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1.
选取四川成都盆地浅层土壤为研究对象,将研究区分为龙门山区、盆周丘陵区和平原区3个区,通过等值线图得出磷的大面积异常区分布在人口密度大、工农业发达的平原区.并依据浅层土壤中关系较密切的3类基本元素组合共16种元素进行因子分析,得出成都盆地平原区浅层土壤中磷来自:①龙门山的震旦纪、寒武纪、泥盆纪含磷地层(磷矿)及表壳岩石风化后通过成都盆地平原区三大流域--沱江、岷江、蒲江水系影响整个平原区冲洪积沉积物(后改造为水稻土)的自然源;②人类工农业活动通过各种方式进一步叠加的人为源.  相似文献   

2.
深层土壤与表层土壤中元素质量分数的差异被一些学者归因于表层土壤受人为污染所致。文中通过解析山西太原盆地深、表层潮土中Hg、Cd、Pb、As的地球化学分布特征,并通过对比研究区与基本保持清洁状态的源区土壤中相应元素质量分数变化特征,论述了成壤过程中元素的自然分异作用是造成深、表层潮土中Hg、Cd、Pb、As质量分数显著差异的主要原因,以及人为污染仅在局部地区造成Hg、Cd、Pb、As在表层潮土中富集的观点。通过求解太原盆地表层潮土中Hg、Cd、Pb、As地球化学背景值的实例,详细介绍了以深层土壤元素的地球化学背景为参照系,运用相关分析和累积频率分析求解表层土壤元素地球化学背景值的方法。  相似文献   

3.
通过研究太原盆地大气干湿沉降中重金属元素的含量分布特征及年输入通量,讨论其对土壤中重金属元素累积的影响。同时采用富集因子法探讨降尘物质的来源。研究结果表明,降尘中重金属元素As、Cd主要来源于人为活动,Pb的来源可能是人为源和自然源。而Hg则主要来源于自然源。  相似文献   

4.
青海民和-海石湾一带土壤重金属异常成因研究   总被引:2,自引:0,他引:2  
青海省多目标区域地球化学调查发现,民和-海石湾一带的狭长谷地沿109国道两侧分布的土壤中存在以Cd、Pb、Hg、Cr等重金属元素为主组成的综合异常。空间上各异常元素套合较好,而且综合异常面积较大,异常元素衬度较高。经相关分析,Cr元素与土壤常量组分显著相关,与SiO2含量呈负相关关系,同时,Cr元素水平剖面上城区含量明显高于其他地方,垂向剖面上呈现元素表层略微富集的现象;Cd与有机碳之间存在显著性相关关系,与TFe2O3不存在显著性相关关系;Pb元素在80 cm以上的土壤中,异常区土壤中的含量明显高于非异常区,Pb异常基本存在于表层土壤中;Hg元素含量表层富集明显,城区土壤中的Hg含量远高于其他地方。研究结果表明,人为源输入是导致该地区Cd、Pb、Hg异常的主要因素,而Cr元素异常的形成具有双成因性质,在较高自然背景上产生了人为源叠加。因此,加强异常区工业"三废"的控制和管理,是防止异常面积扩大的有效措施。  相似文献   

5.
分形理论在太原盆地土壤重金属元素分析中的应用   总被引:2,自引:1,他引:1  
通过对太原盆地地球化学取样中土壤浅、深层元素多重分形特征的详细分析研究,确定了8种微量元素(As、Cd、Cr、Cu、Hg、Pb、Zn、Ni)在盆地的背景区和异常区以及元素的分维值,并依据分维值对微量元素进行了分类研究。在此基础上,对其富集趋势进行了尝试性分析,认为土壤浅层、深层差异性大,浅层富集趋势强于深层。为太原盆地土壤质量评价提供了可靠的依据。  相似文献   

