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61.
湖南晚侏罗世金鸡岭花岗岩体是南岭地区典型W—Sn成矿岩体之一,内部发育黑云母花岗质伟晶岩团块和文象花岗质条带状伟晶岩脉。金鸡岭花岗岩和黑云花岗伟晶岩中的黑云母具有相似的地球化学特征,均表现出高的FeO、TiO2、Al2O3含量和低的MgO、CaO、Na2O、MnO含量,以及富集成矿元素Nb、Ta、W、Sn,亏损Sr、Ce、Eu等微量元素特征,从花岗岩体到黑云花岗伟晶岩,岩浆的形成温度和氧逸度降低,云母中Al2O3、Li2O*含量升高,TiO2、MgO含量降低,黑云母由铁叶云母演变为黑鳞云母。结合前人资料,金鸡岭花岗岩与黑云花岗伟晶岩均源于元古宙地壳的深熔作用,伟晶岩为花岗岩浆在晚期分异演化的产物,形成于岩浆—热液转化阶段。伟晶岩阶段是稀有金属元素显著富集,乃至进一步成矿的重要阶段。 相似文献
62.
【研究目的】新巴尔虎右旗地处呼伦贝尔草原深处,矿业活动频繁。了解该地区土壤中重金属来源以及生态风险是评估区域环境影响前提。【研究方法】本文系统采集了矿石、基岩及土壤样品共221件,测试并分析了Cd、Cr、As、Hg、Ni、Pb、Zn等7种重金属元素的含量。利用地积累指数法和潜在生态风险指数法评价了重金属的污染程度和生态风险,并综合运用相关分析、主成分分析法判断了土壤重金属的来源。【研究结果】研究表明,新巴尔虎右旗土壤重金属污染以轻度为主,Cd、Ni、As、Cr、Pb元素均存在一定程度的污染,污染区域集中于甲查矿区、准乌兰诺尔、呼伦湖西北岸以及克鲁伦河中游。Cr、Ni、Hg主要受人类活动影响;Cd、Zn、Pb受到自然因素与人类活动共同影响,As主要受自然因素影响。【结论】总体来看,本区生态风险整体较低,以Cd对生态风险的贡献最为突出,在本区土壤质量监测中应受到重视。 相似文献
63.
基于贵州省毕节地区1∶25万土地质量地球化学调查的1 308件深层土壤样品重金属含量数据,研究了土壤重金属含量分布及其地球化学背景特征,与全国土壤比较,黔西北土壤重金属地球化学背景值显著高于全国土壤元素背景值,但是,与我国西南地区土壤元素背景值接近。黔西北地区土壤重金属含量与地质背景关系密切,不同地质单元区土壤重金属含量存在显著差异,石炭系地层发育的土壤呈Pb、Zn地球化学高背景,二叠系中统风化形成的土壤呈Cd、Hg地球化学高背景,黔西北地区不仅存在土法炼锌造成的土壤重金属污染,土壤重金属地球化学高背景也是影响土壤重金属富集的重要因素。统计表明,黔西北地区二叠系中统风化土壤Cd管理目标值高于我国农用地土壤Cd风险管制值(2.0×10-6),认为在确定黔西北地区土壤重金属管理目标时,应充分考虑不同地质单元区土壤重金属地球化学背景值差异及其生态环境效应的影响。 相似文献
64.
