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Ozone sonde cell current measurements and implications for observations of near-zero ozone concentrations in the tropical upper troposphere

机译:臭氧Sonde细胞电流测量和对热带上层近零臭氧浓度观察的影响

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Laboratory measurements of the Electrochemical Concentration Cell (ECC) ozone sonde cell current using ozone free air as well as defined amounts of ozone reveal that background current measurements during sonde preparation are neither constant as a function of time, nor constant as a function of ozone concentration. Using a background current, measured at a defined timed after exposure to high ozone may often overestimate the real background, leading to artificially low ozone concentrations in the upper tropical troposphere, and may frequently lead to operator dependent uncertainties. Based on these laboratory measurements an improved cell current to partial pressure conversion is proposed, which removes operator dependent variability in the background reading and possible artifacts in this measurement. Data from the Central Equatorial Pacific Experiment (CEPEX) have been reprocessed using the improved background treatment based on these laboratory measurements. In the reprocessed data set near-zero ozone events no longer occur. At Samoa, Fiji, Tahiti, and San Cristóbal, nearly all near-zero ozone concentrations occur in soundings with larger background currents. To a large extent, these events are no longer observed in the reprocessed data set using the improved background treatment.
机译:使用臭氧自由空气的电化学浓度细胞(ECC)臭氧Sonde电池的实验室测量,以及定义量的臭氧显示出在探测器中的背景电流测量既不是时间的函数,也不是臭氧浓度的函数。 。使用背景电流,在暴露于高臭氧后在定义的定时测量可能通常高估真实背景,导致上层热带对流层中的人工低臭氧浓度,并且可能经常导致操作者依赖性不确定性。基于这些实验室测量,提出了改进的细胞电流对部分压力转换,从而消除了在该测量中的背景读取和可能的伪影中的操作者依赖性变化。来自中央赤道太平洋实验(CEPEX)的数据已通过基于这些实验室测量的改进的背景处理进行了再加工。在后处理数据中,不再发生近零臭氧事件。在Samoa,Fiji,Tahiti和SanCristóbal,几乎所有接近的零臭氧浓度都发生在具有更大背景电流的探测中。在很大程度上,使用改进的背景处理,在再加工数据集中不再观察到这些事件。

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