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1.
南京市某垃圾填埋场重金属污染现状调查   总被引:2,自引:0,他引:2  
对南京市某垃圾填埋场的垃圾、土壤、植物、炉渣等样品中Cu、Pb、Cr、Zn、Cd、Hg、As、Sb、Mn重金属含量进行分析。结果表明,垃圾填埋场的填埋土中Cu、Zn、As3种重金属含量分别高出自然土壤背景值86%、250%,300%。潜在生态危害指数法评价的污染状况为:Cd、As〉Hg〉Cu〉Pb〉Cr、Zn;Cd和As的毒性贡献较大,存在极高的潜在生态风险。  相似文献   

2.
选择云南会泽县者海镇矿区重金属污染场地,按不同暴露途径计算土壤中Pb、As、Cd、Zn、Cu、Cr、Hg等金属污染物的风险,并通过风险评价,分析场地内的健康风险水平。结果表明:所有暴露途径中Zn、Cu、Pb对人体健康的平均风险较小。在居住用地情景下,土壤中Cd的综合致癌风险为2. 6×10-5,As的综合致癌风险为3. 3×10-4,场地内As和Cd的污染对敏感受体健康的潜在危害较大。  相似文献   

3.
将Hakanson提出的潜在生态风险指数法应用于垃圾填埋场及周边土壤重金属污染评价,扩充了评价因子,确定了各重金属的毒性系数及参比值。研究结果表明,评价区土壤中Hg的潜在生态风险较重,其后依次为Cd、As、Ni、Cu、Pb、Co、Cr、Mn和Zn。对污染场地的风险评估及生态修复有一定的指导意义。  相似文献   

4.
以湖北某含砷金矿污染场地为例,依据《污染场地风险评估技术导则》(HJ 25.3—2014),对其周边土壤和地下水中砷元素进行健康风险评价,结果表明:该金矿周边土壤和地下水中砷分别通过经口摄入土壤、皮肤接触土壤和吸入土壤颗粒物、饮用地下水4种暴露途径的致癌风险均超过可接受风险水平(10-6),对周边居民造成潜在危害。计算得到经口摄入、皮肤接触和吸入途径基于致癌效应的土壤风险控制值分别为1.6 mg/kg、9.3 mg/kg和12.1 mg/kg,应予以重视,并建议对矿山进行综合治理和目标值修复。  相似文献   

5.
对淮安市某垃圾填埋场土壤中13个采样点中典型重金属 Cr、Pb、As、Hg、Cd、Cu、Zn 的含量进行了调查,采用单因子污染指数、综合污染指数及 Hakanson潜在生态风险指数法评价了土壤中典型重金属对其所在环境的污染程度,对周围环境造成的潜在生态风险影响。结果表明,研究区域内重金属含量均未超过《土壤环境质量标准》(GB 15618-1995)二级标准。主要的潜在生态风险因子为 As,潜在生态风险因子大小顺序为 As>Hg>Cd>Cu>Cr>Pb>Zn。  相似文献   

6.
通过在某燃煤电厂周边河流中布设15个采样点,监测其中氟(F)、砷(As)和重金属的含量,并评价其通过饮水和皮肤接触途径对不同人群所产生的健康风险。结果表明:河流中F、As、Cd、Cr监测值均未超过《地表水环境质量标准》(GB 3838—2002)Ⅲ类标准限值,Hg严重超标;河流中污染物所致儿童和成人健康危害的总风险分别为2.62×10~(-5) a~(-1)和1.76×10~(-5) a~(-1),均高于瑞典环保局、荷兰建设和环境部推荐的最大可接受风险水平1.0×10~(-6) a~(-1),其中As、Cr对儿童的健康危害风险较大,分别为1.69×10~(-5) a~(-1)和9.21×10~(-6) a~(-1),应作为风险决策管理的重点。  相似文献   

