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1.
双道原子荧光法测定土壤中砷和汞   总被引:12,自引:0,他引:12  
探讨了用王水消解,硼氢化钾还原,原子荧光法连续测定土壤样品中砷和汞。检测限As为0.028mg/kg,Hg为0.0099mg/kg,方法简便,结果较好。  相似文献   

2.
建立了王水水浴消解-原子荧光法测定土壤中砷汞的方法,确定还原剂为硼氢化钾,测砷和汞时硼氢化钾的最优质量分数分别为2%和0.05%,载流为5%盐酸。该法砷和汞分别在质量浓度0.0~40.0μg/L和0.00~4.00μg/L范围内线性良好,相关系数均0.999 5,砷和汞的检出限分别为0.009和0.001 mg/kg,相对标准偏差分别为3.90%和2.67%,加标回收率分别为94.1%~107.6%和92.0%~104.0%。采用本法对国家标准土壤样品和东海县部分农田土壤样品进行测定分析,结果良好,表明该法操作简单、灵敏度高、实用性好,适用于土壤中砷和汞的测定。  相似文献   

3.
采用全自动石墨消解仪代替水浴锅加热王水消解法处理土壤样品,用原子荧光法测定消解液中的砷和汞。该方法在0μg/L~20.0μg/L范围内线性良好,测定有证标准土壤样品的结果均在标准值允许范围内,砷、汞测定结果的RSD分别为2.5%~4.8%、2.9%~5.4%,比王水消解法的测定结果更靠近标准值,实际土壤样品的加标回收率分别为94.6%~104%、92.6%~105%。  相似文献   

4.
微波消解-原子荧光法测定土壤中汞、砷、硒   总被引:5,自引:3,他引:5  
建立了微波消解-原子荧光法测定土壤中汞、砷、硒的方法.汞在0.00 μg/L~1.00 μg/L、砷在0.00 μg/L~10.0 μg/L、硒在0.00 μg/L~2.00 μg/L之间线性关系良好,以称样0.200 0 g计,检出限汞为0.005 mg/kg,砷为0.009 mg/kg,硒为0.025 mg/kg.经国家有证标准物质验证,方法精密度与准确度均能满足土壤环境样品的测试要求.  相似文献   

5.
双道原子荧光同时测定海水中痕量砷和汞   总被引:5,自引:0,他引:5  
建立了双道原子荧光同时测定海水中痕量砷和汞的方法。在试验条件下,砷和汞测定的相对标准偏差≤4.0%.加标回收率在92.0%~104%之间。方法操作简便,灵敏快速,适用于海水及其他水体中砷和汞的测定。  相似文献   

6.
微波消解-氢化物发生原子荧光法测定植物中汞和砷   总被引:2,自引:0,他引:2  
采用微波消解-氢化物发生原子荧光法测定植物中汞和砷,优化了试验条件。汞在0μg/L-1.00μg/L、砷在0μg/L~20.0μg/L范围内线性良好,方法检出限汞为0.005mg/kg(以取0.1g样品消解定容至10mL计),砷为0.010mg/kg(以取0.1g样品消解定容至25mL计),植物样品测定的RSD≤4.5%,加标回收率为90.0%~107%。  相似文献   

7.
利用微波消解和原子荧光光度法同时测定水样中的砷、汞   总被引:5,自引:0,他引:5  
张军国 《干旱环境监测》2002,16(4):201-202,247
建立了一种梯度升压微波消解样品、氢化物原子荧光光度法同时测定水样中砷、汞的方法。在优化实验条件下,水样中砷的检出限为0.07μg/L,回收率为95.9%-102%;汞的检出限为0.01μg/L,回收率为95%-105%,具有操作简便、快速、干扰少、灵敏度高的特点。  相似文献   

8.
通过比较不同滤膜的透气效率和空白值来选择采样滤膜,探讨了不同消解方法的前处理效果,进行精密性、准确性及实际样品测试等条件实验,建立了微波消解-原子荧光法同时测定大气环境TSP中砷和汞的方法。结果表明,过氯乙烯滤膜透气性好,空白值低且稳定,微波消解能使样品消解更完全,精密度好,回收率高,尤其汞的损失少。  相似文献   

9.
以硼氢化钾作为还原剂原子荧光法测定环境水样中的汞和砷,配合以气动进样,方法简单、试剂用量少、灵敏度高.测汞时KBH4-KOH浓度为0.01%~0.0005%,样品中王水浓度3%(v/v),检测限为5.8×10-3μg/L;测砷时KBH4-KOH浓度为2.6%~1.0%,样品中盐酸浓度5%(v/v),检测限为4.9μg/L.  相似文献   

