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81.
A historical input of trace metals into tidal marshes fringing the river Scheldt may be a cause for concern. Nevertheless, the specific physicochemical form, rather than the total concentration, determines the ecotoxicological risk of metals in the soil. In this study the effect of tidal regime on the distribution of trace metals in different compartments of the soil was investigated. As, Cd, Cu and Zn concentrations in sediment, pore water and in roots were determined along a depth profile. Total sediment metal concentrations were similar at different sites, reflecting pollution history. Pore water metal concentrations were generally higher under less flooded conditions (mean is (2.32 ± 0.08) × 10−3 mg Cd L−1 and (1.53 ± 0.03) × 10−3 mg Cd L−1). Metal concentrations associated with roots (mean is 202.47 ± 2.83 mg Cd kg−1 and 69.39 ± 0.99 mg Cd kg−1) were up to 10 times higher than sediment (mean is 20.48 ± 0.19 mg Cd kg−1 and 20.42 ± 0.21 mg Cd kg−1) metal concentrations and higher under dryer conditions. Despite high metal concentrations associated with roots, the major part of the metals in the marsh soil is still associated with the sediment as the overall biomass of roots is small compared to the sediment.  相似文献   
82.
Background, aim, and scope  Selenium (Se) has been shown to reduce mercury (Hg) bioavailability and trophic transfer in aquatic ecosystems. The study of methylmercury (MeHg) and Se bioaccumulation by plankton is therefore of great significance in order to obtain a better understanding of the estuarine processes concerning Hg and Se accumulation and biomagnification throughout the food web. In the western South Atlantic, few studies have documented trace element and MeHg in fish tissues. No previous study about trace elements and MeHg in plankton has been conducted concerning tropical marine food webs. Se, Hg, and MeHg were determined in two size classes of plankton, microplankton (70–290 μm) and mesoplankton (≥290 μm), and also in muscle tissues and livers of four fish species of different trophic levels (Mugil liza, a planktivorous fish; Bagre spp., an omnivorous fish; Micropogonias furnieri, a benthic carnivorous fish; and Centropomus undecimalis, a pelagic carnivorous fish) from a polluted estuary in the Brazilian Southeast coast, Guanabara Bay. Biological and ecological factors such as body length, feeding habits, and trophic transfer were considered in order to outline the relationships between these two elements. The differences in trace element levels among the different trophic levels were investigated. Materials and methods  Fish were collected from July 2004 to August 2005 at Guanabara Bay. Plankton was collected from six locations within the bay in August 2005. Total mercury (THg) was determined by cold vapor atomic absorption spectrometry (CV-AAS) with sodium borohydride as a reducing agent. MeHg analysis was conducted by digesting samples with an alcoholic potassium hydroxide solution followed by dithizone-toluene extraction. MeHg was then identified and quantified in the toluene layer by gas chromatography with an electron capture detector (GC-ECD). Se was determined by AAS using graphite tube with Pin platform and Zeeman background correction. Results and discussion  Total mercury, MeHg, and Se increased with plankton size class. THg and Se values were below 2.0 and 4.8 μg g−1 dry wt in microplankton and mesoplankton, respectively. A large excess of molar concentrations of Se in relation to THg was observed in both plankton size class and both fish tissues. Plankton presented the lowest concentrations of this element. In fish, the liver showed the highest THg and Se concentrations. THg and Se in muscle were higher in Centropomus undecimalis (3.4 and 25.5 nmol g−1) than in Micropogonias furnieri (2.9 and 15.3 nmol g−1), Bagre spp (1.3 and 3.4 nmol g−1) and Mugil liza (0.3 and 5.1 nmol g−1), respectively. The trophic transfer of THg and Se was observed between trophic levels from prey (considering microplankton and mesoplankton) to top predator (fish). The top predators in this ecosystem, Centropomus undecimalis and Micropogonias furnieri, presented similar MeHg concentrations in muscles and liver. Microplankton presented lower ratios of methylmercury to total mercury concentration (MeHg/THg) (34%) than those found in mesoplankton (69%) and in the muscle of planktivorous fish, Mugil liza (56%). The other fish species presented similar MeHg/THg in muscle tissue (of around 100%). M. liza showed lower MeHg/THg in the liver than C. undecimalis (35%), M. furnieri (31%) and Bagre spp. (22%). Significant positive linear relationships were observed between the molar concentrations of THg and Se in the muscle tissue of M. furnieri and M. liza. These fish species also showed significant inverse linear relationships between hepatic MeHg and Se, suggesting a strong antagonistic effect of Se on MeHg assimilation and accumulation. Conclusions  Differences found among the concentrations THg, MeHg, and Se in microplankton, mesozooplankton, and fishes were probably related to the preferred prey and bioavailability of these elements in the marine environment. The increasing concentration of MeHg and Se at successively higher trophic levels of the food web of Guanabara Bay corresponds to a transfer between trophic levels from the lower trophic level to the top-level predator, suggesting that MeHg and Se were biomagnified throughout the food web. Hg and Se were positively correlated with the fish standard length, suggesting that larger and older fish bioaccumulated more of these trace elements. THg, MeHg, and Se were a function of the plankton size. Recommendations and perspectives  There is a need to assess the role of selenium in mercury accumulation in tropical ecosystems. Without further studies of the speciation of selenium in livers of fishes from this region, the precise role of this element, if any, cannot be verified in positively affecting mercury accumulation. Further studies of this element in the study of marine species should include liver samples containing relatively high concentrations of mercury. A basin-wide survey of selenium in fishes is also recommended.  相似文献   
83.