6.
研究雄安地区土壤重金属和砷元素空间分布特征及其来源,对于支撑新区土地资源和环境管理具有重要意义。基于雄安新区土壤环境调查,运用地统计学方法和ArcGIS 技术分析模拟了土壤中As、Hg、Cd、Cu、Pb、Zn、Ni、Cr等8种元素空间分布特征,综合运用空间分析、多元统计学方法和正定因子矩阵模型解析这些元素的主要来源。结果表明:(1)区内土壤质量总体良好,4.35 %的土壤样品Cd和Cu含量超过农用地土壤污染风险筛选值,但均低于农用地土壤污染风险管控值;与河北省背景值相比,Cd、Cu、Pb、Zn和Hg存在不同程度中度和显著富集。(2)As、Cd、Cu、Pb、Zn、Ni、Cr含量呈现出由北部向南部逐渐增高的趋势,高值区主要分布在新区西南部;Hg元素分布分散,高值区主要分布在城镇及工业企业周边。(3)不同土地利用类型土壤剖面重金属和砷元素垂向分布受pH值、有机碳和铁铝氧化物等理化性质影响显著。(4)研究区土壤重金属和砷元素富集受人类活动影响明显,人为来源贡献率达67.12 %,Hg元素主要来源于人为排放的大气沉降富集,As元素富集受到废渣堆放和利用的影响,Cd、Cu、Pb和Zn元素富集受工业生产、污水灌溉以及尾气排放等活动影响。研究成果可为雄安新区合理制定土地资源开发利用和生态保护措施提供技术支撑。  相似文献   

7.
河北省白洋淀洼地环境地球化学物源判断   总被引:7,自引:1,他引:6  
河北省白洋淀洼地是一个大型天然平原洼地,在洼地的深、浅层土壤中均发现了以Cu、Pb、Zn、Cd为主的多变量地球化学异常。运用地球化学特征法、参考元素法及多元统计法,对深、浅层土壤Cu、Pb、Zn、Cd异常的性质和成因进行了判别。结果表明,深层土壤异常与特定的地球化学沉积环境有关,以自然地质作用成因为主,而浅层土壤异常具有典型的二元叠加特征,以人为源的输入为主。  相似文献   

8.
山东省威海市区域地质背景下土壤Cd的地球化学特征   总被引:3,自引:0,他引:3  
为获取威海市区域地质背景下土壤重金属元素Cd的地球化学特征,以区域表层和深层土壤Cd为研究对象进行讨论。统计分析得出Cd区域土壤背景值为0.090×10-6,基准值为0.056×10-6。区域Cd的土壤环境质量较好,全区仅3.42%的表层土壤、1.17%的深层土壤超出国家土壤质量一级标准限值,其中仅1.67%的表层土壤出现污染,超出国家土壤二级标准。研究区土壤Cd的物源主要表现为自然源和人为源两大类。自然源主导区占54.68%,自然属性特征明显,表层和深层土壤Cd的相关性较好,且Cd与其他重金属元素间具有较好的地球化学组合特征;表层土壤Cd的分布主要受母质影响,在丘陵区土壤Cd含量受中生代中酸性侵入岩的分布影响较大,而平原区受第四系沉积物影响较大,其中陆源为主的平原区土壤Cd相对含量较高,与海水有关的平原区Cd含量普遍偏低。人为源主导区占45.32%,自然属性较差,受人为源影响较大,与工矿点等人为活动密集区分布较吻合。  相似文献   

9.
太原盆地土壤微量元素的地球化学特征   总被引:17,自引:1,他引:16  
文章分析了太原盆地土壤微量营养元素Fe、Mn、Cu、Zn、Mo、B和有害重金属元素As、Cd、Cr、Hg、Pb的含量变化特征.太原盆地土壤中微量营养元素与世界土壤和全国土壤的平均值相比趋于缺乏状态,而高于全国黄土和山西省土壤的平均含量.有害重金属元素在太原盆地表层土壤的富集已较明显,原有的地球化学特征已发生较大变化.Hg、Cd、Pb对环境的危害作用应引起重视.  相似文献   

