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1.
果蔬中有机氯农药残留的分析测定 总被引:1,自引:0,他引:1
目的:用高效气相色谱法对蔬菜和水果中的有机氯农药残留进行测定分析.方法:称取一定量的样品,采用丙酮和乙酸乙脂(4:1)提取,旋转蒸发仪上蒸发近干,石油醚和乙酸乙脂(4:1)洗脱过柱净化,再用旋转蒸发仪蒸发近干,5ml石油醚定容,在高效气相色谱仪上进行色谱分析.结果:样品采用匀浆提取法,测定选择BPX608石英毛细管柱,柱温225℃,样品的回收率在92%-105%之间.结论:该法具有简便、快捷、准确的特点,为进一步改进测定方法提供依据. 相似文献
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基于"临水垂直插管法"采集赣江流域32个采样点的底泥样品,经索氏提取方法(Soxhlet Extraction,SE)前处理及气相色谱法(GC-ECD)检测样品中有机氯农药(OCPs)含量。结合多元统计学和ArcGIS9.3,研究了8种有机氯农药的残留状况及空间分布情况。结果表明,所检测8种OCPs中,除β-HCH有2个点未检出,其它7种OCPs检出率为100%。以DDTs残留含量最高,DDTs平均值为10.40μg/kg,其异构体以p,p’-DDT为主;HCHs的平均值为8.24μg/kg,其异构体以β-HCH为主。它们除了来自环境中的早期残留外,仍然具有新的外源HCHs和DDTs的输入。不同OCPs在研究区分布存在很大差异,HCHs总量分布较高的地区位于流域的中下游,DDTs总量分布较高的地区位于流域的中上游。 相似文献
3.
土壤和沉积物中多氯代有机化合物厌氧降解研究进展 总被引:3,自引:0,他引:3
多氯代有机化合物(PCOCs)是土壤和沉积物中的典型污染物,厌氧条件下PCOCs能够发生脱氯发应,从而使其毒性大大降低,脱氯后形成的低氯代化合物可以进一步好氧降解,直至完全矿化。从PCOCs的降解过程出发,重点综述了几种典型PCOCs的厌氧脱氯机理以及几种重要影响因素;阐明了脱氯反应是PCOCs厌氧降解的关键步骤,反应的发生必须有还原剂提供电子,微生物的参与尤为重要;同时展望了同位素示踪法在研究PCOCs降解机制上的应用,以及开发高效降解PCOCs微生物的必要性等。 相似文献
4.
2007年5月,采集合肥野生动物园采集东方白鹳(Ciconia boyciana)及白鹤(Grus leucogeranus)的胸部廓羽、飞羽及尾羽样品共51枚,用气相色谱法分别检测其中的op’-DDT、pp’-DDD、pp’-DDE、pp’-DDT、α-六六六、β-六六六、γ-六六六、δ-六六六及六氯苯9种有机氯农药的残留量。检测结果发现,pp’-DDD、pp’-DDE、pp’-DDT、β-六六六、δ-六六六5种有机氯农药在东方白鹳和白鹤羽毛中都有不同程度的检出,其中pp’-DDD的残留量最高,在东方白鹳的廓羽、飞羽和尾羽中的平均残留量分别达到0.8936、0.8353和0.7516μg/g干重,在白鹤的廓羽、飞羽和尾羽中的平均残留量分别达到0.5685、0.5077和0.4657μg/g干重;pp’-DDD和pp’-DDT在两种鸟胸部廓羽、飞羽及尾羽间的残留量无显著差异;pp’-DDD在东方白鹳飞羽和尾羽中的残留量显著高于白鹤。 相似文献
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6.
利用GIS软件空间内插值法分析鸭绿江河口近海湿地滩涂表层沉积物重金属的空间分布特征,并采用环境风险指数法和潜在生态危害指数法进行重金属元素的生态风险评价.结果表明: 研究区表层沉积物中的重金属含量与国内典型河口湿地相比处于较高水平.从空间分布上看,重金属含量东部高于西部,在人类活动密集区存在明显的累积性.环境风险指数法分析结果表明,Cu对该区域环境污染的影响最大,而Hakanson潜在生态危害指数法分析结果表明,Hg和Cd的潜在生态危害最大,重金属的综合潜在生态危害指数介于93.65~507.20,平均值为189.30,属于中等生态危害,并以东部潜在危害程度最大,应作为今后重金属污染防治的重点区域. 相似文献
7.