为了评价互花米草入侵对长江河口湿地土壤碳动态的影响,利用配对的试验设计在长江口崇明东滩湿地的高潮滩和低潮滩各设置1条入侵种互花米草与土著种的配对样线.结果表明,与土著植物相比,互花米草入侵显著增加了长江口湿地的植物碳库、土壤微生物碳、土壤总碳库和有机碳库,而对占土壤总碳库60%以上的无机碳库无显著影响,意味着互花米草入侵导致的土壤总碳库改变主要是通过增加土壤有机碳库来实现的.高潮滩互花米草和芦苇群落的年均土壤呼吸强度分别为(210.02±4.90),(157.79±6.39)mg/(m2·h);低潮滩互花米草和海三棱藨草群落年均土壤CO2排放速率分别为(157.41±5.27),(110.90±5.16)mg/(m2·h),表明互花米草入侵显著增加长江口湿地的土壤呼吸.上述结果意味着互花米草入侵同时增加土壤碳输入和碳输出,但入侵也显著增加了土壤碳库表明入侵增加的土壤碳输入显著高于增加的土壤碳输出.本研究表明互花米草入侵可能会增强了长江河口湿地的土壤碳汇强度和固碳能力.但仍然需要长期系统的监测研究,以便全面定量评估互花米草入侵我国滨海湿地的综合生态影响.  相似文献   
84.
2020年秋季,在闽江河口鳝鱼滩东部的互花米草分布区,由陆向海方向选择互花米草海向入侵前的光滩(MF)、入侵1~2年的互花米草湿地(SAN)和入侵6~7年的互花米草湿地(SA)为研究对象.基于高通量测序技术,探讨了互花米草海向入侵对土壤nir S型反硝化微生物群落结构及多样性的影响.结果表明,变形菌门(Proteobacteria)均是互花米草不同入侵阶段土壤中nir S型反硝化微生物的优势门(90.41%~97.36%),其次是厚壁菌门(Firmicutes)和放线菌门(Actinobacteria),三者在SAN和MF土壤中的丰度均与SA存在显著差异(p<0.05).不同入侵阶段土壤中共有的nir S型反硝化细菌属为假单胞菌属(Pseudomonas)、芽孢杆菌属(Bacillus)、偶氮弧菌属(Azoarcus)、陶厄氏菌属(Thauera)、Sulfurifustis属、副球菌属(Paracoccus)、鲁杰氏菌属(Ruegeria)、红肠命菌属(Rubrivivax)、趋磁螺菌属(Magnetospirillum)和福格斯氏菌属(Vogesella),其中,假单胞菌属是...  相似文献   
85.
渤海大沽河河口底质-水界面耗氧特性   总被引:2,自引:0,他引:2  
通过对天津大沽河河口底质-水界面细菌降解有机物的耗氧模拟实验,研究河口底质生物耗氧机制。探讨了底质-水界面有机物的耗氧特点及总耗氧中生物耗氧和非生物耗氧所占比例。通过底质-水界面细菌种类、数量、有机物和无机物的含量来判断细菌对含碳源、氮源的有机物的作用。结果表明,20℃,0~14h内,实验期间内平水期河口底质-水界面的生物耗氧和非生物耗氧的比例分别为82 1%和17 9%。异养细菌与有机物及营养盐有较好的正相关关系。河口底质-水界面中异养细菌的组成以革兰氏阳性菌为主,占66%,革兰氏阴性菌只占34%。   相似文献   
86.
Increasing micro plastic concentration in the marine environment is a severe threat to the marine ecosystem and indirectly to human society depending on the marine environment. Also, the surface and subsurface water quality parameters are the indicators of the usability of the water sources for human activities. The primary source of micro plastic is the water river systems from land to sea. This study establishes a correlation between water quality parameters and micro plastic concentration to find the most suitable quality parameter for finding the micro plastic concentration in urban coastal estuaries of Chennai coast, Tamil Nadu, India. Twenty samples from Adyar and Cooum estuaries were collected, with ten each on August 2019 and August 2020. They are tested for temperature pH, EC, Turbidity, TDS, DO, BOD, COD, Salinity and micro plastic concentrations. Correlation tests such as Pearson's and Spearman's are performed based on the initial Normality and Homogeneity test. The results show that all the parameters are significantly not correlated with the Micro plastic Concentration, and Micro plastic Concentration is considered an independent factor.  相似文献   
87.
