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Semicontinuous Automated Measurement of Organic Carbon in Atmospheric Aerosol Samples

机译:半连续自动测量大气气溶胶样品中的有机碳

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A fully automated measurement system for ambient aerosol organic carbon, capable of unattended operation over extended periods, is described. Particles are collected in a cyclone with water as the collection medium. The collected sample is periodically aspirated by a syringe pump into a holding loop and then delivered to a wet oxidation reactor (WOR). Acid is added, and the WOR is purged to measure dissolved CO_(2) or inorganic carbonates (IC) as evolved CO_(2). The IC background can often be small and sufficiently constant to be corrected for, without separate measurement, by a blank subtraction. The organic material is now oxidized stepwise or in one step to CO_(2). The one-step oxidation involves UV-persulfate treatment in the presence of ozone. This treatment converts organic carbon (OC) to CO_(2), but elemental carbon is not oxidized. The CO_(2) is continuously purged from solution and collected by two sequential miniature diffusion scrubbers (DSs), a short DS preceding a longer one. Each DS consists of a LiOH-filled porous hydrophobic membrane tube with terminal stainless steel tubes that function as conductance-sensing electrodes. As CO_(2) is collected by the LiOH-filled DSs, hydroxide is converted into carbonate and the resulting decrease in conductivity is monitored. The simultaneous use of the dual short and long DS units bearing different concentrations of LiOH permits both good sensitivity and a large dynamic range. The limit of detection (LOD, S/N velence 3) is approx 140 ng of C. With a typical sampling period of 30 min at a sampling rate of 30 L/min, this corresponds to an LOD of 160 ng/m~(3). The approach also provides information on the ease of oxidation of the carbonaceous aerosol and hence the nature of the carbon contained therein. Ambient aerosol organic carbon data are presented.
机译:描述了一种用于环境气溶胶有机碳的全自动测量系统,该系统能够长时间无人值守运行。用水将旋风分离器中的颗粒收集为收集介质。收集的样品通过注射泵定期吸到保持回路中,然后输送到湿式氧化反应器(WOR)。添加酸,并清除WOR以测量溶解的CO_(2)或作为释放的CO_(2)的无机碳酸盐(IC)。 IC背景通常很小并且足够恒定,无需单独测量即可通过空白减法进行校正。现在将有机材料逐步或一步氧化为CO_(2)。一步氧化涉及在臭氧的存在下进行紫外线过硫酸盐处理。此处理将有机碳(OC)转换为CO_(2),但元素碳不会被氧化。从溶液中连续清除CO_(2),并由两个顺序的微型扩散洗涤器(DS)收集,一个短DS排在一个较长的DS之前。每个DS均由充满LiOH的多孔疏水膜管组成,该膜管带有用作电导感应电极的末端不锈钢管。当通过填充LiOH的DS收集CO_(2)时,氢氧化物转化为碳酸盐,并监控了电导率的下降。同时使用带有不同浓度LiOH的双短和长DS单元既可以实现良好的灵敏度,又可以实现较大的动态范围。检测极限(LOD,S / N velence 3)约为140 ng C.以30 L / min的采样率在30分钟的典型采样周期内,对应的LOD为160 ng / m〜( 3)。该方法还提供了有关碳质气溶胶易氧化性以及因此所含碳的性质的信息。给出了环境气溶胶有机碳数据。

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