夏枯草药材和种植土壤中农药及重金属残留分析 总被引:1,自引:0,他引:1
采用气相色谱及ICP-AES法测定了安徽庐江和江苏洪泽2个种植基地的土壤和夏枯草(Prunella vulgaris L.)果穗及全草中有机氯农药及重金属含量,并根据污染指数和相关标准对土壤及药材的安全性进行了评价.测定结果表明:来源于2个基地的土壤及药材中有机氯农药及重金属含量有明显差异.庐江产果穗和全草中Pb、Cd、Cu、Cr、As及BHC含量分别为3.361和3.953、0.172和0.190、8.258和7.722、3.423和2.658、0.284和0.355、0.003和0.004 mg·kg-1,Hg和DDT未检出;洪泽产果穗和全草中Pb、Cd、Cu、Cr、Hg及BHC含量分别为2.399和1.558、0.155和0.111、7.682和6.756、4.259和3.801、0.077和0.102、0.003和0.006 mg·kg-1,As未检出,果穗中也未检出DDT.庐江基地土壤中Cd、Cu、Cr、As、Hg、BHC和DDT含量分别为0.001、12.943、47.417、1.008、0.003、0.003和0.002 mg·kg-1,Pb未检出;洪泽基地土壤中Pb、Cd、Cu、Cr、As、Hg和BHC含量分别为3.443、0.002、18.655、63.385、3.701、0.141和0.004 mg·kg-1,DDT未检出.比较结果表明:夏枯草果穗中重金属残留量均高于全草,但均低于国家限量标准;土壤中有机氯农药及重金属单项污染指数均小于1,且庐江和洪泽基地土壤的综合污染指数分别为0.286和0.399,因此,土壤污染等级属安全级且污染水平为清洁级. 相似文献
8.
南亚热带典型地区农业土壤中多环芳烃和有机氯农药研究 总被引:3,自引:0,他引:3
参考美国EPA标准方法对南亚热带潮汕地区农业土壤中持久性有机污染物多环芳烃(PAHs)和有机氯农药(OCPs)进行分析,并对其分布和来源进行研究,最后探讨了不同种植方式下污染物的污染特征。结果表明:该区农业土壤中PAHs含量范围从22.1ng/g到1256.9ng/g,与其它地区的污染程度和一些土壤环境质量标准相比,该区处于中等污染水平。高温裂解是土壤PAHs的主要来源。OCPs在被禁止20a后在土壤中仍有残留,残留水平从4.6ng/g到1021.5ng/g,其中HCHs和DDTs的残留未超过国家土壤环境质量标准。早期使用残留是其主要污染源,但新近仍有DDT和硫丹的输入。PAHs和OCPs的污染主要集中在土壤表层和亚表层,且随着深度的加深,污染逐渐减少,但40cm以下,污染变化很小。菜地土壤PAHs污染水平低于稻田土壤,而OCPs污染水平高于稻田土壤。 相似文献
9.
珠江(广州河段)表层沉积物中重金属的生态风险研究 总被引:10,自引:0,他引:10
随着广州市截污工程的实施,珠江(广州河段)外源污染得到有效控制后,沉积物内源污染将成为影响河流水质的重要因素。我们测定了珠江(广州河段)沉积物中Cu、Pb、Zn、Cr、Cd、Hg和As 7种重金属的浓度,研究了它们的分布特征和潜在生态风险。结果表明:在主干流河道的顺流断面中,各种重金属元素整体上表现出明显的倒“W”型分布。在各内河涌的各监测断面中,花地涌沉积物中重金属浓度最高,乌涌最低,其余各河涌居中。各种重金属元素的空间分布特征基本相似,除了Hg与Cd、Cr、As之外,其他各元素之间均呈现较明显的正相关关系,尤其是Cr和Cd、Cu和Cd、Cr和Cu之间的相关性显著,表明这些重金属元素在沉积物中的浓度具有共同变化的趋势。潜在生态危害指数法的评价结果显示,7种重金属元素的生态危害系数的大小顺序为:Hg>Cd>Cu>As>Pb>Zn>Cr,其中Hg是最主要的生态风险因子。对单个重金属的潜在生态危害系数( )和多个重金属的潜在生态危害指数(RI)的分析,生态风险最大的断面是5#(黄歧)、6#(黄沙)、16#(花地涌北出口)、7#(横滘)和14#(增埗桥)。 相似文献
10.