7.
城市湿地公园是人们休闲娱乐的重要场所,但其地表灰尘的人群暴露健康风险却鲜有报道。该研究收集昆明市3个最受欢迎的湿地公园景区地表灰尘样品,利用等离子发射光谱仪(ICP-OES)测定灰尘中Pb、Cd、Hg、As、Zn、Cr、Cu、Ni、Co、Mn含量,使用地累积指数法(Igeo)、污染负荷指数法(PLI)和潜在生态风险指数法(RI)探讨湿地公园灰尘重金属污染特征,借助美国环保署健康风险评价模型,开展成人和儿童的重金属健康风险评价。结果表明:灰尘中10种重金属平均含量均超昆明市土壤背景值,其中Cd、Hg和Zn平均含量超背景值6倍,Cr、Ni、Co的Igeo<1。污染负荷指数法结果显示Hg、Cd、Zn中度污染,Pb、Cu和As则具有中等以上生态风险。人体健康风险评价结果显示,经口摄入为重金属主要暴露途径,其次是皮肤直接接触和呼吸吸入。Ni、As、Cd、Co和Cr的致癌风险值均小于10-6,但若长期处于此种环境,可能会存在潜在的致癌风险。对于非致癌元素而言,Pb、Zn、Cu、Mn非致癌健康风险值都远小于1,即风险可以忽略。  相似文献   

8.
以南方某城市的10个地铁车站作为研究对象,分析空气可吸入颗粒物(PM10)样品中10种重金属砷(As)、铬(Cr)、镉(Cd)、镍(Ni)、汞(Hg)、铅(Pb)、锰(Mn)、锑(Sb)、锡(Se)、铜(Cu)的质量浓度。采用美国环境保护局(US EPA)推荐的健康风险评估模型,对重金属通过呼吸途径引起的人群健康风险进行评估。结果表明,地铁车站空气PM10中的重金属Cr和As对人群可能存在潜在致癌健康风险;重金属Mn、Cu、Pb、Se、Hg和Sb对人群的非致癌健康风险较小。提出,应进一步关注地铁车站空气PM10中重金属对暴露人群可能存在的健康风险,采取有针对性的措施进行防护。  相似文献   

9.
通过监测桂林市2014年冬季大气PM_(2.5)中11种元素的质量浓度,运用富集因子解析其来源,并开展重金属潜在生态风险、人体暴露和健康风险评价。结果表明:Cd富集因子10,表明Cd的来源主要是人为源;其他元素富集因子均10,主要来源为自然源。生态危害程度Cd和Hg为极强,Pb为强,As为较强,其他元素均为轻微。总的潜在生态风险指数(RI)为19 385.3,远高于600,生态风险为极强。各元素经呼吸摄入的非致癌风险由高到低为AsCdCrPbHg,致癌风险由高到低为CrAsCdPb;儿童和成人的总致癌风险分别为1.68×10~(-7) a~(-1)和3.84×10~(-7) a~(-1),风险甚微。  相似文献   

10.
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   

11.
This research evaluates the lifetime cancer risks from trihalomethanes in Tehran's drinking water. The Trihalomethanes were measured in seven different water districts. Sixty-three samples were taken from tap water across the city for 7 months. The samples were analyzed for trihalomethanes using US EPA method 524.2. The average concentration of total trihalomethanes in different districts were between 0.81 and 9.0 μg/L, and the highest concentrations were detected in district 2 at 19.5 μg/L. Total lifetime cancer risks assessment from exposure to trihalomethanes in drinking water (ingestion, inhalation, and skin routes) were performed for people living in different districts in Tehran. The lifetime cancer risk was 7.19 × 10(-5) in district 2 (a more affluent neighborhood) where mostly surface water sources is used to supply drinking water and 9.38 × 10(-6) in district 7 (a less affluent neighborhood) which is mainly supplied with well water sources. Based on the population data, the total expected lifetime cancer cases from exposure to trihalomethanes are 104, 108, 81, 81, 41, 27, and three for districts 1 through 7, respectively. The average lifetime cancer risk was 4.33 × 10(-5) which means a total of 606 lifetime cancer cases for the entire province of Tehran. The highest risk from THMs seems to be from the inhalation route followed by ingestion and dermal contacts.  相似文献   

12.
为考察遂宁市辖区内集中式饮用水水源地污染物钡的分布特征和健康风险水平,通过电感耦合等离子体原子发射光谱法对研究区域内市级、县级和乡镇级所有在用的56个集中式饮用水水源地钡的浓度进行分析检测,借助空间分析与统计分析的结果,探讨了其空间分布和浓度差异,并利用环境健康风险评价模型,对不同类型水源地钡的健康风险进行了评价。结果表明,38个地表水水源地钡的浓度范围为0.065~0.180 mg/L,均值为0.110 mg/L;18个地下水水源地钡的浓度范围为0.027~0.370 mg/L,均值为0.130 mg/L。地表水与地下水水源地间钡的浓度差异具有统计学意义(P0.05),钡的空间分布也存在不同程度的差异性。各水源地中的钡经饮用和皮肤暴露两种途径对成人和儿童所引起的非致癌风险值为1.34×10~(-8)~1.62×10~(-8),远低于推荐的最大可接受风险水平(1.0×10~(-6)),各水源地因污染物钡导致的非致癌风险极低。  相似文献   

