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1.
采用电感耦合等离子体原子发射光谱法测定胡蜂酒中20种无机元素,建立无机元素对照指纹图谱,对重金属元素进行风险评估。结果表明,胡蜂酒中无机元素种类丰富,其中P、K、Na元素占测定总元素的96.14%。有害元素Pb、Cd、As、Hg、Cu含量符合国家药典标准要求,Cu的靶标危险系数(THQ)为1.00×10-2,THQ<1说明摄入的重金属对人体健康造成的影响不明显。不同产区胡蜂酒金属元素含量存在差异,根据金属元素图谱得出元素含量按原子序数顺序出现相似的分布态势。结果表明,胡蜂酒中含有丰富的金属元素,很多为营养微量元素,有害元素(Pb、Cd、As、Hg、Cu)含量符合药典要求,从金属元素方面单一来看,饮用胡蜂酒没有明显的健康风险。胡蜂酒无机元素指纹图谱可为胡蜂酒的鉴别提供一定的的参考依据。  相似文献   

2.
湘潭市土壤重金属地球化学特征的统计分析   总被引:3,自引:0,他引:3  
运用相关性分析、聚类分析、因子分析及直方图分析对湘潭市土壤重金属地球化学特征进行了研究。结果表明:(1)As、Cd、Cu、zn与pH值呈显著正相关;As与Cd、Cu、Ph、zn呈显著正相关;Cd与As、Cu、Pb呈显著正相关;Cu与As、Cd、Pb、Zn呈显著正相关;Pb与As、Cu、zn呈显著正相关;Zn与As、Cd、Cu、Pb呈显著正相关;Hg与其他重金属及pH值不具有显著相关关系。(2)本区重金属分为两类,即Cr、pH、As、Zn、Cu、Cd;Hg、Pb。(3)区内重金属存在3种主要元素组合即As—Cd—Cu—Pb—Zn—pH;Cr—Hg;Cd—pH;(4)区内重金属As、Cd、Cr、Cu、Hg、Zn服从正态分布。(5)通过前人对湘潭市土壤重金属进行生态地球化学评价可知,区内Cd、Hg属重污染,从统计分析结果来看,Cd随着本区pH值变化而变化,并与As、Cu、Pb相关性显著;而Hg与pH值及其它重金属之间没有必然联系。  相似文献   

3.
为摸清成都平原土壤-水果系统中重金属污染水平和富集特征,通过对成都平原典型地区333个水果作物及其根部表层土壤中Hg、As、Pb、Cd、Cu、Cr和土壤理化指标的测定,结果表明:(1)研究区土壤养分整体呈现出有效磷和碱解氮较丰富,有机质和速效钾较缺乏的特征,可通过增施有机肥、地面覆草、施用绿肥等方式提升土壤肥力水平。(2)研究区土壤重金属存在部分点位超标,以Cd的超标率最高。土壤重金属单因子评价污染等级为清洁,土壤综合污染指数评价污染等级为中度污染,其主要贡献为Cd。研究区重金属存在一定程度的富集,Cd和Hg的污染指数高,潜在生态风险强,应重点关注土壤Cd污染和Hg含量水平的增加趋势,将Cd污染作为下一步土壤风险管控和修复治理的重点目标。(3)研究区水果Pb、Cd的超标率分别为5.7%、7.8%,不同水果Pb、Cd的超标率差异显著,草莓Cd的超标率最高。研究区水果中重金属未对成人构成非致癌健康风险,而水果中的As和Cu对儿童构成了非致癌健康风险,As和Cu对水果重金属非致癌总指数的贡献超过70%,应特别关注水果中As和Cu的管控,以免造成较大的食源性危害。(4)重金属在水果与土壤中的含量水平关联性较低,水果中重金属的含量与水果富集重金属的能力关联度极高,应进一步查明水果重金属与土壤重金属形态的关系,并结合调整水果种植结构、筛选重金属低积累水果品种等方式降低水果重金属的健康风险。  相似文献   

