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1.
南岭山地湖泊多环芳烃的大气沉降历史记录   总被引:1,自引:0,他引:1  
高大山脉对大气环流具有阻挡或屏障作用.通过分析测定南岭山地湖泊沉积物中多环芳烃(PAHs)的垂直分布,结合210Pb定年,探讨了大气PAHs污染在南岭山地的沉积历史.结果显示,沉积物中的PAHs主要以低环数化合物为主,其中尤以菲的含量为最高.在剖面深度0~28 cm范围内,总多环芳烃的含量范围为86~778 ng/g.自1970年开始,PAHs含量持续增加,其中20世纪80、90年代中后期PAHs含量略有降低;在2000年后,沉积柱中的PAHs含量呈急剧增加之势态.多环芳烃在大气迁移过程中发生了组成分异,沉积物中相对富集轻组分(低环数)PAHs,与颗粒物结合的大气干湿沉降是PAHs向偏远山地积的主要途径.  相似文献   

2.
长期以来,研究者在探讨土壤中多环芳烃(PAHs)的降解及修复过程中,缺乏简便有效的手段对化合物的降解动态进行定量研究。前人尝试用投加实验、对比采用降解措施前后污染物的浓度变化、模型计算等方法研究PAHs的降解过程,其结果常互相矛盾,或不能真实反映复杂的实际环境。本文应用单体碳同位素技术对农田土壤中多环芳烃的植物降解过程进行定量表征,采集了某地农田表土作为供试土壤,选择玉米作为供试作物,开展了作物对土壤中PAHs降解及消除过程的研究。气相色谱-质谱分析结果表明,培养所用的玉米原始土及分4批收集的空白土、根际土、非根际土样品中16种PAHs的浓度总和(∑PAHs)平均分别为380.8 ng/g、(281.5±34.7) ng/g、(272.2±11.6) ng/g和(299.8±37.9) ng/g;玉米生长期间,各土壤样品 的∑PAHs均比原始土壤有所下降,但除3环化合物(苊烯、苊、芴、菲、蒽)外,其他化合物并未随玉米的生长表现出显著趋势。与玉米根、叶倾向于富集低环PAHs化合物相对应,可以判断植物对土壤中的低环化合物去除作用最为显著。各采样时期玉米根际土、非根际土和空白土壤样品中多环芳烃单体化合物的碳同位素分馏值(δ13C)在-34.31‰~-23.95‰之间,且除芘外的其他化合物的δ13C值随时间呈现逐步变轻的趋势,波动值位于-0.6‰~-9.0‰之间;本文对于PAHs单体化合物,尤其是4、5环化合物,在玉米降解过程中的碳同位素分馏与浓度变化之间未发现明显关系。考虑3环以下的PAHs化合物更倾向于被降解和清除,且其碳、氢同位素分馏情况更容易被观察到,因此稳定同位素分析更有助于探明该类单体多环芳烃污染物在环境中的迁移、转化规律。  相似文献   

3.
广州市空气颗粒物中烃类物质的粒径分布   总被引:13,自引:1,他引:12  
用 Andersen六段分级大流量采样器 (粒径为 : 10~ 7.2 μ m, 7.2~ 3.0 μ m, 3.0~ 1.5 μ m, 1.5~ 0.95 μ m, 0.95~ 0.49 μ m, ≤ 0.49 μ m)采集了广州市荔湾区 4个季度的大气颗粒物样品 , 用气相色谱 (GC)定量分析了其中的正构烷烃 (n-alkanes)组分,用气相色谱-质谱 (GC-MS)定量分析了其中的多环芳烃 (PAHs)组分. CPI2(代表石油成因的碳优势指数 )、 CPI3(代表生物成因的碳优势指数 ) 和 Wax(植物蜡含量 )表明了石油成因的烷烃倾向于富集在细颗粒物上,而生物成因的烷烃倾向于富集在粗颗粒物上.正构烷烃和低相对分子质量多环芳烃表现出双峰模型分布,高相对分子质量多环芳烃呈现单峰模型分布,仅在细颗粒段有一峰值.烷烃和芳烃秋冬季的 MMDs(质量中值直径 )比春夏季的大.在高温季节化合物优先富集在细颗粒物上,而在低温季节则向粗的颗粒物方向偏移.  相似文献   

