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1.
The Republican River Basin of Colorado,Nebraska, and Kansas lies in a valley which contains PierreShale as part of its geological substrata. Selenium is anindigenous constituent in the shale and is readily leached intosurrounding groundwater. The Basin is heavily irrigated throughthe pumping of groundwater, some of which is selenium-contaminated, onto fields in agricultural production. Water,sediment, benthic invertebrates, and/or fish were collected from46 sites in the Basin and were analyzed for selenium to determinethe potential for food-chain bioaccumulation, dietary toxicity,and reproductive effects of selenium in biota. Resultingselenium concentrations were compared to published guidelines orbiological effects thresholds. Water from 38% of the sites (n = 18) contained selenium concentrations exceeding 5 g L-1, which is reported to be a high hazard for selenium accumulation into the planktonic food chain. An additional 12 sites (26% of the sites) contained selenium in water between 3–5 g L-1, constituting a moderate hazard. Selenium concentrations in sedimentindicated little to no hazard for selenium accumulation fromsediments into the benthic food chain. Ninety-five percent ofbenthic invertebrates collected exhibited selenium concentrationsexceeding 3 g g-1, a level reported as potentially lethal to fish and birds that consume them. Seventy-five percent of fish collected in 1997, 90% in 1998, and 64% in 1999 exceeded 4 g g-1selenium, indicating a high potential for toxicity andreproductive effects. However, examination of weight profilesof various species of collected individual fish suggestedsuccessful recruitment in spite of selenium concentrations thatexceeded published biological effects thresholds for health andreproductive success. This finding suggested that universalapplication of published guidelines for selenium may beinappropriate or at least may need refinement for systems similarto the Republican River Basin. Additional research is needed todetermine the true impact of selenium on fish and wildliferesources in the Basin.  相似文献   
2.
The potential of kenaf (Hibiscus cannabinus L.) for phytoremediation of lead (Pb) on sand tailings was investigated.A pot experiment employing factorial design with two main effects of fertilizer and lead was conducted in a nursery using sand tailings from an ex-tin mine as the growing medium.Results showed that Pb was found in the root,stem,and seed capsule of kenaf but not in the leaf.Application of organic fertilizer promoted greater biomass yield as well as higher accumulation capacity of Pb.In Pb-spike...  相似文献   
3.
北京市菜地土壤和蔬菜镉含量及其健康风险分析   总被引:81,自引:3,他引:81  
通过对北京市蔬菜和菜地土壤镉含量状况进行大规模调查,研究了蔬菜和土壤镉含量及其健康风险,并筛选出抗镉污染能力强的蔬菜品种.根据蔬菜的消费量同时兼顾品种多样性的原则,在北京市规模化蔬菜栽培基地(采集蔬菜及土壤样品)和蔬菜批发市场(蔬菜样品)共采集97种蔬菜363个样品和54个土壤样品.研究发现:北京市菜地土壤镉积累明显,其范围为0.091~0.971 mg·kg-1,其算术均值和Box-Cox均值分别为0.229和0.187 mg·kg-1,其中有两个样点土壤镉含量(0.971和0.886 mg·kg-1)超过<土壤环境质量标准>(GB15618-1995)中的二级标准(0.6 mg·kg-1);北京市蔬菜镉含量范围、算术均值和Box-Cox均值分别为0.1~101.4、12.8和10.0μg·kg-1;叶菜类和根茎类蔬菜的镉平均含量显著高于瓜果类和特菜;北京市本地产蔬菜与市售外地产蔬菜的镉含量没有显著差异;裸露地蔬菜镉含量显著高于设施蔬菜;小白菜、辣椒、茄子、萝卜和大白菜镉富集系数较高,其抗镉污染能力较弱,而冬瓜、黄瓜、叶甜菜、大葱、云架豆、甘蓝、西红柿等镉富集系数较低,其抗镉污染能力较强.北京市居民每人从蔬菜中摄入镉的量为12 2μg·d-1,蔬菜镉对北京市部分人群存在一定的潜在健康风险.  相似文献   
4.
