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1.
通过2013年6月—2014年5月对黔江区大气降水的化学组成分析研究表明,降水样品的p H值分布范围在4.91~7.32之间;SO2-4是降水中主要的阴离子,占阴离子总量的68.9%,Ca2+是降水中含量较高的阳离子,占阳离子总量的41.4%;SO2-4/NO-3浓度比为6.78,表明降水类型为硫酸盐型。陆源性离子Ca2+、Mg2+以及海源性离子Na+和Cl-之间存在明显的相关关系。海水和土壤的富集系数表明,研究区域的SO2-4和NO-3主要归因于人为活动的影响。  相似文献   

2.
杭州城区春节PM2.5中水溶性离子在线观测   总被引:6,自引:4,他引:2       下载免费PDF全文
利用大气细颗粒物水溶性组分在线连续监测分析系统(AIM-URG9000D),考察了杭州城区春节期间PM2.5中无机水溶性离子的浓度变化范围,探讨了这些离子的日变化特征和影响因素,同时分析了集中燃放烟花爆竹对水溶性离子浓度的影响。结果表明,SO2-4、NO-3、NH+4是PM2.5中水溶性离子的主要成分,分别占全部水溶性组分的33.3%、28.4%、19.4%;强致癌物质NO-2浓度为2.07μg/m3,远大于膜采样结果;NO-3与SO2-4的质量比为0.85,表明机动车尾气排放导致的大气污染正逐步加重;各水溶性离子有着各自不同的日变化规律。相关性分析表明,NH+4与NO-3、SO2-4的相关系数分别为0.92、0.81;K+、Cl-、Mg2+3者之间的相关系数均在0.9以上。烟花爆竹燃放期间,PM2.5浓度急剧上升,Cl-、SO2-4、K+、Mg2+浓度分别达到燃放前的18、6、53、76倍。  相似文献   

3.
为了解采暖期大气PM_(1.0)和PM_(2.5)中水溶性离子污染特征,采集哈尔滨市2014年11月至2015年3月采暖期PM_(1.0)和PM_(2.5)的样品,进而分析其中的水溶性离子(F-、Cl-、NO-3、SO2-4、Na+、NH+4、K+、Mg2+、Ca2+)的质量浓度。结果表明:PM_(1.0)和PM_(2.5)中的水溶性离子具有相同的变化趋势。采暖期间PM_(1.0)和PM_(2.5)中9种水溶性离子质量浓度总和分别为25.4~60.7μg/m~3和38.8~78.0μg/m~3。在PM_(1.0)和PM_(2.5)中NH+4、NO-3、SO2-4占比较高,而F-、Mg2+占比较低。PM_(1.0)和PM_(2.5)中9种水溶性离子质量浓度均为夜间大于白天。在PM_(1.0)和PM_(2.5)中,Mg2+和NH+4、F-和Cl-呈显著相关,说明它们来自相似的污染源,在PM_(1.0)中的K+和Ca2+显著相关,故它们受相似的污染源的影响。根据酸度与各离子的相关性,得出SO2-4和NH+4是控制大气颗粒物酸碱性的主要离子。另外,气象因素对PM_(1.0)和PM_(2.5)的浓度有影响。  相似文献   

4.
对昆山市区域7个点位夏秋季的5中水溶性无机阴离子(SO2-4、NO-3、NO-2、Cl-、F-)的污染特征进行了调查,结果表明,昆山市夏季大气PM2.5中5种离子平均值排序为:ρ(SO2-4)ρ(Cl-)ρ(NO-3)ρ(F-)ρ(NO-2);秋季平均值排序为:ρ(SO2-4)ρ(NO-3)ρ(Cl-)ρ(F-)ρ(NO-2)。SO2-4、NO-3和Cl-3者的总量在PM2.5中占比20%。除F-以外各区域离子的平均值秋季比夏季要高。ρ(NO-3)/ρ(SO2-4)表明,固定污染源在昆山市大气颗粒物污染中仍然占很大比重,但大部分测点的比值接近1,说明移动源也是昆山大气颗粒物的重要污染源。  相似文献   

