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1.
对石岐河17个监测断面表层水中20种取代芳烃进行研究。结果表明,石岐河水中取代芳烃为ND~0.51μg/L,均值为0.20μg/L。与国内其他地区相比,石岐河水中取代芳烃含量处于较低水平。通过风险商模型对石岐河水中检出的取代芳烃进行生态风险评价后发现,取代芳烃对石岐河的生态风险低,但需要对4、8、11、12、15、16号断面相关环境进行观察。对4种已报道非致癌剂量或致癌斜率因子的取代芳烃进行健康风险评价后发现,石岐河水中检出的取代芳烃非致癌风险和致癌风险并不严重,不会对人体健康产生明显的影响。  相似文献   

2.
于2018年7月 (丰水期)、11月 (枯水期) 和2019年3月(平水期)对沙颍河流域5种抗生素磺胺吡啶(SPD)、磺胺氯哒嗪(SCP)、磺胺嘧啶(SDZ)、环丙沙星(CIP)和四环素(TCL)的污染状况和空间分布进行了研究,并对其生态风险进行了评价。结果表明,沙颍河流域5种抗生素在丰水期、枯水期和平水期均有检出,丰水期CIP、枯水期SPD和SDZ以及平水期SCP的检出率均>50%,平水期SCP的检出率最高达到70.97%,CIP在丰水期的检出值最高(655 ng/L),5种抗生素累积浓度为:丰水期>平水期>枯水期。对比国内其他地区水体环境,沙颍河流域5种抗生素浓度总体处于一般水平,但丰水期CIP检出浓度较高。相关性分析显示抗生素浓度与水质参数硬度、NH3-N和电导率显著相关。5种抗生素的水生态风险为:丰水期>枯水期>平水期,其中CIP和TCL均为高风险。提出,应加强监测评估与预警管理,有效控制其水生态风险。  相似文献   

3.
对枯水期、平水期和丰水期梁子湖水体和沉积物中7种邻苯二甲酸酯(PAEs)的污染水平及分布特征进行了研究,并评价了其健康风险和生态风险。结果表明,枯水期、平水期和丰水期梁子湖水体中7种PAEs总量(∑PAEs)分别为0.10~3.56、0.16~1.78、0.57~2.16 μg/L,沉积物中∑PAEs分别为0.10~0.41、0.21~0.66、0.12~4.49 μg/g,3个水期的水体和沉积物中均以邻苯二甲酸二异丁酯(DiBP)和邻苯二甲酸二(2-乙基己基)酯(DEHP)占主要组分。与国内外其他河流/湖泊相比,梁子湖水体和沉积物中各PAE单体的含量均处于中等偏低水平。健康风险评价结果表明,梁子湖水体中PAEs的总非致癌风险值均远低于1,不会对人体产生明显的非致癌健康危害;3个水期绝大部分或全部采样点位中DEHP对人体存在潜在的致癌风险。生态风险评价结果表明,枯水期和丰水期沉积物中PAEs总量对水藻类和鱼类达到中等风险程度,对其存在较大的毒性。  相似文献   

4.
江苏某县地下水邻苯二甲酸酯类的检测与风险评价   总被引:4,自引:1,他引:3  
在江苏某癌症高发区对地下水进行布点,采用固相萃取与气相色谱-质谱联用方法测定深层地下水和浅层地下水中邻苯二甲酸酯类(PAEs)的浓度。检测结果表明,地下水中PAEs污染程度较严重,邻苯二甲酸二丁酯(DBP)和邻苯二甲酸二(2-乙基己基)酯(DEHP)均有超标现象,其中,丰水期深层地下水和枯水期浅层地下水中DBP超标率达到100%,最大超标10.7倍。PAEs总质量浓度均值为10 034.56~14 872.91 ng/L,丰水期总浓度均值大于枯水期,浅层地下水的总浓度均值大于深层地下水。采用优化的USEPA风险评价模型,对PAEs进行人体健康风险评价,评价结果表明,该地区52.5% 地下水的PAEs总致癌风险超过10-6的水质监控值,总非致癌风险在可接受范围内。  相似文献   

