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1.
Historical trends of heavy metal contamination and their sources in lacustrine sediment from Xijiu Lake, Taihu Lake Catchment, China 总被引:3,自引:1,他引:2
Concentrations of Cd, Cr, Cu, Pb, Zn and Hg in Xijiu Lake sediment from the Taihu Lake catchment, China, were analyzed. Their contamination state was investigated based on the geoaccumulation index and enrichment factors. Statistical analysis was used to differentiate the anthropogenic versus natural sources of heavy metals (HMs), and the anthropogenic accumulation fluxes were calculated to quantify anthropogenic contribution to HMs. The results indicated that the lake sediment had been heavily contaminated by Cd, enrichment of Zn and Hg was at a relatively high level, while that of Cu and Pb was in the lower-to-moderate level and Cr was in the low enrichment level. Sources of Cr in the sediment were mainly from natural inputs, while other metals, especially Cd, were predominantly derived from anthropogenic sources. In the past century, anthropogenic accumulation fluxes of Pb, Zn and Hg increased by 0.1-47.3 mg/(cm2.yr), 2.4-398.1 mg/(cm2.yr), and 3.7-110.3 ng/(m2.yr), respectively, accounting for most inputs of HMs entering the sediment. The contamination state of HMs varied with industrial development of the catchment, which demonstrated that contamination started in the early 20th century, reached the maximal level between the mid-1970s and mid-1990s, and decreased a little after the implementation of constraints on high contamination industries, although the contamination of some HMs, such as Cd, Zn and Hg, is still at high levels. 相似文献
2.
Myller S. Tonhá Daniel F. Araújo Rafael Araújo Bruno C.A. Cunh Wilson Machado Joelma F. Portel João PR Souz Hikari K. Carvalho Elton L. Dantas Henrique L. Roig Patrick Seyler Jeremie Garnier 《环境科学学报(英文版)》2021,33(3):313-325
The Paraiba do Sul (PSR) and Guandu Rivers (GR) water diversion system (120 km long) is located in the main industrial pole of Brazil and supplies drinking water for 9.4 million people in the metropolitan region of Rio de Janeiro. This study aims to discern the trace metals dynamics in this complex aquatic system. We used a combined approach of geochemical tools such as geochemical partitioning, Zn isotopes signatures, and multivariate statistics. Zinc and Pb concentrations in Suspended Particulate Matter (SPM) and sediments were considerably higher in some sites. The sediment partition of As, Cr, and Cu revealed the residual fraction (F4) as the main fraction for these elements, indicating low mobility. Zinc and Pb were mostly associated with the exchangeable/carbonate (F1) and the reducible (F2) fractions, respectively, implying a higher susceptibility of these elements to being released from sediments. Zinc isotopic compositions of sediments and SPM fell in a binary mixing source process between lithogenic (δ66/64ZnJMC ≈ + 0.30‰) and anthropogenic (δ66/64ZnJMC ≈ + 0.15‰) end members. The lighter δ66/64ZnJMC values accompanied by high Zn concentrations in exchangeable/carbonate fraction (ZnF1) enable the tracking of Zn anthropogenic sources in the studied rivers. Overall, the results indicated that Hg, Pb, and Zn had a dominant anthropogenic origin linked to the industrial activities, while As, Cr, and Cu were mainly associated with lithogenic sources. This work demonstrates how integrating geochemical tools is valuable for assessing geochemical processes and mixing source effects in anthropized river watersheds. 相似文献
3.