4.
成都市农业土壤重金属污染特征初步研究   总被引:16,自引:0,他引:16  
对成都市农业土壤中七种重金属元素Pb、Hg、Cr、As、Cu、Zn和Cd进行了测定和研究,并进行了潜在生态风险评价。结果表明,成都市农业土壤重金属元素含量分别为:Pb 77.27mg/kg,Hg 0.31 mg/kg,Cr 59.50 mg/kg,As 11.27 mg/kg,Cu 42.52 mg/kg,Zn 227.00 mg/kg,Cd0.36 mg/kg;重金属潜在的生态危害因子表明,Hg和Cd达到中等生态危害程度,Pb、As、Cu、Zn、Cr达到轻微生态危害;多种重金属的生态系统的潜在生态风险指数(RI)表明,成都市农业土壤生态危害级别为中等生态危害。  相似文献   

5.
摘要:为了研究冶炼厂下风向烟囱降尘对农田土壤重金属污染影响程度,以济源市某一冶炼厂工业烟囱下风向降尘覆盖农田土壤为研究对象,依次对距离该厂烟囱大约为750m-3000m的7个农田研究区(P1-P7)土壤中重金属(Hg、As、Pb、Cd、Cu、Zn、Ni、Cr、)含量进行污染状况分析,采用了单项潜在生态风险指数法和综合潜在生态风险指数法对冶炼厂下风向烟囱降尘土壤中重金属的潜在生态风险进行评价。结果表明:在3 km2研究区域范围内,距离冶炼厂越近土壤重金属含量越高,Pb、Cd为重度污染,超过了《土壤环境质量农用地土壤污染风险管控标准》(GB15618-2018)农用地土壤污染风险管制值的1.2倍,距离冶炼厂烟囱下风向P1区土壤中重金属As、Pb、Cd、Cu、Zn超过土壤环境质量农用地土壤风险筛选值,Cd 在浓度值均超过农用土壤污染风险管制值1.8倍,As元素平均浓度值超农用土壤污染风险管制值1.7倍,Pb、Cu和Zn污染较严重,Cd、Hg对综合指数(RI)贡献值较大分别为68.63和22.4。单项潜在生态风险指数评价结果显示Cd存在极严重的潜在生态风险,Pb、Cu存在较严重潜在生态风险,冶炼厂下风向土壤中综合潜在生态风险指数评价显示,冶炼厂下风向降尘土壤重金属具有较强的生态风险。  相似文献   

6.
为了解万宁小海海域表层沉积物重金属污染状况,2020年5月在小海潟湖采集18个沉积物样品,采用电感耦合等离子体质谱法(ICP-MS)同时测定5种重金属含量,采用原子荧光光度计测定总汞和砷,并分析归纳出重金属分布特征。采用Hakanson的潜在生态风险指数法识别小海表层沉积物潜在生态风险程度,以及运用富集系数和地累积法进一步评价小海表层沉积物重金属的污染程度。结果表明:Cu、Pb、Zn、Cd、Cr、Hg和As含量平均值分别为7.26 mg/kg、27.08 mg/kg、75.06 mg/kg、0.16 mg/kg、38.43 mg/kg、0.054 mg/kg、4.66 mg/kg,均符合第一类海洋沉积物质量标准。7种元素的潜在生态风险程度依序为Hg>Cd>Pb>As>Cu>Cr>Zn,其中Hg和Cd为主要潜在生态危害因子,其综合潜在生态风险等级已达到中等级风险;富集系数评价和地质累积系数评价污染程度依次为:Cd>Hg>Pb>Zn>Cr>As>Cu;表层沉积物中TOC 含量与 Cu、Pb、Zn、Cd 和 Cr 含量具存在显著正相关,与粒度呈一定的负相关。  相似文献   

7.
通过盆栽实验研究了铅(Pb)、镉(Cd)、铜(Cu)、汞(Hg)和砷(As)污染条件下,温郁金和种植土壤中重金属含量,分析了植物对重金属的吸收富集能力。结果表明,随着土壤中污染物的投加量增强,Cu、Pb、Cd、As元素主要集中在根部,而Hg元素由于其极易挥发的特性,其块根中含量反而随着Hg投加量的增加而减小。温郁金对不同元素的吸收富集能力不同,对Cd的富集能力最强,对Hg的富集能力最弱。  相似文献   