4.
为了解广州地区蔬菜基地有机污染物的分布情况,选取了6个代表性基地进行调查采样,测试分析了表层土壤、蔬菜及灌溉水中15种邻苯二甲酸酯(PAEs)化合物、16种多环芳烃(PAHs)化合物和19种有机氯农药(OCPs)化合物的质量分数及质量浓度.结果表明:在15种PAEs化合物的总质量分数(w(ΣPAEs))中,土壤样品为158.0~4 321.0 ng/g,蔬菜样品为1 134.0~48 576.0 ng/g;水样中15种PAEs化合物的总质量浓度(ρ(ΣPAEs))为632.0~14 271.0 ng/L;就单个化合物而言,以DiBP、DBP、DEHP三种污染物为主,其三项之和占所有PAEs质量分数的97.5%~99.1%;在16种PAHs化合物的总质量分数(w(ΣPAHs))中,土壤样品为28.48~1 121.96 ng/g,蔬菜样品为238.09~1 000.61 ng/g;水样中16种PAHs化合物的总质量浓度(ρ(ΣPAHs))为338.21~1 239.78 ng/L;在19种OCPs化合物的总质量分数(w(ΣOCPs))中,土壤为0.04~71.28 ng/g,蔬菜为1.08~9.18 ng/g.总体上看,各基地土壤中DBP质量分数均超标,多环芳烃类在灵山、花东、黄埔菜地土壤中存在轻微污染,有机氯农药均未出现污染.  相似文献   

5.
为研究广西三娘湾海域表层沉积物有机质中烃类化合物的分布特征及来源,于2019年10月在三娘湾海域采集了表层沉积物样品,利用加速溶剂萃取GC-MSD法对沉积物中的16种多环芳烃(PAHs)进行了分析。结果表明: 三娘湾海域表层沉积物样品中多环芳烃的含量为37~241.8 ng/g,总体处于含量较低的水平,但与往年相比研究区PAHs含量增加明显。通过组分分析等方法进行PAHs的来源分析,结果指示其主要来源为燃烧源,夹杂石油源的混合来源; 通过效应区间法对多环芳烃进行生态风险评价,认为其总体处于风险较低的水平。综合研究表明,三娘湾海域总体生态环境较好,但人类活动对多环芳烃含量及分布特征的影响较明显,需要持续关注。  相似文献   

6.
运用GC-MS测定黄河口及邻近海域表层沉积物中多环芳烃(PAHs)含量,探讨PAHs的分布、来源及潜在生态风险。结果表明沉积物中多环芳烃总浓度为111.3~204.8 ng/g,平均浓度为115.8 ng/g;PAHs高浓度样点多分布在黄河口西北缘、西南缘和东缘。黄河口南部和中部沉积物中的PAHs主要来源于燃烧源,西北缘沉积物的PAHs则呈现出石油源和燃烧源混合的特征。除局部(Sc11,Sc12和Sc18)沉积物PAHs具高潜在生态风险,大部分沉积物PAHs潜在生态风险为中等。  相似文献   

7.
卢丽  王喆  裴建国 《现代地质》2015,29(2):324-330
为了研究岩溶地下河系统内多种介质中多环芳烃(PAHs)的浓度、组成和分布特征,以广西某典型岩溶地下河为例,利用2013-2014年同期的空气、地下河水、沉积物和土壤样品测试数据,对不同环境介质中16种多环芳烃(PAHs)的浓度、组成和分布特征进行对比分析。结果表明,空气和地下河水以2~3环PAHs为主,其中空气的2~3环PAHs比例为71.66%,地下河水的2~3环PAHs比例为54.84%;沉积物和土壤以4~6环PAHs为主,其中沉积物的4~6环PAHs比例为54.26%,土壤的4~6环PAHs比例为65.06%;环境介质中PAHs的浓度变化为:上游<中游<下游,这与污染源排放、吸附作用等相关;同一区域不同介质的2~3环PAHs百分比为:地下河水>沉积物>土壤,而4~6环PAHs百分比则相反。  相似文献   

