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261.
A PCE groundwater plume discharging to a river: influence of the streambed and near-river zone on contaminant distributions 总被引:3,自引:0,他引:3
An investigation of a tetrachloroethene (PCE) groundwater plume originating at a dry cleaning facility on a sand aquifer and discharging to a river showed that the near-river zone strongly modified the distribution, concentration, and composition of the plume prior to discharging into the surface water. The plume, streambed concentration, and hydrogeology were extensively characterized using the Waterloo profiler, mini-profiler, conventional and driveable multilevel samplers (MLS), Ground Penetrating Radar (GPR) surveys, streambed temperature mapping (to identify discharge zones), drivepoint piezometers, and soil coring and testing. The plume observed in the shallow streambed deposits was significantly different from what would have been predicted based on the characteristics of the upgradient plume. Spatial and temporal variations in the plume entering the near-river zone contributed to the complex contaminant distribution observed in the streambed where concentrations varied by factors of 100 to 5000 over lateral distances of less than 1 to 3.5 m. Low hydraulic conductivity semi-confining deposits and geological heterogeneities at depth below the streambed controlled the pattern of groundwater discharge through the streambed and influenced where the plume discharged into the river (even causing the plume to spread out over the full width of the streambed at some locations). The most important effect of the near-river zone on the plume was the extensive anaerobic biodegradation that occurred in the top 2.5 m of the streambed, even though essentially no biodegradation of the PCE plume was observed in the upgradient aquifer. Approximately 54% of the area of the plume in the streambed consisted solely of PCE transformation products, primarily cis-1,2-dichloroethene (cDCE) and vinyl chloride (VC). High concentrations in the interstitial water of the streambed did not correspond to high groundwater-discharge zones, but instead occurred in low discharge zones and are likely sorbed or retarded remnants of past high-concentration plume discharges. The high-concentration areas (up to 5529 microg/l of total volatile organics) in the streambed are of ecological concern and represent potential adverse exposure locations for benthic and hyporheic zone aquatic life, but the effect of these exposures on the overall health of the river has yet to be determined. Even if the upgradient source of PCE is remediated and additional PCE is prevented from reaching the streambed, the high-concentration deposits in the streambed will likely take decades to hundreds of years to flush completely clean under natural conditions because these areas have low vertical groundwater flow velocities and high retardation factors. Despite high concentrations of contaminants in the streambed, PCE was detected in the surface water only rarely due to rapid dilution in the river and no cDCE or VC was detected. Neither the sampling of surface water nor the sampling of the groundwater from the aquifer immediately adjacent to the river gave an accurate indication of the high concentrations of PCE biodegradation products present in the streambed. Sampling of the interstitial water of the shallow streambed deposits is necessary to accurately characterize the nature of plumes discharging to rivers. 相似文献
262.
A novel nanocomposite based on incorporation of multiwalled carbon nanotubes (MWCNTs) in polyvinyl chloride (PVC) was prepared. Proposed nanocomposite was coated on stainless steel wire by deep coating. Composition of nanocomposite was optimized based on results of morphological studies using scanning electron microscopy. The best composition (83% MWCNTs:17% PVC) was applied as a solid phase microextraction fiber. Complex mixture of aromatic (BTEX) and aliphatic hydrocarbons (C5–C34) were selected as model analytes, and performance of proposed fiber in extraction of the studied compounds from water and soil samples was evaluated. Analytical merits of the method for water samples (LODs = 0.10–1.10 ng L−1, r2 = 0.9940–0.9994) and for soil samples (LODs = 0.10–0.77 ng kg−1, r2 = 0.9946–0.9994) showed excellent characteristics of it in ultra trace determination of petroleum type environmental pollutants. Finally, the method was used for determination of target analytes in river water, industrial effluent and soil samples. 相似文献
263.
室内空气有机污染的研究现状 总被引:12,自引:1,他引:12
主要讨论了室内空气中有机物污染的研究现状。重点介绍了室内空气中多环芳烃 (PAHs)、挥发性有机物(VOCs)、醛类化合物等的污染状况及来源。简要叙述了室内空气污染的影响因素及对人体的健康风险评价。 相似文献
264.
高活性萘降解细菌Hydrogenophaga Palleronii LHJ38的研究 总被引:9,自引:0,他引:9
为了研究微生物对多环芳烃的降解和转化规律,以萘作为研究对象,从餐厨油烟污染土壤中筛选到一株萘降解活性较高的细菌菌株,经菌种鉴定,定名为帕氏氢噬胞菌(H ydrogenophaga Palleronii)LH J38。测定了该菌的生长曲线和萘降解曲线,建立了菌株对萘的降解活性的定量测定方法,并研究了其最适生长条件。结果表明,在28℃、初始pH6.6、碳氮摩尔比为4的最适培养条件下,LH J38对初始质量浓度为2 000m g/L的萘在96h内的降解率可达98%以上;处于对数生长期的LH J38对萘的降解活性可达47.3nm o l/(m g.m in)。 相似文献
265.
