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1.
为全面研究广州市土壤多环芳烃(PAHs)污染特征,采集广州市222个表层土壤样品进行分析,利用效应区间低/中值法(ERL/ERM)和(BaP)毒性当量法评价土壤PAHs污染生态风险状况,终生癌症风险增量模型评价土壤PAHs污染健康风险状况,特征化合物比值法和PMF模型对PAHs来源进行解析.结果表明,广州市表层土壤ω(∑16PAHs)为38~11 115 μg·kg-1,平均值为526 μg·kg-1,16种多环芳烃单体均为强变异;广州存在潜在生态风险,个别采样点的PAHs污染已存在较大的生态风险,整体处于轻度污染的状态;基于健康风险评价结果表明,成年和儿童的总致癌风险的贡献率都呈现为:皮肤接触 > 误食土壤 > 呼吸摄入,儿童的健康风险大于成年,健康风险总体处于可接受范围;源解析表明广州市土壤PAHs的主要来源为:煤炭源(37.1%) > 柴油源(32%) > 炼焦源 (17.3%) > 交通排放、生物质燃烧和石化产品挥发的混合源(13.6%),整体土壤PAHs来源属于混合源.研究结果丰富了对广州市表层土壤PAHs污染特征的认识,有助于推动土壤污染防治行动的开展.  相似文献   

2.
胶州湾表层沉积物中多环芳烃的分布及来源   总被引:34,自引:8,他引:34  
利用气相色谱-质谱方法对胶州湾沉积物中23种多环芳烃(PAHs)进行了分析测定。结果表明,PAHs的总含量范围为82~4567ng/g。PAHs总量在表层沉积物中总趋势是东部高于西部,以东岸附近处最大,远离东岸浓度降低,在胶州湾人海口处最低。造成这种格局的原因有:(1)绝大部分污染源集中在胶州湾东岸;(2)胶州湾的环流系统使东部的污染物很难向西部扩散;(3)沉积物粒度及有机质含量对PAHs含量分布有一定的影响。P/A、PL/PY比值、PAHs环数以及烷基化PAHs表明胶州湾表层沉积物中PAHs几乎全部由人类活动产生,来源为煤炭、木材燃烧、石油类高温裂解及油类污染。与国内外同类研究结果相比,判定为中等污染水平。  相似文献   

3.
王伟 《环境科学与管理》2013,(1):131-133,156
通过对鞍山市典型区域(6个污染源、4个居住区、一个对照点)大气中总悬浮颗粒物(TSP)的监测,采用GC/MS法分析了总悬浮颗粒物中16种PAHs的含量,探讨了鞍山市总悬浮颗粒物浓度及16种多环芳烃的分布特征及来源。研究结果表明,鞍山市大气中总悬浮颗粒物采暖期普遍比非采暖期高1.1~2.5倍,总悬浮颗粒物中PAHs总量采暖期也远远高于非采暖期;鞍钢6个点位在非采暖期的PAHs总量均远远高于其他五个点位,表明了工业污染导致的环境空气质量下降是不容忽视的。  相似文献   

4.
以液-液萃取为原理,采用佛罗里硅土柱为净化手段,采用高效液相色谱测定水样中16种多环芳烃。实验结果表明,该方法可以成功分离16种PAHs及两种替代物,最低检出浓度可达到1.9~21ng.l^-1,相对标准偏差在0.16%-12.8%范围内,基体加标(除萘较低外)回收率达到72.3%-106%,替代物加标在76.9%~85.0%之间。实现了环境水体中痕量PAHs的定性与定量分析。  相似文献   

5.