安徽农田表层土壤中有机氯农药的分布及其组成 总被引:4,自引:0,他引:4
以安徽省寿县等19个地区的农田表层土壤(0~20 cm)为对象,采用超声波提取,气相色谱法/电子捕获检测器(GC/ECD)检测,分析了α-六六六、β-六六六、γ-六六六、δ-六六六、op′-DDE、pp′-DDD、α-硫丹和百菌清等8种有机氯农药(OCPs)在农田表层土壤中的分布及组成特征.结果表明: 19个取样点中8种有机氯农药残留的总含量范围为ND~23.75 μg·kg-1,其中PP′-DDD、γ-HCH为主要污染物,平均质量浓度分别为13.83和13.49 μg·kg-1.与1990年的调查结果相比,六六六平均值含量呈明显下降趋势;与国内外土壤相比,安徽省农田表层土壤中的六六六(HCHs)处于中等偏高的水平.安徽省农田表层土壤中OCPs、HCHs和pp′-DDD平均浓度分别为48.58、28.64和13.83 μg·kg-1,均未超过《土壤环境质量标准》(GB 15618-1995)的一级土壤质量标准(<50 μg·kg-1),污染较轻. 相似文献
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The current status of heavy metal in lake sediments from China: Pollution and ecological risk assessment 下载免费PDF全文
Heavy metal contamination in lake sediments is a serious problem, particularly in developing countries such as China. To evaluate heavy metal pollution and risk of contamination in lake sediments on a national scale in China, we collated available data in the literature of the last 10 years on lake sediments polluted with heavy metals from 24 provinces in China. Based on these data, we used sediment quality guidelines, geoaccumulation index, and potential ecological risk index to assess potential ecological risk levels. The results showed that approximately 20.6% of the lakes studied exceeded grade II level in Chinese soil quality standards for As, 31.3% for Cd, 4.6% for Cu, 20.8% for Ni, 2.8% for Zn, and 11.1% for Hg, respectively. Besides, the mean concentrations for As in 10.3% of lakes, Hg in 11.9% of lakes, and Ni in 31.3% of lakes surpassed the probable effect level. The potential ecological risk for toxic metals decreased in the order of Cd > Hg > As > Cu > Pb > Ni > Cr > Zn, and there were 21.8% of the lakes studied in the state of moderate risk, 10.9% in high risk, and 12.7% in very high risk. It can be concluded that Chinese lake sediments are polluted by heavy metals to varying degrees. In order to provide key management targets for relevant administrative agencies, based on the results of the pollution and ecological risk assessments, Cd, Hg, As, Cu, and Ni were selected as the priority control heavy metals, and the eastern coastal provinces and Hunan province were selected as the priority control provinces. This article, therefore, provides a comprehensive assessment of heavy metal pollution in lake sediments in China, while providing a reference for the development of lake sediment quality standards. 相似文献
12.
湖南省主要水系底泥重金属污染特征及其生态风险评价 总被引:1,自引:0,他引:1
为全面了解湖南省主要水系底泥中重金属含量及其潜在生态风险,在湖南省内的湘、资、沅、澧以及洞庭湖5个主要水系共采集了75个位点的底泥样品,分析了重金属元素含量和来源分布特征,并采用地累积指数法、内梅罗指数法和潜在生态风险指数法对其污染程度和潜在生态风险进行评价。结果表明,As、Cd、Cr、Cu、Mn、Pb和Zn的平均含量分别为32.87、7.59、78.09、70.69、1182.60、85.64 mg/kg和482.44 mg/kg。湘江和洞庭湖的污染相对严重,底泥中重金属含量明显高于资江、沅江和澧水;相关性分析表明多种重金属具有相同污染来源;地累积指数评价结果显示,湖南省主要水系底泥中Cd为重污染水平,Zn为中度污染,Cu、Mn和Pb均为轻度污染,而As和Cr污染程度为清洁;内梅罗指数法评价结果表明,除Cr为轻度污染外,湖南省主要水系底泥中其他6种重金属污染均为重污染级别;潜在生态风险评价结果显示,湖南省总体潜在生态风险属于中等级别,各水系潜在生态风险大小顺序为洞庭湖>资江>湘江>澧水>沅江,重金属Cd的潜在生态风险级别为很强,其他重金属元素都属于轻微级别。 相似文献
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Sixteen USEPA priority polycyclic aromatic hydrocarbons (PAHs) were analyzed by gas chromatography–mass spectrometry. Twenty samples were collected from the surface sediments of Haizhou Bay in this survey. This research aimed to identify the PAHs' contamination level, composition pattern, pollution sources, and assess the ecological risk of PAHs. The results showed that the sum of PAH concentrations ranged from 116.6 ng g?1 to 2414.9 ng g?1 (mean: 662.42 ng g?1), which is higher than the reported values for different wetlands worldwide. Three- and four-ring PAHs (accounts for more than 70% of the total PAH content) were predominant in the wetland sediment. The PAHs source distribution in the surface sediments were determined using diagnostic ratio and PCA/MLR. Consequently, multiple PAHs sources were found. Of the total PAH, 79.25% was derived from vehicular emission, 20.75% from coal combustion. The effect range low/effect range median (ERL/ERM) values indicated a low toxicity risk level. However, the fluoranthene concentrations exceeded the ERL level, and even the ERM level, in some stations. The mean effects range–median quotient (M-ERM-Q) suggests a low ecological risk for the PAHs in the sediments. 相似文献