Initial identification of heavy metals contamination in Taihu Lake, a eutrophic lake in China 总被引:6,自引:0,他引:6
A detailed investigation of seven heavy metals (Cu, Cd, Cr, As, Pb, Zn, Ni) in the water column, interstitial water and surface sediment was conducted to quantify the extent of their contamination in Taihu Lake. Results showed the average total concentrations ranged from 0.93 μg/L for Cd to 47.03 μg/L for Zn. The dissolved concentrations in the overlying water ranged from 0.06 μg/L for Cd to 15.86 μg/L for Zn. The metals in the Taihu Lake surface water were primarily in the particulate phase, especially for Cd, whose particulate concentration represented 94.3% of the total. In the surface sediment, the mean concentrations for Cr, Ni, Cu, Zn, As, Cd and Pb were 41.50, 28.72, 27.82, 65.46, 5.94, 0.82 and 41.17 mg/kg, respectively. The metals in the water column and sediments of Taihu Lake displayed significant spatial variations, and the higher metal concentrations mainly occurred in the north and west of Taihu Lake, especially in Zhushan Bay and West Taihu Lake. A quality assessment indicated that most of the metals in the surface water of Taihu Lake had no or low adverse health effects on organisms, except for Pb and Cu, which may cause chronic toxicity. Compared with the "Consensus-Based Sediment Quality Guidelines", the polluting metals were Cr, Ni and Cd, and the polluted regions were confined to Zhushan Bay, Meiliang Bay and the west of Taihu Lake, especially for north of Zhushan Bay. The polluted areas for Cr, Ni and Cd were 14.36, 34.70 and 13.24 km2, respectively. We suggest that Cr, Ni, and Cd in the polluted areas should be addressed and that tissue chemistry and sediment toxicity assessments be performed as soon as possible. 相似文献
4.
The sedimentation of metals can preserve the historical record of contaminant input from local and regional sources and provide information on the historical changes in regional water and sediment quality. We report the 210Pb activities and the heavy metal (Cd, Cr, Cu, Mn, Pb and Zn) depth profiles from sediment cores retrieved in 2010. The mean sedimentation rates of 0.85-1.5 cm/yr are determined by 210Pb dating. The sediments in the tidal flat have recorded heavy metal deposition and thus allow the establishment of a connection between the temporal evolution of the heavy metal pollution and the historical changes in the economic development of Lianyungang. The enrichment factors (EF) are calculated to estimate the level of contamination stored in these sediments. The results show that in the studied sites, Cr and Cu display low EF values and are mainly from lithogenic origin. For the other studied trace metals, a great variability in the sedimentary record is observed. Significant anthropogenic enrichment over the last 50 years is revealed at the tidal flat that receives fluvial inputs. Zinc is the element with the highest EF values, followed by the order of Pb > Cd > Mn > Cu and Cr. The temporal variations of the heavy metals peak during the late 1980s to the early 2000s and show a decreasing trend afterward. The pollution intensity of the tidal flat is determined by using EF and the geo-accumulation index (Igeo), which show that, based on the Igeo scale, the tidal flat of Haizhou Bay is unpolluted to moderately polluted. 相似文献
5.
Three sediment cores were collected in November 2003 from Dagu estuary to Qikou estuary. The main polluted heavy metals in the sediment of tidal zones for the Bohai Bay have been found by analyzing the relationship among the contents of heavy metals, the contents of geochemical elements (Fe, AI and Mn) and the size of grain. The dominating contaminative elements in tidal sediments of Bohai Bay are Pb, Zn and Cd. Their contents are higher than the corresponding upper limit of environmental background values and they have very faint correlation with the corresponding contents of geochemical elements and the size of grain, indicating the anthropogenic enrichment. Especially, the preliminary study on the pollution sources and the history of heavy metals in the Dagu estuary has been done using the dated results. The contamination by Zn and Cd also started in the middle 1950s, while the contamination by Pb appeared in the early 1940s. The pollution by Zn and Cd mainly originate from sewage discharge, while the pollution by Pb has many sources, like atmosphere deposition and industrial discharRe. 相似文献
6.
Sediments from four lakes in the mid-low reaches of the Yangtze River, Taibai Lake, Longgan Lake, Chaohu Lake and Xijiu Lake, were chosen to evaluate their enrichment state and history. The state of heavy metal enrichment was at a low level in the sediment of Taibai Lake and Longgan Lake. The enrichment state of Co, Cr and Ni was also low in the sediment of Chaohu Lake and Xijiu Lake, while Cu, Pb and Zn enrichment reached a higher level. Mass accumulation fluxes were calculated to quantitatively evaluate the anthropogenic contribution to heavy metals in the sediment. The anthropogenic accumulation fluxes were lower in the sediment of Taibai Lake and Longgan Lake compared with the other two lakes, where heavy metals, especially Cu, Pb and Zn, were mainly from anthropogenic sources. Heavy metal accumulation did not vary greatly in the sediment of Taibai Lake and Longgan Lake, while that in Chaohu Lake and Xijiu Lake increased since the 1950s and substantially increased since the 1980s, although a decrease occurred since 2000 AD in Xijiu Lake. Heavy metal enrichment was strongly related to human activities in the catchment. The development of urbanization and industrialization was much more rapid in the catchments of Chaohu Lake and Xijiu Lake than of the other two lakes, and thus large amounts of anthropogenically sourced heavy metals were discharged into the lakes, which resulted in a higher contamination risk. However, human activities in the Longgan Lake and Taibai Lake catchments mainly involved agriculture, which contributed a relatively small portion of heavy metals to the lakes. 相似文献
7.