8.
收集了太原市不同功能区的大气总悬浮颗粒物样品,经超声波提取分离得到正构烷烃、多环芳烃,经色谱-质谱分析表明,太原市大气颗粒物中正构烷烃主要来源于化石燃料的燃烧,少量为自然排放源。含量较高的不带取代基的多环芳烃有8种,其年平均浓度为1.50μg/m3,其中苯并(a)芘的年平均浓度为74.7ng/m3。多环芳烃的浓度分布为一电厂化工区>太钢工业区>桃园三巷商业居民区>太行仪表厂文化区。利用三角图与烟尘、汽车尾气样品中的多环芳烃特征相比较,认为太原市大气颗粒物中的多环芳烃主要来源于煤的燃烧。  相似文献   

9.
孔祥胜  苗迎 《地球学报》2014,35(2):239-247
为证实大气干湿沉降物是岩溶地下河中多环芳烃(PAHs)的来源,研究选择了某城市典型的岩溶地下河水源地作为研究地点,采用大气干湿采样器、聚氨酯泡沫(PUF)大气被动采样器分别采集大气及其干湿沉降物样品,同时采集地下河水样和分层采集流域土壤,利用气相色谱-质谱联用仪(GC-MS)测定了16种PAHs优先控制污染物。结果表明,地下河流域大气干湿沉降中PAHs的干湿沉降通量为147.26 ng·(m2·d)-1,流域PAHs沉降量为1943.8 g;大气中的PAHs浓度为45.33 ng·m-3;地下河水中PAHs浓度平均值为220.98 ng·L-1;土壤中PAHs浓度为38.72 ng·g-1;大气、降雨和土壤中PAHs组成以2~3环的萘、芴、菲、荧蒽、芘5种为主,地下河水中以芴、菲、荧蒽、芘、苯并[a]蒽、苯并[a]芘6种为主。利用地下河多介质中的16种PAHs成分谱、特征比值结合它们的物理化学性质进行PAHs的源解析,研究显示大气干湿沉降是岩溶地下河水中多环芳烃的主要污染源之一,这归因于岩溶地区防污性能的脆弱性。  相似文献   

10.
杨清 《岩矿测试》2022,(3):404-411
多环芳烃(PAHs)是一类具有致癌、致突变、致畸的碳氢化合物,具有较高的辛醇-水分配系数,易被土壤颗粒吸附而影响环境和人体健康。过硫酸钠(Na2S2O8)氧化法是近些年来国内外修复PAHs污染土壤较为常用的方法,但现阶段在测定修复后土壤中PAHs含量、进行土壤修复效果评估时亟待解决的问题是:经该方法修复的土壤,若土壤中残留有过硫酸钠,在样品前处理过程中由于提取温度较高,可能会进一步加速多环芳烃的氧化反应,从而影响土壤中PAHs的准确测定。本文建立了一种在修复后土壤中加入还原剂抗坏血酸,与残留的过硫酸钠反应生成脱氢抗坏血酸,采用索氏提取结合气相色谱-质谱法(GC-MS)同时测定土壤中16种PAHs的方法,PAHs加标回收率为76.2%~110.0%。而修复后土壤若不加还原剂直接进行索氏提取,用GC-MS测定,可能会使部分PAHs及替代物的测定不准确,PAHs加标回收率仅为6.0%~72.4%。通过对比分析表明,在样品提取前加入还原剂,可以有效地消除残留过硫酸钠的影响,提高测定修复后土壤中PAHs含量的准确性。  相似文献   

11.
Polycyclic aromatic hydrocarbons’ (PAHs) concentrations in bulk samples are commonly used to assess contamination but PAHs are unevenly distributed among particle-size fractions. Seventeen urban surface soil samples from the city of Xuzhou, China, were collected and then fractionated into five size fractions (2,000–300, 300–150, 150–75, 75–28, and <28 μm). The concentrations of 12 US EPA PAHs were measured using gas chromatograph/mass spectrometry in various fractions, and the bulk soil samples and distribution patterns of PAHs in different particle-size fractions were investigated. The mean concentration of total PAHs in bulk soil samples was 1,879 ng/g. The median concentrations for all individual PAH were higher for the 75–2,000 μm fraction than for the <75 μm fraction. The distribution factors for various PAHs in <28 μm soil fraction were closely correlated (r = ?0.661, p < 0.019) to bulk soil fugacity capacity. The values of PAH isomer indicated that traffic emissions might be the major origin of PAHs in Xuzhou surface soils. Spearman correlation analysis was performed and the result suggested that soil organic carbon might be a factor controlling the concentrations of PAHs in soils.  相似文献   