土壤重金属和有机物污染是当前许多煤矿矿区及周边地区面临的严重问题,威胁居民健康,要采取有效措施予以解决。在对煤矿矿区周边土壤重金属和多环芳烃(PAHs)来源及危害分析的基础上,发现重金属元素在自然条件下难以降解,导致其在生物体中累积,并且PAHs具有致癌性、致畸性和诱变性。通过比较物理化学修复、植物修复和生物修复等方法在治理重金属及PAHs污染土壤的优缺点,发现植物修复和生物修复对气候和环境的依赖程度高,物理修复成本和能耗较高,因此提出矿区周边土壤污染的修复技术需要进一步创新,实现多领域、多学科协作发展的观点。通过持续的技术创新和多种修复方法的联合应用,达到有效治理煤矿矿区及周边重金属和PAHs污染的目的,实现土壤的重新利用,进而实现环境保护与经济可持续发展的良性互动。

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6.
为了研究汕头海域红树林沉积物中16种优控多环芳烃(PAHs)污染状况,在义丰溪口、六合围和北港口3块红树林湿地采集柱状沉积物5个,分析了PAHs的含量水平、空间分布、来源和潜在的生态风险。结果表明,研究区红树林沉积物中PAHs含量范围是80.47~301.73 ng/g干重,义丰溪口六合围北港口。不同采样点柱状沉积物中PAHs含量从表层到下层的变化趋势不一致,六合围和义丰溪口趋势不明显,北港口呈下降趋势。PAHs空间分布主要受人类活动和周期性潮汐运动的影响。沉积物中PAHs来源于石油泄露、生物质和煤炭燃烧、发动机排放的混合源,生物质和煤炭燃烧是主要污染源。经沉积物质量标准,平均效应范围中值商和总毒性当量浓度3种方法评估,沉积物中PAHs的生态风险整体较低。  相似文献   

7.
海河及渤海表层沉积物中多环芳烃的分布与来源   总被引:11,自引:0,他引:11  
采集海河和渤海表层沉积物样品,测定16种EPA规定多环芳烃.海河∑PAH含量(干重)范围为445~2185 ng·g-1,平均值为964 ng·g-1;渤海∑PAH含量范围为171~290 ng·g-1,平均值为226 ng·g-1.海河塘沽区段和天津市区段沉积物中∑PAH含量比郊区段含量高.LMW/HMW(低分子质量/高分子质量)和异构体比值分析表明,生物质及煤的燃烧为海河表层沉积物中PAHs主要来源;对于渤海湾大部分区域来说,石油污染是其PAHs的主要来源,而热解来源的PAHs主要以生物质及煤的燃烧为主;滨海旅游度假村附近海域因受旅游活动影响而燃烧源的贡献较大.风险评价表明,海河及部分渤海海域存在潜在生态危害,滨海村附近海域存在潜在生态风险可能性较低.  相似文献   

8.

热脱附技术被广泛用于污染场地修复,但其对多环芳烃(PAHs)与重金属复合污染土壤的综合影响仍不清楚。选用PAHs和重金属复合污染模拟土壤,探究热脱附温度(220~400 ℃)和停留时间(5~60 min)对土壤中PAHs的影响,分析空气与氮气气氛下热脱附温度(310、340和370 ℃)对土壤中重金属Cu、Pb、As和Cd形态分布的影响。结果表明:随热脱附温度和停留时间的增加,土壤中PAHs去除率显著增加;低环PAHs占比逐渐减少,而高环PAHs占比逐渐增加。在2种气氛热脱附后,Cu、Pb和As弱酸提取态占比略有增加,而Cd弱酸提取态占比显著降低;可还原态和可氧化态的转化趋势具有差异性。随着热脱附温度的升高,Cu、Pb、As和Cd 4种重金属的残渣态占比均逐渐增加,说明热脱附有利于4种重金属的固定。相较于空气,氮气条件下4种重金属可氧化态和残渣态占比均增加;Cu和Pb可还原态占比显著降低,而As可还原态占比有所降低,Cd可还原态占比变化不大。氮气更有利于Cu、Pb和Cd的稳定;相反,空气更有利于As的稳定。