5.
基于城市超级站对2018年12月—2019年2月南京市在线水溶性离子污染特征进行研究。结果表明:监测期间水溶性无机离子(WSIs)质量浓度均值为45.7μg/m3,占PM2.5的67.8%,各离子排序为NO3-> SO42->NH4+>Cl->K+>Ca2+>Na+>Mg2+。二次离子(SNA)是PM2.5主要组分,大气气溶胶呈中性。各离子日变化存在差异,SNA变化趋势和WSIs基本一致。南京市冬季存在明显SO2和NO2向SO42-和NO3-二次转化;NO3-/SO42-均值为1.96,移动源增量大于固定源。通过相关性和三相聚类分析可知,SNA主要结合方式为(NH4)2SO4和NH4NO3。主成分分析表明,南京市冬季PM2.5中水溶性离子主要来源是二次转化,燃煤、生物质燃烧和土壤建筑扬尘也有贡献。  相似文献   

6.
于2020年6月—2021年5月,应用相关分析、富集因子(EF)以及正定矩阵因子分解模型(PMF)和气团来源分析对东南沿海岛屿平潭大气降水化学特征及来源进行了综合评价与分析。结果表明,平潭大气降水pH值为3.96~7.49,平均值为4.78;电导率(EC)为4.9~342.0μs/cm,平均值为24.4μs/cm,高于我国降水背景点值;大气降水中各离子组分当量浓度排序为:Cl->Na+>SO_(4)^(2)>NO-3>Ca 2+>NH+4>Mg 2+>K+>F->NO-2,Cl-和Na+是降水中占比最大的阴、阳离子,其当量浓度占总离子当量浓度的51.4%;NO-3对平潭大气降水酸化的贡献较高(55.9%),且有77%的大气降水酸度被碱性物质中和,其中铵根离子(NH+4)和钙离子(Ca 2+)有着较强的中和能力。富集因子分析结果表明,除海洋源外,地壳源和人为源也是平潭大气降水离子的主要来源;PMF模型结果显示,海洋源、人为源、地壳源和燃烧源分别贡献了平潭大气降水离子的61.1%,23.8%,10.0%和5.1%;气团来源分析结果表明,区域传输对平潭大气降水离子分布及空气质量影响显著,京津冀和长三角地区排放的人为污染物可以经海上传输通道由北至南影响我国下风向地区,给沿海地区大气细颗粒物(PM_(2.5))与臭氧(O_(3))协同控制带来挑战。  相似文献   

7.
为研究大同市大气颗粒物质量浓度与水溶性离子组成特征,于2013年2、7、9、12月,分别对大同市及其对照点庞泉沟国家大气背景点进行了PM2.5及PM10的采样,通过超声萃取-IC法测定了样品中的9种水溶性离子,结果表明,大同市大气颗粒物污染1、4季度重于2、3季度,PM2.5季度均值全年均未超标,PM10仅第1季度超标1.4倍,污染状况总体良好,PM2.5与PM10相关系数R为0.75,说明大同市颗粒物污染有较为相近的来源,且不同季节均以粗颗粒物为主;大同市PM2.5中水溶性离子浓度分布为SO2-4、NO-3、NH+4Cl-、Ca2+K+、Na+F-、Mg2+,PM10中Ca2+浓度仅次于SO2-4、NO-3,控制扬尘将有效降低PM10的浓度;PM2.5及PM10中的9种水溶性离子在不同季度的浓度与颗粒物浓度分布规律类似,1、4季度较高,2、3季度较低;由阴阳离子平衡计算结果可知,相关性方程的斜率K为1.045,表明大同市大气颗粒物中阳离子相对亏损,大气细粒子组分偏酸性。NO-3与SO2-4浓度比值均小于1,大同市以硫酸型污染为主,大气中的SO2-4主要来源于人类活动排放。  相似文献   

