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1.
Chemical composition of precipitation in Albany, NY from July 1986 to December 1988 has been studied. Mean volume-weighted concentrations (μeqℓ−1) were: acidity, 104.0; alkalinity, −63.7; SO42−, 52.8; NO3, 29.8; Cl, 5.6; F, 0.50; NH4+, 19.3; Ca2+, 6.5; Mg2+, 2.8; Na+, 3.5; and K+, 1.4. Mean pH was 4.2 . Seasonal patterns were pronounced for most species. Concentrations of H+, SO42−, NO3, NH4+ and Ca2+ peaked in the summer and spring. Deposition was related to rainfall amount by a power law relationship in which the exponent of the equation was ∮.6. Wet SO42− deposition was 2.35 keq ha−1 over a 30-month period. The SO42− and NO3 deposition rates observed at Albany indicate that transport from midwestern sources have a major influence at this site. On the average, free H+ ion concentrations determined from pH measurements accounted for 51% of the measured total acidity. There were unknown species, most likely organic acids, that could contribute to the acidity. Correlation and regression analyses indicated that major anions, SO42− and NO3, were closely associated with H+ and NH4+ ions. Factor analysis revealed four common factors which are related to fossil-fuel combustion, sea spray, cement factory and biomass burning.  相似文献   

2.
Wet precipitation-only samplers were used to collect wet deposition at two sites in the Athens basin, Greece for the period March 1986–February 1987.Concentrations of major cations (H+, NH+4, Na+, K+, Ca2+ and Mg2+) and major anions (Cl, NO3 and SO2−4) were determined for the first time in rainwater samples in Greece. Bicarbonate concentrations were calculated. The relative importance of natural and anthropogenic sources were estimated by a chemical balance. The majority of rain collected has a neutral or alkaline character. Acidity was due to the presence of H2SO4 and HNO3. The statistical analysis of the correlation between the concentration of chemical species confirm the influence of natural and anthropogenic sources. In all samples, SO2−4 concentrations exceed NO3 concentrations despite the dominance of low S oil burning in the region. The wet flux of S was calculatd to be 0.34 gm−2a−1.  相似文献   

3.
Rainwater and atmospheric bulk deposition samples were collected at a station on the rooftop of the Research Institute of King Fahd University of Petroleum and Minerals in Dhahran. Continuous sampling was carried out manually throughout the rainy season between December 1987 and February 1988, and for one rainfall event in March 1987. A total number of 13 samples were collected and investigated for pH and dissolved ionic composition using inductivity coupled plasma emission spectrometry (ICP) and ion chromatography (IC). The range and volume-weighted average pH were 5.1–7.2 and 5.48, respectively. Significant negative linear correlations were observed between the precipitation pH and rain depth, and between pH and the summation of dissolved {(Ca2+ + Mg2+)−(SO42− + NO3 + NO2)} (in μeqℓ−1). The ionic summation also correlated negatively with rain depth. The ionic abundance in rainwater (in μeqℓ−1) expressed in concentration order showed the general trend SO42− > HCO3−1 = Cl = NO3 > NO2 for anions and Ca2+ > Na+ > Mg2+ > NH4+ > K+ > H+ > Sr2+ for cations. Good mass balance between cations and anions was observed. Total NO3 contribute equally to precipitation acidity as SO42− and Ca2+ plus Mg2+ in alkaline suspended particulates from natural sources are the major ions which buffer the acidity of precipitation. The NH4+ ion which is also present plays an insignificant role in the acid/base equilibrium of rainwater.  相似文献   