5.
饮用水安全直接关系到千家万户的身体健康。为了解饮用水中多环芳烃(PAHs)和卤代多环芳烃(HPAHs)的污染现状、来源以及健康风险,选择了以长江、太湖和三河(淮安)为水源水的3个自来水厂,采用气相色谱-质谱的测定方法,分别在丰水期和枯水期对其各工艺段出水进行了采样分析。结果表明,PAHs和HPAHs在自来水厂原水和出水中普遍存在,PAHs的质量浓度为9.74~61.00 ng/L,氯代多环芳烃(Cl-PAHs)的质量浓度为0.32~9.17 ng/L,溴代多环芳烃(Br-PAHs)的质量浓度为未检出(ND)~4.15 ng/L,且整体呈现枯水期质量浓度大于丰水期的特征。原水中PAHs主要来源于石油污染以及各种燃烧活动,HPAHs与PAHs的质量浓度呈正相关;出水中HPAHs主要来源于原水以及氯化消毒。现有的自来水处理工艺对原水中PAHs和HPAHs都有一定的去除作用,但是氯化消毒可能产生新的HPAHs污染。人体健康风险评价结果表明,3个水厂出水的终生致癌风险为10-9~10-8,处于低致癌风险水平。  相似文献   

6.
珠江口表层水中多环芳烃的分布特征及健康风险评估   总被引:1,自引:0,他引:1  
分别于2015年2、5、8、11月在珠江八大入海口采集表层水体样品,应用固相萃取富集法对该区域表层水体中16种USEPA优控多环芳烃(PAHs)的时空分布特征进行分析,并利用终生致癌风险增量模型(ILCR)对该区域的饮水健康风险进行评价。结果表明:珠江口4个季度所采集的水样中,∑15PAHs的浓度范围为18.0~50.3 ng/L,含量处于中等水平。其中7种强致癌性∑7PAHs的浓度范围为1.53~3.73 ng/L,占∑15PAHs的5.89%~11.1%,∑15PAHs和∑7PAHs在枯水期(2、11月)样品中明显高于丰水期(5、8月)。就组成特征而言,各采样点PAHs以3、4环为主。珠江口表层水中非致癌类PAHs的危害商数值为0.99×10~(-5)~2.73×10~(-5),远低于USEPA规定的阈值(1);致癌类PAHs产生的健康风险为6.50×10~(-8)~2.37×10~(-7),其中Ba P导致的饮水途径健康风险最高,所有点位致癌类PAHs的健康风险均低于USEPA推荐的对致癌物质最大可接受风险水平(10~(-6)),表明珠江口表层水中PAHs尚不具备严重的致癌风险,但是仍然存在潜在的健康风险,需要重点控制和管理。  相似文献   

7.
采用大体积直接进样—超高效液相色谱串联质谱法分析武汉市巡司河中45种抗生素的存在水平,评估其可能存在的生态风险。在巡司河布设6个采样点,于2022年12月—2023年5月进行采样并分析。结果显示,6个采样点共检出27种抗生素,检出最大质量浓度为874.2 ng/L;其中,氧氟沙星、左氧氟沙星检出率均为100%。监测期间,12月抗生素平均质量浓度最高(101.05 ng/L),4月最低(25.87 ng/L)。6个点位中,点位S3与S5抗生素平均质量浓度高于其他点位,分别为1 721.20和1 734.07 ng/L;点位S4是巡司河与长江的交汇处,抗生素平均质量浓度最低(94.54 ng/L)。利用风险商值法对巡司河中抗生素生态风险开展评价,结果表明:氧氟沙星、罗红霉素和克拉霉素呈现出较高风险,左氧氟沙星、林可霉素和莫西沙星在大多数点位处于中等风险,其余几种抗生素风险较低。  相似文献   

8.
2021年1-3月,采集湖南省某典型金属冶炼城市不同功能区的降尘样品,分析测定了17种重金属元素含量,其中15种重金属元素含量超出了湖南背景值,分别为Ag、Fe、Cd、Ti、Sb、Tl、Pb、As、Zn、Cu、Mo、Ni、Cr、Ba、Mn。采用地累积指数法、潜在生态危害指数法和健康风险评价模型对大气降尘中重金属可能造成的生态风险和健康风险进行评价。结果表明:受长期的有色金属冶炼影响,Ag、Cd、Fe、Sb、Ti、Tl 6种重金属达到了极重度污染,Pb、As、Zn、Cu、Mo在中度污染程度以上。工业区的综合生态危害指数远高于工业居民混合区、工业农业混合区、居民区和交通区,达到了极强生态危害级别。健康风险评价结果显示:大气降尘中As和Pb存在非致癌风险,As、Cd和Ni存在致癌风险,且经口摄入是最主要的暴露途径。与青少年和儿童相比,大气降尘中重金属对成人造成的风险较高,且成年女性面临的风险高于成年男性。  相似文献   

