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1.
为了研究地方性砷中毒高发区作物中砷含量及其对人体健康的威胁,在内蒙古自治区河套平原4个自然村采集了72个谷物蔬菜水果、81份人体尿样和8个自来水样品。用高效液相色谱-电感耦合等离子体质谱(HPLC-ICP-MS)分析测定采集的样品中各形态砷及其含量;用ICP-MS分析测定消解后的作物样品中砷总量。结果表明,自来水中总砷含量均小于1.0μg·L-1。尿液样品中总砷含量为4.50~319μg·L-1(平均值为56.9μg·L-1),二甲基砷(DMA)是尿砷的主要形态(>70%)。作物中砷的主要形态有无机三价砷As(III)、无机五价砷As(V)和DMA。谷物和蔬菜水果中总砷含量的最大值分别为102和335μg·kg-1。成人和儿童最大日摄入砷量分别为232和205μg。通过分析采样地人体尿砷、作物砷和地方性砷中毒发病率的相关性得出,作物中砷的含量虽未明显超过国家标准,但对人体健康有明显的潜在威胁。政府改水后(饮用水由井水变为达标的自来水),人体的健康风险主要来自作物中的砷,而不是饮用水中的砷。  相似文献   

2.
通过对山西省山阴县高砷地下水分布和污染程度的实地调查,对高砷水环境中砷的形态及富集转化规律进行了研究,并在此基础上形成一套以曝气氧化和加药(加入FeCl2和FeCl3的混合物作为混凝剂)过滤工艺为基础的联合水处理方法.结果表明,在山阴县砷污染严重的地段,地下水的氧化还原电位Eh为-50~142 mV,pH值为8.28~8.73,这种Eh下降、pH升高的地下环境给高砷地下水的形成创造了条件.当地下水中ρ(硫化氢)<140μg·L-1时,用功率为5 W的松宝SB-648双头氧气泵连续曝气1.5 h即可达到基本去除的效果.以25 m深处地下水为例,其ρ(As)为275 μg·L-1,待硫化氢去除后在水中加入摩尔比n(FeCl2):n(FeCl3)=1:1的混合物,连续曝气5 h,水体中60%以上的As(Ⅲ)可转变为As(V).经投加药品和曝气氧化处理后的地下水若能及时通过简易过滤装置,过滤后的水体中ρ(As)仅为5~8 μg·L-1,达到GB 5749-2006<活饮用水卫生标准>,且过滤后的水体中ρ(Fe)为0.03 mg·L-1,远小于GB/T 14848-93<地下水水质标准>规定的Ⅰ类标准.该水处理方法可快速有效地将As(Ⅲ)转化为As(V),并使As(V)与混凝剂发生吸附共沉淀反应,从而达到高效除砷的效果.过滤过程则可以防止氢氧化物胶体与砷酸盐形成的絮体二次进入环境,同时进一步降低水体中铁离子含量.该方法适用于我国广大高砷水地区家庭分散式供水的处理.  相似文献   

3.
河套灌区浅层地下水氮浓度和地下水埋深的季节变化规律调查结果表明:3月地下水NO3--N和TN浓度显著高于5、7和9月,地下水埋深也比5月和7月深。不同类型的井水N浓度差异较大:农田与庭院的井水NO3--N浓度显著高于村庄附近的井水,而NH4+-N和TN则表现为庭院井水浓度显著高于农田和村庄。地下水氮形态以NO3--N为主,全年17.1%的水井地下水NO3--N浓度高于10 mg.L-1,最高达184.4 mg.L-1。在灌溉量和其他生产条件相同的情况下,沙壕渠试验站农场内施肥区井水NO3--N浓度[(17.55±15.02)mg.L-1]明显高于未施肥区[(7.67±4.48)mg.L-1],且65.5%的水样NO3--N浓度超过WHO规定的生活饮用水NO3--N浓度上限值(10 mg.L-1),而未施肥区仅有27.6%的水样超标。井水NO3--N的来源主要为农田氮肥与动物粪肥,当地地下水NO3--N污染已不容忽视。  相似文献   

