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为了加深对淮河流域过水性湖泊沉积物特征的了解,于2018年8月对沱湖表层沉积物进行调查,测定了营养盐(总氮、总磷)、有机质和4种重金属(镉、铜、铅、铬)的含量,并使用沉积物质量评价标准、有机指数评价法、潜在生态风险指数法对营养盐和重金属污染进行了生态风险评价。结果表明:(1)总氮、总磷、有机质的平均含量分别为(2 535.00±987.97)、(672.99±159.09)和(47.90±19.89)g·kg-1。(2)总氮和有机质含量的高值区出现在湖泊开阔区和黑鱼沟入湖湖湾,总磷含量的最高值出现在湖泊北部上游过水通道(T2)。(3)镉、铜、铅、铬的平均含量分别为(0.95±0.26)、(25.16±4.00)、(23.03±5.60)和(86.65±17.76) mg·kg-1。(4)4种重金属元素含量的最高值均出现在黑鱼沟入湖湖湾,低值区则出现在沱河、唐河入湖口和湖泊北部上游过水通道(T2)。(5)表层沉积物受到一定程度的有机污染,且以有机氮污染为主,污染较严重的区域分布在湖泊开阔区和黑鱼沟入湖湖湾。(6)表层沉积物重金属污染具有强生态风... 相似文献
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重金属污染已经成为水环境污染防治的重要内容.研究表明,进入水体中的重金属大部分与悬浮物结合,在水流缓慢时,悬浮物逐渐沉积下来,大大降低了水中重金属元素的浓度.在特定的环境地球化学条件下,水库沉积物中重金属可通过一系列物理、化学和生物过程而释放出来,导致水环境"二次污染",严重威胁水库生态环境安全.因此,研究沉积物中重金属的含量变化规律,评价重金属污染的潜在生态风险,探讨其在水体中的迁移转化过程,对于保护区域水环境质量和防治重金属污染具有重要意义.本实验通过采集小浪底水库表层沉积物样品,对水库沉积物中重金属的含量与分布进行研究,并对其潜在的生态 相似文献
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太湖流域漕桥河沉积物重金属污染特征分布 总被引:3,自引:0,他引:3
研究了太湖流域漕桥河沉积物的重金属含量特征,结果显示,漕桥河沉积物的Cu、Pb、Zn、Ni、Cd的平均含量分别为46.5、40.6、149.9、58.7、0.54 mg·kg-1,不同的重金属之间存在显著相关关系(P<0.05),说明漕桥河沉积物重金属之间存在一定的同源性.除Cd外,其它重金属有效态比例均在15%以下.有效态随着总量的增加而增加,两者之间达到显著相关关系(P<0.05).沉积物中的不同重金属均呈现富集的趋势.生物毒性效应评价显示,Ni是可能造成生物负面影响的主要因子,其次是Cu、Zn;ERMQ评价说明漕桥河部分区域的沉积物已经存在生物毒性的风险. 相似文献
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滇池沉积物中重金属污染特征及其生态风险评估 总被引:3,自引:0,他引:3
采集了滇池北部和中心区域2根柱状沉积物样品,分析其常量元素(Fe、Mn、Al、Ti、Ca、K)、微量元素(Ba、Sr、Cu、Pb、Zn、V、Cd)剖面分布特征,并采用H?kanson潜在生态危害指数法对典型重金属(Cd、Cu、Zn、Pb)进行了污染潜在生态风险评估。结果表明:沉积物中常量元素以Fe2O3、CaO及Al2O3为主,MnO、K2O及TiO2含量较少,变化范围是Fe2O3为8.0~14.9%、MnO为0.1~0.2%、Al2O3为9.0~20.1%、TiO2为1.5%~2.8%、CaO为0.4~21.7%、K2O为1.5~2.0%;微量元素Pb, Cd, Zn, Ba, Cu, Sr 及V含量均较高,变化范围是Pb为73.8~105.3 mg·kg^-1、Cd为1.0~3.4 mg·kg^-1、Zn为123.4~210.6 mg·kg^-1、Ba为264.8~435.7 mg·kg^-1、Cu为77.5~133.5 mg·kg^-1、Sr为34.9~137.5 mg·kg^-1以及V为177.7~284.7 mg·kg^-1。尤其表层0~12 cm内(1950 s以后),各元素含量值均明显高于12 cm以下各值,20世纪50年代后滇池流域内工农业发展及污染物输入是造成金属元素含量累积的主要因素。沉积物中典型重金属Cu、Zn、Pb、Cd污染潜在生态风险评估结果:Cu、Zn和Pb处于中度污染,且C if 值越接近表层(0~12 cm)其值越高,这表明自1950S后污染程度不断加重,其中 Cd 累积与污染比较严重,分析多种元素的多因子污染参数之和C d表明滇池沉积物中多种元素污染整体处于“较高”污染程度,分析多种元素的潜在生态风险指数RI表明滇池沉积物中重金属潜在生态风险处于“很高”水平。同时,滇池北部沉积物中重金属潜在危害较严重且近年来污染有加重趋势。 相似文献
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对盐龙湖水源生态净化系统预处理区、挺水植物区、沉水植物区及深度净化区沉积物中营养盐内源负荷及氮、磷的形态空间分布特征展开研究,并评价不同单元沉积物营养盐污染状况.结果表明:盐龙湖表层沉积物总氮(TN)、总磷(TP)、有机质(OM)含量范围分别为156. 43—1130. 00 mg·kg~(-1)、615. 23—1580.66 mg·kg~(-1)、5.00%—49.04%.盐龙湖TP含量在预处理单元的沉积物中最高(1508.09 mg·kg~(-1)),在挺水植物区B的沉积物中最低(932.30 mg·kg~(-1)),而TN和OM含量都在挺水植物区A的沉积物中达到顶峰(1126.91 mg·kg~(-1),48.89%),在深度净化区的沉积物中最低(272.47 mg·kg~(-1),5.23%).闭蓄态磷(Abs-P)的含量占总磷(TP)比例最多(75.3%—82.3%),易解析磷(Exch-P)占TP比例均不超过1%;顺水流方向,铁结合态磷(Fe-P)和铝结合态磷(Al-P)含量呈下降的趋势,而Exch-P和钙磷(Ca-P)呈U字型先减后增.弱酸可提取态氮(WAEF-N)占可转化态氮(TTN)比例最高(45.3%—68.94%),强氧化剂可提取态氮(SOEF-N)占TTN比例最低(10.45%—19.08%),沉积物TTN中各形态氮含量分布次序为弱酸可提取态氮(WAEF-N)强碱可提取态氮(SAEF-N)离子交换态氮(IEF-N)强氧化剂可提取态氮(SOEF-N).通过单一因子标准指数法、综合污染指数、有机氮和有机指数法进行评价,发现在预处理区和挺水植物区A营养盐污染最严重,其他处理单元也有不同程度的污染,深度净化区污染程度最低. 相似文献