9.
重庆典型岩溶地区地下水多环芳烃污染水平及健康风险   总被引:1,自引:0,他引:1  
采集重庆3个典型岩溶地区113个地下水样品,利用人体暴露风险系数法对16种优先控制多环芳烃(PAHs)饮水途径健康风险进行评价。结果表明:地下水中PAHs、致癌PAH和BaP的质量浓度分别为200 ng/L~2 638 ng/L、未检出~362 ng/L和未检出~62.7 ng/L,其中南川区地下水中BaP质量浓度为45.1 ng/L,已超过《生活饮用水卫生标准》(GB 5749—2006)的水质要求。PAHs污染水平为南川区老龙洞流域青木关流域,与国内其他岩溶地区地下水相比,处于较高污染水平。人群的致癌风险(ILCR)为5×10~(-10)~2.80×10~(-5),其中南川区ILCR10~(-6),具有潜在致癌风险;非致癌类PAHs饮水途径健康风险处于10~(-11)~10~(-9)水平,远低于USEPA规定的阈值1。  相似文献   

10.
采用现场采样与室内测试方法测定了会泽某铅锌矿周边农田土壤中Cd、As、Pb、Cr、Cu、Zn、Ni的含量,利用地积累指数法、潜在生态指数法对其土壤环境质量进行了评价,并应用US EPA推荐的健康风险评价法对重金属的健康风险进行了初步评价。结果表明,7种重金属均存在不同程度的富集或污染。多种重金属潜在生态风险指数属于中等及以上的风险状态,重金属潜在生态风险指数排序为CdPbAsCuNiZnCr。7种重金属在3种暴露途径下对儿童的非致癌健康风险均大于成人,但对成人、儿童均不存在显著的非致癌健康影响、非致癌健康总风险。As、Ni、Cr、Cd重金属的致癌风险值与4种元素总致癌风险值均未超出10-6~10-4的范围,尚不具备致癌风险。  相似文献   

11.
The main objective of this study was to investigate occurrence of polycyclic aromatic hydrocarbons (PAHs) in the sources of the drinking water supply of Hong Kong. The main emphasis was on the Dongjiang River in mainland China which is the major source, supplying 80% of the total consumption in Hong Kong (the remaining 20% is obtained from rain water). Sediments were collected from four sites along the Dongjiang River and four reservoirs in Hong Kong during both the dry and wet weather seasons. The concentrations of total PAHs in the sediments ranged between 36 and 539 microg/kg dry wt. The lower levels were detected at the upstream site on the Dongjiang River and at the reservoirs in Hong Kong (44-85 microg/kg dry wt), while the mid- and downstream sites on the Dongjiang River were more polluted (588-658 microg/kg dry wt). Examination of the PAH profiles revealed that the mid- and downstream sections of the Dongjiang River contained high percentages of 4,5,6-ring PAHs, similar to the amounts of atmospheric particulate matter and road dust collected during the dry weather season from the Pearl River Delta region as reported in the literature. Seasonal changes were revealed in the reservoirs of Hong Kong, with higher PAH levels in the wet weather season than in the dry weather season. For those reservoirs in Hong Kong that store water from the Dongjiang River, a distinct seasonal pattern was also observed, namely, that under dry weather season conditions the PAHs found in the sediments were primarily from petrogenic source, while under wet weather season conditions they were from pyrolytic sources. No such pattern was detected in the reservoirs which stored only rain water.  相似文献   

12.
系统研究了黄河、海河和辽河中3种常用除草剂 MCPA、2,4-D 和 Bentazone 的分布特征及其来源。结果表明,3种除草剂除 Bentazone在黄河水体中未检出外,其余均有检出。季节和空间分析表明,大部分目标物丰水期质量浓度高于枯水期,可能与夏季农作物除草剂使用量较大有关;从上游到下游化合物质量浓度逐渐升高,可能是河岸面源污染引起。水生态风险初步分析显示,3种除草剂对研究水体中的水生生物均为低风险。  相似文献   