对于人为因素或自然因素造成的农田土壤重金属元素污染,需要进行大面积的土壤环境质量调查和分类管控,然而传统的采样测试方法存在工作量大、代价高等问题。可见—近红外(Vis-NIR)反射光谱是一种快速低成本获取土壤理化信息的手段。为研究Vis-NIR反射光谱预测模型划分土壤重金属污染风险类别的能力,文章以典型人为污染地区(浙江温岭)和典型地质高背景地区(广西横县)的390份农田土壤为样本,测定8种重金属元素(As、Cd、Cr、Cu、Hg、Ni、Pb和Zn)的含量和pH值,并测定土壤Vis-NIR光谱。使用偏最小二乘(PLS)和支持向量机(SVM)算法建立回归模型,对土壤重金属含量和pH值进行预测,并基于预测值进行土壤重金属污染风险分类。结果显示,温岭土壤主要污染元素Cd和Cu的光谱模型回归预测偏差(RPD)分别为1.23和1.19,预测机制与有机质有关。横县土壤主要污染元素As和Cd的RPD分别为1.98和1.93,预测机制与铁氧化物和粘土矿物有关。地质高背景土壤重金属与铁氧化物的正相关性普遍较强,使得光谱模型对重金属含量预测准确度较高。温岭和横县土壤pH值的光谱模型RPD分别为1.76和1.68。土壤重金属污染风险光谱分类的总体
准确度分别为75.0%~100%(温岭)和80.0%~100%(横县)。将Vis-NIR光谱与遥感技术相结合,对农田土壤重金属污染风险进行快速分类总体是可行的。 相似文献
65.
根系土中重金属元素分布特征及在农作物中的迁移 总被引:1,自引:0,他引:1
以上海市金山区为对象,分析了农用地土壤重金属元素的形态分布特征,以及元素的有效态(水溶态、离子交换态)与全量、有机质、pH等的相关性;根据重金属元素在稻米、蔬菜等不同农作物中的含量,分析了其迁移及生物有效性。结果表明:不同元素的形态组成差异较大;Pb、Zn、Ni元素的有效态与环境因素(pH、有机质)关系密切;土壤中重金属元素Cd最为活跃且易发生迁移,在多种农作物中有较为明显的富集;稻米中重金属元素的富集程度相对较小。研究成果可为土壤污染治理、种植结构调整、土地合理利用提供有益借鉴。 相似文献
66.
67.
Upper North Grain (UNG) is a heavily eroding blanket peat catchment in the Peak District, southern Pennines, UK. Concentrations of lead in the near‐surface peat layer at UNG are in excess of 1000 mg kg−1. For peatland environments, these lead concentrations are some of the highest globally. High concentrations of industrially derived, atmospherically transported magnetic spherules are also stored in the near‐surface peat layer. Samples of suspended sediment taken during a storm event that occurred on 1 November 2002 at UNG, and of the potential catchment sources for suspended sediments, were analysed for lead content and the environmental magnetic properties of anhysteretic remanent magnetization (ARM) and saturation isothermal remanent magnetization (SIRM). At the beginning of the storm event, there is a peak in both suspended sediment and associated lead concentration. SIRM/ARM values for suspended sediment samples throughout the storm reveal that the initial ‘lead flush’ is associated with a specific sediment source, namely that of organic sediment eroded from the upper peat layer. Using the magnetic ‘fingerprinting’ approach to discrimination of sediment sources, this study reveals that erosion of the upper peat layer at UNG is releasing high concentrations of industrially derived lead (and, by inference, other toxic heavy metals associated with industrial particulates) into the fluvial systems of the southern Pennines. Climate‐change scenarios for the UK, involving higher summer temperatures and stormier winters, may result in an increased flux both of sediment‐associated and dissolved heavy metals from eroding peatland catchments in the southern Pennines, adversely affecting the quality of sediment and water entering reservoirs of the region. Copyright © 2005 John Wiley & Sons, Ltd. 相似文献
68.
Changes in water quality during a storm event were continuously monitored over a 24 h period at a single location along an urban stormwater drain in Butte, Montana. The Butte Metro Storm Drain (MSD) collects groundwater baseflow and stormwater draining Butte Hill, a densely populated site that has been severely impacted by 130 years of mining, milling, and smelting of copper‐rich, polymetallic mineral deposits. On the afternoon of 26 June 2002, a heavy thunderstorm caused streamflow in the MSD to increase 100‐fold, from 0·2 ft3 s−1 to more than 20 ft3 s−1. Hourly discharge and water quality data were collected before, during, and following the storm. The most significant finding was that the calculated loads (grams per hour) of both dissolved and particulate copper passing down the MSD increased more than 100‐fold in the first hour following the storm, and remained elevated over baseline conditions for the remainder of the study period. Other metals, such as zinc, cadmium, and manganese, showed a decrease in load from pre‐storm to post‐storm conditions. In addition to the large flush of copper, loads of soluble phosphorus increased during the storm, whereas dissolved oxygen dropped to low levels (<2 mg l−1). These results show that infrequent storm events in Butte have the potential to generate large volumes of runoff that exceed Montana water quality standards for acute exposure of aquatic life to copper, as well as depressed levels of dissolved oxygen. This study has important implications to ongoing reclamation activities in the upper Clark Fork Superfund site, particularly with respect to management of storm flow, and may be applicable to other watersheds impacted by mining activities. Copyright © 2005 John Wiley & Sons, Ltd. 相似文献
69.