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Hormozgan Province plays a vital role in fishery, petroleum, and industrial activities in southern Iran. However, no comprehensive studies on organic pollution have been performed. PCBs and PAHs were analyzed in surface sediments from areas receiving industrial (nine sites), river (one site), and urban (two sites) effluents. The sediment samples were collected in March and September 2010 (in dry and wet seasons) at the highest tidal time. The overall pollution level of PCBs ranged from 2.5 ± 0.8 to 462.0 ± 206.7 ng/g dry weight. CB153 congener dominated in most of the sediment samples. Congener profiles of PCBs showed close similarity with formulations of commercial products such as Aroclor 1260 and 1254 g. A wide range of 55.3 to 1231.6 ng/g dry weight was detected for ∑PAHs. Results of PCA and PCA-MLR tests confirmed both petrogenic and pyrogenic origins for PAH pollution. The higher means of ∑PAHs and ∑PCBs in industrial and urban wastewaters were found near the shore, evidencing the role of these wastewaters in the PAH and PCB contamination in Hormozgan sediment. The concentrations of PAHs and PCBs in detected hotspots exceed the U.S. NOAA sediment quality guidelines. 相似文献
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Changming Yang Yaqiong Wu Fen Zhang Lin Liu Ruijie Pan 《Chemical Speciation and Bioavailability》2016,28(1-4):133-141
Surface sediment samples were collected from a source water reservoir in Zhejiang Province, East of China to investigate pollution characteristics and potential ecological risk of heavy metals. The BCR sequential extraction method was used to determine the four chemical fractions of heavy metals such as acid soluble, easily reducible, easily oxidizable and residual fractions. The heavy metals pollution and potential ecological risk were evaluated systematically using geoaccumulation index (Igeo) and Hakanson potential ecological risk index (H′). The results showed that the sampling sites from the estuaries of tributary flowing through downtowns and heavy industrial parks showed significantly (p < 0.05) higher average concentrations of heavy metals in the surface sediments, as compared to the other sampling sites. Chemical fractionation showed that Mn existed mainly in acid extractable fraction, Cu and Pb were mainly in reducible fraction, and As existed mainly in residual fraction in the surface sediments despite sampling sites. The sampling sites from the estuary of tributary flowing through downtown showed significantly (p < 0.05) higher proportions of acid extractable and reducible fractions than the other sampling sites, which would pose a potential toxic risk to aquatic organisms as well as a potential threat to drinking water safety. As, Pb, Ni and Cu were at relatively high potential ecological risk with high Igeo values for some sampling locations. Hakanson potential ecological risk index (H′) showed the surface sediments from the tributary estuaries with high population density and rapid industrial development showed significantly (p < 0.05) higher heavy metal pollution levels and potential ecological risk in the surface sediments, as compared to the other sampling sites. 相似文献
16.