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水源水库沉积物中重金属形态分布特征及其影响因素 总被引:2,自引:0,他引:2
利用BCR化学连续提取法和EDTA铵盐单一提取法,考察了微生物作用和不同环境条件(灭菌,未灭菌,好氧,厌氧,添加还原药剂Na2SO3)对饮用水源水库沉积物中重金属的含量和形态分布特征的影响.结果表明,微生物作用和不同环境条件对沉积物中重金属,特别是对Cd和Pb的含量及各形态(F1、F2和F3)分布有着显著的影响;微生物对有机质的矿化作用以及厌氧条件下的微生物还原作用分别是影响沉积物中Cd和Pb形态分布变化以及上覆水体中铁浓度变化的重要原因.沉积物中Cd和Zn具有潜在环境效应的各形态(F1、F2和F3)含量占总量的比例[(F1+F2+F3)/T]均高于灭菌条件下;以EDTA单一提取法表征重金属的生物可给态含量结果表明,不同重金属的生物可给性差异十分显著,Cd和Pb的生物可给态含量占总量的比例(B/T)最高值分别可达24.96%和39.56%,而Zn和Cr的B/T值均小于5%.沉积物中重金属的[(F1+F2+F3)/T]比值(y)和B/T比值(x)两者之间的线性关系为,y=0.96x+0.1388(R2=0.8704);重金属的潜在环境效应程度对沉积物中重金属总量变化趋势有着直接的影响,在沉积物-水界面,随着重金属各形态的潜在环境效应的增强,重金属通过沉积物-水界面由沉积物向上覆水体扩散的程度也随之加剧,对水源水库的水质可造成一定程度的潜在危害. 相似文献
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在白银市城郊东大沟沿程采集了8个沉积物样品,采用Tessier五步连续提取法和静态释放试验研究了沉积物中重金属的污染特征及在不同离子强度条件下沉积物中重金属的释放规律.结果表明:(1)东大沟沉积物中Cd、Cu、Pb、Zn的含量均超过了甘肃省土壤元素背景值,其平均值分别为背景值的128.83、12.71、26.90、17.99倍.(2)沉积物中Cd和Cu主要以残渣态和有机结合态存在,Zn主要以有机结合态和铁锰氧化物结合化态存在,Pb主要以铁锰氧化物结合态存在;沉积物中重金属的活性顺序为ZnPbCdCu.(3)随着离子强度的增大,沉积物中Cu、Pb、Zn的释放量随之增加,沉积物中Cd的释放量则是先增加后减少. 相似文献
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Concentrations of ten metals (As, Cd, Cr, Cu, Fe, Mn, Ni, Pb, Zn and Hg) in the edible muscle of Arius maculatus captured from eight different near‐shore and off‐shore sites off the south west coast of the Arabian Sea, Pakistan, were determined by atomic absorption spectrophotometry. Relevant water and sediment samples from the sites were also analysed for the metals. Zinc showed the highest metal concentration (6.763 μg/g, wet weight) in the muscle of the fish, while Mn and Hg showed lowest level (0.019 μg/g, wet weight). Of all the metals investigated, largest scatter (measured as σ) was observed for Zn (σ = 2.058 /μg/g) in fish muscle, for Fe and Mn in sediment (σ = 27481 and 44.50 μg/g) and for As in water (σ = 0.270 μg/L). The metal distribution data pertaining to water, fish and sediment were examined on the basis of simple metal correlations. The statistical study revealed that Ni, Cr, Pb and Cu had significant positive correlations (r > 0.830 at ρ = 0.01). The finding substantiated a trace metal concentration gradient in the area, thereby indicating that the local marine environment is contaminated by anthropogenic sources. 相似文献
