首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Water-soluble rare earth elements in atmospheric deposition at Shihua Cave, Beijing, north China
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Water-soluble rare earth elements in atmospheric deposition at Shihua Cave, Beijing, north China

机译:北京市北京市北京市北京市大气沉积水溶性稀土元素

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Atmospheric deposition is an important source of trace elements in speleothems. In a pilot study, atmospheric deposition was collected monthly from Shihua Cave in Beijing, North China, from November 2012 to October 2013, to tentatively investigate the annual fluxes and seasonal variations of the water-soluble rare earth elements (REEs) in atmospheric deposition. The study led to the following results: (1) the annual fluxes of all the soluble REEs were in the descending sequence Ce, 67.9 mu g m(-2) yr(-1); La, 42.1 mu g m(-2) yr(-1); Nd, 23.8 mu g m(-2) yr(-1); Pr, 5.94 mu g m(-2) yr(-1); Sm, 4.68 mu g m(-2) yr(-1); Gd, 4.26 mu g m(-2) yr(-1); Dy, 3.53 mu g m(-2) yr(-1); Er, 2.10 mu g m(-2) yr(-1); Yb, 2.00 mu g m(-2) yr(-1); Eu, 0.90 mu g m(-2) yr(-1); Ho, 0.77 mu g m(-2) yr(-1); Tb, 0.61 mu g m(-2) yr (-1); Lu, 0.32 mu g m(-2) yr(-1); and Tm, 0.31 mu g m(-2) yr(-1). (2) The seasonal deposition fluxes of all the REEs displayed two peaks, one in the spring and the other in the autumn. Lower deposition fluxes were observed in the summer and winter. Changes in the rainfall amount and in turn soil moisture content, snow coverage of the earth surface, and atmospheric dust activity were responsible for the seasonal changes in the REE deposition fluxes. (3) Natural materials, especially wind-blown dust, were the dominant source of water-soluble REEs in atmospheric deposition. The relative contribution from anthropogenic materials, such as automobile emissions, increased significantly in the winter when the snow coverage was large and the atmospheric dust activity limited.
机译:大气沉积是Speleothems中微量元素的重要来源。在试点研究中,从2012年11月到2013年11月,从北京北京的石华洞口每月收集大气沉积,暂时调查水溶性稀土元素(REES)在大气沉积中的年度通量和季节变化。该研究导致以下结果:(1)所有可溶性REES的年助熔剂在下降序列Ce,67.9μgm(-2)Yr(-1); La,42.1μgm(-2)Yr(-1); Nd,23.8 mu g m(-2)Yr(-1); Pr,5.94 mu g m(-2)Yr(-1); SM,4.68 mu g m(-2)Yr(-1); Gd,4.26 mu g m(-2)Yr(-1); Dy,3.53μgm(-2)Yr(-1); ER,2.10 mu g m(-2)Yr(-1); Yb,2.00 mu g m(-2)Yr(-1);欧盟,0.90 mu g m(-2)Yr(-1); HO,0.77μgm(-2)Yr(-1); Tb,0.61μgm(-2)Yr(-1); Lu,0.32 mu g m(-2)Yr(-1);和TM,0.31μgm(-2)Yr(-1)。 (2)所有REES的季节沉积势倍展示了两个峰,一个在春天和另一个在秋天。在夏季和冬季观察到较低的沉积势次。降雨量的变化和土壤水分含量,地面表面的雪覆盖率以及大气粉尘活动负责REE沉积通量的季节变化。 (3)天然材料,尤其是风吹灰尘,是大气沉积中水溶性簧片的主要源。当雪覆盖率大而大气粉尘活动有限公司时,冬季,冬季,冬季的人为物质(如汽车排放)的相对贡献显着增加。

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