共查询到16条相似文献,搜索用时 60 毫秒
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对白马湖3种甲壳动物体内的Pb、Cd、Cu、Cr、Zn的含量进行了调查。结果表明,Cu、Zn含量较高;同种重金属元素在不同种类的软体动物体内含量差异较大,富集能力的次序是克氏原敖虾>日本青沼>秀丽白虾;Cd 和 Pb 在克氏原螯虾体内的不同器官和组织中富集程度不同,其中以肌肉中含量最低,鳃中的含量居中,虾壳中的含量为最高。 相似文献
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为了解洪泽湖水质状况,对2000年洪泽湖富营养化状态和生态特性的调查结果进行了分析,洪泽湖水中总磷、总氮和高锰酸盐指数年均值超《地表水环境质量标准》(GHZB1-1999)中Ⅱ类水标准,超标倍数分别为12倍、10倍和0.24倍;总磷、总氮、透明度年均值超湖库特定项目V类标准,洪泽湖处于中-富营养化状态。对洪泽湖生态特性分析表明,由于洪泽源独特的湖泊形态,“藻型浊水状态“和“泥沙型浊水状态“交替出现,遏制了湖水从高营养盐含量向全面富营养化状态演变,保证了底栖动物的良好生长环境,从而形成了洪泽湖独特的环境生态平衡状态。 相似文献
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基于2015—2020年洪泽湖底栖动物监测数据,利用生物多样性指数模型方法对洪泽湖底栖动物的种类组成及多样性进行分析,并对水质污染状况进行评价,结合广义线性模型方法对洪泽湖生态变化趋势进行预测。结果表明,“十三五”期间洪泽湖底栖动物种类数总体呈上升趋势,生物多样性有所改善,底栖动物优势种均为河蚬。Goodnight-whitely修正指数(GBI)、生物学污染指数(BPI)、生物指数(BI)以及生物耐污敏感性指标指数(BMWP)4种污染状况评价指数对洪泽湖水质评价结果表明,“十三五”期间洪泽湖生态系统状况基本平稳,水质污染状况介于清洁至轻污染之间,龙集镇北的水质状况应引起重视。模型预测结果显示,“十四五”末洪泽湖生物多样性无明显变化,水质持续保持稳定。研究结论可为水生生物多样性保护提供科学依据。 相似文献
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分析了洪泽湖水环境和污染源特征,针对存在的氮磷超标导致湖体富营养化、生态退化以及入境客水污染等主要环境问题,提出制订入湖河流TN标准、控制污染物排放总量、修复湖泊生态、治理客水和强化水质监控等措施,为有效地改善洪泽湖水环境质量,遏制湖泊富营养化趋势提供科学支撑。 相似文献
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基于2001—2011年洪泽湖水质溶解氧、高锰酸盐指数、总氮、氨氮和总磷长期定位监测数据,采用物元分析法研究洪泽湖渔业水质监测站位的优化布设。结果表明,用物元分析法将原来的21个监测站位优化为14个,监测点位优化后对监测结果无明显影响。 相似文献
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在分析乐安河沿程水质的基础上,将乐安河全年按丰水期、平水期、枯水期分别统计进出水量、总重金属及溶解态重金属年出入河通量。结果表明:乐安河总重金属质量浓度及溶解态重金属质量浓度呈先上升后下降趋势,出水水质仍能达到Ⅲ类水质标准;2016年乐安河内新增Cu、Zn、Pb质量分别为36.968 t、51.39 t、0.288 t;乐安河内每年可新增重金属量已逐年减少,大量重金属元素将最终排入鄱阳湖内。 相似文献
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Modeling rhizofiltration: heavy-metal uptake by plant roots 总被引:1,自引:0,他引:1
P. Verma K. V. George H. V. Singh S. K. Singh A. Juwarkar R. N. Singh 《Environmental Modeling and Assessment》2006,11(4):387-394
The discovery of phytoaccumulation potential of plant species has led to its application for remediation of heavy-metal-contaminated soil and wastewater, which is termed as phytoextraction/rhizofiltration. For prediction, analysis, planning and cost-effective design of such systems, mathematical models not only are used as a screening tool but also provide optimal parameters like harvesting time, irrigation schedule, etc. Several laboratory and field scale studies have been carried out in the past, and mathematical expressions have been developed by various researchers for different phenomena like metal adsorption in soil, plant root growth with time, moisture and metal uptake by plant root, moisture movement in unsaturated zone, soil moisture relationship, etc. The complete design of any such phytoremediation program would require the knowledge of behavior of heavy-metal movement in soil, water and plant root system. In this paper, a model for simulating heavy-metal dynamics in soil, water and plant root system is developed and discussed. The governing non-linear partial differential equation is solved numerically by implicit finite difference method using Picard's iterative technique, and the formulation has been illustrated using a characteristic example. The source code is written in MATLAB. 相似文献