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Seaweeds belonging to 14 different genera of Chlorophyta, Phaeophyta and Rhodophyta were analyzed to determine the levels of heavy metals in two areas of the Egyptian Red Sea coast. Among the trace metals analyzed, Mn and Zn showed the highest mass concentrations in the surface seawaters of the two studied areas. However, algae obtained from Suez area had the highest concentrations of the investigated heavy metals than those collected from Mars Alam area. Nevertheless, a high variability of the metal levels occurs among the studied algae and also between the investigated areas. Moreover, Zn was the most abundant metal in the seaweeds of the Suez area, while Pb was predominant in Mars Alam area in red and brown algae. L. farinosa had the highest average concentration factor of Zn in Suez (29161 fold), while it was 20091 fold in E. intestinalis at Mars Alam. The highest value of metal pollution index (MPI) was recoded in L. farinosa (22.0) at Suez. It represents 4.6 fold of that value recorded in L. farinosa at Mars Alam. Among green, brown and red algae in Suez, the highest values of MPI were recorded in Cladophora (mixed sub-species) and H. comuto (18.2 and 18.3), P. pavonia (16.2) and L. farinosa (22.1), respectively; while at Mars Alam, they were recorded in Cladophora (mixed sub-species) (6.6), P. pavonia (3.4) and L. farinosa (4.8), respectively. 相似文献
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Seaweeds belonging to 14 different genera of Chlorophyta, Phaeophyta, and Rhodophyta were analysed to determine the levels of heavy metals in two areas of the Egyptian Red Sea coast. Among the trace metals analysed, Mn and Zn showed the highest mass concentrations in the surface sea waters of the two studied areas. However, algae obtained from the Suez area had higher concentrations of the investigated heavy metals than those collect in the Mars Alam area. Nevertheless, a high variability of the metal levels occurs among the studied algae and also between the investigated areas. Moreover, Zn was the most abundant metal in the seaweeds of the Suez area, while Pb was predominant in the Mars Alam area in red and brown algae. Liagora spp. had the highest average concentration factor of Zn in Suez (29 161-fold), while the average concentration factor in Enteromorpha spp. at Mars Alam was 20 091-fold. The highest Metal Pollution Index (MPI) value was recorded in Liagora spp. (22.0) at Suez. This represents a 4.6-fold higher value than that recorded in Liagora spp. at Mars Alam. Among green, brown, and red algae in Suez, the highest values of MPI were recorded in Cladophora spp. and Halimeda spp. (18.2 and 18.3), Padina spp. (16.2), and Liagora spp. (22.1), respectively; while at Mars Alam, the highest values of MPI were recorded in Cladophora spp. (6.6), Padina spp. (3.4) and Liagora spp. (4.8), respectively. 相似文献