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9.
通过2008年采集西安不同功能区表层土壤样品,运用GC/MS质谱联用仪对美国EPA优控的16种多环芳烃(PAHs)进行定性、定量分析,来探讨西安表层土壤种多环芳烃的污染特征及其来源。结果表明,16种PAHs均被检出,西安表土中ΣPAHs浓度范围为125~9 057 ng/g,平均值为2 727 ng/g,主要以4~6环PAHs为主,共占总量的69%。PAHs的空间分布规律为:工业区>文教区>绿化区>郊区>农村。应用特征比值判断法可知,西安表土中PAHs主要是煤的不完全燃烧和机动车尾气排放所产生的混合源污染。借鉴国外土壤污染标准可知西安城区表土污染较为严重。  相似文献   

10.
多环芳烃的污染及其生物修复   总被引:12,自引:0,他引:12  
多环芳烃(PAHs)是环境介质中普遍存在的难降解有机污染物,文中综述了目前国内外对PAHs的研究状况,重点阐述了它的来源分布、迁移转化、生物毒性、监测控制及其生物修复的研究进展等,从而为防治环境污染提供科学依据。  相似文献   

11.
The Guanting Reservoir lost its function as the second biggest drinking water source for Beijing due to the pollutions from the upstream flow of Yongding River in 1997. From 1998, lots of studies were carryied out to renew the function of Guanting Reservoir as domestic drinking water source before 2008 Olympic Games. This is the first time that polycyclic aromatic hydrocarbon concentrations in the surface sediment of Guanting Reservoir have been analyzed. A distinctive spatial distribution of PAHs was observed. Sediments from four sites along Inlet of Yongding River to reservoir bam had PAHs concentrations of 1377--2855 μg/g dw in descending order. The composition of PAHs is investigated and used to assess patrogenic,combustion and naturally derived of the sediments samples of Guanting Reservoir. Special PAHs ratios, such as phenanthrene/anthracene(P/A) and fluoranthene/pyrene(Fl/Pyr) were calculated to assess the relative importance of different origins. The data confirmed a relatively high level of petrogenic contamination in four sites. These high PAHs levels were associated with the input of untreated and partially treated industrial sewage. In addition, the concentrations of PAHs compounds of samples indicated that sediments of reservoir were most likely to pose potential biological impairment.  相似文献   

12.
Polycyclic aromatic hydrocarbons (PAHs) are a large group of chemicals. They represent an important concern due to their widespread distribution in the environment, their resistance to biodegradation, their potential to bioaccumulate and their harmful effects. Several pilot treatments have been implemented to prevent economic consequences and deterioration of soil and water quality. As a promising option, fungal enzymes are regarded as a powerful choice for degradation of PAHs. Phanerochaete chrysosporium, Pleurotus ostreatus and Bjerkandera adusta are most commonly used for the degradation of such compounds due to their production of ligninolytic enzymes such as lignin peroxidase, manganese peroxidase and laccase. The rate of biodegradation depends on many culture conditions, such as temperature, oxygen, accessibility of nutrients and agitated or shallow culture. Moreover, the addition of biosurfactants can strongly modify the enzyme activity. The removal of PAHs is dependent on the ionization potential. The study of the kinetics is not completely comprehended, and it becomes morem hallenging when fungi are applied for bioremediation. Degradation studies in soil are much more complicated than liquid cultures because of the heterogeneity of soil, thus, many factors should be considered when studying soil bioremediation, such as desorption and bioavailability of PAHs. Different degradation pathways can be suggested. The peroxidases are heme-containing enzymes having common catalytic cycles. One molecule of hydrogen peroxide oxidizes the resting enzyme withdrawing two electrons. Subsequently, the peroxidase is reduced back in two steps of one electron oxidation. Laccases are copper-containing oxidases. They reduce molecular oxygen to water and oxidize phenolic compounds.  相似文献   