AbstractThe Huaihe River has suffered increasing pressure from pollutants including metals from anthropogenic activities. In this study, enrichment and fractionation behavior of trace metals were analyzed in sediment samples obtained from fish spawning area of the Huaihe River (Anhui Section) to evaluate the potential ecological risk of trace metals to aquatic organisms. Geochemical indices including enrichment factor and geo-accumulation index as well as mean probable effect concentration quotient and risk assessment code were adopted to assess the contamination degree and potential ecological toxicity. Results showed that the total contents of Cu, Pb, Zn, Cr, Cd, As, and Hg in sediment were 23.1?±?6.4, 32.3?±?11.1, 76.8?±?14.2, 84.6?±?17.2, 0.2?±?0.1, 9.0?±?3.0, and 0.031?±?0.010?mg/kg, respectively. The indexes EF and Igeo revealed slight accumulation for Pb, Zn, Cr, Cd, and As in some sampling sites. The result of Qm-PEC demonstrated that trace metals in sediment were not toxic to aquatic organisms. Most trace metals appeared to mainly associate with the residual form suggesting lower mobility whereas Cd presented a relative higher exchangeable fraction indicating a great degree of bioavailability. The result of risk assessment code (RAC) evaluation revealed that Cd poses a medium ecological risk for aquatic organisms whereas most of the other trace metals pose low risks. 相似文献
17.
Xijiang River is the main surface water source in Guangxi province, South China. This study was carried out to investigate the distribution and potential ecological risks of seven heavy metals (Cu, Pb, Zn, As, Cd, Ni, and Cr) in surface sediments in Xijiang River basin. The results illustrated that the average concentrations of Zn, Pb, Cd, Cu, As, Ni, and Cr were 483.9, 207.5, 13.35, 23.50, 312.1, 28.75, and 50.62 mg/kg, respectively. Among them, Zn, Pb, Cd, and As were the major heave metals with concentration exceeding Class 3 threshold value of Chinese national standard. The result also showed samples with high ecological risk were mainly located in the upstream of Xijiang River basin as Diaojiang River, Hongshui River, Jincheng River, and Dahuan River. Based on the pollution risk assessment, the area manifested composite pollution of heavy metals in the sediments, signifying As, Pb, and Cd as the dominant heavy metals, and there were high ecological risk in sediments for these metals. According to correlation matrix and factor analysis (FA), the seven heavy metals were divided into three types/classes, Cd, as and Zn attributed by anthropogenic sources, natural sources corresponds for Ni and Cr while both natural and anthropogenic sources were attributed to Cu. 相似文献
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河口潮间带沉积物重金属累积及生态风险评价 总被引:1,自引:0,他引:1
于2015年7月份在闽江口鳝鱼滩湿地布设两条样带(T1和T2),并分别选取5个采样点采集沉积物样品。因重金属Co和V对动物和人类会造成一定危害,且闽江河口潮间带Co和V的研究较少,则对其理化性质、Co和V的空间分布特征以及污染程度等进行了研究,旨在为Co和V的污染研究提供参考。结果显示,该沉积物中Co和V的平均浓度分别为15.19 mg/kg、102.94 mg/kg,均高于福建省背景浓度,与其他河口对比,Co和V浓度处于中等水平。Co和V的含量由陆向海方向略有下降。地累积指数法分析得出沉积物中Co含量呈现轻度污染状态,V呈现无污染状态。此外,Co和V的潜在生态危害系数Eri分别为7.24—14.85和1.47—4.17,表明潜在生态危害轻微,闽江河口潮间带沉积物中Co和V属于轻度污染。 相似文献
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Polycyclic aromatic hydrocarbons (PAHs), organochlorine pesticides (OCPs) and polychlorinated biphenyls (PCBs) were analysed from sediment samples collected in 2012 from rivers, surface runoff canals and estuaries in three highly urbanised catchments in durban, KwaZulu-Natal, South Africa. PAHs were ubiquitous, at concentrations between 36–6 800 ng g?1 dry mass (dm). Congener ratio diagnosis suggests the PAHs were derived predominantly from pyrogenic sources. Four OCPs and/or their metabolites were detected at varying frequencies and concentrations. Of these, dichlorodiphenyltrichloroethane (ddT) and metabolites were most frequently detected and were at a high concentration in sediment in some systems. Toxaphene was detected at a high concentration at some sites. The total PCB concentration varied widely, from below the method detection limit to 110 ng g?1 (dm). Based on the comparison of chemical concentrations to international sediment quality guidelines, PAH, OCP and PCB concentrations in most sediment samples posed a low risk to sediment-dwelling organisms. However, in some instances the risk was moderate or high. It is recommended that these compounds be monitored more frequently and comprehensively in aquatic ecosystems to better understand the ecological and human health implications. 相似文献