4.
浙江宁波天童地区酸性降水化学特征研究   总被引:4,自引:0,他引:4  
为了解浙江宁波天童地区降水的化学特征、离子来源及酸性降水的成因,于2010年3月—2011年2月在该地区采集了90个降水样品,并运用离子色谱法分析其化学组分.结果显示,天童地区降水的酸化频率和酸化程度非常高,酸雨频率为97%,雨量加权pH平均值为4.37,离子浓度的大小顺序为SO24->NH4+>NO3->Ca2+>Cl->Na+>Mg2+>K+>F-,降水较清洁;降水pH值和各离子含量存在明显的季节变化,总体表现为冬、春季污染程度高于夏、秋季;SO24-/NO3-的浓度比值为1.9,表明该地区酸雨类型为硫酸和硝酸复合型;SO24-、NO3-、NH4+和部分Ca2+主要来自人为污染源,Na+、Cl-和大部分Mg2+主要来自海洋源,K+和大部分Ca2+则主要来自地壳源,海洋对天童地区降水离子组分影响较大,但对降水酸度影响并不显著;NH4+与SO42-(r=0.90)、NO3-(r=0.88)的相关性分别大于Ca2+与SO24-(r=0.67)、NO3-(r=0.73)的相关性,且NH4+/Ca2+的浓度比值为1.47,说明NH4+对降水酸性的中和作用大于Ca2+,与我国其他城市降水相比,天童地区降水中的碱性离子,尤其是Ca2+浓度较低,从而导致降水酸度高于北方地区和西南其他地区.  相似文献   

5.
The chemical composition of winter and spring cloud water sampled at 1620 masl elevation on Mt Rigi in central Switzerland was dominated by NO3, SO42−, NH4+ and H+. A wide range of concentration levels was observed, with maxima of 3700, 1800 and 4600 micronormal for NO3, SO42− and NH4+, respectively. Concentrations at a lower elevation (1030 masl) site on the mountain were higher due to lower cloud liquid water contents and higher pollutant levels at that site. The lowest pH observed was 2.95; large concentrations of NH3 in the region prevented pH values from falling even lower. A comparison of simultaneously sampled cloud water and precipitation revealed much higher concentrations for most species in the cloud water, except in one case of extreme precipitation riming when the concentrations in the two phases converged. An exception to the pattern was H+; at times the precipitation was more acidic than the cloud water. The chemical composition of the cloud drops varied with drop size. Drops smaller than 10 μm diameter were enriched in NO3, SO42− and NH4+ relative to larger drops. Since the larger drops are the ones most effeciently captured by snow crystals, knowledge of their composition is essential to understanding the chemical implications of accretional growth of precipitation.  相似文献   

6.
Daily measurements the atmospheric cocnentrations of HNO3, NO3-, NO2, SO2, SO42−, NH4+, and several trace metals were made at the University of Michigan Biological Station over a 124-day period during the 1984–1985 winter. The composition of the daily precipitation was also determined. The relative contributions of scavenged NO3 and HNO3 to the precipitation was estimated by assuming that the NO3 scavenging ratio was the same as that of trace metals with a similar particle size. Similarly, the SO42− and SO2 contributions were based on the scavenging ratios of NH4+ and trace metals. On this basis, it was determined that the event median NO3 and HNO3 scavenging ratios were 500 and 3500, respectively. HNO3 scavenging accounted for 83% of the total scavenged NO3. Scavenging of SO42− accounted for all the snow SO42− in 67% of the events. In the remaining events, some SO2 was scavenged, with a median scavenging ratio of 219. Overall, 67% of the snowfall acidity appeared to be due to HNO3 scavenging. Backward air-mass trajectories that were calculated for each event were used to determine the general source regions of the acidic species. Snow associated with air masses from the south and west accounted for 81 and 75% of the deposited NO3 and SO42−, respectively.  相似文献   

7.
Theresearchofbelow-cloudscavengingofrainwaterinGuilinCityBaiYuhua;YaoRongkui;LiXin;TangXiaoyan(TheDepartmentofTechnicalPhysie...  相似文献   

