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151.
长沙地区近地面水汽中氢氧稳定同位素的变化特征   总被引:4,自引:0,他引:4  
基于在长沙地区2014年10月—2015年10月监测的近地面水汽中氢氧稳定同位素组成(δv)及相关气象要素,对水汽中氢氧稳定同位素的变化特征、影响因素及与降水中稳定同位素(δp)的相互关系进行了分析.结果表明:大气水汽中氢氧稳定同位素存在显著的季节变化和日变化,冬、春季值高于夏、秋季值,夜晚值高于白天值.δv~(18)O的季节变化与大尺度水汽输送的季节性变化有关,日变化则与地表蒸散发、大气湍流等局地气象条件有关.通过对δv~(18)O的平衡模拟发现,水汽中和降水中稳定同位素在暖季处于或接近平衡状态,在冷季处于非平衡状态.不同季节的大气水汽线和大气水线具有一定程度的相似性,两者的斜率均为暖季大于冷季;受下垫面新降水蒸发的影响,降水日大气水汽线的斜率和截距相对于无降水日均有增加,暖季分别增加0.11和3.52‰,冷季分别增加0.07和0.14‰.  相似文献   
152.
采用拉格朗日法求解了低Reynolds数雨滴以终端下落速度时对大气气溶胶粒子的捕集效率,为考察雨滴表面流体滑移效应,采用Hadamard-Rybczynski流场描述低Reynolds数下雨滴的绕流特征,数值计算中考虑了粒子的惯性碰撞与拦截捕集机理,分析和讨论了雨滴表面流体滑移及粒子重力效应作用对粒子捕集效率的影响.结果表明,若忽略雨滴表面流体滑移及粒子的重力效应,则数值计算结果与已有分析结果一致.当考虑雨滴表面流体滑移效应,则粒子捕集效率有一定程度增加,增加幅度与雨滴尺寸、粒子尺度及粒子密度等参量均有关.粒子所受的重力对雨滴捕集粒子的能力起削弱作用,其削弱程度依赖于粒子拦截参数(R)和Stokes数(St)的大小,在0.2St0.3区间,重力作用对粒子捕集的削弱作用最为显著.  相似文献   
153.
2015年干季佛山一次重空气污染过程形成机理研究   总被引:1,自引:0,他引:1  
2015年12月21-23日,广东珠三角佛山地区出现了一次PM2.5重污染过程.利用佛山地区顺德、禅城、三水3个站点风廓线雷达、激光雷达和微波辐射计观测资料,结合地面气象观测数据和污染物浓度数据,分析研究了这次重污染过程的形成机理.结果表明:1形成这次污染过程的主要原因是近地层偏南风和偏北风对峙导致水平风速减小,大气水平输送能力变差;持续时间长且强度达到3℃·km-1的强逆温抑制了污染物的垂直扩散;800 m以下超过90%的高相对湿度造成气溶胶粒子吸湿增长显著.2持续时间长且比较深厚的小风层是造成这次污染过程的直接原因,小风层厚度是预报空气质量变化的较好工具.与地面风速相比,PM2.5浓度与小风层厚度的相关系数最多能提高0.36,且具有较长的预报时效.佛山地区小风层的风速阈值为3.8 m·s-1.3这次污染过程存在两种不同的污染形成机制,污染前期(21-23日中午)主要以本地污染物累积为主,污染后期(23日下午)下风向地区(三水)的污染主要是受上风向地区(顺德和禅城)的污染输送影响.  相似文献   
154.
通过温室盆栽试验,研究了普通生物质炭和铁基生物质炭对酸雨及氧化性沉降下不同生育期花生生长及累积砷、镉(As、Cd)的影响.结果表明,酸雨及50μmol·L-1H2O2沉降处理对处于花期及成熟期中花生的生物量、根瘤数和瘤干重的影响不显著(p0.05),但却显著增加了花生籽粒中Cd的含量和花生壳中As的含量(p0.05).其中,铁基生物质炭可显著降低酸雨及氧化性沉降下花生地上部、根部、籽粒、壳中累积As、Cd含量(p0.05),且作用效果明显强于普通生物质炭.由此可知,酸雨及氧化性沉降增加了花生对土壤重金属As、Cd的富集,而施加铁基生物质炭可有效降低作物的As、Cd累积,为有效防控酸雨及氧化性沉降区域的花生砷、镉重金属污染具有重要现实意义.  相似文献   
155.
吴蒙  罗云  吴兑  范绍佳 《环境科学学报》2017,37(12):4458-4466
利用佛山地区2013年12月大气边界层观测试验得到的垂直风温资料和相应逐日AQI资料、逐时PM_(2.5)浓度资料,研究了佛山地区大气边界层垂直风温结构对空气质量的影响.结果表明:佛山地区干季持续存在的逆温结构是导致PM_(2.5)污染较重的重要原因.干季污染日近60%的最低逆温层高度低于1000 m,而非污染日低于1000 m的最低逆温层仅占36%,污染日佛山贴地逆温频率高达31.2%.逆温层出现高度较低,将污染物压缩积累在贴地层大气中导致污染较重.在大陆冷高压控制下,佛山地区的边界层结构演化非常典型,最大边界层高度和最大边界层通风量表现出了显著相关,污染日日平均边界层高度始终维持在较低的水平,多数时候不足500 m,最大边界层高度则大部分小于1000 m,日平均边界层通风量主要分布在500~1500 m~2·s~(-1)之间,在极端情况下甚至不足300 m~2·s~(-1),最大边界层通风量大部分处于1500~5000 m~2·s~(-1)之间,导致污染物始终聚集在较低的大气边界层内,使得PM_(2.5)浓度长时间维持在较高的污染水平.佛山地区风场存在显著的3层结构,较小的底层风速意味着大气的输送和扩散能力较弱,高度较低的中层使得污染物进一步被压缩累积在大气底层,垂直风场的不稳定性使得污染日佛山地区局地回流活跃,回流(RF)指数极小值多分布在0.2~0.4之间,污染日RF指数普遍小于非污染日,垂直风场的有效输送能力被显著削弱.  相似文献   
156.