Heavy-metal contents in suspended solids of Meiliang Bay, Taihu Lake and its environmental significances 总被引:6,自引:1,他引:6
Surface water was taken from river mouth to the central area of Meiliang Bay, Taihu Lake, a large shallow eutrophic lake in China. Suspended solids were condensed by centrifugation 25L surface water samples from each selected site. Suspended solids and surface sediments were further freeze-dried and microwave digested before determining the metals by ICP-AES. Among the metals analyzed in suspended solids and sediments, contents of Cr, Cu, Mn, Ni, and Zn in suspended solids were significantly higher than those in sediments while contents of AI, Ba, Be, Ca, Co, Fe, K, Mg, Pb, and V in suspended solids were 10%-30% higher than those in sediments. Sr and Ti contents in suspended solids and sediments were very similar. Na content in suspended solids was lower than that in sediments. Heavy metals were significantly accumulated in suspended solids. From the river mouth to the center of Meiliang Bay, contents of Cr, Cu, Pb, and Zn in suspended solids showed a gradual decreasing trend indicating the river(Zhihugang River) still discharged large quantity of heavy metals to Meiliang Bay. The study suggests that the geochemical behaviors and ecological effects of heavy metals in suspended solids may serve as a good indicator for the pollution of lake. 相似文献
8.
Nine metals, Cd, Cu, Ni, Pb, As, Cr, Zn, Fe, and Mn in sediment and pore water from 57 sampling sites in Chaohu Lake (Anhui Province, China) were analyzed for spatial distribution, temporal trends and diffuse flux in 2010. Metals in the surface sediment were generally the highest in the western lake center and Nanfei-Dianbu River estuary, with another higher area of As, Fe, and Mn occurring in the Qiyang River estuary. Metal contamination assessment using the New York sediment screening criteria showed that the sediment was severely contaminated in 44% of the area with Mn, 20% with Zn, 16% with Fe, 14% with As, and 6% with Cr and Ni. An increasing trend of toxic metals (Cd, Cu, Ni, Pb, As, Cr, Zn) and Mn with depth was shown in the western lake. Compared with metal content data from the sediment survey conducted in 1980s, the metal content of surface sediment in 2010 was 2.0 times that in the 1980s for Cr, Cu, Zn, and As in the western lake, and less than 1.5 times higher for most of the metals in the eastern lake. Among the metals, only Mn and As had a widespread positive diffuse flux from the pore water to overlying water across the whole lake. The estimated flux in the whole lake was on average 3.36 mg/(m2. day) for Mn and 0.08 mg/(m2. day) for As, which indicated a daily increase of 0.93 μg/L for Mn and 0.02 μg/L for As in surface water. The increasing concentration of metals in the sediment and the flux of metals from pore water to overlying water by diffusion and other physical processes should not be ignored for drinking-water sources. 相似文献
9.
Heavy metal pollution in Tianjin Bohai Bay, China 总被引:2,自引:0,他引:2
The contamination levels and distribution characters of heavy metals in coastal waters and sediments from Tianjin Bohai Bay,China were examined.Pb and Zn were found as the main heavy metal pollutants in the coastal waters of the bay.High levels of Pb and Zn appeared especially near the estuary,indicating that river discharge was the main pollution source.Moreover,atmospheric deposition resulted in Pb contamination in the middle of the embayment.Analysis of data for the period 1987-2004 indicated that Pb ... 相似文献
10.