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葫芦岛市近岸海域水生动物重金属污染状况的监测 总被引:4,自引:0,他引:4
参考国内外有关生物残毒研究理论 ,对葫芦岛市沿岸海区 ,包括东起笊笠码头 ,西至绥中芷锚湾海滨海水中现存动物体重金属污染状况进行监测和评价。 相似文献
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通过2010年4月采集环鄱阳湖区地表尘土样品,对其重金属污染物进行分析研究,并运用美国环保局推荐的健康风险评价模型对所引起的健康风险做了初步评价。结果表明,地表尘土中Cd、Cr、Cu、Pb、Zn平均含量分别为0.909、74.64、78.37、78.33、213.62 mg/kg,5种重金属平均含量均高于江西土壤背景值。重金属非致癌风险Pb>Cr>Cu>Cd>Zn,均小于非致癌风险阈值1,对人体不会造成健康危害;致癌重金属致癌风险Cr>Cd,均低于癌症风险阈值,表明不具有致癌风险。暴露模型计算表明,重金属慢性每日平均暴露量为手-口接触摄入量>皮肤吸收量>吸入空气量,经手-口直接摄入是地表尘土暴露风险的主要途径。 相似文献
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通过2014年—2017年对洪泽湖12个水质断面定期调查,采用营养状态指数(TLI)综合评价其水体富营养状态,同时应用主成分分析方法(PCA)分析其富营养化状态的时空变化特征。结果表明,洪泽湖70%以上的调查断面水质全年处于轻度富营养化状态,夏季是其富营养化最严重的季节;洪泽湖年内水体水质差异较大,而其水华特征并未呈现明显差异;洪泽湖富营养化很大程度上受制于营养盐的积累程度,并与湖泊透明度呈现极显著的负相关关系(p0.001),与湖水pH值呈现极显著的正相关关系。 相似文献
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In Canada, Environmental Effects Monitoring (EEM) programs exist within two regulations: the Pulp and Paper Effluent Regulations and the newMetal Mining Effluent Regulations under the Canadian Fisheries Act. EEM provides a biological, effects-based feedback loop to assess the effectiveness of technology-based regulations in protecting receiving environments. The promulgation of the Pulp and Paper Effluent Regulations, in 1992, represented a significant step forward in the Canadian regulatory approach by incorporating directly into a regulation a requirement to assess the effects of effluent discharges on receiving environments using proven scientific monitoring methodologies. Similarly, an assessment of the aquatic impacts of mines resulted in recommendations to amend the Metal Mining Effluent Regulations, recently promulgated in 2002, and includes an EEM program as a science-based feedback loop. As such, these regulations recognize the possibility that national, technology-based standards may not necessarily protect all receiving environments because of the diversity and variability of both discharges and receiving sites across the country. Since that time, EEM has improved its flexibility by considering both advances in science and the uniqueness of monitoring sites across Canada to allow the most appropriate and cost-effective monitoring approaches at each site while maintaining national consistency. This paper discusses the use of monitoring under two Canadian regulations to assess effects on aquatic ecosystems. As well, the National EEM approach to maintaining up-to-date scientific practices in a national regulatory program is discussed using examples. 相似文献