岩溶地下河水中多环芳烃、脂肪酸分布特征及来源分析 总被引:1,自引:1,他引:1
为探究重庆青木关岩溶地下河水中多环芳烃(PAHs)和脂肪酸的含量组成、分布特征、来源及污染水平,2013年雨季和旱季分别于地下河中进行水样采集,并利用气相色谱-质谱联用仪(GC-MS)对水样中PAHs和脂肪酸的组分进行定量分析.结果表明,青木关地下河水中PAHs和脂肪酸的含量范围分别为77.3~702 ng·L~(-1)和3 302~45 254 ng·L~(-1).组成上,PAHs以2~3环为主,其比例高于90%,脂肪酸碳数范围为C10~C28,以饱和直链脂肪酸为主,其次为单不饱和脂肪酸.分布特征上,雨季:地下河水中各采样点PAHs的含量差异较小,脂肪酸的含量在入口、出露处和出口呈现依次降低的趋势,其中出露处和出口脂肪酸的含量较为接近;旱季:地下河水中PAHs含量在入口、出露处和出口呈现先降后升的趋势,脂肪酸含量在各采样点较为接近.总体上,地下河水中PAHs和脂肪酸的含量都表现为雨季显著高于旱季.来源分析表明,青木关地下河水中PAHs主要来源于该河流域煤和木材、农作物秸秆等生物质的燃烧;脂肪酸主要来自该河流域内硅藻、绿藻等水生藻类和细菌,其中以水生藻类的贡献占主导.地下河水受到PAHs中轻度污染,相对于旱季,雨季污染更严重. 相似文献
266.
西安市地表灰尘中多环芳烃分布特征与来源解析 总被引:3,自引:6,他引:3
采集了西安市地表灰尘样品58个,利用GC-FID对其中16种优控多环芳烃(PAHs)进行含量分析,在此基础上研究了其分布特征与环境来源.结果表明,西安市地表灰尘中单体PAH的含量范围为14.69~6 370.48μg·kg~(-1);16种PAHs总量(Σ_(16)PAHs)范围为5 039.67~47 738.50μg·kg~(-1),平均值为13 845.82μg·kg~(-1).与国内外其他城市比较发现,西安市地表灰尘中PAHs的含量相对较高.地表灰尘中PAHs主要由4环以上的高分子量PAHs构成,7种致癌芳烃(Σ_7CPAHs)平均占Σ16PAHs的46.08%.地表灰尘中Σ_(16)PAHs的平均含量在工业区最高,文教区、交通区和商业交通混合区含量次之,住宅区和公园较低.地表灰尘中Σ_(16)PAHs平均含量沿主城区-二环-三环由内向外呈增加趋势.地表灰尘中Σ16PAHs在东郊和西郊工业区、南郊和北二环重交通区相对较高,主城区、北郊和城市东南部较低.比值法、聚类分析和主成分分析结果表明,西安市地表灰尘中PAHs主要来源于化石燃料和煤的燃烧,其中柴油燃烧和汽油燃烧的方差贡献率分别为36.07%和32.31%,煤燃烧方差贡献率为23.40%. 相似文献
267.
青岛近海沉积物中多环芳烃、多氯联苯和有机氯农药的含量和分布特征 总被引:8,自引:11,他引:8
利用气相色谱/质谱方法对青岛近海表层沉积物中多环芳烃(PAHs)、多氯联苯(PCBs)和有机氯农药(OCPs)进行了测定,并分析了PAHs、PCBs和OCPs的分布特征.结果表明,PAHs、PCBs和OCPs的均值分别为684.80、6.87和13.52ng·g-1,含量变化均呈近岸高、远岸低的分布规律.燃料的高温燃烧排放对本研究海域沉积物中PAHs有较大贡献;PCBs主要来源于工业及生活排放,但已受到控制;沉积物中HCHs存在工业和农业双重污染源输入,DDT主要是由于历史上使用农药造成,且在表层沉积物中受到好氧微生物降解.与国内外同类研究结果相比,调查海域沉积物中PAHs、PCBs和OCPs的污染程度及生态风险均处于较低水平. 相似文献
268.
多环芳烃在岩溶地下河表层沉积物-水相的分配 总被引:2,自引:3,他引:2
利用实测老龙洞地下河水中和沉积物中多环芳烃(polycyclic aromatic hydrocarbons,PAHs)的实际浓度,获取了溶解相-沉积物中PAHs的分配系数Kp值.研究了老龙洞地下河PAHs在水相和沉积物中的质量浓度变化及其在水相和沉积物间的分配.研究结果表明水相和沉积物中PAHs质量浓度分别为81.5~8 089 ng·L-1,平均值(1 439±2 248)ng·L-1和58.2~1 051 ng·g-1,平均值(367.9±342.6)ng·g-1;PAHs组成均以2~3环为主,但沉积物中明显富集高环PAHs.沉积物-水相Kp值分布在55.74~46 067 L·kg-1范围内,随PAHs环数的增加而增大.沉积物-水相中实测的有机碳分配系数(lg Koc)大部分高于预测值上限,PAHs强烈吸附在沉积物上.lg Koc与正辛醇-水分配系数(lg Kow)呈较好的线性自由能关系(R2=0.75),但其斜率小于1,推测地下河沉积物对PAHs化合物的吸收能力较差. 相似文献
269.
以现有的中国主要河流中多环芳烃(PAHs)的浓度数据为基础,通过定义1个危害商,利用商值法筛选出菲、蒽、荧蒽、芘、苯并[a] 蒽、 和苯并[a]芘7种对水生生态具有潜在风险的PAHs.以河流水相中PAHs浓度数据为依据,结合毒性数据库中PAHs水相浓度对水生生物的毒性数据,用概率风险评价法分析了这7种PAHs对水生生物的生态风险.结果表明,7种筛选出的PAHs风险大小依次为:蒽>芘>苯并[a]蒽>荧蒽>苯并[a]芘>菲> . 相似文献
270.