8.
采用电感耦合等离子体原子发射光谱法测定胡蜂酒中20种无机元素,建立无机元素对照指纹图谱,对重金属元素进行风险评估.结果表明,胡蜂酒中无机元素种类丰富,其中P、K、Na元素占测定总元素的96.14%.有害元素Pb、Cd、As、Hg、Cu含量符合国家药典标准要求,Cu的靶标危险系数(T HQ)为1.00×10-2,T HQ...  相似文献   

9.
常压湿式消解、高压微波消解、常压微波消解3种方法被应用于近海沉积物中Pb、 Cu、 Cd、 Hg、 As 5种重金属元素的分析. 以近海海洋沉积物标准物质为样品经3种方法消解后, 通过石墨炉原子吸收法测定Pb、 Cu、 Cd和氢化物发生原子荧光法同时测定Hg、 As. 结果表明, 样品经常压湿式消解, 其Pb、 Cu、 Cd回收率在80%~123%内而Hg、 As回收率低;经高压微波消解, 标样中Pb、 Cu、 Cd、 As回收率在84%~117%内, 对Hg测定回收率偏低;常压微波消解更适合于Cu、 Cd、 Hg、 As的消解, 其回收率在95%~121%之间而Pb回收率低于42.4%. 常压湿式消解与常压微波消解被用于大亚湾人工渔礁区沉积物样品的处理, 有较好的测定结果.  相似文献   

10.
建立电感耦合等离子体质谱法(ICP-MS)测定不同产地和批次地龙药材中铅(Pb)、砷(As)、汞(Hg)、镉(Cd)、铜(Cu)5种重金属元素的含量.采用微波消解进行样品前处理,结果表明:5种重金属元素的线性关系良好(r≥0.999 6),平均回收率在92.8%~95.2%范围内,方法的检出限在0.001 0~0.092 mg/kg范围内.方法灵敏度高,重复性好,方法准确.不同产地和批次的样品中5种重金属元素均有检出.地龙药材中Pb、As、Hg、Cd、Cu这5种重金属元素需要重点监控.  相似文献   

11.
A method for simultaneously determining the trace elements in particulate matter (PM) (PM2.5) by inductively coupled plasma mass spectrometry was established. The PM2.5-loaded filter samples were digested under the optimised conditions including a mixture of HNO3–HCl–HF with ultrasonication proceeding at 70°C for 2 h. Recoveries of 90.83–103.33% were achieved for 20 elements (Co, Sr, Ag, Cd, Sb, La, Ce, Sm, W etc.) in NIST standard reference material 1648a (urban PM). PM2.5 samples were collected at urban site in Hangzhou from August 2015 to November 2015. PM2.5 concentrations of 15% sampling days exceeded the daily limitation and the mean concentrations of PM2.5 from August to November reached the 66.4% of the limitation. PM2.5 concentrations in summer were higher than that in autumn. The concentration of Zn was highest, following with Al, Pb, Mn, Cu and As. Significant enrichment was observed in Mn, Zn, Pb, Ag, V, Ni, Cu, As, Se, Hg, Co, Cd and W, which was probably induced by vehicular exhaust, oil and residual fuel combustion and industrial emissions. The daily mass concentrations of PM2.5 and elements fluctuated significantly. Rainfall could significantly reduce the concentration of Ti, Mn, Cu, Zn, As, Se, Hg, Sr, Ag, Cd, Sb, La, Ce, Sm and Pb, and the risk levels of carcinogenic elements and non-carcinogenic elements in rain day were significantly lower (43.7–81.4%) than those in non-rain day. The risk levels of Co, Cd and As could lead to adverse health outcomes through the respiratory system, which should deserve more attention, while the risk levels of Ni and non-carcinogenic elements (Hg, Mn, Cu, Zn, Pb, V) were under average risk acceptance.  相似文献   

