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HAND-HELD TOTAL OZONE COLUMN CONCENTRATION MEASUREMENTS IN THE PHILIPPINES

机译:菲律宾人工进行的臭氧层总浓度测量

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In this study, total ozone column (TOC) concentrations were measured from the ground using the hand-held Microtops Ⅱ Ozone Monitor and Sunphotometer in the Philippines from February to November 2011, October and December 2012 and January 2013. Daily averages of TOC were compared to the data retrieved from the NASA Earth Obseving System (EOS) Aura satellite platform equipped with the Ozone Monitoring Instrument (OMI) and from the ESA Environmental Satellite (Envisat) using the Scanning Imaging Absorption spectroMeter for Atmospheric CHartographY (SCIAMACHY) instrument. Measurements of the total ozone column concentrations by a hand-held instrument show good agreement with satellite data during low aerosol optical thickness (AOT) and low cloud fraction conditions. Aerosols and clouds affect the accuracy of hand-held TOC measurements while solar targeting affects its precision. The bias introduced by aerosols and clouds depends on aerosol and cloud types. Precision in the hand-held measurements was improved when the instrument was mounted to a tripod. The Microtops II, OMI and SCIAMACHY datasets depicted the variability of the total column ozone with passing high and low pressure systems as indicated with the decrease of TOC with surface pressure. Transport processes occurring in the lower stratosphere dictate day-to-day variations in the total ozone column. Hand-held ozone measurements using the Microtops Ⅱ Ozone Monitor and Sunphotometer provide a cheap yet comparable ground-based platform to space-borne observations of the total ozone column necessary for continuously monitoring ozone concentrations in the face of increased greenhouse gases in the atmosphere.
机译:在这项研究中,使用菲律宾的手持式MicrotopsⅡ臭氧监测仪和日光光度计从菲律宾于2011年2月至2011年11月,2012年12月和2012年12月以及2013年1月从地面测量了总臭氧柱(TOC)的浓度。比较了TOC的每日平均值使用装有大气层图的扫描成像吸收光谱仪(SCIAMACHY)从装有臭氧监测仪(OMI)的NASA地球观测系统(EOS)Aura卫星平台和从ESA环境卫星(Envisat)检索到的数据中提取数据。在低气溶胶光学厚度(AOT)和低云量条件下,用手持仪器测量的总臭氧柱浓度与卫星数据吻合良好。气溶胶和云层会影响手持式TOC测量的准确性,而日光照射会影响其精度。气溶胶和云造成的偏差取决于气溶胶和云的类型。将仪器安装到三脚架后,手持测量的精度得到了提高。 Microtops II,OMI和SCIAMACHY数据集描绘了总的柱臭氧在通过高压和低压系统时的变异性,这表明TOC随着表面压力的降低而降低。平流层下部发生的运输过程决定了总臭氧层的每日变化。使用MicrotopsⅡ臭氧监测仪和日光光度计进行手持式臭氧测量,提供了一种便宜而可比的地面平台,可对太空中的总臭氧柱进行太空观测,这对于在大气中温室气体不断增加的情况下连续监测臭氧浓度是必要的。

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