10.
采用氢化物发生—原子荧光光谱法同时测定水环境中的汞和砷。讨论并确定了试验的最佳测定条件。该方法的检出限汞为0.0004μg/L,砷0.0048μg/L,精密度试验求得其相对标准偏差(n=11)分别为0.93%和0.83%。结果表明该方法测定水环境中汞和砷具有操作简便、灵敏度高、检出限低、线性范围宽的优点是测量痕量元素的有效方法。  相似文献   

11.
Mercury, a global pollutant, is popping up in places where it was never expected before and it burdens in sediments and other non-biological materials. It is estimated to have increased up to five times the pre-human level due to anthropogenic activities. Vembanad backwaters, one of the largest Ramsar site in India, which have extraordinary importance for its hydrological function, are now considered as one of the mercury hot spots in India. In this study, surface sediment samples of Vembanad Lake and nearshore areas have been seasonally analysed for total mercury and methyl mercury concentrations while the core sediment samples were analysed for total mercury. The results showed that the northern part of the lake was more contaminated with mercury than the southern part. The mercury concentration was relatively high in the subsurface sediment samples, indicating the possibility of historic industrial mercury deposition. A decreasing trend in the mercury level towards the surface in the core sediment was also observed. The geochemical parameters were also analysed to understand the sediment mercury chemistry. Anoxic conditions, pH and organic carbon, sulphur and Fe determined the presence of various species of mercury in the sediments of Vembanad Lake. The prevailing physical and geochemical conditions in Vembanad Lake have indicated the chances of chemical transformation of mercury and the potential hazard if the deposited mercury fractions are remobilised.  相似文献   

12.
In groundwater, used for drinking water supply in the greater industrial area of Thessaloniki, in Northern Greece, concentrations of total arsenic exceeded the WHO provisional guideline value and the EU maximum contaminant level (MCL) of 10 μg/L. The concentration of total arsenic was in the range between 4–130 μg/L, whereas the median value was 36 μg/L and the average concentration 46 μg/L. Nine out of the eleven wells contained total arsenic at concentration higher than 10 μg/L and it should be stressed that 6 of them contain arsenic at concentrations between 10 (new MCL) and 50 μg/L (previous MCL). The examined groundwaters were found to contain elevated concentrations of manganese and phosphate. Arsenic had a positive correlation with the pH, indicating the possible effect of pH on arsenic mobilisation. These findings emerge the problem of contamination from arsenic, since, according to the EU directive 98/83, all drinking water sources within the European Union should have achieved compliance with the new limits by 12/2003, implying that the situation requires urgent remedial action.  相似文献   

13.
新疆艾比湖湿地自然保护区建设及效益分析   总被引:2,自引:0,他引:2  
艾比湖是典型的干旱区湖泊,具有特殊湿地的干旱生态系统.晚更新世晚期开始,由于气候逐渐变干,艾比湖不断萎缩.20世纪50年代至80年代末,由于湖区人口的激增及其对水土资源的不合理开发利用,加速了湖泊干缩的进程,80年代后期至今,随着新疆北部的气候向暖湿转变,以及湖区人口和耕地增长趋缓,艾比湖湖面出现波动扩张态势.本文对艾比湖湿地自然保护区的建设及效益情况进行了阐述.  相似文献   

14.
Mercury (Hg) in the aquatic ecosystem of Clear Lake has been documented since the 1970s when fishes were found to have elevated levels of toxic methyl mercury (meHg). Mining practices at the Sulphur Bank Mercury Mine (active intermittently from 1872–1957) along the shoreline of Clear Lake included the bulldozing of waste rock and overburden ore into the shallow nearshore regions of the lake and the creation of steeply sloped piles of waste rock at the water's edge. This process, plus erosion of the waste rock piles, resulted in the accumulation of an estimated 100 metric tons of Hg in Clear Lake. A monitoring program to assess Hg in Clear Lake was established in 1992, and conducted continuously from 1994. Drought conditions in California had persisted for ca. 6 yrs prior to 1992, when the U.S. Environmental Protection Agency (USEPA) remediated the steeply sloped eroding waste rock piles, which appeared to reduce sediment Hg concentrations significantly. In April 1995, a white flocculent material was observed in Clear Lake adjacent to the mine and has been observed every year since, leading to the discovery of ongoing acid mine drainage (AMD), low pH fluids high in Hg and extremely high in sulfate. AMD is now believed to be the most likely cause of elevated meHg in Clear Lake. The discovery of this source of meHg production in Clear Lake, which will significantly influence remedial options, was only made possible by implementation of a diligent monitoring program.  相似文献   