8.
近3年太原市夏季降水的化学特征研究   总被引:11,自引:7,他引:4  
本研究采集了2011~2013年太原市夏季66场降水样品,分析了p H值、电导率和水溶性阴阳离子,探讨了太原市夏季降水的化学组成及来源.结果表明,近3年太原市夏季降水p H值范围为4.63~8.02,加权平均值为5.19;2011~2013年酸雨频率分别为37.0%、31.2%和17.4%.太原夏季降水的化学组成以SO2-4、NO-3、Ca2+和NH+4为主,阴离子SO2-4和NO-3加权平均浓度分别占阴离子总浓度的67.2%和22.0%,阳离子Ca2+和NH+4加权平均浓度分别占阳离子总浓度的55.1%和29.0%;降水中SO2-4、NO-3、Ca2+和NH+4浓度水平随年度有明显的下降趋势.近3年SO2-4/NO-3的当量浓度比分别为2.97、3.06和3.08,平均值为3.02,说明太原市夏季酸性降雨类型为硫酸和硝酸复合型,且硝酸盐的贡献逐年增强.通过中和因子分析,表明太原市夏季降水中Ca2+和NH+4对酸性中和起主导作用,但Mg2+的作用不可忽略.太原市夏季降水中水溶性化学组分主要与燃煤排放有关;结合气团的后向轨迹分析表明太原市夏季降水主要受山西省内南部低空运行的短距离输送气团的控制;西南和东南气团是太原市夏季降水中水溶性化学组分的主要来源.为了有效改善太原市的空气质量,太原南部及本地焦化企业和燃煤电厂污染物的排放应给予关注.  相似文献   

9.
广州地区雨水化学组成与雨水酸度主控因子研究   总被引:25,自引:3,他引:22  
刘君峰  宋之光  许涛 《环境科学》2006,27(10):1998-2002
采集了广州地区2003-10~2004-09的雨水样品,通过对雨水样品的pH值、主要阴阳离子组成和可溶性有机碳(DOC)的测定,分析了广州地区酸雨的现状以及影响雨水酸度的主要因素等.结果表明,在观测期间,广州地区酸雨频率高达85%;雨水的主要离子组成为NH4+、SO42-、NO3-、Ca2+、Cl-和Na+,而DOC约占总化学组成的24.0%;雨水酸度的主要控制离子还是SO42-,但NO3-对雨水酸度的影响越来越大;同时,水溶性有机酸对雨水酸度的贡献也很明显.另外,来自扬尘中高浓度的碱性含钙化合物也对雨水酸度有明显的中和作用.  相似文献   

10.
Estimates of external and internal sources of ions in net througfall deposition were derived for a deciduous and coniferous canopy by use of multiple regression. The external source component appears to be dominated by dry deposition of Ca2+, SO2 and NO3 during dormant and growing seasons for the two canopy types. Increases in the leaching rates of K+ and Mg2+ during the growing season reflect the presence of leaves in the deciduous canopy and increased physiological activity in both canopies. Internal leaching rates for SO42− doubled during the growing season presumably caused by increased physiological activity and uptake of SO2 through stomates. Net deposition of SO42− in throughfall during the growing season appears highly dependent on stomatal uptake of SO2. Estimates of SO2 deposition velocities were 0.06 cm s−1 and 0.13 cm s−1 for the deciduous and coniferous canopies, respectively, during the dormant seasons, and 0.30 cm s−1 and 0.43 cm s−1 for the deciduous and coniferous canopies, respectively, during the growing season. For the ions of major interest with respect to ecosystem effects, namely H+, NO3 and SO42−, precipitation inputs generally outweighed estimates of dry deposition input. However, net throughfall deposition of NO3 and SO42− accounted for 20–47 and 34–50 per cent, respectively, of total deposition of those ions. Error estimates of ion sources were at least 50–100 per cent and the method is subject to several assumptions and limitations.  相似文献   

11.
Bulk precipitation samples from four locations in the Pyrenees were analysed for major ions and nutrients. The chemical composition of precipitation was related to the origin of storms. Rains coming from the Mediterranean Sea (south-southeast) were alkaline, while those from the Atlantic (northwest) were more acidic. The situation and particular orography of each sampling point determine the amount of precipitation received from each direction and, therefore, the chemical features of rain at each location. We detected differences in the acid loading among the four sampling sites. Bulk precipitation in the Pyrenees is more alkaline than precipitation in central Europe (Alps), owing to the higher Ca2+ concentrations and the lower acid pollutant levels (SO42− and NO3) found in the Pyrenees.  相似文献   