高选择性基因工程菌E.coli SE5000生物富集水体中的镍离子   总被引:4,自引:0,他引:4  
利用基因工程菌E.coli SE5000对水体中的镍离子进行富集研究.菌体细胞对Ni^2 的富集速率很快,富集过程满足Langmuir等温线模型.经基因改造的基因工程菌不仅最大镍富集容量与原始宿主菌相比增加了4倍多,而且对pH值的变化呈现出更强的适应性.对离子强度及其它共存重金属离子的影响的实验结果表明:Na^ ,Ca^2 ,Cd^2 ,Pb^2 的影响较小,但Mg^2 ,Hg^2 ,Cr^3 和Cu^2 所引起的负面效应较大.金属螯合剂EDTA的存在对基因工程菌的富集行为影响很大.  相似文献   
5.
Bioaccumulation of heavy metals in fishes from Taihu Lake, China   总被引:9,自引:0,他引:9  
The Cr,Zn,Cu,Cd,Pb contents were determined in Cyprinus carpio Linnaeus,Carassius auratus Linnaeus,Hypophthalmichthys molitrix and Aristichthys nobilis,which were caught from Meiliang Bay,Taihu Lake,a large,shallow and eutrophic lake of China.The results showed that:(1)the Cr,Cu,Pb,Cd contents in the edible parts of the four fish species were much lower than Chinese Food Health Criterion(1994),but the Zn contents were higher than the Criterion;(2)Cd contents were the highest in the liver of fish,Pb contents were almost the same in all organs of fish,Cr contents mainly enriched in the skin and gonads,Zn contents were the highest in the gonad(♀),and Cu contents were the highest in the liver;(3)the total metal accumulation was the greatest in the liver and the lowest in the muscle.The total metal accumulation was the highest in C.auratus L.This investigation indicated that fish products in Taihu Lake were still safe for human consumption,but the amount consumed should be controlled under the Chinese Food Health Criterion to avoid excessive intake of Zn.  相似文献   
6.
城市交通大气与土壤重金属对小蜡生物富集作用的影响   总被引:2,自引:2,他引:2  
选择合肥市区交通干道、城郊公路和森林公园作为具有不同交通流量的路段,通过火焰原子吸收法,测定土壤和小蜡叶片中的w(Cu),w(Zn),w(Pb),w(Cd)和w(Cr);运用统计方法研究土壤和小蜡叶片中重金属含量的差异和相关性,以及与城市交通大气污染的关系.结果表明:市区交通干线和城郊公路的土壤中w(Cu),w(Zn),w(Pb),w(Cd)和w(Cr)均高于对照点(森林公园),且市区交通干线与对照点的土壤中重金属含量差异显著;小蜡叶片对5种重金属富集量与土壤中的相应重金属含量没有明显相关性,这表明叶片富集的重金属主要来源于道路交通产生的大气重金属污染物,而非主要从土壤中吸收获得;小蜡叶片对大气中的Pb和Cr的富集能力较强,其生物浓缩系数分别为5.50和3.43,说明小蜡可能是Pb和Cr的良好指示植物,可用于环境监测.  相似文献   
7.
• Hg bioaccumulation by phytoplankton varies among aquatic ecosystems. • Active Hg uptake may exist for the phytoplankton in aquatic ecosystems. • Impacts of nutrient imbalance on food chain Hg transfer should be addressed. The bioaccumulation of mercury (Hg) in aquatic ecosystem poses a potential health risk to human being and aquatic organism. Bioaccumulations by plankton represent a crucial process of Hg transfer from water to aquatic food chain. However, the current understanding of major factors affecting Hg accumulation by plankton is inadequate. In this study, a data set of 89 aquatic ecosystems worldwide, including inland water, nearshore water and open sea, was established. Key factors influencing plankton Hg bioaccumulation (i.e., plankton species, cell sizes and biomasses) were discussed. The results indicated that total Hg (THg) and methylmercury (MeHg) concentrations in plankton in inland waters were significantly higher than those in nearshore waters and open seas. Bioaccumulation factors for the logarithm of THg and MeHg of phytoplankton were 2.4–6.0 and 2.6–6.7 L/kg, respectively, in all aquatic ecosystems. They could be further biomagnified by a factor of 2.1–15.1 and 5.3–28.2 from phytoplankton to zooplankton. Higher MeHg concentrations were observed with the increases of cell size for both phyto- and zooplankton. A contrasting trend was observed between the plankton biomasses and BAFMeHg, with a positive relationship for zooplankton and a negative relationship for phytoplankton. Plankton physiologic traits impose constraints on the rates of nutrients and contaminants obtaining process from water. Nowadays, many aquatic ecosystems are facing rapid shifts in nutrient compositions. We suggested that these potential influences on the growth and composition of plankton should be incorporated in future aquatic Hg modeling and ecological risk assessments.  相似文献   
8.
