published Year Pages File Type
4438395 Atmospheric Environment 2013 7 Pages PDF
Abstract

Ammonia is a major air pollutant emitted from agricultural practices. Sources of ammonia include manure from animal feeding operations and fertilizer from cropping systems. Sensor technologies with capability of continuous real time monitoring of ammonia concentration in air are needed to qualify ammonia emissions from agricultural activities and further evaluate human and animal health effects, study ammonia environmental chemistry, and provide baseline data for air quality standard. We have developed fiber optic ammonia sensors using different sensing reagents and different polymers for immobilizing sensing reagents. The reversible fiber optic sensors have detection limits down to low ppbv levels. The response time of these sensors ranges from seconds to tens minutes depending on transducer design. In this paper, we report our results in the development and evaluation of fiber optic sensor technologies for air quality monitoring. The effect of change of temperature, humidity and carbon dioxide concentration on fiber optic ammonia sensors has been investigated. Carbon dioxide in air was found not interfere the fiber optic sensors for monitoring NH3. However, the change of humidity can cause interferences to some fiber optic NH3 sensors depending on the sensor's transducer design. The sensitivity of fiber optic NH3 sensors was found depends on temperature. Methods and techniques for eliminating these interferences have been proposed.

► Optical fiber NH3 sensors have been developed. ► The feasibility of using the sensors for air quality monitoring has been investigated. ► The sensors are reversible, can be used for continuous monitoring NH3 in air. ► The sensors are highly sensitive, can detect NH3 in ppbv level. ► Cross responses of the sensors to moisture, CO2 and temperature change have been investigated.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Atmospheric Science
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