Yuanhang Zhang Haichao Wang Keding Lu Zhaofeng Tan Xiaorui Chen Yuhan Liu 《环境科学学报(英文版)》2023,123(1):476-486
Over the past decade, fine particulate matter (PM) pollution in China has been abated significantly, benefiting from strict emission control measures, but particulate nitrate continues to rise. Here, we review the progress in particulate nitrate (pNO3−) pollution characterization, nitrate formation mechanisms, and the proposed control strategies in China. The spatial and temporal distributions of pNO3− are summarized. The current status of knowledge on the chemical mechanism is updated, and the significance of its formation pathways is assessed by various approaches such as field observation and modelling of nitrate production rate, as well as isotopic analysis. The factors impacting pNO3− formation and the corresponding pollution regulation strategies are discussed, in which the importance of atmospheric oxidation capacity and ammonia are addressed. Finally, the challenges and open questions in pNO3− pollution control in China are outlined. 相似文献
11.
株洲城郊农田土壤重金属污染特征与Pb同位素示踪 总被引:5,自引:0,他引:5
通过采集湖南株洲城郊农田区表层土壤(A层),并分析其Cd、Hg、Pb、Zn等重金属元素含量,研究了土壤中重金属元素的污染特征.为示踪这些金属元素的来源,选择农田区典型土壤样品及湘江沉积物、污染源区土壤样品,进行重金属元素含量和Pb同位素组成测定.结果表明,农田区A层土壤受到不同程度的重金属污染,其中,Cd、Hg、Pb、Zn含量最高,分别为21.71、24.52、261.49、577.94 mg·kg-1,且Cd、Pb、Zn元素之间显著相关,而研究区附近湘江水体和沉积物中这些元素含量没有增高,说明这些重金属不是来自湘江,而是可能主要来自冶炼厂;铅同位素显示,冶炼厂附近A层土壤206Pb/207Pb值(1.150~1.164)低于周边区域A层土壤(1.164~1.169),208Pb/206Pb值(2.108~2.122)高于周边地区(2.106~2.119),说明受到人为污染的影响.从污染区分布空间位置和铅同位素源解析的结果看,农田区土壤中Cd、Hg、Pb、Zn等重金属的主要污染源是冶炼厂的冶炼烟气粉尘及与农耕活动有关的其他人为污染. 相似文献
12.
铅稳定同位素在沉积物重金属污染溯源中的应用 总被引:5,自引:0,他引:5
稳定铅同位素是示踪环境重金属来源的重要手段.通过分析测定泉州湾周边地区常见端元组分及采集自泉州湾洛阳江河口潮间带24个表层沉积物的稳定铅同位素组成,利用铅同位素的指纹参数对沉积物中铅的来源进行示踪.结果表明,潮间带沉积物中的铅主要受汽车尾气、工业生产和污水排放的影响.其中,位于交通繁忙区的采样点因为受到工业及汽车尾气排放的双重影响,污染最为严重.不同来源端元的稳定铅同位素组成相差较大,利用端元组分及沉积物206 pb/207 Pb和208 Pb/(206 Pb+ 207 Pb)比值的差别,可以追溯沉积物中铅的来源. 相似文献
13.
典型Pb/Zn矿区土壤重金属污染特征与Pb同位素源解析 总被引:14,自引:4,他引:10
以我国典型的铅锌矿区——湖南水口山铅锌矿区及其周围地区为研究对象,分析自然土壤(A层和C层)样品中不同重金属(Pb、Zn、Cr、Cu、Cd、Hg)的污染特征和Pb同位素组成.结果表明,受铅锌选矿和冶炼活动的影响,研究区域A层土壤明显受到重金属的污染,尤其是在中心区域(水口山矿区),土壤中Pb、Zn、Cr、Cu、Cd、Hg含量最高达3966.88、 2086.25、 135.31、 185.63、 56.15、 16.434 mg/kg;受原生地质环境的影响,C层土壤重金属含量虽然变化很大,但基本反映土壤背景值.土壤中不同重金属的潜在生态危害大小顺序为Cd>Hg>Pb>Cu>Zn=Cr.中心区域多重金属综合潜在生态危害明显高于周围区域,其34%、 33%、 11%、 22%的采样点分别属于轻微、中等、强和很强生态危害,而周围区域属于轻微、中等、强和很强生态危害的采样点比例分别为68%、 16%、 10%、 6%.与C层Pb同位素相比(206Pb/207Pb为1.168~1.246,208Pb/206Pb为2.014~2.130),由于人为Pb源的污染A层土壤中206Pb/207Pb值(1.166~1.226)低而208Pb/206Pb值(2.043~2.135)高.与铅锌选矿、冶炼废水和烟尘中Pb同位素比值对比表明,A层土壤铅污染主要来自于冶炼厂烟气粉尘的沉降. 相似文献
14.