12.
Atmospheric dry deposition to branches of Pinus contorta and P. albicaulis was measured during summer 1987 in a sub-alpine zone at Eastern Brook Lake Watershed (EBLW), eastern Sierra Nevada, California. Results are presented as deposition fluxes of NO3, SO42−, PO43−, Cl, F, NH4+, Ca2+, Mg2+, Na+, K+, Zn2+, Fe3+, Mn2+, Pb2+ and H+, and compared with other locations in California and elsewhere. Deposition fluxes of anions and cations to the pine branches were low, several times lower than the values determined near the Emerald Lake Watershed (ELW), another sub-alpine location in the western Sierra Nevada. The sums of deposition fluxes of the measured cations and anions to pine surfaces were similar, in contrast to the ELW location where the sums of cation fluxes were much higher than the sums of anion fluxes. A strong positive correlation between depositions of NO3 and NH4+, as well as SO42− and Ca2+, suggested that large portions of these ions might have originated from particulate NH4NO3 and CaSO4 deposited on pine surfaces. An estimated total N dry deposition (surface deposition of NO3 and NH4+ and internal uptake of NO2 and HNO3) to the forested area of the EBLW was 29.54 eq ha−1 yr (about 414 g H ha−1 yr−1).  相似文献   

13.
The precipitation chemistry of Greater Manchester, a Metropolitan County in the northwest of England, has been examined for small scale spatial variability using a network of 18 bulk precipitation collectors. Significant spatial variability was found for concentrations of non-marine SO42−, NO3, NH4+, Ca2+ and H+ ions. The statistical associations between the data were investigated using correlation, partial correlation and principal components analyses. It was found that zero-order correlation coefficients were inadequate for the interpretation of the data and that the computation of first, and higher order partial correlation coefficients was necessary in order to explain the interrelationships between the data and their spatial variability. The statistical associations between the data suggest relationships between Ca2+ and non-marine SO42−, and NO3+ in precipitation which are discussed in terms of their possible precursor species. Potential source effects were examined in conjunction with atmospheric removal processes. The dry deposition of SO4 particles, rather than the dry deposition of SO2, may explain the spatial variability of non-marine SO42−. The erosion of CaSO4 formed from the reaction of SO2 with CaCO3 on urban surfaces with subsequent resuspension is thought to be the basis of the relationship between Ca2+ and non-marine SO42− concentrations in precipitation. The wet and dry deposition of CaCO3 particles from local sources may be partially responsible for the spatial variability of H+, and dry deposition and scavenging of NH3, in conjunction with the predominant wind direction may explain the spatial variability of NO3 and NH4+ ions. Ammonia is thought to originate from sources both outside the study area and within it.  相似文献   

14.
An iterative least-squares method with a receptor model was applied to the analytical data of the precipitation samples collected at 23 points in the suburban area of Tokyo, and the number and composition of the source materials were determined. Thirty-nine monthly bulk precipitation samples were collected in the spring and summer of 1987 from the hilly and mountainous area of Tokyo and analyzed for Na+, K+, NH4+, Mg2+, Ca2+, F, Cl, Br, NO3 and SO42− by atomic absorption spectrometry and ion chromatography. The pH of the samples was also measured. A multivariate ion balance approach (Tsurumi, 1982, Anal. Chim. Acta138, 177–182) showed that the solutes in the precipitation were derived from just three major sources; sea salt, acid substance (a mixture of 53% HNO3, 39% H2SO4 and 8% HCl in equivalent) and CaSO4. The contributions of each source to the precipitation were calculated for every sampling site. Variations of the contributions with the distance from the coast were also discussed.  相似文献   

15.
中国西南酸雨区降水化学特征研究进展   总被引:10,自引:3,他引:7  
周晓得  徐志方  刘文景  武瑶  赵童  蒋浩 《环境科学》2017,38(10):4438-4446
西南酸雨区为我国主要酸雨沉降区,且是全球三大喀斯特集中分布区之一.本文将该区9个地点的降雨资料进行了总结、整理和分析,数据包括pH值和主离子成分(Cl~-、SO_4~(2-)、NO_3~-、Ca~(2+)、NH_4~+、Mg~(2+)、K~+、Na~+).该地区降雨中的主要阴离子为SO_4~(2-)和NO_3~-,主要阳离子为Ca~(2+)和NH_4~+.与我国其它地区相比,其酸性离子、碱性离子和总离子浓度均普遍高于东南地区、而低于我国北方地区.西南酸雨区主要以pH值为4.5~5.6的弱酸性降雨为主,占总降雨频次的58%左右.根据酸、碱性离子的相关性、中和因子等分析结果,该区雨水中的酸性物质可能受到了碱性离子的中和作用,其中起主要中和作用的离子为Ca~(2+)和NH_4~+.将该区雨水pH值和酸、碱性离子浓度与我国其它地区进行对比研究发现,西南酸雨区降雨受到的中和作用要强于东南地区,但弱于北方地区的降雨.通过对西南酸雨区降雨中主要离子来源的分析和估算,降雨中的酸性离子SO_4~(2-)和NO_3~-主要来自于人为污染;99.7%的Ca~(2+)和84.0%的Mg~(2+)为陆源贡献,这可能与西南地区碳酸盐岩广泛分布有关.  相似文献   