4.
卤乙酸可引起DNA损伤,导致遗传毒性,是饮用水监测中被广泛关注的消毒副产物.我国现行的《生活饮用水卫生标准》(GB5749—2006)规定:二氯乙酸和三氯乙酸分别不得超过20和100μg.L-1;WHO推荐的限值分别为50和100μg.L-1;美国EPA则规定一氯乙酸、二氯乙酸、三氯乙酸、一溴乙酸、二溴乙酸的总和不超过60μg.L-1.  相似文献   

5.
地下水砷污染是全球化环境问题.本文基于阿克苏地区平原区2017年75个地下水砷实测含量进行分析.结果表明,研究区地下水砷含量变化范围为ND-98.70 μg?L-1,平均值为9.42μg?L-1,超标率达26.7%.水平方向上,高砷地下水主要集中在研究区的中部偏南一带;垂直方向上,山麓斜坡冲洪积砾质平原潜水区地下水砷含...  相似文献   

6.
地下水高砷暴露的健康危害是环境与健康领域面临的巨大挑战。水砷含量及暴露人群饮水量参数的季节性变化可能影响饮水砷暴露评估的准确性。本研究选择内蒙古饮水砷中毒病区为研究区,测定丰水期(2013年5月)和枯水期(2013年12月)居民饮用水和尿液各形态砷(三价无机砷iAs~(3+)、五价无机砷iAs~(5+)、一甲基砷MMA~(5+)和二甲基砷DMA~(5+)+)含量,研究砷暴露量和尿砷的季节变化。结果表明,丰水期水砷含量(134.4±25.8)μg·L~(-1)显著低于枯水期的(163.2±38.1)μg·L~(-1),且丰水期水中iAs~(3+)的含量(58.9±51.2)μg·L~(-1)也显著低于枯水期的(100.1±49.0)μg·L~(-1)。研究人群丰水期通过饮水的摄砷量为313.1μg·d~(-1),低于枯水期的378.6μg·d~(-1)。此外,丰水期居民尿液总砷含量(218.6μg·L~(-1))显著低于枯水期(283.1μg·L~(-1))。丰水期女性居民尿液iAs、MMA~(5+)和总砷含量随当季饮水iAs~(5+)含量的升高而显著降低,枯水期女性尿液MMA5+含量随当季饮水iAs~(3+)及iAs含量的升高而显著升高。可见,病区居民饮水砷暴露量与尿砷含量具有明显的季节差异性,饮水砷与尿砷的关系受饮水砷形态、季节变化及性别等因素影响。  相似文献   

7.
钟新林 《环境化学》2013,(7):1422-1423
消毒副产物(Disinfection by-products,DBPs)是指用消毒剂对饮用水消毒时,消毒剂与水中含有的天然有机物反应生成的化合物.随着水处理技术的发展,对水处理中产生的各类消毒副产物的研究也日益关注.氯气、漂白粉和臭氧在消毒过程会产生少量对人体健康不利的副产物,如亚氯酸盐、溴酸盐和氯酸盐等.其中溴酸盐是饮用水中臭氧消毒的副产物,已被世界卫生组织和美国EPA列为潜在的致癌物,甚至在含量低至1μg.L-1也有致癌的作用.美国环境保护署(USEPA)和世界卫生组织(WHO)在最新的饮用水法规中规定饮用水中溴酸盐的含量不得超过10μg.L-1.我国最新的饮用水规范中也建议生活饮用水中溴酸盐的最高含量不允许超过10μg.L-1.卤代乙酸(haloacetic acids,HAAs)是饮用水加氯消毒时氯与水中存在的天然有机物反应生成的一类消毒副产物,通  相似文献   

