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The importance of calcium deposition in assessing impacts of acid deposition in China

机译:钙沉积在中国酸沉积对影响的重要性

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The extensive use of coal as an energy carrier in China has led to high deposition of sulfur in a large part of the country. In the southern part of China large areas receive acid deposition, while in the northern part of the country the acidity of the emissions is neutralized by alkaline dust from the desert areas. In this paper we demonstrate the importance of knowing the sources and deposition patterns of base cations when assessing the effects of changes in sulfur emissions. Regional-scale data of both sulfur and calcium deposition from modeling and monitoring are combined in order to demonstrate how the acidity of deposition in China has changed historically and may change in the future. The importance of base cation deposition is also demonstrated using the dynamic acidification model MAGIC with input data from an intensive monitoring site outside Guiyang. It is not known what fraction of the deposited base cations is of natural origin and anthropogenic origin, respectively. The relative source strength varies greatly between regions. Future effects of emission changes are highly dependent on the relative reduction in sulfur and base cation emissions.
机译:煤炭作为中国能源载体的广泛用途导致硫磺在该国的大部分时间内沉积。在中国南部的大面积接受酸沉积,而在该国北部的北部,排放的酸度通过来自沙漠地区的碱性粉尘中和。在本文中,我们展示了在评估硫排放变化的影响时了解基地阳离子来源和沉积模式的重要性。组合硫和钙沉积的区域规模数据,以展示中国沉积酸度如何变化,未来可能会发生变化。还使用动态酸化模型魔法证明了基础阳离子沉积的重要性,该模型魔法具有来自贵阳以外的强化监测网站的输入数据。不知道沉积的基础阳离子的部分分别是天然来源和人为来源的一部分。区域之间的相对源极强度变化。减排变化的未来影响高度依赖于硫磺和基础阳离子排放的相对减少。

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