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彩塘电镀区底泥重金属污染与释放特征 总被引:1,自引:0,他引:1
采集了彩塘不锈钢电镀区河段9个典型底泥样品,研究了底泥重金属含量及其地球化学形态以及底泥在不同pH值下的释放特征,并探索了碱石灰对底泥重金属的固定效果.研究表明,该区域底泥中Cr、Cu、Cd、Ni、Pb、Zn大大超过了广东省土壤背景值,其中Cu、Cd、Cr、Ni超过了《土壤环境质量标准》(GB15618—1995)二级标准的4.4、3.7、1.6、5.3倍.底泥中的重金属迁移性的大小为Cd>Zn>Ni>Pb>Cu>Cr.重金属释放是长期持续过程,随着水体pH值降低,底泥重金属释放量逐渐升高.底泥中加入碱石灰能有效地降低重金属的生物有效性,减少底泥重金属释放. 相似文献
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E. Alonso Alvarez M. Callejón Mochón J.C. Jiménez Sánchez L. Moreno López 《毒物与环境化学》2013,95(1-2):55-63
The application of the electrochemical speciation of heavy metals in tracking groundwater is presented. Three fractions interchangeable, associated to the organic materials and associated to the matter in suspension of the metals Zn, Cd, Pb and Cu by means of the anodic stripping voltammetry were determined. The parameters of the determination were: electrodeposition potential ‐1.2 V, time of deaerating with nitrogen 300 s, time of the electrolysis 90 s (with stirring) and the rest time 40 s. The core of this work was to determine the validity of this scheme of electrochemical speciation in the pursuit of the follow‐up of groundwater pollution caused by heavy metals after the breakdown of the mining raft at the River Guadiamar Basin (Andalusia, Spain). 相似文献
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The suitability of a 0.5 M HCl solution for extraction of Fe, Mn, Cd, Co, Cu, Pb, and Zn from Nile River sediments was evaluated by comparing its effectiveness with that of conventional acid ammonium oxalate (Tamm's solution) and aqua regia extraction solutions. The present study has shown that although the extraction data indicate that both 0.5 M HCl and acid ammonium oxalate solutions are able to extract heavy metals simultaneously from the adsorbed, organic, and precipitated phases of Nile sediments, the 0.5 M HCl solution is preferred. It provides a rapid, reliable, and inexpensive method of measuring environmentally mobile metal concentrations in the aquatic sediments. From an analytical chemistry point of view, the 0.5 M HCl extracts do not clog the atomizer of the spectrophotometer. Extraction with dilute HCl solution obviates the need to use chemicals, some of which are toxic or not available readily as a high-purity grade. A standard extraction method should be relatively simple, to conduct a routine analysis of large numbers of sediment samples, yet at the same time it should provide sufficient information for assessment of the environmental impact of particulate metals. Therefore, extraction with 0.5 M HCl solution is very suitable for heavy-metal pollution monitoring in the Nile River 相似文献
