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北京冬、夏季颗粒物及其离子成分质量浓度谱分布
摘要点击 3072  全文点击 4077  投稿时间:2004-09-14  修订日期:2004-12-30
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中文关键词  颗粒物  质量浓度谱分布  粗粒子  细粒子
英文关键词  particulate matter  mass size distribution  coarse particle  fine particle
作者单位
胡敏 北京大学环境学院环境模拟与污染控制国家联合重点实验室 北京100871 
赵云良 北京大学环境学院环境模拟与污染控制国家联合重点实验室 北京100871 
何凌燕 北京大学环境学院环境模拟与污染控制国家联合重点实验室 北京100871 
黄晓锋 北京大学环境学院环境模拟与污染控制国家联合重点实验室 北京100871 
唐孝炎 北京大学环境学院环境模拟与污染控制国家联合重点实验室 北京100871 
姚小红 香港科技大学可持续发展研究所 香港 
陈泽强 香港科技大学化学工程系 香港 
中文摘要
      为认识北京大气颗粒物的重要特性之一的粒径谱分布,利用多级撞击式颗粒物采样器MOUDI对北京城区夏季和冬季大气颗粒物进行了4次为期1周的采样,采样时间分别是2001-07、2002-03、2002-07和2003-01.通过分析获得了颗粒物及其离子成分的质量浓度谱分布;发现北京城区颗粒物中细粒子占PM10的40%~60%,已经成为PM10的主要组成部分;但是细粒子和粗粒子的质量浓度与PM10都有很强的相关性(R2>80%),仍然可以通过控制粗粒子的浓度来降低PM10的浓度;在细粒子浓度高于70μg·m-3时,硫酸盐、硝酸盐和铵盐在细粒子中所占比例之和大于70%,是颗粒物浓度升高的主要因素;并且观测到颗粒物的质量粒径谱分布在积聚模态存在2个亚模态以及积聚模态出现在1.0~1.8μm的粒径段的谱分布;对于积聚模态峰值出现在1.0~1.8μm粒径段的原因,进行了初步分析.
英文摘要
      To understand one of the important characteristics of Beijing particulate matter pollution, the mass size distribution of particulate matters and its water-soluble ions, the particle samples were collected by a MOUDI cascade impactor in Beijing during July 2001, March 2002, July 2002 and January 2003 and every sampling period lasted a week. By analysis, the results indicate that there is “two modes" in the diameter range of the fine particle, one called “condensation mode" and another called “droplet mode", and the reasons of the peak of the accumulation mode appearing in the diameter range of 1~1.8μm was discussed in this paper. And there was a relatively strong correlation between PM1.8 and PM10(R2>80%), the same to PM((1.8~10) (PM10 minus PM1.8); the ratio of PM1.8/PM10 varietied between 40% and 60% during the sampling periods; as a result, the mass concentration of PM- 10 can be decreased by decreasing the concentration of coarse particles; sulfate, nitrate and ammonium are the main component of the inorganic water-soluble ions and the percentage of these three ions in PM- 1.8 was above 70% when the concentration of fine particle was more than 70μg·m-3 and they are the main reason increasing particle concentration.

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