16.
深圳大气降水的化学组成特征   总被引:24,自引:5,他引:19  
牛文  何凌燕  胡敏 《环境科学》2008,29(4):1014-1019
为了了解近年来深圳降水的化学特征与大气污染状况,连续2 a采集了深圳降水样品,分析其化学组分.结果表明,与北京等中国北方内陆城市相比,深圳降水中离子浓度比较低,但降水的酸化程度和酸化频率非常高,雨量加权pH值在2004年和2005年分别为4.48和4.68,酸化频率分别为88%和91%,降水酸化严重;相对中国内陆酸雨城市,深圳降水中SO24-对雨水酸性贡献相对较低,而NO-3和Cl-对雨水阴离子总量及降水酸性的贡献相对较大;Cl-和Na 对雨水阴阳离子的贡献较高,深圳降水受海洋的影响显著;SO24-、NO-3、NH 4等二次组分在雨水中占有很高比例,三者之和超过离子总量的40%,表明深圳大气环境中二次污染突出;降水中不同组分的来源差别较大,Cl-、K 、Na 主要来自海洋源,而SO24-、NO-3、Ca2 、Mg2 主要来自非海洋源;甲酸、乙酸和乙二酸是深圳降水中主要的有机酸,三者之和在2004年和2005年分别占检测到的有机酸总量的94%和99%.  相似文献   

17.
Monthly mean chemical composition of aerosol with diameter less than 8 μm was identified in Sapporo in 1982. The mass of aerosol was made up of nine components: elemental C, organics, SO42−, NO3, NH4+, Cl, Na+, soil particles and water. The concentrations of carbonaceous particles (elemental C and organics) was relatively high (12.7–16.0μ m−3) in autumn and winter (October–February) due to emission from domestic heating and comprised 36–41% of total aerosol mass. Higher concentration of soil particles was observed in spring (March–May) (9.7–13.1 μg m−3) and comprised 22–29% of total aerosol mass due to suspension by strong wind. On the other hand, the concentration of excess SO42− (non-sea salt SO42−), which ranged from 2.6–5.2 μg m−3, did not change remarkably with season, and the fraction of excess sulfate increased to 21% in summer (July–August) probably due to photochemical transformation from SO2. Nitrate concentration was far less than that of SO42− throughout the year in Sapporo.  相似文献   

18.
A time series of wet deposition in Arnhem, the Netherlands, was analysed for the period 1984–1991. Precipitation was collected with four samplers on a daily basis. A comparative study by the Dutch National Precipitation Network showed significant biases for the observations of the National Network station due to longer exposure to dry deposition. Simultaneous operation of wet-only and bulk collectors demonstrated a concentration bias of about 10% for daily bulk sampling.Using a cluster analysis of backward trajectories, clear distinctions could be made between precipitation from continental and maritime origin. Event-to-event variations in deposition seemed to be determined largely by meteorological influences. As major anthropogenic source regions, the U.K., France, Belgium and the Netherlands itself were identified. The contribution of Dutch sources to wet acid deposition in Arnhem was estimated at 30–40%.Trends and seasonal variations were analysed with an advanced time-series model based on Kalman filtering. Similar seasonal variations were found for SO42− and NH4+. Also, seasonal variations in the concentrations of H+ and NO3 corresponded. Significant long-term changes in deposition and concentration were found for SO42− (about −3% yr−1) and H+ (about −9% yr−1) only. The analysed trends were decreasing, but decreases were larger in the years 1984–1986 than in the following years. The relative decrease in the wet deposition of SO42− was substantially smaller than decrease in dry-deposited SO2 and SO42−.  相似文献   

