首页> 外文期刊>Water, Air, and Soil Pollution >CHEMISTRY OF FOG WATER COLLECTED IN THE MT. ROKKO AREA (KOBE CITY, JAPAN) BETWEEN APRIL 1997 AND MARCH 2001
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CHEMISTRY OF FOG WATER COLLECTED IN THE MT. ROKKO AREA (KOBE CITY, JAPAN) BETWEEN APRIL 1997 AND MARCH 2001

机译:MT中收集的雾水的化学性质。 1997年4月至2001年3月之间的六甲地区(日本神户市)

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Fog chemistry was studied for four years (April 1997-March 2001) at Mt. Rokko (altitude 931 m) in Kobe, Japan. A collection of samples was obtained at a mountainous site close to a highly industrialized area. The samples were collected by an active string-fog collector. The summer fog was dense and frequent. The geography of Mt. Rokko is linked to the seasonably of the occurrence and the thickness of the fog. Among the meteorological parameters, the relative humidity was important for the occurrence of fog. The correlation of the concentrations of the components in fog water indicated that (NH_4)_2SO_4 and/or NH_4HSO_4 were involved in the process of the formation of fog drops in the atmosphere. The concentration of the components decreased with an increase in the liquid water content (LWC) of the fog, and the seasonal variation of the concentration of some components depended on the seasonal variation of the LWC. The equivalent ratio of NO_3~- to non-sea salt (nss-) SO_4~(2-) was considerably larger than that in precipitation. Ammonium ion accounted for the largest percentage of cations, which indicates that NH_4~+ was an important counter cation for NO_3~- and nss-SO_4~(2-). A unique fog event in which the air pollutants seemed to be scavenged stoichiometrically was sometimes observed. The methodology used for collecting fog water at 60 mL intervals provided detailed information.
机译:雾化学研究了四年(1997年4月至2001年3月)。日本神户的六甲(海拔931 m)。在靠近高度工业化地区的山区获得了样品的集合。样品由主动的弦雾收集器收集。夏天的雾浓又频繁。富士山的地理六甲与雾的季节性和浓密程度有关。在气象参数中,相对湿度对于雾的产生很重要。雾水中各组分浓度的相关性表明,(NH_4)_2SO_4和/或NH_4HSO_4参与了大气雾滴的形成过程。成分的浓度随着雾中的液态水含量(LWC)的增加而降低,并且某些成分的浓度的季节变化取决于LWC的季节变化。 NO_3〜-与非海盐(nss-)SO_4〜(2-)的当量比明显大于降水的当量比。铵离子占阳离子的最大比例,这表明NH_4〜+是NO_3〜-和nss-SO_4〜(2-)的重要抗衡阳离子。有时会观察到一个独特的雾事件,其中似乎以化学计量清除了空气污染物。以60 mL间隔收集雾水的方法提供了详细信息。

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