13.
乌鲁木齐乌拉泊水库水体中重金属健康风险评价   总被引:7,自引:0,他引:7  
王钢  王灵  郑春霞  钱翌 《干旱环境监测》2010,24(1):22-26,30
为了解乌鲁木齐市主要饮用水源地乌拉泊水库水体中重金属含量,特对此进行了调查研究,并应用美国环保局(USEPA)推荐的健康风险评价模型对其进行健康风险的初步评价。结果表明,乌拉泊水库由致癌物质Cr、As、Cd通过饮水途径引起的个人年健康风险值表现为CrAsCd,风险值为10-7~10-5a-1,Cr的风险值高于国际放射防护委员会(ICRP)的推荐值(5×10-5a-1),成为乌拉泊水库水体的主要致癌因子;乌拉泊水库由非致癌物Pb、Cu、Zn、Hg所引起的健康危害的个人年风险以Cu为大,Pb次之,Hg和Zn较小,风险水平为10-10~10-8a-1,远低于ICRP和USEPA推荐的最大可接受风险水平。  相似文献   

14.
Analytical results of soil samples taken in three different mercury mining sites in Northern Spain are studied to assess the potential adverse health effects of the exposure to trace elements associated with the mining process. Doses contacted through ingestion and inhalation and the dose absorbed through the skin were calculated using USEPA's exposure parameters and the US Department of Energy's toxicity values. The results of the risk assessment indicate that the highest risk is associated with ingestion of soil particles and that the trace element of major concern is arsenic, the exposure to which results in a high cancer risk value for all the sites ranging from 3.3 × 10(-5) to 3.6 × 10(-3), well above the 1 × 10(-5) probability level deemed unacceptable by most regulatory agencies. Regarding non-cancer effects, exposure to polluted soils yields an aggregate hazard index above the threshold value of 1 for all three sites, with As and Hg as the main contributors. Risk assessment has proven to be a very useful tool to identify the contaminants and exposure pathways of most concern in the soils from metal mining sites, as well as to categorize them in terms of action priority to ensure fitness for use.  相似文献   

15.
对青岛市某饮用水源地饮用水的钼、铍、硼、锑、钡、钒、钛、铊、砷、镉、铅、汞、镍、铜、锌共15种重金属元素进行了分析,并应用美国环保局推荐的健康风险评价模型对其所引起的健康风险作了初步评价。结果表明,通过饮水途径所致健康风险中,由致癌物砷所致的健康风险为8.15E-6 a-1,低于国际辐射防护委员会ICRP推荐的最大可接受风险水平5.0×10-5a-1;由非致癌物所致的健康风险中砷最大,铜和硼次之,二者的风险水平为10-9a-1和10-10a-1,均低于ICRP推荐的最大可接受风险水平。  相似文献   

16.
Arsenic concentrations in hair and urine, and urinary levels of 8-hydroxy-2'-deoxyguanosine (8-OHdG), a marker of oxidative DNA damage, were examined for inhabitants of the Mekong Basin in Kratie Province, Cambodia. Also, the arsenic levels of tube-well water were determined. Total arsenic concentrations in tube-well water ranged from <1 to 886 microg L(-1), and 44.8% of these exceeded the WHO drinking water guideline of 10 microg L(-1). Elevated levels of arsenic were observed in the human hair and urine, and also a significant positive correlation was observed between the concentrations in hair and urine. These results suggest that the inhabitants are chronically exposed to arsenic through drinking the tube-well water. Levels of urinary 8-OHdG were higher for the subjects with higher arsenic levels in hair and urine, suggesting that induction of oxidative DNA damage was caused by chronic exposure to arsenic in tube-well water for the inhabitants in Kratie Province. To our knowledge, this is the first report on the oxidative DNA damage caused by chronic exposure to arsenic in groundwater for the inhabitants in Cambodia.  相似文献   

