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首页> 外文期刊>Atmospheric Measurement Techniques >Use of a heated graphite scrubber as a means of reducing interferences in UV-absorbance measurements of atmospheric ozone
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Use of a heated graphite scrubber as a means of reducing interferences in UV-absorbance measurements of atmospheric ozone

机译:使用加热的石墨洗涤器作为减少紫外线吸收测量的干扰的方法

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A new solid-phase scrubber for use in conventional ozone (O-3) photometers was investigated as a means of reducing interferences from other UV-absorbing species and water vapor. It was found that when heated to 100-130 degrees C, a tubular graphite scrubber efficiently removed up to 500 ppb ozone and ozone monitors using the heated graphite scrubber were found to be less susceptible to interferences from water vapor, mercury vapor, and aromatic volatile organic compounds (VOCs) compared to conventional metal oxide scrubbers. Ambient measurements from a graphite scrubber-equipped photometer and a co-located Federal equivalent method (FEM) ozone analyzer showed excellent agreement over 38 days of measurements and indicated no loss in the scrubber's ability to remove ozone when operated at 130 degrees C. The use of a heated graphite scrubber was found to reduce the interference from mercury vapor to <= 3% of that obtained using a packed-bed Hopcalite scrubber. For a series of substituted aromatic compounds (ranging in volatility and absorption cross section at 253.7 nm), the graphite scrubber was observed to consistently exhibit reduced levels of interference, typically by factors of 2.5 to 20 less than with Hopcalite. Conventional solid-phase scrubbers also exhibited complex VOC adsorption and desorption characteristics that were dependent upon the relative humidity (RH), volatility of the VOC, and the available surface area of the scrubber. This complex behavior involving humidity is avoided by use of a heated graphite scrubber. These results suggest that heated graphite scrubbers could be substituted in most ozone photometers as a means of reducing interferences from other UV-absorbing species found in the atmosphere. This could be particularly important in ozone monitoring for compliance with the United States (U.S.) Clean Air Act or for use in VOC-rich environments such as in smog chambers and monitoring indoor air quality.
机译:研究了用于常规臭氧(O-3)光度计的新的固相洗涤器作为减少来自吸收物质和水蒸气的干扰的手段。发现当加热至100-130℃时,使用加热的石墨洗涤器有效地除去电管状石墨洗涤器,得到高达500ppb的臭氧和臭氧显示器,以易于来自水蒸气,汞蒸气和芳族挥发性的干扰易感与常规金属氧化物洗涤器相比有机化合物(VOC)。石墨储荷器的环境测量和配备的光度计和共同定位的联邦等效方法(FEM)臭氧分析仪在38天的测量中显示出优异的一致性,并在洗涤器中显示出在130摄氏度时操作的臭氧的能力没有损失。使用发现了一种加热的石墨洗涤器,从而将汞蒸汽的干扰减少到使用填充床霍甲酸酯洗涤器获得的汞蒸汽的干扰。对于一系列取代的芳族化合物(在253.7nm处的挥发性横截面中的范围)中,观察石墨清洗剂以始终表现出降低的干扰水平,通常通过比Hopcalite小的2.5〜20的因素。常规的固相洗涤器还表现出复杂的VOC吸附和解吸特性,其取决于相对湿度(RH),VOC的挥发性和洗涤器的可用表面积。通过使用加热的石墨洗涤器,避免了涉及湿度的这种复杂的行为。这些结果表明,加热的石墨洗涤器可以在大多数臭氧的光度计中被取代,作为减少在大气中发现的其他UV吸收物种的干扰。这在臭氧监测中可能尤为重要,以符合美国(美国)清洁空气行为或用于富含VOC的环境,例如烟雾室和监测室内空气质量。

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