13.
多环芳烃(PAHs)在大气中的相分布   总被引:37,自引:7,他引:37  
通过对广州市老城区空气中多环芳烃的研究表明 ,该区多环芳烃的污染相当严重 ,不同季节测定的多环芳烃总量差别不大 ,但颗粒相多环芳烃在春季占的比例 (44 8% )要高于夏季 (9 4 % ) .气相中主要以芴、菲、甲基菲、荧蒽、芘等低环数的多环芳烃为主 ,而高于四环的多环芳烃主要是分布在颗粒相中 ,苯并 (ghi)是最主要的颗粒相多环芳烃物质 .  相似文献   

14.
Sediment core is the recorder of polycyclic aromatic hydrocarbon (PAH) pollutions and the associated sedimentary organic matter (SOM), acting as crucial supports for pollution control and environmental management. Here, the sedimentary records of PAHs and SOM in the past century in Lake Taihu, China, were reconstructed from a 50-cm sediment core. On the one hand, the presence of PAHs ranged from 8.99 to 199.2 ng/g. Vertically, PAHs declined with the depth increased, and the sedimentation history of PAHs was divided into two stages with a discontinuity at 20 cm depth. In composition, PAHs in the sediment core were dominated by three-ring PAHs (44.6% ± 9.1%, mean ± standard deviation), and were followed by four-ring (27.0% ± 3.3%), and five-ring (12.1% ± 4.0%) PAHs. In toxicity assessment, the sedimentary records of benzo[a]pyrene-based toxic equivalency were well described by an exponential model with R-square of 0.95, and the environmental background toxic value was identified as 1.62 ng/g. On the other hand, different components of SOM were successfully identified by n-alkane markers (p < 0.01) and the variations of SOM were well explained (84.6%). A discontinuity of SOM was recognized at 22 cm depth. Association study showed that the sedimentary PAHs were associated with both anthropogenic and biogenic SOM (p < 0.05) with explained variances for most individual PAHs of 60%. It indicated the vertical distributions of PAHs were driven by sedimentary SOM. Therefore, environmental processes such as biogenic factors should attract more attentions as well as PAH emissions to reduce the impacts of PAHs.  相似文献   

15.
拉萨市城区大气和拉鲁湿地土壤中的多环芳烃   总被引:25,自引:0,他引:25  
对拉萨城区大气及郊区湿地土壤中多环芳烃的研究表明,大气中的多环芳烃,颗粒物占27.69%,气相状态占72.31%;由于高原高强度的紫外线辐射,无论是颗粒相还是气相状态存在的多环芳烃含量均是夜晚高于白天;颗粒物中的多环芳烃主要为3个苯环数以上的,而气相状态的多环芳烃多为2和3个苯环数的芳烃及芘.湿地土壤中的多环芳烃主要来自于大气,其中气相状态占52.56%,颗粒物占47.44%.  相似文献   

16.
长江和辽河沉积物中的多环芳烃类污染物   总被引:63,自引:3,他引:63       下载免费PDF全文
报道了长江和辽河沉积物中17种多环芳烃(PAHs)类污染物的含量及分布状况.所研究的长江南京段沉积物中多环芳烃总量变化范围为213.8~550.31ng/g(干重),辽河新民段沉积物中多环芳烃总量变化范围为 27.45~198.26ng/g(干重).测定结果表明,长江和辽河沉积物中多环芳烃具有不同的空间分布模式:长江段以南京市下游的沉积物中PAHs含量为最高,而辽河段则以新民市区的沉积物中PAHs含量为最高但总的来说,长江南京段沉积物中多环芳烃的污染水平明显高于辽河新民段沉积物所受的多环芳烃污染.  相似文献   