13.
We report a survey on the occurrence and distribution of nonylphenol (NP) and 17β-estradiol equivalent quotient (EEQ) concentrations in Donggang River, Taiwan. Concentrations of NP were measured with a high-performance liquid chromatography/fluorescent system and EEQs were carried with an MVLN cell line. Concentrations of NP ranged from less than 93 to 511 ng/L; EEQs ranged from less than 0.16 to 8.64 ng-E2/L. Concentrations of NP were higher in the dry season than in the wet season, which was affected by a high flow rate. In the main watercourse, higher EEQ occurred in the wet season than in the dry season; rainfall may have flushed substances containing estrogenic activity. NP and EEQ concentrations occurred in seawater only in the dry season, especially high EEQ values, and were not detected in the wet season. The reasons are not clear at this moment. Furthermore, NP concentrations provided low contribution to the total estrogenic activity.  相似文献   

14.
Estrogenic activity risks in the Pearl River system (Liuxi River, Zhujiang River and Shijing River) in South China were assessed by combined chemical analysis and recombinant yeast estrogen screen (YES) bioassay for surface waters and sediments collected in both dry and wet seasons. The xenoestrogens 4-tert-octylphenol, 4-nonylphenol and bisphenol A were detected at almost every sampling site at concentrations of several ng L(-1) (ng g(-1)) to tens of μg L(-1) (μg g(-1)) in surface waters (and sediments). The estrogens estrone and 17β-estradiol were also detected in most of the samples with concentrations from several ng L(-1) (ng g(-1)) to tens of ng L(-1) (ng g(-1)) in surface waters (and sediments). However, synthetic estrogens diethylstilbestrol and 17α-ethinylestradiol were only detected at a few sites. The 17β-estradiol equivalents (EEQ) screened by the YES bioassay were in the range of 0.23-324 ng L(-1) in surface waters and from not detected to 101 ng g(-1) in sediments. Shijing River displayed one to two orders of magnitude higher levels for both measured chemical concentrations and estrogenic activities than the Zhujiang River and the Liuxi River. A risk assessment for the surface waters showed high risks for the downstream reaches of the Liuxi River and the upstream to midstream reaches of the Zhujiang River and the Shijing River. Higher estrogenic risks were observed in the wet season than in the dry season for surface waters, probably due to the input of runoff and direct overflow of small urban streams during heavy rain events. Only small variations in estrogenic risk were found for the sediments between the two seasons, suggesting that sediments are a sink for these estrogenic compounds in the rivers.  相似文献   

15.
利用液相色谱-三重四级杆质谱法(HPLC-MS/MS)以及超高压液相色谱法(HPLC),于2018年1月对九洲江沉积物样品中31种抗生素和16种多环芳烃(PAHs)的分布特征进行研究并评价其生态风险。结果表明,九洲江沉积物检出20种抗生素,其中四环素类(TCs)抗生素质量分数最高,或因其在养殖业用量最大且易被沉积物吸附;滩面镇(S3点位)抗生素的总质量分数(52 ng/g)最高,与附近的滩面镇生猪养殖业发达,也与S3点位正好位于污水处理厂排口下游不远处有关;沉积物中共检出15种PAHs,温泉镇(S1点位)沉积物中PAHs的质量分数最高。沉积物中,4环PAHs占比最高,说明九洲江流域PAHs主要来源于煤和木柴的燃烧。生态风险评价结果表明,TCs抗生素处于高风险水平,且高风险点集中出现在滩面镇河段(S3点位),需要采取措施减少TCs抗生素的使用;所有点位的PAHs的生态风险均为低风险,但有部分无安全剂量的PAHs组分被检出,对九洲江生态环境存在潜在威胁。  相似文献   

16.
通过在丰水期对贵州省某流域城市河段悬浮物和沉积物中的重金属含量进行测定,运用单因子指数法、生态风险评价法、因子分析法,初步探讨了该河段Cu、Zn、Pb、Hg、Cd、Cr、Ni及As等8种重金属元素的含量分布、污染特征、潜在生态风险及主要来源。检测结果显示,沉积物和悬浮物中Hg、Cd、Zn、Pb、As的平均含量较高,是贵州省土壤背景值的1.02~16.97倍。单因子指数评价结果表明:在沉积物中,Zn、Pb、As为轻度污染,Hg和Cd为重度污染;在悬浮物中,Cu、Pb、As为轻度污染,Zn为中度污染,Hg和Cd为重度污染。潜在生态风险指数评价结果显示,Hg和Cd的生态风险最大,为主要污染元素。研究区沉积物样品综合生态风险指数(RI)介于183.27~1 393.96,平均值为912.06,总体处于严重生态风险等级;悬浮物样品RI值介于341.53~612.38,平均值为436.85,总体处于重度生态风险等级。其中,沉积物样品重金属平均生态风险等级高于悬浮物样品,支流样品重金属生态风险等级总体上低于干流下游样品。根据因子分析法分析结果,初步推测沉积物及悬浮物Hg、Cd、Cr、Ni含量主要受工...  相似文献   