8.
川中丘陵区典型小流域地下水硝酸盐污染分析   总被引:15,自引:1,他引:14  
对川中丘陵区典型小流域地下水N素含量及形态分配的监测结果表明,硝酸盐(NO3--N)是该地区地下水N素存在的主要形态。川中丘陵区54.5%的地下水NO3--N含量超过世界卫生组织(WHO)饮用水准则规定的10mg.L-1标准,另有27.3%的地下水NO3--N含量接近这一标准,表明该区地下水已经大范围地受到NO3--N污染的威胁。土地利用状况可能是影响川中丘陵区地下水NO3--N含量的主要因素。降雨量和水井深度也影响该区地下水NO3--N含量。紫色土坡耕地NO3--N随壤中流向浅层地下水迁移,可能是造成该区地下水NO3--N含量较高的最重要原因。  相似文献   

9.
本研究选取不同产地不同品种的茶叶作为研究对象,分析其砷含量特征,并采用人工胃肠模拟系统,研究茶叶以不同摄入方式(茶水、原茶、粉末)进入人体对砷生物可给性的影响.结果显示,17个不同产地不同种类茶叶样品中砷含量为ND—1.16±0.03 mg·kg-1,23.5%的样品未检测出砷浓度,11.8%的样品砷含量超过绿色食品-代用茶《中华人民共和国农业行业标准》(0.5 mg·kg-1),这是因为在加工过程中硫磺熏制干燥会造成茶叶砷污染;选择含砷量较高的茶叶样品研究不同摄入方式对砷生物有效性的影响,结果表明在胃肠阶段茶水中砷生物可给性显著大于原茶和粉末的摄入方式,其中在胃阶段粉末样品砷生物可给性显著大于原茶样品砷生物可给性,而在肠阶段原茶和粉末样品砷生物可给性差异不大.茶以3种不同摄入方式进入人体,在胃肠液中溶出浓度为0.02—2.80μg·L-1,小于WHO和我国《生活饮用水卫生标准》(GB5749—2006)中砷的限量标准10μg·L-1,不会对人体造成健康风险.  相似文献   

10.
建立了反相高效液相色谱-电感耦合等离子体质谱联用技术(HPLC-ICPMS)测定大米中砷酸盐、亚砷酸盐、一甲基砷酸和二甲基砷酸的分析方法.采用安捷伦Zorbax SB-Aq色谱柱,使用己烷磺酸钠/柠檬酸体系为流动相,结合反向色谱的快速分离特点在4 min内完成5种砷形态化合物的分离.进样量为5μg·L-1时,砷酸盐、一甲基砷酸、亚砷酸盐、二甲基砷酸和砷甜菜碱对应的检出限分别为0.095、0.108、0.153、0.230、0.590μg·L-1.1.0μg·L-1的混合标准溶液连续测定10次,5种砷形态化合物的峰面积相对标准偏差(RSD)分别为2.8%、3.0%、3.0%、3.2%和3.5%.  相似文献   

11.
Most local people in the agricultural areas of Hua-ruea sub-district, Ubon Ratchathani province (Thailand), generally consume shallow groundwater from farm wells. This study aimed to assess the health risk related to heavy metal contamination in that groundwater. Samples were randomly collected from 12 wells twice in each of the rainy and the dry seasons and were analyzed by inductive coupled plasma spectrometry-mass spectrometry (ICP-MS). The concentration of detected metals in each well and the overall mean were below the acceptable groundwater standard limits for As, Cd, Cr, Cu, Hg, Ni and Zn, but Pb levels were higher in four wells with an overall average Pb concentration of 16.66 ± 18.52 μg/l. Exposure questionnaires, completed by face-to-face interviews with 100 local people who drink groundwater from farm wells, were used to evaluate the hazard quotients (HQs) and hazard indices (HIs). The HQs for non-carcinogenic risk for As, Cu, Zn and Pb, with a range of 0.004–2.901, 0.053–54.818, 0.003–6.399 and 0.007–26.80, respectively, and the HI values (range from 0.10 to 88.21) exceeded acceptable limits in 58 % of the wells. The HI results were higher than one for groundwater wells located in intensively cultivated chili fields. The highest cancer risk found was 2.6 × 10?6 for As in well no. 11. This study suggested that people living in warmer climates are more susceptible to and at greater risk of groundwater contamination because of their increased daily drinking water intake. This may lead to an increased number of cases of non-carcinogenic and carcinogenic health defects among local people exposed to heavy metals by drinking the groundwater.  相似文献   