Accumulation of petroleum hydrocarbons and heavy metals in clams (Ruditapes philippinarum) in Jiaozhou Bay, China 总被引:2,自引:0,他引:2
Accumulation and distributions of aliphatic and polyaromatic hydrocarbons (PAHs) and heavy metals were measured in tissues
of the clam Ruditapes philippinarum collected from 5 sites in Jiaozhou Bay, Qingdao, China. The concentrations of total aliphatic hydrocarbon and PAHs ranged
from 570 to 2 574 ng/gdw (gram dry weight) and from 276 to 939 ng/gdw, in the most and least polluted sites, respectively.
The bio-accumulation of hydrocarbons and PAHs in the clams appeared to be selective. Aliphatic hydrocarbons were predominantly
represented by short chain (<nC23) n-alkanes, suggesting that petroleum hydrocarbons were likely the major contamination source. The selective uptake of 3 and
4 ring PAHs, such as naphthalene, fluorene, phenanthrene, fluoranthene and pyrene, by the clams was probably related to the
physiological and bio-kinetic processes that were energetically favorable for uptake of compounds with fewer rings. Accumulation
of the metals Cd, Cu, Zn, Pb, Cr, Hg, and As in the clam tissues also showed high variability, ranging from 0.043 to 87 μg/gdw.
Among the 7 detected metals, Zn, Cd, Cu, and As had a particularly high potential of accumulation in R. philippinarum. In general, a positive correlation was found between the tissue concentrations and sediment concentrations of hydrocarbons
and of some metals. Our study suggests that moderate contamination with polyaromatic hydrocarbons, and low to moderate contamination
with metals, currently exists for clam R. philippinarum in Jiaozhou Bay, in comparison with other regional studies. A long-term monitoring program is certainly needed for assessment
of the potential ecological influence and toxicity of these contaminants of R. philippinarum in Jiaozhou Bay. 相似文献
70.
Aerosol samples were collected at two coastal suburban stations, Qingdao (China) in 1995-1996 and Liverpool (U.K.) in 1995, respectively. The samples were analyzed to determine the concentrations of trace metals (Cr, Zn, Cu, Co, Ni, Pb, V, and Cd) as well as A1, Fe and Mn. Data were examined to understand the difference of trace metals in aerosols between coastal zones downwind the developing area (near the Yellow Sea) and developed region (near the Irish Sea). The results show that most elements at Qingdao have levels 4-5 times higher than those at Liverpool, particularly for the crust-dominated elements (e.g. Al, Fe and Mn). Moreover, the aerosol composition at Qingdao is higher in spring than in summer, underlying the influence of westerlies and local emissions in combination, whereas seasonal change of aerosol composition is not significant at Liverpool. The enrichment factors for the crustal source elements (EFcrust) at Liverpool are much higher than those at Qingdao. The contributions from the pollutant source (Rp) for some trace metals like Cu, Pb, Zn and Cd are 〉90% at Qingdao and Liverpool, suggesting overwhelming anthropogenic contributions to these metals. The contributions from crustal source (Re) for trace metals tend to increase with higher aerosol levels and Al concentration at Qingdao, indicating a good correlation between the crust-dominated component and the air mass. At Liverpool, the Rc values for trace metals are positively correlated with Al concentrations instead of with aerosol mass, suggesting that Al in aerosols represents the crustal component even though the aerosols come from different sources. 相似文献