10.
长江(公安段)不同地貌成因类型冲积土中Cd的分布特征   总被引:2,自引:0,他引:2  
长江流域多目标地球化学调查成果显示,长江沿岸冲积带土壤中存在着重金属元素Cd的高值分布.以位于湖北省境内的长江公安段冲积带土壤为研究对象,分析了Cd在不同地貌成因类型浅层(0~20 cm)土壤中的横向分布特征,重点研究了Cd横向、垂向分布特征与Corg含量、pH值和黏粒含量(用硅铝率反映)分布特征的关系.结果表明:①研究区浅层土壤中ω(CA)的分布特征为,湖积低平原区、冲-湖积低平原区及冲洪积低洼平原区地貌成因类型土壤中的含量明显高于冲洪积高漫滩平原区、冲洪积高亢平原区地貌成因类型土壤,其质量分数差异达1.4~1.8倍;②研究区不同地貌成因类型土壤中,ω(Cd)的横向分布特征主要受黏粒含量分布的控制,其次是ω(C<,org);垂向分布特征的主要控制因素是ω(C<,org).  相似文献   

11.
Analysis of ten heavy metals (Ag, Cd, Cr, Cu, Fe, Mn, Ni, Pb, Sb, Zn) in six sediment cores from Wellington Harbour show both anthropogenic enrichments and diagenetic modifications. Absolute concentrations determined by two methods, x-ray fluorescence and acid leaching for bioavailability, are not comparable. However, vertical trends in concentrations of the cored sediment are comparable. To assess levels of anthropogenic pollution, enrichment factors (enriched concentrations in upper core divided by background levels in lower core) are preferred over index of accumulation (I geo) values because preindustrial or background levels of heavy metals are well constrained. The ten metals are placed into three groups: (1) Cu, Pb, and Zn, which show the most anthropogenic enrichment; (2) As, Cd, Cr, Ni, and Sb, which are often associated with anthropogenic pollution but show only minor enrichment; and (3) Fe and Mn, which are diagenetically enriched. Assuming harbor waters are well mixed, anthropogenic enrichments of Cu, Pb, and Zn, are time correlative, but the degree of enrichment depends on the method of analysis and core location. Levels of As, Cd, Pb, and Zn show small variations in preindustrial sediments that are not related to changes in grain size and probably result from changes in the oxidation-reduction potential of the sediments and salinity of the pore waters.  相似文献   

12.
内江市双桥乡土壤重金属含量及风险评价   总被引:3,自引:0,他引:3  
黄蕾  王鹃  彭培好  王珏玮 《物探化探计算技术》2011,33(4):450-454,349,350
以四川省内江市双桥乡为研究区域,调查分析各类土壤中重金属(Cu、Pb、Zn、Cd、Cr、As、Hg、Ni)含量情况。采用单因子污染指数、内梅罗综合污染指数和富集因子评价方法,对土壤重金属污染状况进行评价。研究结果表明,该地区Cd、Cr、Cu、Ni、Pb、Zn元素平均含量高于成都经济区、四川省、中国土壤背景值,有一定程度的Cd、Cr、Cu、Ni、Pb、Zn富集,Hg元素有个别样点含量偏高,并且单因子重金属的污染程度依次为:Cd〉Ni〉Zn〉Cu〉Cr〉Pb〉As〉Hg,Cd在绝大部份区域存在轻微污染,由内梅罗污染指数和富集因子评价得出区域综合污染程度为轻度。  相似文献   

13.
The natural variation in heavy metal contents of subsurface sediments in the southern Netherlands is described, based on a series of 820 bulk geochemical analyses. The detrital heavy metal contents of these sediments show linear correlations with Al as a result of their joint occurrence in phyllosilicates. Anomalous enrichments occur as a result of the presence of glauconite (As, Cr, Ni, Pb, Zn), pyrite (As) or Fe-oxides (As, Ba, Ni, Zn), due to the interaction of organic-rich subsurface material with groundwater (Co, Ni, Zn) or as a result of anthropogenic pollution in topsoils (Cu, Pb, Zn). The contents of Al, Fe, K and S are well suited to determine background values, and to identify the cause for anomalous accumulations of heavy metals.  相似文献   