12.
Surface water and groundwater always behave in a coupled manner and are major components of hydrologic cycle. However, surface water simulation models and groundwater simulation models are run separately most of the time. Few models focus on the impact of hydraulic changes in the surface water flows on the groundwater, or specifically, the impact of a water transfer project to fill a seasonally dry channel. In this study, a linked surface water and groundwater simulation model was developed to assess the impact of a trans-basin water diversion project on the groundwater. A typical plain area east of Beijing was selected as a case study, representing Beijing’s main source of groundwater used for drinking water. A surface water quality model of the Chaobai River was developed based on the Water Quality Analysis Simulation Program (WASP), and a groundwater model was developed based on the Modular Finite-Difference Groundwater Flow Model (MODFLOW) and the Modular 3-D transport model (MT3D). The results of the surface water simulation were used as input for the groundwater simulation. Water levels and four contaminants (NH3-N, CODMn, F, As) were simulated. With the same initial and boundary conditions, scenario analyses were performed to quantify the impact of different quantities of diversion water on the groundwater environment. The results showed the water quality of the groundwater sources was not significantly affected.  相似文献   

13.
This study presents an assessment of the potential impact of geological contamination of the environment on the health of the population in Spišsko-Gemerské rudohorie Mts. (SGR Mts.). The concentration levels of potentially toxic elements (mainly As, Cd, Cu, Hg, Pb, Sb, and Zn) were determined in soils, groundwater, surface water, and stream sediments as well as in the food chain (locally grown vegetables). A medical study included some 30 health indicators for all 98 municipalities of the study area. The As and Sb contents in human fluids and tissues were analyzed in one municipality identified to be at the highest risk. Based on element content, environmental and health risks were calculated for respective municipalities. Out of 98 municipalities 14 were characterized with extremely high environmental risk and 10 were characterized with very high carcinogenic risk from arsenic (groundwater). Extensive statistical analysis of geochemical data (element contents in soils, groundwater, surface water, and stream sediments) and health indicators was performed. Significant correlations between element contents in the geological environment and health indicators, mainly cancer and cardiovascular diseases, were identified. Biological monitoring has confirmed the transfer of elements from the geological environment to human fluids and tissues as well as to the local food chain.  相似文献   

14.
淮河流域安徽段水体成组生物毒性评价   总被引:1,自引:1,他引:0  
在淮河流域安徽段某区域采集了3个地表水样和12个地下水样,通过大型溞急性毒性(活动抑制)、微核及SOS/umu试验,分析了这些水样的急性毒性及遗传毒性。结果表明,急性毒性测试中,该区域地表水及大部分地下水的急性毒性均未超过US EPA废水排放毒性的控制要求(0.3 TU),有2个位点的地下水样毒性当量为0.31 TU,超过限值;经t-test分析,地表水的急性毒性显著高于地下水。SOS/umu检测中,2个地表水样和7个地下水样的结果呈阳性,表现出DNA损伤效应,其诱导率IR在(2.20±0.063)~(3.36±0.067)之间,对应的致癌风险P基本处在10-6~10-7水平。微核检测结果表明,3个地表水样具有较严重的染色体损伤效应,9个地下水样表现为阴性。总之,该区域地表水急性毒性及遗传毒性相对较高;部分浅层地下水也存在一定程度的急性毒性和遗传毒性,致癌风险处在可接受范围,但仍可能对周围居民的健康产生潜在威胁;而深层地下水没有检测到任何毒性效应。研究为周边居民饮水安全和人体健康提供了基础信息。  相似文献   