12.
Concentrations of Al, As, Ba, Be, Cd, Cr, Cu, Fe, Mn, Ni, Pb, Se, Sn, V and Zn in road dust particles at seven sites in the Delta region have been investigated using atomic absorption spectroscopy (AAS). Results showed that samples were highly contaminated with Cd, Pb, Sn and Zn and moderately contaminated with As, Se, Ba and Cu when compared to the average crustal background concentrations of metals. The output of the principle component analysis revealed that Al, Fe, Be and Mn were predominantly driven from natural sources and that all the other metals were anthropogenically driven from industrial activities (As, Ba, Cd, Cr, Cu, Se, and Sn) and traffic emissions (Pb, Ni and V). Results of the applied risk assessment indicated that the higher risk of occurrence of adverse non-carcinogenic health effects is associated with the exposure of children to Al, Fe, As, Cr, Pb and Zn via the ingestion pathway and that carcinogenic health effects are not expected to occur from the exposure to metals in the road dust of the Delta region. However, given the large uncertainties associated with the estimates of toxicity values and exposure factors, and the absence of site-specific biometric factors, these results should be regarded as a screening data. Further research should be undertaken before any definite conclusions regarding potential health effects are drawn.  相似文献   

13.
《Analytical letters》2012,45(11):1802-1814
Soil metal contamination is of great concern due to these elements’ bioavailability, toxicity, and persistence. A total of forty soil samples were collected from mining, industrial, agricultural, and residential areas. Inductively coupled plasma–mass spectrometry (ICP–MS) was employed to determine the concentrations of the heavy metals (As, Cd, Cr, Cu, Pb, and Zn). Geoaccumulation indices and health risk assessment models were employed to evaluate the potential ecological and health implications. The concentrations of As, Cr, and Zn in the industrial zone were higher than the values from the other areas, whereas the concentrations of Cd, Cu, and Pb were highest in the residential area. The distribution of metals may be attributed to different anthropogenic sources. The soils in the industrial area were moderately contaminated by As. The noncarcinogenic risk due to metals was determined to be negligible in these areas, while a high carcinogenic risk was obtained in the industrial area. The priority controls should be As, Cd, and Cr in the industrial area. However, the ecological, environmental, and health implications in the mining and residential areas should also be monitored. This study provides a comprehensive investigation of soil metals in industrial, mining, residential, and agricultural areas in China that may be employed for future environmental management and regularization.  相似文献   

14.
This study reports the determination of trace essential (Co, Cr, Cu, Se, and Zn) and toxic (Al, As, Cd, Hg, and Pb) elements in greenhouse tomatoes, peppers, and cucumbers from supermarkets of Seoul, Busan, Gangneung, Daegu, Daejeon, and Gwangju, South Korea using inductively coupled plasma mass spectrometry, inductively coupled plasma optical emission spectroscopy, and direct mercury analysis. The methods were validated by linearity, limits of detection and quantification, precision, accuracy, and recovery measurements that provided satisfactory results in all cases. Among the essential trace elements, Zn was found to have the highest concentrations (0.84–2.5?mg/kg) followed by Cu (0.21–0.62?mg/kg) and Cr (0.01–0.06?mg/kg). The mean concentrations (mg/kg) of the toxic elements were in the order Al?>?Pb?>?As?>?Cd?>?Hg for tomatoes and cucumbers and Al?>?Pb?>?Cd?>?As?>?Hg for peppers; all were below the permissible limits set by World Health Organization for human consumption. The estimated dietary intake, target hazard quotients (THQs), and hazard indices of the samples were within safe levels. The combined THQ values for the toxic elements in the vegetables were from 0.002 to 0.012 with significant contribution from arsenic, aluminum, cadmium, and mercury. The results of this study show that trace and toxic elements in the analyzed vegetables do not impose any serious health harmful effects for the population upon consumption.  相似文献   

15.
为研究黔产市售绿茶中重金属的含量分布特征及健康风险,以五个生产加工地的黔产市售绿茶为研究对象,分析其9种重金属(Pb、Cr、Cd、Hg、Cu、Zn、Mn、Ni和As)含量,利用美国环境保护署(USEPA)推荐的健康风险评价模型进行人体重金属的健康风险评价。结果表明,五种茶叶中Cr、Cd、Pb、Hg、Cu和As含量均低于国家限量标准。黔产市售绿茶的重金属浸出率大小次序为Zn>Mn>Hg>As>Cd>Pb>Cr>Cu>Ni。健康风险评价结果表明,五个产地的绿茶中重金属通过饮茶途径所产生的健康危害个人年风险大小次序为Cd>As>Mn>Ni>Cr>Hg>Pb>Zn>Cu,茶叶中重金属通过饮茶途径所产生的个人健康危害年风险总和为4.33×10-6~5.73×10-6 a-1,均低于USEPA和ICRP推荐的最大可接受风险水平,表明重金属引起的健康危害极小,其对暴露人群造成的健康危害可忽略不计,绿茶中重金属均处于安全范围内。  相似文献   

