【24h】

Dust emission from wet and dry playas in the Mojave desert, USA

机译:美国莫哈韦沙漠中干湿草尘排放

获取原文
获取原文并翻译 | 示例
       

摘要

The interactions between playa hydrology and playa-surface sediments are important factors that control the type and amount of dust emitted from playas as a result of wind erosion. The production of evaporite minerals during evaporative loss of near-surface ground water results in both the creation and maintenance of several centimeters or more of loose sediment on and near the surfaces of wet playas. Observations that characterize the texture, mineralogic composition and hardness of playa surfaces at Franklin Lake, Soda Lake and West Cronese Lake playas in the Mojave Desert (California), along with imaging of dust emission using automated digital photography, indicate that these kinds of surface sediment are highly susceptible to dust emission. The surfaces of wet playas are dynamic - surface texture and sediment availability to wind erosion change rapidly, primarily in response to fluctuations in water-table depth, rainfall and rates of evaporation. In contrast, dry playas are characterized by ground water at depth. Consequently, dry playas commonly have hard surfaces that produce little or no dust if undisturbed except for transient silt and clay deposited on surfaces by wind and water. Although not the dominant type of global dust, salt-rich dusts from wet playas may be important with respect to radiative properties of dust plumes, atmospheric chemistry, windborne nutrients and human health. Published in 2007 by John Wiley & Sons, Ltd.
机译:普拉亚水文学与普拉亚表面沉积物之间的相互作用是控制因风蚀而从普拉亚排放的粉尘类型和数量的重要因素。在近地表地下水蒸发损失期间产生的蒸发矿物会导致在湿的普拉亚斯表面及其附近产生并维持几厘米或更多的疏松沉积物。观察表征了莫哈韦沙漠(加利福尼亚州)的富兰克林湖,苏打湖和西克罗涅斯湖的普拉亚斯海滩表面的质地,矿物学组成和硬度,以及使用自动数字摄影对尘埃排放进行成像,表明这些类型的表面沉积物极易产生粉尘。湿滩的表面是动态的-主要是由于地下水位深度,降雨和蒸发速率的波动,表面质地和沉积物对风蚀的可利用性迅速变化。相反,干燥的普拉亚斯以深层的地下水为特征。因此,干的普拉亚斯通常具有坚硬的表面,如果不受干扰,则几乎不会产生灰尘,甚至不会产生灰尘,除了因风和水而在表面上沉积的瞬时淤泥和粘土。尽管不是全球性粉尘的主要类型,但从湿草制成的富含盐的粉尘可能对粉尘羽流的辐射特性,大气化学,风生养分和人体健康至关重要。 John Wiley&Sons,Ltd.于2007年出版。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号