12.
表层岩溶带土壤中多环芳烃分布特征及来源解析   总被引:3,自引:0,他引:3  
利用气相色谱-质谱联用仪(GC-MS)对表层岩溶泉域土壤中的16种优控的多环芳烃(Polycyclic Aromatic Hydrocarbons, PAHs)含量进行了分析,并对其组成、污染水平和来源进行了探讨。结果表明,16种优控PAHs在表层岩溶泉域土壤中的检出率为100%,其含量介于439.19~3329.72ng/g之间,平均值为1392.44ng/g,7种致癌性PAHs占总量的26%。PAHs的组成特征受地形的控制,随着海拔升高,低环PAHs所占比例升高,高环PAHs比例降低。同分异构体比值分析表明,研究区土壤中的PAHs主要来自于煤、生物质和石油的燃烧排放。研究区土壤中16种PAHs的TEQcarc值介于18.65~501.13ng/g,平均值为140.57ng/g。7种致癌性PAHs占总TEQcarc的比例达到96.8%。研究区表土中,后沟泉域的污染程度最大,次之是兰花沟泉域和柏树湾泉域,水房泉泉域的污染程度最小,但由于柏树湾泉域松针落叶中BaP、PAHs含量较高,松针落叶中PAHs含量分别高达36.36ng/g和2370.1ng/g,土壤生态风险评价中应考虑松针落叶层的潜在影响。   相似文献   

13.
杨柯  姜建军  刘飞  白中科 《地学前缘》2016,23(5):281-290
原煤的开采、储存、运输及其加工利用过程是多环芳烃(PAHs)污染的主要来源。由于缺乏相关系统调查数据,其对煤矿复垦区土壤环境质量的影响尚不明确。平朔煤矿复垦土地主要作为耕地利用,了解其PAHs污染状况直接关系粮食安全和人体健康。该研究通过野外实地调查,开展了平朔煤矿复垦区表层土壤中多环芳烃(PAHs)的毒性风险分析研究。在整个平朔煤矿45 km2范围内,以500 m×500 m间距为基准,按照不同用地类型,采集了0~20 cm深度土壤样品179个,再按照1 km×1 km单元格组合后分析。使用安捷伦高分辨气相色谱低分辨质谱进行目标物的检测。加入代用标准2氟联苯(2 FBP)以进行回收率控制。研究结果表明:土壤中16种EPA PAHs的含量范围为213.60~2 513.20 ng·g-1,均值为717.09 ng·g-1。PAHs成分特征显示主要以3~4环为主(52%),5~6环次之(42%),2环所占比例最低(6%)。使用相关分析法判定,主要污染来源为原煤。毒性风险分析结果显示,平朔煤矿土壤PAHs存在一定生态风险,当土地重新作为农田加以利用时,需要加以关注。  相似文献   

14.
An investigation for the analysis of polycyclic aromatic hydrocarbons in airborne particulates using thermal desorption and gas chromatography-mass spectrometry is described. Samples are obtained from ambient air using fibreglass filters and the volatile material from the filter is thermally desorbed to gas chromatograph. A 30 meter capillary column is used to separate the hydrocarbons and eight polyaromatic hydrocarbons are used to test the method and recovery is >95%. The eight polycyclic aromatic hydrocarbons anthracene, phenanthrene, fluoranthrene, pyrene, benzo (a) anthracene, chrysene, benzo (a) pyrene and benzo (e) pyrene were the most abundant PAHs found in the samples of ambient air with current method at Uxbridge-London. Application of the measurement of polycyclic aromatic hydrocarbons in ambient air samples shows that the hydrocarbons trapped in the particle phase to a lesser degree at higher ambient temperature. In conclusion a method has been developed to transfer the PAHs in particle phase from a filter to GC-MS by thermal desorption. A standard mixture of PAHs, when absorbed onto the filter, did lead to strong analyte absorbent interactions by the high percent recovery of the sample.  相似文献   