15.
This study presents the modelling approach and impact assessment of different strategies for managing wetland water resources and groundwater dynamics of landscapes which are characterised by the hydrological interactions of floodplains and the adjacent lowlands. The assessment of such impacts is based on the analysis of simulation results of complex scenarios of land-use changes and changes of the density of the drainage-network. The method has been applied to the 198 km2 Lower Havel River catchment as a typical example of a lowland–floodplain landscape. The model used consists of a coupled soil water and groundwater model, where the latter one is additionally coupled to the surface channel network. Thus, the hydrological processes of the variable saturated soil zone as well as lateral groundwater flow and the interactions between surface water and groundwater are simulated in an integrated manner. The model was validated for several years of significantly different meteorological conditions. The comparison of lateral and vertical water balance components showed the dominance of lateral flow processes and the importance of the interactions between surface water and groundwater for the overall water balance and the hydrological state of that type of landscape.The simulation of land-use change scenarios showed only minor effects of land-use change on the water balance and groundwater recharge. Changes of groundwater recharge were particularly small within the wetland areas being part of the floodplain where interactions between surface water and groundwater are most pronounced. Alterations in vertical groundwater recharge were counter-balanced by the lateral interaction between groundwater and surface water. More significant deviations in groundwater recharge and storage were observed in the more peripheral areas towards the catchment boundaries which are characterised by greater groundwater distance from the surface and less intense of ground water–surface water interactions.However, the simulation results assuming a coarsening of the drainage network density showed the importance of drainage structure and geometry for the water balance: The removal of the artificial draining ditches in the floodplain would result in significant alterations of total groundwater recharge, i.e., less recharge from winter to early summer and an increase of groundwater recharge during summer and autumn. Furthermore the different effects of groundwater recharge alterations on the dynamics of groundwater stages within the wetland areas close to the floodplains compared to the more peripheral areas could be quantified. Finally, it will be discussed that a well-adjusted co-ordination of different management measures is required to reach a sustainable water resources management of such lowland–floodplain landscapes.  相似文献   

16.
This paper identifies newer areas of arsenic contamination in the District Kanker, which adjoins the District Rajnandgaon where high contamination has been reported earlier. A correlation with the mobile phase episodes of arsenic contamination has been identified, which further hinges on the complex geology of the area. Arsenic concentrations in both surface and groundwater, aquatic organisms (snail and water weeds) soil and vegetation of Kanker district and its adjoining area have been reported here. The region has been found to contain an elevated level of arsenic. All segments of the ecoysystem are contaminated with arsenic at varying degrees. The levels of arsenic vary constantly depending on the season and location. An analysis of groundwater from 89 locations in the Kanker district has shown high values of arsenic, iron and manganese (mean: 144, 914 and 371 μg L−1, respectively). The surface water of the region shows elevated levels of arsenic, which is influenced by the geological mineralised zonation. The most prevalent species in the groundwater is As(III), whereas the surface water of the rivers shows a significant contamination with the As(V) species. The analysis shows a bio-concentration of the toxic metals arsenic, nickel, copper and chromium. Higher arsenic concentrations (groundwater concentrations greater than 50 μg L−1) are associated with sedimentary deposits derived from volcanic rocks, hence mineral leaching appears to be the source of arsenic contamination. Higher levels of arsenic and manganese in the Kanker district have been found to cause impacts on the flora and fauna. A case study of episodic arsenical diarrhoea is presented.  相似文献   

17.
A rapid, sensitive, and cost-effective analytical method was developed for the analysis of selected semi-volatile organic compounds in water. The method used an automated online solid-phase extraction technique coupled with programmed-temperature vaporization large-volume injection gas chromatography/mass spectrometry. The water samples were extracted by using a fully automated mobile rack system based on x-y-z robotic techniques using syringes and disposable 96-well extraction plates. The method was validated for the analysis of 30 semivolatile analytes in drinking water, groundwater, and surface water. For a sample volume of 10 mL, the linear calibrations ranged from 0.01 or 0.05 to 2.5 ??g·L?1, and the method detection limits were less than 0.1 ??g·L?1. For the reagent water samples fortified at 1.0 ??g·L?1 and 2.0 ??g·L?1, the obtained mean absolute recoveries were 70%?C130% with relative standard deviations of less than 20% for most analytes. For the drinking water, groundwater, and surface water samples fortified at 1.0 ??g·L?1, the obtained mean absolute recoveries were 50%?C130% with relative standard deviations of less than 20% for most analytes. The new method demonstrated three advantages: 1) no manipulation except the fortification of surrogate standards prior to extraction; 2) significant cost reduction associated with sample collection, shipping, storage, and preparation; and 3) reduced exposure to hazardous solvents and other chemicals. As a result, this new automated method can be used as an effective approach for screening and/or compliance monitoring of selected semi-volatile organic compounds in water.  相似文献   