19.
Scavenging of sulfates and nitrates—two most common ions leading the cloudwater acidity—was investigated during field studies atop a site in Mt. Mitchell (35°44′05″N, 82°17′15″W) State Park where the highest peak (2038 m MSL) of the eastern U.S. is located. Experiments were conducted during the growing seasons (15 May–30 September) of 1986 and 1987 using an instrumented meteorological tower (16.5 m tall) and a passive cloudwater collector. A cloud episode that occurred on 12 October 1987, was also comprehensively investigated. Clouds were frequently observed in which the Fraser fir and red spruce stands stayed immersed 28% and 41% of the time during the 1986 and 1987 seasons, respectively. Rate of cloudwater deposition on the forest canopy was determined using an inferential cloud deposition model. It was found by analysing nine short duration (lasting 8 h or less) and 16 long duration cloud events that the ionic concentration (SO42− and NO3) is inversely proportional to the rate (Ic) of cloudwater deposition (in mm h−1) and can be expressed by the following relationship: [SO42−] = aIcb or [NO3] = aIcb. Theoretical arguments leading to these relationships are presented. The b values for predicting NO32− concentration are found in the range of 0.14–1.24 (mean = 0.48) for short duration and 0.062–0.63 (mean = 0.27) for long duration cloud events, respectively. The corresponding b values for predicting NO3 concentrations are 0.19–1.16 (mean = 0.49) and 0.072–0.59 (mean = 0.27), respectively. When the b parameter was between 0.2 and 0.6, the correlation coefficients between measured and predicted ionic concentrations were found to exceed 0.7. The parameter a is shown to represent the maximum ionic flux for a given cloud event. The ratio of the a parameter for SO42− to NO3 varied between 1.75 and 6.95, indicating that the SO42− contributes to the total ionic concentration substantially more than the NO3 leading to the conclusion that the cloudwater acidity is primarily due to the presence of sulfuric acid which has been demonstrated to cause foliar injury and growth retardation in red spruce trees. The above parameterization is similar to the one that is frequently used to relate ionic concentration in precipitation to the rainfall rate. In order to understand physico-chemical processes leading to the proposed parameterization schemes, meteorological and chemical variables are comprehensively analysed for one short duration and two long duration cloud events. The concentrations of principal ions (SO42−, NO3, H+ and NH4+) during the short duration cloud events were found to be much higher than those during the long duration ones, especially at colder temperatures. Such short cloud events have a potential of causing foliar narcosis in red spruce stands because of unusually acidic cloudwater to which these stands stay exposed intermittently during each growing season.  相似文献   

20.
As part of the second Arctic Gas and Aerosol Sampling Program (AGASP-II), Arctic aerosol samples were collected by the NOAA WP-3D aircraft in spring 1986. The samples were analyzed in bulk and individual-particle form, using ion chromatography (IC) and electron microscopy (EM), respectively. Information on the chemical composition of the aerosol as determined by various techniques is presented, as well as morphology, concentration, and size distribution data obtained from individual particle analyses. For most flights, a stratospheric sample and a haze profile samople were collected. Haze samples exhibited greater particle concentrations than stratospheric samples, the highest concentrations in haze reaching ∼103 cm−3 (non-volatile particles > 0.05 μm diam). Sulfur was consistently observed to be a major element in both large and small particles in haze samples. Crustal elements such as Si, Al, K, Ca and Fe were often present in significant concentrations together with S. Particles that did not emit X-rays, possibly organic or sooty C, were observed in significant concentrations in both tropospheric and stratospheric samples. Chemical spot tests confirmed that SO42− was the major S-containing species and that NO3 was not nearly as prevalent as SO42− in the Arctic aerosol particles. The mass concentrations of major anions (Cl, SO42− and NO3) and cations (Na+, K+, NH4+, Ca2+ and Mg2+) in the bulk aerosols were determined using IC. The ratios between ion concentrations, e.g. Ca2+/Na+, SO42−/Na+ and Cl/Na+, may serve as indicators of aerosol origins and mixing status of various air masses. Aerosols collected on six flights demonstrated variability of particle characteristics in relation to sources and transport of Arctic haze.  相似文献   

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