16.
《Arabian Journal of Chemistry》2020,13(12):8965-8978
Present study was intendant to assess heavy metals (HMs) concentration and associated health risk in processed fruits’ products sold in the local markets of North Pakistan. In total seven metals viz. cadmium (Cd), chromium (Cr), cobalt (Co), copper (Cu), iron (Fe), lead (Pb) and zinc (Zn) were quantified in 345 samples of different brands categorized into eight groups (Sauces, Ketchup, Juices, Jams, canned fruits, tomato paste, marmalades and pickles). On the comparative basis, Fe was dominating with highest concentration in pickles, canned fruits and sauces at 143.3 ± 43.2, 83.64 ± 23.19 and 50.17 ± 15.1 mg/kg, respectively), followed by Cd in sauces (22.94 ± 6.91 mg/kg), Cr in juices (12.97 ± 3.91 mg/kg) and Pb in pickles (12.53 ± 3.77 mg/kg). Measured levels of these metals varied significantly and were relatively higher than their permissible limits. Univariate and multivariate analysis depicted strong association among Cr, Co, Pb and Fe and confirmed HMs contamination through natural and anthropogenic sources in processed foods. Health risk index (HRI) for Cd, Cr and Pb was greater than unity (<1.0), particularly in sauces, jams and canned fruits. Target hazard quotient (THQ) and hazard index (HI) of Cd, Cr and Pb were relatively high. But target cancer risk (TCR) assessment indicates that these metals were within the acceptable limit, except for Cd concentration in sauces, jams and canned fruits that may cause cancer to consumers.  相似文献   

17.
常见茶叶中14种元素含量分析及重金属风险评价   总被引:1,自引:0,他引:1  
采集传统名茶地标产品样品各3种为实验样品,通过ICP-OES和ICP-MS对样品进行K、Ca、Mg、Mn、B、Cu、Fe、Ni、Zn、Cr、Co、Cd、As、Pb等14种元素的含量测定。利用单因素方差分析、主成分分析、污染评价等方法,对茶叶无机元素含量进行分析和污染评价,并对污染来源进行了研究。结果表明,不同产地茶叶样品中的K、Ca、Mg、Mn、Fe等元素含量差异较大;食品及茶叶安全限量元素Cd、Cr、Pb、As等实测值均未超过国家标准限值;部分元素之间具有正相关性,如Cu与Cd, Cu与Ni, As与Ni两两之间关联性较强;从主成分分析看出Cu、Cd、As和Ni为PC1代表因子,K和Fe分别为PC2和PC3的代表因子,PC1主要代表了金属冶炼、工业排放和垃圾焚烧等方面的贡献,PC2和PC3分别代表了肥料施放和茶叶加工等方面的贡献。  相似文献   

18.
ABSTRACT

Inductively coupled plasma-mass spectrometry multielemental profiling was performed to determine eight elements in 54 vegetable samples. The range of concentrations of Fe and Ni was 1.91?±?0.09 to 443.31?±?22.32?mg/kg and 0.05?±?0.004 to 16.36?±?0.36?mg/kg, respectively. The concentrations of Pb and Cd were up to 1.56?±?0.04 and 0.78?±?0.04?mg/kg, respectively. Some samples exceeded the maximum admissible limits imposed by national and international regulations. The mean concentrations of Mn and Cu were between 20.93?±?0.43 and 13.98?±?0.30?mg/kg in tomatoes and 20.60?±?0.53 and 11.25?±?0.22?mg/kg in peppers. For the evaluation of health risk related to the consumption of vegetables, the daily intake rate, target hazard quotient (THQ), and hazard index were evaluated. The daily intakes were low and correspond to 2 to 14% of the tolerable daily values established by legislation. The results showed that the THQ and hazard index for the metals were lower than 1, indicating that the vegetable ingestion does not represent a significant risk for consumer health. Analysis of variance revealed that Zn may be used as a species-specific marker (p?=?0.026). Principal component analysis extracted three main components, explaining a total variance of 72.49% and grouped all determined elements.  相似文献   

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