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The absorption of anthropogenic CO2 and atmospheric deposition of acidity can both contribute to the acidification of the global ocean. Rainfall pH measurements and chemical compositions monitored on the island of Bermuda since 1980, and a long-term seawater CO2 time-series (1983–2005) in the subtropical North Atlantic Ocean near Bermuda were used to evaluate the influence of acidic deposition on the acidification of oligotrophic waters of the North Atlantic Ocean and coastal waters of the coral reef ecosystem of Bermuda. Since the early 1980's, the average annual wet deposition of acidity at Bermuda was 15 ± 14 mmol m− 2 year− 1, while surface seawater pH decreased by 0.0017 ± 0.0001 pH units each year. The gradual acidification of subtropical gyre waters was primarily due to uptake of anthropogenic CO2. We estimate that direct atmospheric acid deposition contributed 2% to the acidification of surface waters in the subtropical North Atlantic Ocean, although this value likely represents an upper limit. Acidifying deposition had negligible influence on seawater CO2 chemistry of the Bermuda coral reef, with no evident impact on hard coral calcification.  相似文献   
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基于2001-2018年广东省86个国家自动气象站逐小时降水资料,分析了广东省不同历时降水的时空分布特征.结果表明:1)除粤北山区外,基本符合年均降水时数越多,累积降水量越大的规律.年均小时降水强度从南部沿海向北部内陆呈减弱趋势.2)汛期降水事件以短历时为主,占全年降水事件65.3%;累积降水量上,长历时降水量占汛期56.7%.前汛期短历时降水多发生在粤西;中历时降水多发生在珠三角两侧和粤西北地区;长历时降水多发生在粤东和粤北地区.后汛期短历时降水多发生在内陆,出现频次自西北向东南递减;中历时降水分布不均;长历时降水多发生在沿海.3)汛期降水时数日变化呈双峰型变化特征,小时降水强度日变化呈单峰型变化特征.小时降水强度峰值易出现在下午的站点多分布在内陆,小时降水强度峰值易出现在下半夜至上午时段的站点则多分布在沿海、部分山区和珠三角地区.  相似文献   
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安徽梅雨年际变化特征研究   总被引:7,自引:5,他引:7       下载免费PDF全文
刘勇  徐敏  朱红芳  郑启康 《气象科学》2004,24(4):488-494
本文对安徽省1951~2002年52a的入梅日期、出梅日期、梅雨日数、梅雨期降水总量等数据进行了统计。反映梅雨期年际变化特征的分析结果表明:安徽省入梅日期主要集中在6月的第2候和第4候,出梅日期主要集中在7月第2候;入梅日期的早晚与梅雨期天气形势、梅雨日数、梅雨期总降水量有着一定的对应关系。文中揭示的有关梅雨期年际变化特征,对于做好入梅日期、梅雨日数、梅雨期总降水量的预报,进而做好防汛抗旱的服务工作具有一定的参考意义。  相似文献   
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Wet deposition due to radiation fog is examined in this paper. The area where the reported measurements were performed, the Po Valley, northern Italy, is characterized by both a high fog occurrence during the fall-winter months and fog water solutions of high ionic concentration and acidity.Estimated wet deposition for NH 4 + , NO inf3 sup- and SO inf4 sup2- ions due to fog droplet settling to the ground accounts for 13.2, 12.1 and 5.3 percent with respect to bulk precipitations over the same period: January–March and October–December (fog season).Fog deposition rates show that this process can be an important pathway of trace gases and particles loss from the air. First indicative results of fog removal efficiency with respect to air particulate matter are presented.Dry deposition parameters should be taken into account in evaluating the potential effect of fog droplet deposition on vegetation.  相似文献   
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王政友 《地下水》2003,25(1):34-36
通过对小麦和玉米生长期间的有效降雨量及灌溉水量、灌溉利用系数、灌溉水量及作物产量的关系分析计算 ,阐明了有效降雨量 ,充分利用有效降雨量合理进行灌溉 ,提高灌溉效益的方法。  相似文献   
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INTRODUCTIONTheAsiansummermonsoonsystemincludestheIndian(orSouthAsian)andEastAsiansummermonsoons,bothofwhichformthemostdramaticmonsoonsystemsintheNorthernHemisphere.TheintensityofthelatterappearstoberelatedtotherainfallineasternChina.Therewillbeanempty…  相似文献   
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