Huo Ming-Qun, Sun Qian, Xie Peng, Bai Yu-Hua, Liu Zhao-Rong, Li Ji-Long, Lu Si-Hua
College of Environmental Sciences and Engineering, Peking University, Beijing 100871, China.
Huan Jing Ke Xue. 2009 Nov;30(11):3159-66.
Rain and atmospheric particle samples were collected in the rural area of Taian and Shenzhen in 2007, respectively. Rain sampling was carried out during the precipitation process and several samples were got from the beginning of one precipitation to the end. The chemical character changes during precipitation and the changes of concentration of particles before and after rain were studied in this research to understand the contribution of particles on the rain chemical character and the rain-out effect for particles. The volume-weighted mean pH of rainwater in Taian was 5.97 and the total concentration of ions was 1 187.96 microeq x L(-1). The mass concentration of PM10 in Taian was 131.76 microg/m3 and that of PM2.5 was 103.84 microg/m3. The volume-weighted mean pH of rainwater in Shenzhen was 4.72 and the total concentration of ions was 175.89 microeq x L(-1). The mass concentration of PM10 in Shenzhen was 56.66 microg/m3 and that of PM2.5 was 41.52 microg/m3. During precipitation process pH and ion concentration of rain decrease and it is shown the neutralizing effect happens. The difference between rainwater of Taian and Shenzhen is due to cloud water acidity, atmospheric particles character and atmospheric acid-basic gases concentration. The clean-up effect of Na+ and Ca2+ by rain is high and which of NH4+ and NO3- is low. The clean-up effect for mass concentration, ions concentration and element concentration of particles by rain are significant.
2007年分别在泰安和深圳的农村地区采集了雨水和大气颗粒物样本。降雨采样在降水过程中进行,从一次降水开始到结束采集了多个样本。本研究对降水过程中化学性质的变化以及降雨前后颗粒物浓度的变化进行了研究,以了解颗粒物对雨水化学性质的贡献以及降雨对颗粒物的洗脱作用。泰安雨水的体积加权平均pH值为5.97,离子总浓度为1187.96微当量×L⁻¹。泰安PM10的质量浓度为131.76微克/立方米,PM2.5的质量浓度为103.84微克/立方米。深圳雨水的体积加权平均pH值为4.72,离子总浓度为175.89微当量×L⁻¹。深圳PM10的质量浓度为56.66微克/立方米,PM2.5的质量浓度为41.52微克/立方米。在降水过程中,雨水的pH值和离子浓度降低,表明发生了中和作用。泰安和深圳雨水的差异是由于云水酸度、大气颗粒物性质和大气酸碱气体浓度造成的。雨水对Na⁺和Ca²⁺的洗脱作用较高,对NH₄⁺和NO₃⁻的洗脱作用较低。降雨对颗粒物的质量浓度、离子浓度和元素浓度的洗脱作用显著。