14.
The trace element distributions in surficial sediment of Tyrrhenian Sea have been investigated as a part of a series of studies on the environmental quality of the area off the Tuscany coast (west-central Italy). This research has focused on the presence of possible contaminated zones; it also provides data for the identification and future monitoring and control of pollution sources. The study of numerous surface sediments and core samples has made it possible to distinguish between heavy-metal enrichments related to natural sources and other anomalies caused by anthropogenic contamination. Over much of the basin, the surface Pb, Cu, Zn, and As contents appear considerably enriched relative to those below 15 cm; among these metals, Pb shows the highest and most widespread enrichment. Only in the case of some coarse-grained sediments close to the mouth of Cecina River it is possible to relate anomalously high Zn contents to natural sources. In all other sampling stations, the enrichments of Pb, Cu, Zn, and As are ascribed to man's influence. The sediment distributions of Co, Cr, and Ni do not seem to be related to anthropogenic activities; rather they mirror influx of materials derived from sources of ophiolitic rock. The distribution of barium shows only two significant positive anomalies, and both are related to natural causes. Concentrations of vanadium are high in a zone close to an important smelting plant; these are thought to be of anthropogenic origin.  相似文献   

15.
Grain size parameters, trace metals (Co, Cu, Ni, Pb, Cr, Zn, Ba, Zr and Sr) and total organic matter (TOM) of 38 surficial sediments and a sediment core of west-four Pearl River Estuary region were analyzed. The spacial distribution and the transportation procession of the chemical element in surficial sediments were studied mainly. Multivariate statistics are used to analyses the interrelationship of metal elements, TOM and the grain size parameters. The results demonstrated that terrigenous sediment taken by the rivers are main sources of the trace metal elements and TOM, and the lithology of parent material is a dominating factor controlling the trace metal composition in the surficial sediment. In addition, the hydrodynamic condition and landform are the dominating factors controlling the large-scale distribution, while the anthropogenic input in the coastal area alters the regional distribution of heavy metal elements Co, Cu, Ni, Pb, Cr and Zn. The enrichment factor (EF) analysis was used for the differentiation of the metal source between anthropogenic and naturally occurring, and for the assessment of the anthropogenic influence, the deeper layer content of heavy metals were calculated as the background values and Zr was chosen as the reference element for Co, Cu, Ni, Pb, Cr and Zn. The result indicate prevalent enrichment of Co, Cu, Ni, Pb and Cr, and the contamination of Pb is most obvious, further more, the peculiar high EF value sites of Zn and Pb probably suggest point source input.  相似文献   

16.
The soil geochemical baseline is an important index in environmental assessment. Detailed baseline studies are necessary in large areas with complex geological settings, landforms and soil types. The Jianghan plain, a major industrial and agricultural region located in central China, has a soil geochemical baseline that has yet to be fully defined. The objective of this paper is to study the baseline of Cd, Pb and Zn in the topsoil of the Jianghan plain in a subarea using principal component regression (PCR). A total of 9030 samples were collected from the surface layer, and 2 soil profiles and 2 sedimentary columns were sampled near the Yangtze and Han rivers. Fifty-two elements and two parameters were analyzed. Data processing and the creation of spatial distribution maps of the elements were performed using MapGIS, R and SPSS software. The results show that the distributions of Cd, Pb and Zn are mainly controlled by parent material, drainage system and soil type. The study area is divided into 3 subareas, with factors reflecting the physico-chemical characteristics of the soil using factor analysis (FA). The geochemical baseline model is established in every subarea to predict the Cd, Pb and Zn values using principal component regression analysis (PCR); the exceptional values (as a result of anthropogenic input or mineralization) are distinguished by residuals (γ); and the natural background values and anthropogenic contributions are clearly distinguished. Therefore, the PCR method in these subareas is objective and reasonable, and the conclusion provides effective evidence of exceptional high values for further environmental assessment.  相似文献   

