春天在日本中部农村地区测量大气中的氢过氧化物:直升机载测量

IF 3 4区 地球科学 Q2 ENVIRONMENTAL SCIENCES
Koichi Watanabe, Chinatsu Yachi, Xiao Jing Song, Saori Kakuyama, Miyuki Nishibe, Sheng Jun Jin
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引用次数: 5

摘要

3月,日本富山县Imizu市上空的H2O2和过氧化氢甲酯(MHP)、O3和SO2浓度通过直升机进行了测量。在海拔约2400米(8000英尺)处,H2O2浓度较高。H2O2浓度(<0.8 ppb)远低于夏季观测值。在高海拔大气中,MHP也更高。当高污染物从亚洲大陆积极输送时,H2O2浓度较低。H2O2浓度大多低于SO2;这种情况被称为氧化剂限制。如果H2O2浓度在寒冷月份上升,则在空气污染活跃的日本中部高海拔地区,云水的酸化可能会加速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Atmospheric hydroperoxides measured over a rural site in central Japan during spring: helicopter-borne measurements

Atmospheric hydroperoxides measured over a rural site in central Japan during spring: helicopter-borne measurements

Measurements of the concentrations of H2O2 and methyl hydroperoxide (MHP), O3, and SO2 over Imizu City, Toyama Prefecture, Japan were performed in March using a helicopter. H2O2 concentrations were higher at an altitude of approximately 2,400 m (8,000 ft). The H2O2 concentrations (< 0.8 ppb) in the spring were much lower than those observed during the summer observations. MHP was also higher in the high-altitude atmosphere. Lower concentrations of H2O2 were observed when high air pollutants were actively transported from Asian continent. The concentrations of H2O2 were mostly lower than those of SO2; this condition is called oxidant limitation. If H2O2 concentration rises in cold months, the acidification of cloud water may be accelerated at high elevations in central Japan where air pollution is actively transported.

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来源期刊
Journal of Atmospheric Chemistry
Journal of Atmospheric Chemistry 地学-环境科学
CiteScore
4.60
自引率
5.00%
发文量
16
审稿时长
7.5 months
期刊介绍: The Journal of Atmospheric Chemistry is devoted to the study of the chemistry of the Earth''s atmosphere, the emphasis being laid on the region below about 100 km. The strongly interdisciplinary nature of atmospheric chemistry means that it embraces a great variety of sciences, but the journal concentrates on the following topics: Observational, interpretative and modelling studies of the composition of air and precipitation and the physiochemical processes in the Earth''s atmosphere, excluding air pollution problems of local importance only. The role of the atmosphere in biogeochemical cycles; the chemical interaction of the oceans, land surface and biosphere with the atmosphere. Laboratory studies of the mechanics in homogeneous and heterogeneous transformation processes in the atmosphere. Descriptions of major advances in instrumentation developed for the measurement of atmospheric composition and chemical properties.
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