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军用运输机探测排放:联合实地测量战略环境研究与发展计划的描述

Probing emissions of military cargo aircraft: description of a joint field measurement Strategic Environmental Research and Development Program.

作者信息

Cheng Meng-Dawn, Corporan Edwin, DeWitt Matthew J, Spicer Chester W, Holdren Michael W, Cowen Kenneth A, Laskin Alex, Harris David B, Shores Richard C, Kagann Robert, Hashmonay Ram

机构信息

Environmental Sciences Division, Oak Ridge National Laboratory (ORNL), Oak Ridge, TN 37831-6038, USA.

出版信息

J Air Waste Manag Assoc. 2008 Jun;58(6):787-96. doi: 10.3155/1047-3289.58.6.787.

Abstract

To develop effective air quality control strategies for military air bases, there is a need to accurately quantify these emissions. In support of the Strategic Environmental Research and Development Program project, the particulate matter (PM) and gaseous emissions from two T56 engines on a parked C-130 aircraft were characterized at the Kentucky Air National Guard base in Louisville, KY. Conventional and research-grade instrumentation and methodology were used in the field campaign during the first week of October 2005. Particulate emissions were sampled at the engine exit plane and at 15 m downstream. In addition, remote sensing of the gaseous species was performed via spectroscopic techniques at 5 and 15 m downstream of the engine exit. It was found that PM mass and number concentrations measured at 15-m downstream locations, after dilution-correction generally agreed well with those measured at the engine exhaust plane; however, higher variations were observed in the far-field after natural dilution of the downstream measurements was accounted for. Using carbon dioxide-normalized data we demonstrated that gas species measurements by extractive and remote sensing techniques agreed reasonably well.

摘要

为制定军事空军基地有效的空气质量控制策略,需要准确量化这些排放物。作为对战略环境研究与发展计划项目的支持,在肯塔基州路易斯维尔的肯塔基空军国民警卫队基地,对一架停放的C - 130飞机上两台T56发动机的颗粒物(PM)和气态排放物进行了表征。2005年10月的第一周,在实地考察中使用了传统和研究级仪器及方法。在发动机出口平面和下游15米处对颗粒物排放进行了采样。此外,通过光谱技术在发动机出口下游5米和15米处对气态物质进行了遥感测量。结果发现,经过稀释校正后,在下游15米处测量的PM质量浓度和数量浓度通常与在发动机排气平面处测量的结果吻合良好;然而,在考虑下游测量值自然稀释后的远场中观察到了更大的变化。使用二氧化碳归一化数据,我们证明了通过萃取和遥感技术进行的气体物种测量结果相当吻合。

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