8.
分析了深圳市2000年-2009年降雨监测数据.结果表明:深圳市降水pH年均值<5.6,一年中酸雨最严重的是7-9月;影响降水的主要离子是SO2-、Cl-、NO3-、Ca2+、NH4+和Na+.气象因素是影响深圳市降水酸度的重要因素之一.  相似文献   

9.
采用离子色谱法同时测定矿泉水中的K+、Ca2+、Na+、Mg2+、Cl-、SO2-4,方法线性良好,检出限为0.01 mg/L~0.09 mg/L,实际水样平行测定的RSD≤0.8%,加标回收率为91.7%~105%,标准样品的测定结果符合要求.  相似文献   

10.
采用离子色谱法同时测定矿泉水中的K+、Ca2+、Na+、Mg2+、Cl-、SO42-,方法线性良好,检出限为0.01 mg/L~0.09 mg/L,实际水样平行测定的RSD≤0.8%,加标回收率为91.7%~105%,标准样品的测定结果符合要求。  相似文献   

11.
分时段对每次降雨连续采样,对pH值、电导率、硫酸根离子、硝酸根离子、氯离子、铵、氟离子、钾离子、钠离子、钙离子、锾离子等共11项进行监测.分析了各种离子的组成、所占比例、时段变化规律和对部分离子的来源进行了探讨.分析结果表明.山形的降雨为硝酸型酸雨,有别于我国大多教城市的硫酸型酸雨类型.  相似文献   

12.
在酸雨研究领域,人们普遍是对降雨或降雪等湿沉积过程进行研究.近年来,干沉积也引起了大家的关注,但尚未建立成熟的方法.文章介绍了利用四段滤膜法进行干沉积监测的方法,作为日本全国公害研究协会的合作项目在日本神户和丰冈市进行了实际测量和评估.  相似文献   

13.
The present study investigated the chemical composition of wet atmospheric precipitation over Dhanbad, coal city of India. The precipitation samples were collected on event basis for three years (July 2003 to October 2005) at Central Mining Research Institute. The precipitation samples were analyzed for pH, conductivity, major anions (F, Cl, NO3, SO4) and cations (Ca, Mg, Na, K, NH4). The pH value varied from 4.01 to 6.92 (avg. 5.37) indicating acidic to alkaline nature of rainwater. The pH of the rainwater was found well above the reference pH (5.6), showing alkalinity during the non-monsoon and early phase of monsoon, but during the late phase of monsoon, pH tendency was towards acidity (<5.6~pH) indicating the non-availability of proper neutralizer for acidic ions. The observed acidic events at this site were 91, (n = 162) accounting 56% for the entire monitoring months. The (NO3 + Cl)/SO4 ratio in majority of samples was found below 1.0, indicating that the acidity is greatly influenced by SO4. The calculated ratio of (Ca + NH4)/(NO3 + SO4) ranges between 0.42–5.13 (average 1.14), however in most of the samples, the ratio is greater than unity (>1.0) indicating that Ca and NH4 play an important role in neutralization of acidic ions in rainwater. Ca and SO4 dominate the bulk ionic deposition and these two ions along with NH4 accounts 63% of the annual ionic deposition.  相似文献   

14.
北京市大气PM10源解析研究   总被引:10,自引:5,他引:10  
于2004年在北京市定陵、车公庄、古城、亦庄、房山和奥体中心6个采样点采集大气PM10环境样品,针对北京市颗粒物主要排放源采集土壤尘、建筑水泥尘、燃煤等污染源PM10样品,分别对其中的无机元素、离子、有机碳(OC)和元素碳(EC)进行测定。采用代表北京市颗粒物主要排放源PM10组分特征的成分谱,利用CMB受体模型对PM10来源进行解析。结果表明,PM10的最大来源为土壤尘,其它贡献源类依次为燃煤排放、机动车/燃油排放、二次粒子(SO42-、NO3-和NH4 )、建筑水泥尘。污染源贡献具有明显的季节变化,并存在一定的地域变化。  相似文献   