17.
Spatial and seasonal distribution and sources of 16 polycyclic aromatic hydrocarbons (PAHs), identified as priority pollutants by the US Environmental Protection Agency, were investigated in the surface water of the Taizi River in Liaoning Province, northeast of China. Samples were collected from the mainstream, and tributaries of the Taizi River in dry, wet, and normal seasons. Five important industrial point sources were also monitored. The total PAH concentrations ranged from 454.5 to 1,379.7 ng l?1 in the dry season, 1,801.6 to 5,868.9 ng l?1 in the wet season, and 367.0 to 5,794.5 ng l?1 in the normal season. The total PAH concentrations were significantly increased in the order of wet season > normal season > dry season. The profile of PAHs in the surface water samples was dominated by low molecular weight PAHs particularly with two- and three-ring components in the three seasons, suggesting that the PAHs were from a relatively recent local source. Source identification inferred that the PAHs in the surface water of the Taizi River came from both petrogenic inputs and pyrogenic sources.  相似文献   

18.
为了解渭河陕西段表层沉积物重金属的污染特征,采用ICP-MS分析了13个采样断面表层沉积物中As、Cd、Cr、Cu、Mn、Ni、Pb和Zn 8种重金属的含量,并对其来源和生态风险进行了评价。结果表明:渭河陕西段8种重金属的平均含量顺序依次为Mn > Zn > Cr > Cu > Ni > Pb > As > Cd;除Ni外的其余7种重金属的平均含量均超过陕西省A层土壤背景值。各断面表层沉积物重金属的潜在生态风险指数(RI)介于111.4~7 043.7,其中23.1%的断面有极强生态风险,46.2%的断面为中等生态风险,其余为轻微生态风险。Cd污染最为严重,对各断面的潜在生态风险介于较强生态风险与极强生态风险之间,对RI的贡献平均为85.2%;其余7种重金属在所有断面均属于轻微生态危害。渭河陕西段表层沉积物As、Cd、Cu和Zn主要为工业与农业来源;Cr和Ni主要为自然来源;Pb和Mn与城市污水和交通污染来源有关。  相似文献   

19.
The objectives of this study were to investigate the levels, dispersion patterns, seasonal variation, and sources of 16 priority polycyclic aromatic hydrocarbons (16 EPA-PAHs) in the Hun River of Liaoning Province, China. Samples of surface water were collected from upstream to downstream locations, and also from the main tributaries of the Hun River in dry period, flood period, and level period, respectively. After appropriate preparation, all samples were analyzed for 16 EPA-PAHs. Total PAHs concentrations varied from 124.55 to 439.27 ng l?1 in surface water in dry period, 1,615.75 to 5,270.04 ng l?1 in flood period, and 2,247.42 to 7,767.9 ng l?1 in level period. The 16 EPA-PAHs concentrations were significantly increased in the order of level period > flood period > dry period. The composition pattern of PAHs in surface water was dominated by low molecular weight PAHs, in particular two- to three-ring PAHs. In addition, two-ring PAH accounted for 39.33 to 88.27 % of the total PAHs in level period. Low molecular weight PAHs predomination together with higher levels of PAHs in flood and level period suggested a relatively recent local source of PAHs. Special PAHs ratios such as phenanthrene/anthracene and fluoranthene/pyrene indicated that under dry weather season conditions, the PAHs found in surface water were primarily from petrogenic source, while under wet weather season conditions they were from mixed source of both petrogenic inputs and combustion sources. The comparison of PAHs contamination among different types of areas in China suggested that atmospheric depositions might be the most important approaches of PAHs into water system. Although the Hun River exists low PAHs ecological risk now, potential toxic effects will be existed in the future especially in flood and level period.  相似文献   

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