15.
Attention has been paid for the levels, sources and health risks of atmospheric aliphatic and polycyclic aromatic hydrocarbons (n-alkanes and PAHs) in remote areas, however, few studies have focused on those in the Tibetan Plateau. In this study, 18 pairs of atmospheric samples were obtained during the period from August 2006 to July 2007 in Lhasa, the capital city of Tibet. Both gas-phase and particulate-phase n-alkanes and PAHs were measured. Concentrations of n-alkanes (gas + particulate phase, 99.1–480.9 ng/m3) and PAHs (gas + particulate phase, 11.4–72.5 ng/m3) in Lhasa are lower than those in many cities. The sources of n-alkanes related to biological and petroleum sources were 67 and 33%, respectively. According to the results of diagnostic ratios and principal component analysis, emission of traffic vehicles was one of the important PAH sources, and sources of benzo(a)pyrene was likely attributed to incense burning. Good simulations were obtained by traffic soot-based model for fluoranthene, pyrene and benzo(a)anthracene, while, wood soot-based model fitted the experimental results of benzo(a)pyrene better. This meant atmospheric fate of PAHs was mainly influenced by the adsorptive partitioning that occurred during traffic and incense burning procedures. In addition, the benzo[a]pyrene-equivalent carcinogenic power (BaPE) in the present study (0.1–1.6 ng/m3) is lower than those in other cities and also the air quality standard of China, suggesting that atmospheric PAHs caused low health risks.  相似文献   

16.
Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous organic pollutants in urban environments including urban soils. Elevated concentrations of PAHs in urban soils are caused by incomplete combustion of petroleum and coal. This study assesses 16 individual PAH compounds in a total of 112 surficial soil samples. The objective was to assess and compare the levels of contamination as well as examine the main sources of PAHs in four urban agricultural soils using molecular ratios of some specific hydrocarbons. The study showed that PAH levels in soil ranged from 1.23 ng/kg in soil collected from Dzorwulu to 2.95 ng/kg in soil collected from Ghana Broadcasting Cooperation (GBC) vegetable irrigation site. Of the total PAHs, the more water soluble PAHs (2–4 rings), which tend to be concentrated in the vapour phase were found to dominate the soils. The percentage dominance were Dzorwulu (52.8 %), Marine Drive (62.5 %), CSIR (53.2 %) and GBC (49.2 %). However, there were significant levels of the more carcinogenic PAHs (5–6 rings) present with percentages as 47.1, 37.5 46.8 and 50.8 % for Dzorwulu, Marine Drive, CSIR and GBC vegetable irrigation sites, respectively, and therefore, may impact negatively on public health. Based on the classification by the Institute of Soil Science and Plant Cultivation in Pulawy, Poland, urban soils in Accra could be classified as contaminated to different levels. Molecular ratios of Flu/pyr and PA/Ant were calculated to determine the main sources of PAHs. Results showed that PAHs could originate mainly from incomplete combustion of petroleum products, especially from atmospheric fallout from automobile exhausts. The study further showed that B(a)P concentration of 0.05 ng/kg in soil from GBC urban vegetable irrigation site requires immediate clean-up exercise and monitoring to mitigate human health impact.  相似文献   

17.
在2010年5月调查了沈阳市细河沿岸表层土壤中有机氯农药(OCPs)和多氯联苯(PCBs)的污染现状,评价土壤中OCPs残留的生态风险。沈阳细河沿岸表层土壤中HCHs浓度范围分别为2.32~15.90 ng/g,平均浓度为8.99ng/g。DDTs浓度范围分别为9.06~111.6 ng/g,平均浓度为37.08 ng/g。7种PCBs异构体总平均浓度为1.01ng/g,大部分采样点OCPs和PCBs未超过国家土壤环境质量标准,推断近期可能有林丹的使用但没有新的DDTs污染源输入,但个别地点土壤中的DDTs残留浓度对生态系统健康构成了潜在的威胁。大气蒸汽态HCHs浓度为18.97 ng/m3;DDTs浓度为42.27 ng/m3;PCBs浓度为20.59 ng/m3。研究表明大气长距离传输对该区域的OCPs污染也有较为明显的影响。初步运用逸度概念模型进行分析,发现HCHs和DDTs的逸出方向为从土壤向大气挥发。  相似文献   

18.
气相色谱-质谱联用法测定土壤中16种多环芳烃   总被引:1,自引:0,他引:1  
张小辉  王晓雁 《岩矿测试》2010,29(5):535-538
应用加速溶剂萃取气相色谱-质谱联用法测定土壤中16种多环芳烃。确定了二氯甲烷-丙酮(体积比1:1)作为提取溶剂,方法检出限为0.10~3.90ng/g,加标回收率为72.6%~123.5%。方法检出限较低,精密度好,适用于土壤样品中多环芳烃的分析。  相似文献   

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