不同源区铅同位素的组成不同,可以利用铅同位素的这种“指纹”特征来示踪铅的不同来源.泉州湾洛阳江河口潮间带柱状沉积物中,从底层到表层其铅同位素组成呈现出一定的变化规律,其中207 pb/204Pb呈上升趋势,206 Pb/2077 Pb和208 Pb/(2066pb+207 Pb)呈下降趋势.铅污染的来源主要与工业生产、污水排放和燃油尾气排放有关,受燃煤的影响很少,从底层到表层铅同位素组成的演化趋势为:由工业及污水排放逐渐向汽车尾气方向飘移结合定年分析,推断出油铅的污染起源于20世纪80年代中期,其污染呈不断加重趋势;其中表层沉积物中铅的污染受汽车尾气排放的影响最为严重.对不同时期沉积物中铅污染的来源及其相对贡献率研究表明,1973年到1984年间,沉积物受燃油铅的影响较少,其污染来源主要以工业污染为主,其贡献率占70%以上;1984到1994年间汽车尾气铅的贡献率迅速上升,占到了50%;而1996年到2008年汽车尾气铅的贡献率逐渐增加,由50%上升到了66%. 相似文献
15.
利用铅同位素方法量化不同端元源对南京土壤和长江下游悬浮物铅富集的影响 总被引:2,自引:0,他引:2
环境中铅污染及其地球化学行为关系到生态环境安全和人类健康.利用地球化学同位素方法研究长江下游典型地区土壤和河流悬浮物中铅富集特征和成因,量化不同端元源对铅富集的影响,对于环境科学发展以及铅污染治理具有重要促进意义.结果表明,南京城区表层土壤和长江下游悬浮物中的铅相对于当地背景土壤呈现出富集特征.土壤和悬浮物的铅同位素相对于自然端元具有较高的206Pb/207Pb和较低的208Pb/206Pb比值,为受到了人为铅输入影响的缘故.铅同位素地球化学端元识别模型估算表明,南京市区土壤中的铅有18%~56%(平均35%)来自人为端元源,而长江下游悬浮物样品中铅的人为端元源贡献率为22%~46%(平均32%). 相似文献
16.
泉州市不同功能区土壤铅同位素组成及其来源分析 总被引:3,自引:0,他引:3
为查明泉州市土壤铅的污染来源,采集了泉州市不同功能区表层(O~20cm)土壤及城市环境污染端元(燃煤尘、汽车尾气尘、污泥)样品.采用ICP-MS测定土壤Pb含量,用热电质谱仪测定各样品的铅同位素组成.分析结果表明,泉州市不同功能区表层土壤已受到一定程度铅污染;泉州市土壤铅同位素208 Pb/(207+206)Pb和206Pb/207 Pb比值变化较大,分别为1.0769~ 1.1486和1.1150~1.2142;泉州市区各端元组分铅同位素组成差别比较大,可以有效示踪和鉴别泉州市区环境铅的污染来源.运用铅同位素示踪技术追踪土壤铅的污染来源结果表明,泉州市区土壤总铅同位素和可溶相铅同位素组成变化较大,土壤中铅来源较为复杂.交通繁忙区土壤铅污染主要来源于汽车尾气排放,农业区土壤铅主要来源于城市污泥与当地土壤背景,商业区土壤铅主要来源于城市污泥与燃煤尘及其煤渣的排放,居民区土壤铅污染主要受城市污泥与汽车尾气排放影响. 相似文献
17.
