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The relationship between aerosol concentration and atmospheric potential gradient in urban environments

机译:城市环境中气溶胶浓度与大气势梯度的关系

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Urban aerosol is a growing concern for people living within cities; aerosol have been implicated in many ill health conditions, including that of the lung and of the heart. Atmospheric potential gradient is a consequence of charge carried to the ionosphere through thunderstorms, and its value depends on highly electrically mobile ion concentrations, hence local conductivity of the air. Ions attach to aerosol in the atmosphere, reducing their mobility and therefore increasing the potential gradient, and so potential gradient measurements have been suggested as a proxy for aerosol measurements. Particle number count, size distribution and potential gradient were measured for two campaigns in Manchester, U.K., and one campaign in Bristol, U.K. Using a factor based on size distribution to account for preferential attachment at larger sizes provided the best relationship with potential gradient, but particle count alone showed a weaker, but similar relationship. The increase in particle count caused by annual bonfire and fireworks celebrations (November) was evidenced in both potential gradient and particle numbers. Daily regression or correlation did not show a consistent relationship. In the larger Bristol data set, increasing humidity led to a reduction of potential gradient, while increasing particle number led to an increase.
机译:对于居住在城市中的人们来说,城市气雾剂越来越引起人们的关注。气雾剂与许多疾病有关,包括肺和心脏疾病。大气电势梯度是电荷通过雷暴携带到电离层的结果,其值取决于高度电迁移的离子浓度,因此取决于空气的局部电导率。离子附着在大气中的气溶胶上,从而降低了离子的迁移率,因此增加了电势梯度,因此建议采用电势梯度测量作为气溶胶测量的替代方法。在英国曼彻斯特进行了两次活动,在英国布里斯托尔进行了一次活动,测量了粒子数,尺寸分布和电势梯度。使用基于尺寸分布的因子来说明较大尺寸下的优先附着,这与电势梯度具有最佳关系,但是仅粒子数显示出较弱但相似的关系。每年的篝火晚会和烟火庆典(11月)引起的颗粒数增加都在潜在的梯度和颗粒数上得到了证明。每日回归或相关性未显示出一致的关系。在较大的Bristol数据集中,湿度的增加导致电位梯度的减小,而粒子数的增加导致电位的增大。

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