三峡工程于2010年10月26日达到三期正常蓄水位,为了研究三期蓄水后初期长江口的生态环境特征,于2011年4月对长江口水域24个站位进行了浮游动物的采集,分析了其种类、丰度、优势种及其与环境的关系.结果表明,调查海域共发现浮游动物97种(含20种浮游幼体),其中,桡足类33种,水母类13种,介形类5种,毛颚类5种,还有一些其它浮游种类.夜光虫和中华哲水蚤是该水域的绝对优势种.根据各站位浮游动物种类组成及其丰度,采用聚类分析法将该水域的浮游动物分为4组群落区域:外海高盐区、冲淡水和外海水混合区、长江口南支附近、长江口北支附近.物种丰度和多样性在空间分布上呈相反的趋势,在长江冲淡水和外海水的混合水域丰度最高,多样性指数最低.物种与环境的CCA(典范对应分析)显示,影响长江口春季浮游动物群落结构的主要环境因子为盐度、营养盐和水温.  相似文献   
88.
在长江口及崇明岛沿岸渔港采集表层沉积物样品,通过超声萃取-乙基化衍生技术提取沉积物中的丁基锡化合物,用气相色谱-质谱联用仪分析沉积物中的丁基锡赋存特征。结果显示,在长江口的参考点沉积物中均未发现有机锡化合物,而在各调查的渔港沉积物中均检出丁基锡,总浓度在1.6~58.8 ng Sn·g-1(干重,以下同)之间变化。表层沉积物的三丁基锡(TBT)、二丁基锡(DBT)和一丁基锡(MBT)浓度范围分别为ND~28.7 ng Sn·g-1,ND~22.1 ng Sn·g-1,1.6~8 ng Sn·g-1。其中,堡镇港TBT污染水平最高;老滧港和奚家港口门处沉积物中TBT浓度与新河港差不多(平均为17.2 ng Sn·g-1),而在港口内部沉积物中均未检出TBT,仅有MBT残存。检出TBT的样点,均在大型渔船码头、客运游艇码头或船厂附近,其浓度均超过澳大利亚和新西兰推荐的TBT沉积物质量基准(ISQG)触发值,即5 ng Sn·g-1。同时各样点暴露浓度(PECsed)与预测无效应浓度(PNECsed)的商值均大于1,SQG和PECsed/PNECsed两个方面均反映了崇明岛渔业港口沉积物中的TBT存在生态风险。综上,长江口地区沉积物中有机锡化合物形态和浓度差异很大,码头或船厂附近沉积物中有机锡污染问题值得优先关注。  相似文献   
89.
黄河三角洲翅碱篷湿地硫化氢和羰基硫排放动态研究   总被引:5,自引:0,他引:5  
利用静态箱/气相色谱法,观测了生长季(5~10月)黄河三角洲翅碱篷湿地H2S和COS的释放动态.结果表明,H2S、COS的排放通量具有明显的季节和日变化规律,在生长季,黄河三角洲翅碱篷湿地是H2S和COS的释放源,其中H2S的平均释放通量为4.97μg·(m2·h)-1,COS的平均释放通量为0.92μg·(m2·h)-1.在探讨的环境因子中,不同环境因子对翅碱篷湿地H2S和COS释放通量的影响不同,其中土壤SO2-4含量是影响H2S释放通量的主要因素,土壤含水量是影响COS释放通量的主要因素.含硫气体的排放可能还受到其它因素如植物、潮汐状况等多种因素的影响.  相似文献   
90.
对闽江河口区不同盐度短叶茳芏沼泽湿地沉积物中磷的赋存形态和分布特征进行了研究,探讨了河口沉积物中磷的来源及其影响因子.结果表明:1闽江河口湿地沉积物全磷(TP)含量介于607.91~807.60 mg·kg-1,平均值为726.29 mg·kg-1;有机磷(OP)含量介于120.44~166.63 mg·kg-1,平均值为139.43 mg·kg-1,约占TP的18.93%;无机磷(IP)含量介于479.65~647.56 mg·kg-1,平均值为586.86 mg·kg-1,约占TP的81.07%,IP是磷的主要赋存形态.2IP中,赋存形态以闭蓄态磷(O-P)和铁结合态磷(Fe-P)为主,分别占IP的39.97%和32.92%;其次是钙结合态磷(Ca-P)和铝结合态磷(Al-P),分别占IP的17.89%、9.22%.3在空间分布上,TP、OP、IP含量在由海向陆方向整体呈先降低后递增趋势;IP不同赋存形态在空间上也整体上呈现出以上趋势;垂直方向上,总体都表现为随土层深度波动降低,这在一定程度上反映了近年来河口湿地环境污染的加剧.4磷的赋存形态和空间分布特征是电导率、pH、容重、含水率和粒度等多因子综合作用的结果.  相似文献   
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