15.
This study presents the results of the analyses of Cd, Pb, cations and anions present in precipitation and dust at a pre-alpine and a suburban site in Switzerland in the period from 1988 to 2003. The aim of these measurements was to monitor the success of measures taken to diminish pollutant emissions. No change was found for Ca2+, K+, Na+ and Mg2+ loads – in line with expectations, as no reducing measures had been taken. Statistically significant and largely decreasing values (50–90%) were found for Cl and Cd (linked to the fitting of filters in incineration plants), Pb (unleaded petrol), (diminishing the use of mineral oil with high S content), and the proton (lower HCl and SO2 emissions). A smaller decrease (up to 30%) or none was registered for oxidised nitrogen components (fitting cars with catalytic converters, but an increase in numbers of cars and trucks). No significant change was found for NH3 as farming techniques had undergone no major changes. The long-term measurements show that the measures taken to reduce emissions were successful. A shorter monitoring period would have been misleading owing to data variability and temporary incidents e.g. amount of precipitation.  相似文献   

16.
Declining forest health has been observed during the past several decades in several areas of the eastern USA, and some of this decline is attributed to acid deposition. Decreases in soil pH and increases in soil acidity are indicators of potential impacts on tree growth due to acid inputs and Al toxicity. The Cherry River watershed, which lies within the Monongahela National Forest in West Virginia, has some of the highest rates of acid deposition in Appalachia. East and West areas within the watershed, which showed differences in precipitation, stream chemistry, and vegetation composition, were compared to evaluate soil acidity conditions and to assess their degree of risk on tree growth. Thirty-one soil pits in the West area and 36 pits in the East area were dug and described, and soil samples from each horizon were analyzed for chemical parameters. In A horizons, East area soils averaged 3.7 pH with 9.4 cmolc kg???1 of acidity compared to pH 4.0 and 6.2 cmolc kg???1 of acidity in West area soils. Extractable cations (Ca, Mg, and Al) were significantly higher in the A, transition, and upper B horizons of East versus West soils. However, even with differences in cation concentrations, Ca/Al molar ratios were similar for East and West soils. For both sites using the Ca/Al ratio, a 50% risk of impaired tree growth was found for A horizons, while a 75% risk was found for deeper horizons. Low concentrations of base cations and high extractable Al in these soils translate into a high degree of risk for forest regeneration and tree growth after conventional tree harvesting.  相似文献   

17.
湖南省大气湿沉降化学研究   总被引:19,自引:1,他引:19  
以湖南省1999~2001年的酸雨监测数据为基础,运用统计学和线性回归分析方法研究了位于中国中南部的重酸雨区湖南省的大气降水的酸度和化学组成的分布特征以及季节变化规律。结果表明,大气降水以SO_4~(2-)为主,占总离子量的31%,大气降水阴阳离子基本平衡。降水年平均pH值为4.86,以春季酸度最大,降水离子总量以冬季最大。研究结果同时表明,降水酸度是主要酸性离子和主要碱性离子共同作用的结果,而且([H~+]+[NH_4~+])/([SO_4~(2-)]+[NO_3~-])比值的变化能较好的反映降水过程中强酸离子的中和现象。  相似文献   

18.
Rain water samples were collected to study the chemical composition of wet atmospheric precipitation (first event) over the Lucknow city in the northern Indo-gangetic alluvial plains. The samples were collected in the month of July, 2005 from different sites. The wet precipitation samples were analyzed for pH, EC, major ions (, Cl, , , , F, Na+, K+, Ca2+, Mg2+, ) and heavy metals (As, Cd, Al, Co, Cr, Cu, Fe, Mn, Mo, Ni, Hg, Pb, Se, Sn, Ti, V, Zn). The pH values of wet precipitation samples ranged between 6.5 and 8.7. The analysis of linear regression applied to the set of studied variables and computation of neutralization factors showed that neutralization occurred in precipitation samples and Ca2+ had the maximum neutralization capacity. It was found that Cl, , Ca2+, Mg2+, Na+ and K+ in the precipitation samples originated mainly from crustal/anthropogenic sources in the region. On an average Fe, and Al accounted for >72% of the total concentration of trace metals in the wet precipitation samples followed by Zn (>10%). Enrichment factors calculated for heavy metals over reference background level in seawater and Earth’s crust showed relatively higher enrichment of Zn. The principal component analysis (PCA) identified the possible sources of ionic species and heavy metals in the wet precipitation samples.  相似文献   