Analyzing and understanding the effects of ambient pollution on plants is getting more and more attention as a topic of environmental biology.A method based on synchrotron radiation X-ray fluorescence and X-ray absorption near edge structure spectroscopy was established to analyze the sulfur concentration and speciation in mature camphor tree leaves (CTLs),which were sampled from 5 local fields in Shanghai,China.Annual SO2 concentration,SO42-concentration in atmospheric particulate,SO42-and sulfur concentration in soil were also analyzed to explore the relationship between ambient sulfur sources and the sulfur nutrient cycling in CTLs.Total sulfur concentration in mature camphor tree leaves was 766-1704 mg/kg.The mainly detected sulfur states and their corresponding compounds were +6 (sulfate,include inorganic sulfate and organic sulfate),+5.2 (sulfonate),+2.2 (suloxides),+0.6 (thiols and thiothers),+0.2 (organic sulfides).Total sulfur concentration was strongly correlated with sulfate proportion with a linear correlation coefficient up to 0.977,which suggested that sulfur accumulated in CTLs as sulfate form.Reduced sulfur compounds (organic sulfides,thiols,thioethers,sulfoxide and sulfonate) assimilation was sufficed to meet the nutrient requirement for growth at a balanced level around 526 mg/kg.The sulfate accumulation mainly caused by atmospheric sulfur pollution such as SO2 and airborne sulfate particulate instead of soil contamination.From urban to suburb place,sulfate in mature CTLs decreased as the atmospheric sulfur pollution reduced,but a dramatic increase presented near the seashore,where the marine sulfate emission and maritime activity pollution were significant.The sulfur concentration and speciation in mature CTLs effectively represented the long-term biological accumulation of atmospheric sulfur pollution in local environment.  相似文献   
9.
全氟化合物(perfluorinated compounds,PFCs)近年来得到国内外广泛关注,针对工业源排放区域的环境暴露、来源解析以及动物层面的生态效应有较多研究,但对于普遍存在于非工业源(生活源)的城市河道PFCs暴露及水生植物富集等研究较为缺乏。本研究选择位于北京北部东西贯通的城市河道——清河水体为对象,分析结果表明,清河水体中12种目标PFCs均有检出(总量最高为65.45 ng·L-1),并以全氟丁烷磺酸盐(perfluorobutane sulfonate,PFBS)为主(最高达45.63 ng·L-1);6种水生植物(篦齿眼子菜、黑藻、金鱼藻、芦苇、菖蒲及水葱)的富集物质均以全氟辛烷磺酸盐(perfluorooctane sulfonate,PFOS)和全氟辛酸(perfluorooctanoic acid,PFOA)为主,沉水植物中金鱼藻对于PFOS的蓄积效果优于黑藻及篦齿眼子菜,挺水植物中根部PFCs含量高于茎叶,根部PFOA及PFOS含量高于茎叶,但全氟丁酸(perfluorobutanoic acid,PFBA)含量茎叶则高于根部。整体来看,尽管芦苇、菖蒲和水葱3种挺水植物尚不能作为PFCs的超富集植物,但其根部对PFCs均有显著的吸收效果,具有一定的生态修复潜质;沉水植物中金鱼藻是北方自然河道的优势物种,且对PFOS具有显著的富集效应,因此有必要进一步探索其PFCs生物指示和生态修复功能。  相似文献   
10.
Cu, Cr, Mn, Ni and Zn contents were quantified for three wild-growing edible species of macrofungi (Boletus edulis, Macrolepiota procera and Cantharellus cibarius) and underlying soil samples collected at forest sites in Lubuskie voivodeship, Poland. The total concentration of the analysed elements was determined using an ASA iCE 3000 series atomic absorption spectrometer. The analysis found significant differences in bioaccumulation between species and differing distributions of trace elements in the caps and stalks of fruiting bodies. Bioaccumulation factors revealed that Zn and Cu are the most bioaccumulated elements, whereas Cr and Mn are excluded from bioaccumulation. Macrolepiota procera showed the highest bioaccumulation of Cu, and Zn is accumulated to the greatest extent by Boletus edulis. A few significant differences (p≤0.05) between the examined species were observed.  相似文献   
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