17.
The concentrations of trihalomethanes (THMs), including chloroform, bromodichloromethane, dibromochloromethane, and bromoform, and haloacetic acids (HAAs; monochloroacetic acid, monobromoacetic acid, dibromoacetic acid, dichloroacetic acid, and trichloroacetic acid) were measured in tap waters passing through water distribution systems of six water treatment plants in Seoul, Korea, and their associated health risks from exposure to THMs through ingestion, dermal contact, and inhalation were estimated using a probabilistic approach. The concentration ranges for total THMs and HAA5 were 3.9–53.5 and <LOD–49.5 μg/L, respectively. Among DBPs, chloroform, bromodichloromethane, dichloroacetic acid, and trichloroacetic acid were the most frequently detected. Spatial and seasonal variations in concentrations of THMs and HAAs in the six water distribution systems were significant (P?<?0.001).The mean lifetime cancer risks through ingestion, dermal contact, and inhalation during showering ranged as 7.23–10.06?×?10?6, 2.19–3.63?×?10?6, and 5.22–7.35?×?10?5, respectively. The major exposure route to THMs was inhalation during showering. Sensitivity analysis showed that shower time and shower frequency had a great impact on the lifetime cancer risk by the exposure to THMs in tap water.  相似文献   

18.
As part of our efforts to find effective methods to the drinking water risk management, the health risk assessment of arsenic and cadmium in groundwater near Xiangjiang River was analyzed. The results suggest that although the arsenic and cadmium concentrations in 97% of groundwater sources are less than the requirement of Water Quality Standards for Drinking Water (GB5749-2006) in China, the residents served by almost all of the investigated centralized drinking water sources have a significant potential health risk by consumption, especially cancer risk. It is justified through analyses that risk assessment is an effective tool for risk management, and the maximum permissible concentration of arsenic and cadmium in drinking water (0.01 and 0.005?mg L-1, respectively) is suitable for China at present, considering the current economic status of China. Risk managers develop cleanup standards designed to protect against all possible adverse effects, which should take into account highly exposed individuals, effects of mixtures of toxic substances, attendant uncertainties, and other factors such as site-specific (or generic) criteria, technical feasibility, cost?Cbenefit analyses, and sociopolitical concerns.  相似文献   

19.
Cyanide is a very toxic chemical that is used to extract gold from its ores. Wastewaters from gold mining companies such as Bogoso Gold Limited (BGL) contain cyanide and other potentially toxic chemicals that have adverse effects on human beings and aquatic organisms. This study was conducted to evaluate the human health risk assessment from exposure to free cyanide via oral and dermal contact of surface/underground water by resident adults within the concession of Bogoso Gold Limited. The chronic non-cancer health risk from exposure to cyanide in River Bogo Upstream is 230 and 43 (by Central Tendency Exposure (CTE) parameters respectively). This means that approximately 230 and 43 resident adults are likely to suffer diseases related to cyanide intoxication via oral and dermal contact respectively. For chronic exposure to River Bogo Downstream by resident adults, the non-cancer health risks are: 0.031 and 0.57 via oral and dermal contact for CTE parameters respectively, which also means that, the non-cancer health risks associated with cyanide intoxication is negligible as the hazard index is less than 1.0 via oral and dermal contacts respectively. The results showed that health risk for acute exposure to cyanide by the resident adults is very high. Hence the residents attribute most of the unexplained deaths in the communities to accidental ingestion and dermal contact of cyanide water.  相似文献   

20.
Inorganic arsenic is a potent human carcinogen and toxicant which people are exposed to mainly via drinking water and food. The objective of the present study was to assess current exposure to arsenic via drinking water in three European countries. For this purpose, 520 individuals from four Hungarian, two Slovakian and two Romanian countries were investigated by measuring inorganic arsenic and methylated arsenic metabolites in urine by high performance liquid chromatography with hydride generation and inductively coupled plasma mass spectrometry. Arsenic in drinking water was determined by atomic absorption spectrometry. Significantly higher concentrations of arsenic were found in both the water and the urine samples from the Hungarian counties (median: 11 and 15 microg dm(-3), respectively; p < 0.001) than from the Slovakian (median: 0.94 and 4.5 microg dm(-3), respectively) and Romanian (median: 0.70 and 2.1 microg dm(-3), respectively) counties. A significant correlation was seen between arsenic in water and arsenic in urine (R(2)= 0.46). At low water arsenic concentrations, the relative amount of dimethylarsinic acid (DMA) in urine was increased, indicating exposure via food. Also, high body mass index was associated with higher concentrations of arsenic in urine (p= 0.03), mostly in the form of DMA. Smokers had significantly higher urinary arsenic concentrations than non-smokers (p= 0.03). In conclusion, elevated arsenic exposure via drinking water was prevalent in some of the counties. Exposure to arsenic from food, mainly as DMA, and cigarette smoke, mainly as inorganic arsenic, are major determinants of arsenic exposure at very low concentrations of arsenic in drinking water.  相似文献   

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