Long term trend analysis of bulk precipitation, throughfall and soil solution elemental fluxes from 12 years monitoring at 10 ICP Level II forest sites in the UK reveal coherent national chemical trends indicating recovery from sulphur deposition and acidification. Soil solution pH increased and sulphate and aluminium decreased at most sites. Trends in nitrogen were variable and dependant on its form. Dissolved organic nitrogen increased in bulk precipitation, throughfall and soil solution at most sites. Nitrate in soil solution declined at sites receiving high nitrogen deposition. Increase in soil dissolved organic carbon was detected - a response to pollution recovery, changes in soil temperature and/or increased microbial activity. An increase of sodium and chloride was evident - a possible result of more frequent storm events at exposed sites. The intensive and integrated nature of monitoring enables the relationships between climate/pollutant exposure and chemical/biological response in forestry to be explored.  相似文献   
157.
A two-dimensional numerical model for evaluating the wind flow and pollutant dispersion within a street canyon was first developed using the FLUENT code, which was then validated against a wind tunnel experiment. Then, the effects of the upstream building width and upwind building arrangement on the airflow and pollutant dispersion inside an isolated street canyon were investigated numerically. The numerical results revealed that: (1) the in-canyon vortex center shifts downwards as the upstream building width increases; (2) the recirculation zone covers the entire upstream building roof for the cases when W/H = 0.5, 1.0, 1.5, and 2.0 (W is the upstream building width and H is the building height), whereas the flow reattaches the upstream building roof for the cases when W/H = 2.5 and 3.0; (3) when the upstream building width is shorter than the critical width WC (= 2H), an increase in the upstream building width leads to an increase in the pollution level on the leeward wall of the canyon and a decrease in the roof-level concentrations at the upstream building; (4) when the upstream building width is longer than the critical width, the roof-level concentrations at the upstream building are negligibly small and the pollution level on the leeward wall of the canyon is almost unaffected by a further increase in the upstream building width; (5) when the buildings are placed upwind of the canyon, the flow attaches the upstream building roof and, therefore, almost none of the pollutants are distributed on the upstream building roof; and (6) the pollution levels inside the canyon and on the downstream building roof increase significantly with the number of upwind buildings.  相似文献   
158.
A mass-balance model of calcite precipitation was developed to investigate the interactions of the varied processes governing the generation and fate of calcite in lakes. The model was used in conjunction with data to assess the evolution and impact of calcite precipitation for calcareous, ultraoligotrophic Torch Lake, Michigan (USA). This lake is an ideal setting for implementation of a baseline modeling study of calcite precipitation where the physical drivers could be evaluated without being dominated, as in many systems, by biological processes. The model provides a representation of calcite precipitation with particulate surface area changing over time, and demonstrates that it is possible for the change in water clarity to be explained by calcite precipitation employing standard optical models. Using the mass balance model to quantify the roles of the various chemical, biological and physical processes interacting in the lake's epilimnion, it was shown that the seasonal temperature rise and air-water CO2 exchange drive calcite precipitation much more than primary production for this ultraoligotrophic system.  相似文献   
159.
ABSTRACT: The concept of recurrence interval has been used for years in engineering designs. Can the same concept be applied to the drought analysis? This paper uses the plotting position method to define drought of various recurrence intervals based on stream-flow data. The method of truncation level was applied to the same data to examine the defined drought. Based on the method of truncation level, drought duration and its corresponding flow deficit were investigated. Eighteen flow gage stations from the Scioto River Basin in Ohio were selected for the study. The results show that flows of 100-year droughts using the plotting position method are practically nil. On the other hand, flows of droughts using the truncation method are gradually decreasing with an increase in truncation level, where flows of 95 percent are approximately equal to those of two-year droughts defined by the plotting position. It is also shown that there is a strung correlation between drought duration and deficit.  相似文献   
160.
Long-term depletion of calcium and other nutrients in eastern US forests   总被引:10,自引:0,他引:10  
Both harvest removal and leaching losses can deplete nutrient capital in forests, but their combined long-term effects have not been assessed previously. We estimated changes in total soil and biomass N, Ca, K, Mg, and P over 120 years from published data for a spruce-fir site in Maine, two northern hardwood sites in New Hampshire, central hardwood sites in Connecticut and Tennessee, and a loblolly pine site in Tennessee. For N, atmospheric inputs counterbalance the outputs, and there is little long-term change on most sites. For K, Mg, and P, the total pool may decrease by 2%–10% in 120 years depending on site and harvest intensity. For Ca, net leaching loss is 4–16 kg/ha/yr in mature forests, and whole-tree harvest removes 200–1100 kg/ha. Such leaching loss and harvest removal could reduce total soil and biomass Ca by 20%–60% in only 120 years. We estimated unmeasured Ca inputs from rock breakdown, root-zone deepening, and dry deposition; these should not be expected to make up the Ca deficit. Acid precipitation may be the cause of current high leaching of Ca. Although Ca deficiency does not generally occur now in acid forest soils, it seems likely if anthropogenic leaching and intensive harvest removal continue.  相似文献   
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