19.
Manchar Lake is the largest natural freshwater lake in Pakistan. The Lake has received less fresh water in past few years. In addition, drainage water is being discharged in the Lake through Main Nara Valley Drain (MNVD) since many years. Consequently, concern has grown regarding the water quality of the Lake. The aim of this study was to assess the water quality of Manchar Lake and MNVD and the objectives were to determine physiochemical properties and the concentrations of common cations and anions as well as seven trace metals i.e. Cu, Ni, Zn, Co, Fe, Pb and Cd. The concentration of the trace metals were determined by simultaneous preconcentration and solvent extraction using flame atomic absorption spectrometer. Results of physicochemical parameters of Manchar Lake water samples showed mean pH 8.4 (±0.2), conductivity 2,310.3 (±581.3) μS cm−1 and hardness (as CaCO3) 213.1 (±62.3) mg l−1. Mean concentrations of cations and anions were Na 521.5 (±49.7), Cl 413.6 (±225.7), Ca 70.7 (±12.9), Mg 56.2 (±28.9), K 17.6 (±6.5), 0.34 (±0.2) and 0.02 (±0.01) mg l−1. Mean concentrations of trace metals were Zn 15.7 (±1), Fe 12 (±3.5), Pb 9 (±2.7), Cu 8.9 (±7.7), Ni 4.3 (±3.4), Co 4 (±3.4) and Cd 1.1 (±1) μg l−1. MNVD water samples showed mean pH 8.9 (±0.8), conductivity 1,735.7 (±567.8) μS cm−1 and hardness (as CaCO3) 184.8 (±32.4) mg l−1. In MNWD, the mean concentrations of cations and anions were Na 482.7 (±11.7), Cl 395.7 (±271.5), Ca 79.1 (±23.5), Mg 54.2 (±28.1), K 26.2 (±21.3), NO−3 0.5 (±0.3) and 0.1 (±0.1) mg l−1. Mean concentrations of trace metals observed in MNWD water were Fe 14.9(±3.5), Cd 8.3 (±9.4), Pb 6.9 (±2.4), Cu 6.6 (±3.1), Zn 6.2 (±1.8), Co 4.5 (±2.7), and Ni 3.5 (±2.9) μg l−1. The pH of both Manchar Lake and MNVD waters and concentration of Pb in Manchar Lake and concentration of Cd in MNVD water were higher than the World Health Organisation’s guideline values for the drinking water quality. The water quality of Manchar Lake was found degraded.  相似文献   

20.
Uptake of metal ions in moss from artificial precipitation   总被引:2,自引:0,他引:2  
Uptake in Hylocomium splendens and Sphagnum fuscum, of Zn, Cu, Cd, and Pb from artificial solutions of precipitation at ambient concentration levels was investigated. The primary objective was to study to what extent major cations and possibility anions in the precipitation might affect the uptake by competition or possibly by complexing reactions. In addition the effect on metal uptake of pH and temperature was studied. The uptake of Zn and partly Cu was lower from precipitation with a high content of seasalt. With increasing metal concentration an increasing amount of Zn and Cu accumulated in the moss. These observations suggest that cations in the precipitation such as Na+ and Mg2+ may affect the uptake by competition. Possibly also Cl- may interfere by complexing reactions. Uptake of Zn and Cd was pH dependent. The uptake of all four metals increased with temperature. The results from this work appear to be significant with respect to the interpreation of data from atmospheric deposition surveys based on moss analysis.  相似文献   

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