17.
研究了长江攀枝花、宜宾、泸州、重庆、涪陵、三峡、岳阳、武汉、九江和南京共计10个重点江段枯水期和丰水期表层水中19种多环芳烃(PAHs)及其15种衍生物(SPAHs)的分布和来源,评估了长江PAHs类污染的健康风险及时空差异.结果表明,长江表层水中∑PAHs、∑SPAHs平均浓度分别为(147.3±59.8)、(73.2±29.7) ng·L-1,检出率分别为82.9%、69.5%,其中2~3环(S)PAHs所占比例为79%.在SPAHs中,∑NPAHs(硝基取代PAHs)、∑MPAHs(甲基取代PAHs)、∑OPAHs(氧化PAHs)的平均浓度分别为(27.0±4.5)、(24.7±15.5)、(17.1±11.9) ng·L-1.根据分子比值法及主成分分析可知,长江重点江段PAHs主要来源于生物质、化石及液体燃料燃烧,SPAHs主要来源于燃烧源和光化学转化,SPAHs及PAHs通过大气沉降汇入水体.采用毒性当量因子浓度计算对长江重点江段PAHs进行健康风险评估,结果表明在枯水期具有致癌性PAHs的∑TEQBaP值(苯并芘毒性当量)较高,其中岳阳、武汉江段的BaP毒性当量浓度高于我国地表水规定阈值,应当高度重视长江流域PAHs在枯水期引起的健康风险.  相似文献   

18.
正Polycyclic aromatic hydrocarbons(PAHs)are attracting concern because of their potential toxicity,posing serious threats to health of humans and ecosystems(Kim et al.,2013;Zhao et al.,2016).Generally,similar to other contaminants'behaviors(Wu et al.,2001;Zhang et al.,2007,2008;Lu et al.,2009),PAHs result from natural organic matter and activities of humans,the latter's contribution usually outweighing the inputs from other sources(Fernández et al.,2000;Srogi,2007).  相似文献   

19.
哈尔滨市大气中多环芳烃的初步研究   总被引:4,自引:1,他引:4       下载免费PDF全文
利用改进型的大流量主动采样器,于2008年5月7~20日对哈尔滨市大气样品进行采集,并检测了气相和颗粒相中的多环芳烃(PAHs)的浓度.结果表明,哈尔滨市大气中总PAHs的浓度为8.1~37.2ng/m3,平均值为18.2ng/m3.通过特征分子比值法推断出哈尔滨市大气中PAHs主要来自于煤的燃烧.低环PAHs主要集中在气相,而高环PAHs则吸附在颗粒相上.气粒分配系数与过冷饱和蒸气压具有很好的相关性,但PAHs并没有达到气粒分配平衡,这可能与冬季取暖用煤燃烧产生的新多环芳烃有关.  相似文献   

20.
After the impoundment of the Three Gorges Reservoir(TGR), the hydrological situation of the reservoir has changed greatly. The concentration and distribution of typical persistent organic pollutants in water and sediment have also changed accordingly. In this study, the concentration, distribution and potential sources of 16 polycyclic aromatic hydrocarbons(PAHs) and 6 phthalic acid esters(PAEs) during the water drawdown and impoundment periods were investigated in water and sediment from the TGR. According to our results, PAHs and PAEs showed temporal and spatial variations. The mean ΣPAH and ΣPAE concentrations in water and sediment were both higher during the water impoundment period than during the water drawdown period. The water samples from the main stream showed larger ΣPAH concentration fluctuations than those from tributaries. Both the PAH and PAE concentrations meet the Chinese national water environmental quality standard(GB 3838-2002). PAH monomers with 2–3 rings and 4 rings were dominant in water, and 4-ring and 5–6-ring PAHs were dominant in sediment. Di-n-butyl phthalate(DBP) and di-2-ethylhexyl phthalate(DEHP)were the dominant PAE pollutants in the TGR. DBP and DEHP had the highest concentrations in water and sediment, respectively. The main source of PAHs in water from the TGR was petroleum and emissions from coal and biomass combustion, whereas the main sources of PAHs in sediments included coal and biomass combustion, petroleum, and petroleum combustion. The main source of PAEs in water was domestic waste, and the plastics and heavy chemical industries were the main sources of PAEs in sediment.  相似文献   

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