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首页> 外文期刊>Atmospheric chemistry and physics >Properties of aerosols and their wet deposition in the arctic spring during ASTAR2004 at Ny-Alesund, Svalbard
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Properties of aerosols and their wet deposition in the arctic spring during ASTAR2004 at Ny-Alesund, Svalbard

机译:ASTAR2004在斯瓦尔巴特群岛Ny-Alesund期间,北极春季气溶胶的性质及其湿沉降

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During the period of scientific campaign "Arctic Study of Tropospheric Aerosols, Clouds and Radiation 2004" (ASTAR2004), precipitation samples were collected in late spring at Ny-Alesund, Svalbard and their ionic components were analyzed in parallel with the measurement of properties of atmospheric aerosol particles at the same place. Backward trajectory analyses indicated that the air mass above the observatory initially dominated by air masses from the Arctic Ocean, then those from western Siberia and later those from Greenland and the Arctic Ocean. In the measurement period, six precipitation samples were obtained and five of them were analyzed their ionic components by ionchromatography. The concentrations of nss-sulphate in precipitations were between 1.8 and 24.6 ppm from which the scavenging ratio and scavenging coefficients were calculated using the data such as the concentrations of nss-sulphate in aerosol particles, amounts of precipitations, and the heights of precipitations obtained from radar echo data. The scavenging ratio ranged from 1.0×10~6 to 17×10~6 which are comparable values reported in other areas. A detailed comparison between precipitation events and the number concentration of aerosol particles obtained from optical particle counters suggests that the type of precipitations, i.e. rain or snow, significantly affects the number concentrations of aerosol particles.
机译:在科学运动“对流层气溶胶,云和辐射的北极研究2004”(ASTAR2004)期​​间,在春季晚些时候在斯瓦尔巴特群岛的Ny-Alesund收集了降水样品,并对其离子成分进行了分析,同时测量了大气的特性气溶胶颗粒在同一位置。向后的轨迹分析表明,天文台上方的空气质量最初主要来自北冰洋的空气质量,然后是西伯利亚西部的空气质量,后来是格陵兰和北冰洋的空气质量。在测量期间,获得了六个沉淀样品,其中五个通过离子色谱法分析了其离子成分。沉淀物中nss硫酸盐的浓度在1.8至24.6 ppm之间,利用这些数据计算清除率和清除系数,这些数据包括气溶胶颗粒中nss硫酸盐的浓度,沉淀量以及从中获得的沉淀高度雷达回波数据。清除率范围为1.0×10〜6至17×10〜6,这是其他地区的可比值。降水事件与从光学粒子计数器获得的气溶胶粒子数量浓度之间的详细比较表明,降水的类型(即雨或雪)会显着影响气溶胶粒子的数量浓度。

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