17.
长江上游是整个长江经济带的重要生态屏障。以长江上游攀西大梁子铅锌矿区水系沉积物为研究对象,查明了重金属元素含量的空间分布特征,分析了重金属来源,探讨了在不同pH条件下重金属的淋滤规律,并进行了生态风险评估。研究结果显示:攀西大桥河流域水系沉积物中重金属的空间分布极不均匀,其含量明显要高于长江水系沉积物中重金属的平均含量;重金属生态风险属于很强风险,Hg和Cd呈高度富集、严重污染;Pb和Zn呈中度富集、中等污染。淋滤实验结果表明Pb、Zn、Cd在酸性和中性条件下淋滤浓度先快速下降,后逐渐趋于平衡,而As在快速下降后又有缓慢升高的趋势。大桥河流域水系沉积物中As、Cd、Pb、Zn主要来源于大梁子铅锌矿的采选活动,Hg为岩石风化和土壤剥蚀来源,而Cu和Cr主要为农业和工业活动来源。综合对比发现,攀西成矿带铅锌矿周边土壤富Cd而贫Cr,此外Cd、Pb、Zn、Hg是主要潜在污染物,且生态风险程度较高。  相似文献   

18.
研究采集了黑龙江松嫩平原南部28个夏季大气颗粒物样品,分析了不同粒径(TSP、PM10、PM2-5)样品中常量和微量元素含量,对元素浓度含量特征、元素间相关性和空间分布特征进行了分析,并使用富集系数法和因子分析法进行元素来源解析。研究表明:在PM10-100中富集的元素多在地壳中含量很高,重金属元素在PM2-5中高度富集,不同粒径大气颗粒物中各元素质量浓度整体水平为:大庆>绥化>哈尔滨>齐齐哈尔。富集因子分析表明:Fe、K、Ti、Mn、Co的富集因子小于1或非常接近1,Ca、Mg、Ni、Cr的富集因子大于1但仍小于10,Na、Zn、Cu、Cd、Pb、Se的富集因子大于10,表现出较为明显的人为来源特征。参照颗粒物不同源主要标识元素,对各元素进行主因子分析结果表明:松嫩平原南部大气可吸入颗粒物的主要来源是土壤扬尘,此外还有燃煤、垃圾焚烧、汽车尾气、碱尘大气传输、燃油和工业来源。  相似文献   

19.
An investigation on spatial distribution, possible pollution sources, and affecting factors of heavy metals in the urban–suburban soils of Lishui city (China) was conducted using geographic information system (GIS) technique and multivariate statistics. The results indicated that the topsoils in urban and suburban areas were enriched with metals, such as Cd, Cu, Pb, and Zn. Spatial distribution maps of heavy metal contents, based on geostatistical analysis and GIS mapping, indicated that Cd, Cr, Cu, Mn, Ni, Pb, and Zn had similar patterns of spatial distribution. Their hot-spot areas were mainly concentrated in the densely populated old urban area of the city. Multivariate statistical analysis (correlation analysis, principal component analysis, and clustering analysis) showed distinctly different associations among the studied metals, suggesting that Cr, Cu, Ni, Pb, Cd, and Zn had anthropogenic sources, whereas Co and V were associated with parent materials and therefore had natural sources. The Cd, Cr, Ni, Pb, and Zn contents were positively correlated with soil organic matter, pH, and sand content (p < 0.01). It is concluded that GIS and multivariate statistical methods can be used to identify hot-spot areas and potential sources of heavy metals, and assess soil environment quality in urban–suburban areas.  相似文献   

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