All of the polymer films on a set of electrodes (sensors:所有在一组电极的聚合物薄膜(传感器课件.ppt
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1、All of the polymer films on a set of electrodes(sensors)start out at a measured resistance,their baseline resistance.If there has been no change in the composition of the air,the films stay at the baseline resistance and the percent change is zero,BASELINE RESISTANCE,If a different compound had caus
2、ed the air to change,the pattern of the polymer films change would have been different:,Each polymer changes its size,and therefore its resistance,by a different amount,making a pattern of the change,THE ELECTRONIC NOSE SMELLS SOMETHING,Sistema desarrollado por NASA para los shuttles,etc.,The electr
3、onic nose consists of two components,an array of chemical sensors(usually gas sensors)and(2)a pattern-recognition algorithm.The sensor array sniffs the vapors from a sample and provides a set of measurements;the pattern-recognizer compares the pattern of the measurements to stored patterns for known
4、 materials.Gas sensors tend to have very broad selectivity,responding to many different substances.This is a disadvantage in most applications,but in the electronic nose,it is a definite advantage.Although every sensor in an array may respond to a given chemical,these responses will usually be diffe
5、rent.Figure 1 shows sets of responses of a typical sensor array to different pure chemicals:,Problems Where the E-Nose Can HelpThe E-Nose is best suited for matching complex samples with subjective endpoints such as odor or flavor.For example,when has milk turned sour?Or,when is a batch of coffee be
6、ans optimally roasted?The E-Nose can match a set of sensor responses to a calibration set produced by the human taste panel or olfactory panel routinely used in food science.The E-Nose is especially useful where consistent product quality has to be maintained over long periods of time,or where repea
7、ted exposure to a sample poses a health risk to the human olfactory panel.Although the E-Nose is also effective for pure chemicals,conventional methods are often more practical.,Project:Headspace Analysis of Cultures of E.coliSamples were taken from a growing culture of E.coli until stationary phase
8、 was reached.Cells were filtered from the samples,and the filtrates were sealed into autosampler vials.The samples were measured on the MOSES II Electronic Nose(Lennartz Electronic GmbH)using metal-oxide and quartz-microbalance sensors.The pattern recognition algorithm was able to distinguish sample
9、s of E coli-altered growth medium after 5 hours.Continued work will emphasize sampling and sensor array improvements to increase the sensitivity of detection.,Problems That the E-Nose Does Best:Identification of spilled chemicals in commerce(for U.S.Coast Guard).Quality classification of stored grai
10、n.Water and wastewater analysis.Identification of source and quality of coffee.Monitoring of roasting process.Rancidity measurements of olive oil(due to accumulation of short-chain aldehydes).Detection and diagnosis of pulmonary infections(e.g.,TB or pneumonia).Diagnosis of ulcers by breath tests.Fr
11、eshness of fish.Process control of cheese,sausage,beer,and bread manufacture.Bacterial growth on foods such as meat and fresh vegetables.,Figure 2.Principal component plot of sensor array data from headspace samples of nutrient broth in which E.coli had been grown for various periods of time.Include
12、d is a data set(No growth)in which the medium was inoculated with nonviable bacteria;no growth was observed over the course of the experiment.,Sensors As indicated in the accompanying table,each manufacturer uses its own proprietary sensor technology.The type of sensors and how the sensors are made
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- All of the polymer films on set electrodes sensors:所有在一组电极的聚合物薄膜传感器课件 sensors 所有 一组 电极 聚合物 薄膜 传感器 课件
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