15.
Chagan Lake is located downstream of the Second Songhua River basin in Northeast China. It is one of the top ten inland freshwater lakes, and an important aquatic farm in China. The lake has been receiving large amounts (currently at 1.5 × 108 m3/a) of water from the river since 1984. This would pose a threat to the aquatic system of the lake because the river was seriously polluted with mercury in 1970s–1980s. The current study is the first to report the total mercury concentrations in fish found in the lake. Mercury concentrations in seven fish species collected from the lake in January 2009 were determined. The related human health risk from fish consumption was also assessed. The average concentration of mercury in the fish was 18.8 μg/kg of wet weight, ranging from 4.5 to 37.6 μg/kg of wet weight. A large difference in the mercury concentrations among the fish species was found. The mercury concentration was found to be higher in carnivorous species and lower in omnivorous and herbivorous species. This demonstrates greater mercury bioaccumulation in fish species at higher trophic levels. Mercury concentrations in fish showed significant positive correlations with age, length, and weight. No significant relationship was found between mercury concentrations in fish and the habitat preferences. Mercury concentrations in fish from the lake were within the limits of the international and national standards of China established for mercury. According to the reference doses established by the United States Environmental Protection Agency, the maximum safe consuming quantity considering all the fish was 297.3 g/day/person, which was more than five times as much as the current quantity (50 g/day/person) consumed by the local residents. This investigation indicates that the historical pollution of the Second Songhua River has not caused mercury bioaccumulation in fish muscle tissue of Chagan Lake. The present consumption of fish from the lake in the local area does not pose a threat to human health.  相似文献   

16.
高压密闭消解土壤砷、汞、铅、镉酸体系比较   总被引:4,自引:1,他引:4  
采用高压密闭消解系统消解土壤,氢化物发生-原子荧光光谱法(HG-AFS)测定As和Hg,石墨炉原子吸收光度法(GF-AAS)测定Pb和Cd,对比了不同消解酸体系对国家土壤标准参考样中As、Hg、Pb、Cd的消解效果。结果表明,盐酸-硝酸体系对As、Hg、Pb和Cd的消解平均回收率分别为26.1%、100.6%、69.7%、87.3%;硝酸-高氯酸-氢氟酸体系中As、Hg、Pb和Cd消解平均回收率分别为109.9%、84.7%、87.5%、90.1%;硝酸-双氧水体系对Hg、Pb、Cd消解平均回收率分别为104.8%、95.1%、93.3%,对As的回收率虽只有69.2%,但数据精密度最好。此外,从简化试验步骤,减少误差,提高检测效率及减少试验危险性等方面综合评价,认为硝酸-双氧水消解体系是采用高压密闭系统消解土壤重金属的最理想酸体系。  相似文献   

17.
抚仙湖、星云湖与杞麓湖营养状态演变及突变分析   总被引:1,自引:0,他引:1  
为科学评价抚仙湖、星云湖和杞麓湖(简称三湖)营养状态及其变化趋势,基于三湖1991—2015年水质数据,采用综合营养状态指数法评价其富营养化水平,通过Mann-Kendall(Sneyers)方法判识三湖富营养化趋势及突变时间。结果表明:三湖都存在水质恶化现象,其综合营养状态指数及各分项指数均呈变差趋势,表征其营养物质在增加。三湖的营养化水平和演变时间存在显著差异,抚仙湖处于贫营养,星云湖由中营养转变为富营养,杞麓湖表现为中度-重度富营养化;抚仙湖和杞麓湖分别在2004、2011年出现突变点,星云湖自2000年后综合营养状态指数显著增加。基于三湖营养状态演变及趋势,结合变化特征及相关情况的讨论,提出对抚仙湖的管理应减少农业化肥和农药排放,对星云湖和杞麓湖的管理应削减高污染工矿企业排放等。  相似文献   

18.
以南京北郊为例,测量分析了屋面径流中砷(As)、汞(Hg)、铅(Pb)、镉(Cd)和锌(Zn)5种元素的浓度、形态特征。结果表明:短时强降雨过程中这5种元素浓度在较大范围内无规则波动,且不同元素间浓度分布存在较大差异;Zn与Pb的平均浓度分别高于《地表水环境质量标准》(GB 3838—2002)的Ⅴ类和Ⅳ类标准限值,污染程度从大到小依次为ZnPbAsHgCd。元素形态分析表明,径流中除Hg外其他4种元素主要以颗粒态形式存在,各元素颗粒态占总形态的平均分数分别为:As,64.5%;Hg,43.7%;Pb,76.5%;Cd,54.6%;Zn,54.3%。  相似文献   

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