18.
The problems of contamination caused by arsenic (As) and other toxic metals in groundwater, surface water and soils in the Bengal basin of Bangladesh have been studied. Altogether 10 groundwater, seven surface water and 31 soil samples were collected from arsenic-affected areas and analysed chemically. The geologic and anthropogenic sources of As and other toxic metals are discussed in this paper. The chemical results show that the mean As concentrations in groundwater in the Char Ruppur (0.253mg As L–1), Rajarampur (1.955mg As L–1) and Shamta areas (0.996mg As L–1) greatly exceed the WHO recommended value, which is 0.01mg As L–1. The concentrations of As in groundwater are very high compared to those in surface water and in surface soil in the three (As-affected) areas studied. This indicates that the source of As in groundwater could be bedrock. The relatively high concentrations of Cr, Cu, Ni, Pb and Zn in surface water, compared to world typical value, are due to the solubility of metal ions, organometalic complexes, coprecipitation or co-existance with the colloidal clay fraction. In the soil, the elevated concentrations of As, Cr, Cu, Ni, Pb and Zn are due to their strong affinity to organic matter, hydrous oxides of Fe and Mn, and clay minerals.  相似文献   

19.
This study was performed on fifty-two drinking tap water samples (surface and groundwater) collected from different districts of Dakahlia Governorate and fifty-two breast milk samples from lactating mothers hosted in Dakahlia Governorate hospitals. All these samples were subjected to lead analysis. Lead level in drinking groundwater showed higher levels than in drinking surface water. Also, an elevation of lead levels in breast milk of mothers drinking groundwater was noticed when compared with that of mothers drinking surface water. The comparison between mean lead levels in drinking water and mothers’ breast milk samples showed positive relationship. Lead concentrations in breast milk of the studied samples were elevated by exposure to smoking. We conclude that prolonged contact with lead plumbing can increase the lead content in tap water with subsequent increase in lead burden in infant fed formula and infant blood. Also, we recommend that chemical analyses must be carried out periodically for the surface and groundwater to ensure the water suitability for drinking purposes. Passive exposure to smoking during lactation should be avoided. Capsule: Prolonged contact with lead plumbing can increase the lead content in tap water with subsequent increase in lead burden in infant fed formula and infant blood.  相似文献   

20.
中国饮水型砷中毒区的水化学环境与砷中毒关系   总被引:3,自引:0,他引:3  
中国各饮水型砷中毒区的水化学特点受沉积环境和气候因素所控制,砷中毒的流行和发病程度与其地下水的水化学环境、水中砷的形态和价态有密切联系。在实地考察监测和对台湾、新疆、内蒙古、山西、吉林饮水型砷中毒病区环境和地下水水化学特征总结的基础上,系统分析了饮水水源中总As、As(III)、甲基胂、腐植酸与砷中毒的关系,揭示了不同病区病情差异的原因。研究表明,除台湾外,各砷中毒区均分布在干旱半干旱区;各病区多分布在沉积盆地中心或平原内相对低洼的地带,饮用的地下水均取自中新生代地层;砷中毒病情不仅与总砷含量有明显的剂量-效应关系,还与As(III)和甲基胂的浓度直接相关。台湾、内蒙古和山西病区地下水为富含有机质的复杂还原环境,水中不仅As(III)含量高,且检出有机物、腐植酸和甲基胂,新疆和吉林病区地下水为以无机砷中As(V)为主的氧化环境,吉林病区未检测出甲基胂,这是新疆与吉林病区患病率较低的主要原因。研究成果可为区域防病改水、砷中毒的预报提供重要技术支撑。  相似文献   

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