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N. S. Kalesh & S. M. Nair 《毒物与环境化学》2013,95(2):135-146
In the context of use of marine algae as biological indicators of heavy metal pollution in coastal waters, six species of marine algae collected from the southwest coast of India were analysed for the levels of heavy metals (Ni, Cr, Sr, and Ag). Interspecies and interclass variations were determined on a spatial and temporal scale. The metal contents varied in the ranges, Ni: 0.20–21.06?µg?g?1 (mean?=?10.13?µg?g?1), Cr: non-detectable level (ND)–37.18?µg?g?1 (mean?=?13.86?µg?g?1), Sr: 2.19–103.90?µg?g?1 (mean =?29.40?µg?g?1), and Ag: ND–6.39?µg?g?1 (mean?=?1.80?µg?g?1). Ni and Cr contents were of similar magnitude to those reported for algae from polluted areas. 相似文献
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Total mercury (Hg) levels in the intertidal surface sediments along the west coast of Peninsular Malaysia were analysed by using heat vaporization method. Total Hg levels in these sediments ranged from 3.00 to 201?µg?kg?1 dry weight with a mean concentration of 60.0?µg?kg?1 dry weight. More than 90% of the samples studied have the total Hg concentrations less than 150?µg?kg?1 dry weight. Compare with the regional data and sediment quality guidelines, the Hg contamination in the intertidal area along the west coast of Peninsular Malaysia was not serious, except for a few sites that might have received anthropogenic Hg in the samples collected between 1999 and 2000. It is suggested that a similar study of heavy metals in the sediments of the west coast of Peninsular Malaysia be conducted regularly. 相似文献
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东江流域底泥重金属分析及潜在环境生态风险 总被引:1,自引:0,他引:1
对东江流域不同江段水环境的重金属底泥及底泥浸出液中铅、锌、铜、镉、铬、镍等重金属分布进行分析,结果表明铅和镉含量较高,存在一定程度污染或属于高背景值底泥;底泥的重金属因沉积引起,而锌、铜、铬和镍含量具有一定的污染同源性;利用地积累指数法和潜在生态风险指数法评价底泥重金属污染状况,镉污染较为严重,潜在生态风险大,污染程度镉>铜>锌>镍,铅存在一定的潜在生态风险,铅和铬污染风险较小,底泥和底泥浸出液中重金属含量的变化趋势较为一致,结果表明底泥是表面水重金属的重要来源. 相似文献
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莱州湾表层沉积物重金属分布特征及污染评价 总被引:6,自引:0,他引:6
莱州湾属半封闭海湾,水体交换能力较弱,受多条河流入海影响,污染日趋加重。根据区域特征,于2008年5月对莱州湾30个采样点表层沉积物中的Cu、Pb、Zn、Cd、Hg、As、粒度和总有机碳进行测定,探讨了重金属含量和污染特征与粒度、总有机碳间的相关关系,利用污染评价法和潜在生态风险评价法进行污染和风险分析。结果表明:重金属平均含量较低,大部分低于国家海洋沉积物一类标准。Cu、Pb、Zn、Cd和As在莱州湾中部区域出现高值区,同时Cd在小清河口、Hg在莱州湾东部出现高值区。Cu、Pb、Zn、Cd、As重金属之间(除了Cd和As之间)及与沉积物粘土、有机碳含量之间显著正相关。莱州湾表层沉积物重金属单因子污染程度总体较轻,属于低污染水平,污染程度排序为CdPbZnCuAsHg,约30%的站位重金属综合污染指数大于5,达到中等污染水平,主要分布于小清河口、莱州湾中部和东部区域。莱州湾表层沉积物重金属潜在生态风险总体处于较低水平,风险排序为HgCdAsPbCuZn,风险指数高值区出现在莱州湾东部区域,主要受Hg的高风险水平影响。 相似文献