程海沉积物重金属时空变化及人为污染与潜在生态风险 总被引:2,自引:1,他引:1
沉积物重金属污染是影响湖泊等水体环境质量与健康的主要因素之一.通过对程海9个沉积短岩芯中10种金属元素含量的分析,在~(210)Pb与~(137)Cs定年的基础上,研究了沉积物中重金属含量与污染的时空变化特征;采用潜在生态风险指数法与沉积物质量基准法、并参考重金属污染水平,评估了表层沉积物重金属的潜在生态风险.结果表明,各岩芯不同年代沉积物中,除了Cd含量变化较大之外(变异系数为0.59),其余各金属元素含量变化均较小(变异系数小于0.20);空间上,各岩芯之间每一种金属的平均含量差异较小,最大值与最小值的比值为1.2~1.8,显示了不同湖区重金属较为相似的富集规律.沉积物中主要污染元素为Cd、Pb和Hg,其中Cd和Pb污染始于20世纪80年代中期;近十年来Cd污染程度稍有下降,但仍呈中等污染水平,而Pb污染程度持续增加,属于弱污染水平;Hg污染始于20世纪90年代末期,呈弱污染水平;而As、Cu和Zn仅在部分近表层沉积物呈现较弱污染.空间上,沉积物中重金属污染水平并未表现出明显的趋势.除了大气沉降(主要为有色金属冶炼释放)输入之外,程海沉积物重金属污染还可能受到农业面源与生活污水排放的影响.表层沉积物中As、Cu、Ni、Pb和Zn具有较低的潜在生态风险,Hg和Cd具有中-高潜在生态风险. 相似文献
18.
多元统计与铅同位素示踪解析旱地垂直剖面土壤中重金属来源 总被引:6,自引:3,他引:3
用电感耦合等离子体质谱仪(ICP-MS)分析了厦门市旱地2个垂直剖面土壤中26种重金属元素的含量,研究了剖面土壤中重金属元素的分布特征,环境风险及污染来源.综合内梅罗综合污染指数法,地质累积指数法和潜在生态危害指数法的评价结果,Cd为厦门市旱地土壤的主要污染因子;土壤重金属污染严重的为50~60 cm深度.多元统计分析结果表明,重金属的主要来源为农业生产活动与自然源,其中主要污染因子Cd来自于农业生产的影响.对垂直剖面土壤的酸可溶相铅同位素组成与厦门市潜在污染源的铅同位素进行对比分析.结果表明,厦门市旱地土壤中,铅主要来源于污泥和土壤母质层.根据剖面土壤在~(206)Pb/~(207)Pb-~(206)Pb/~(204)Pb图中的分布特征,利用铅同位素二元混合模型计算出P180剖面和P181剖面母质层的贡献率的平均值分别为54.36%和42.88%,污泥的贡献率平均值分别为45.64%和57.12%,表明旱地剖面土壤中铅主要来源为母质层和城市污泥,与多元统计分析结果相一致. 相似文献
19.
选择青藏高原东麓典型山地——贡嘎山(东坡),根据不同海拔梯度(海拔2 000~4 500 m)差异设置8个采样点,根据土壤发育情况分别采集O层(有机层)、A层(矿物质层)和C层(母质层)样品,分析土壤中w(Pb)的海拔分布特征,并利用FAMLR(因子回归分析)法、地球化学指标法和Pb同位素三元混合模型定量判识表层土壤中Pb的来源.结果表明:1各层土壤中w(Pb)表现为O层〔(41.73±4.38)mg/kg〕A层〔(30.47±2.17)mg/kg〕C层〔(23.04±1.50)mg/kg〕(P0.05).随着海拔的增加,O层和A层中w(Pb)总体呈升高—降低—升高趋势;C层中w(Pb)随着海拔的变化无显著差异,表明贡嘎山东坡土壤中w(Pb)的地球化学背景值基本一致.2各层土壤中206Pb/207Pb表现为O层A层C层,208Pb/206Pb表现为O层A层C层.3Pb同位素三元混合模型结果显示,表层(O层和A层)土壤中Pb可能受到化石燃料燃烧和矿物开采及金属冶炼活动的影响;根据FA-MLR法、地球化学指标法和Pb同位素三元混合模型这3种方法,得到O层中污染Pb所占比例分别达到84.9%、66.0%和63.7%,A层中分别为56.6%、27.8%和44.9%;在海拔分布上,Pb的污染在海拔2 770 m以下主要归因于当地化石燃料的燃烧,而在林线(约3 700 m)以上则来自矿物开采及金属冶炼活动. 相似文献