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11.
作者前文所建立的狭窄海湾潮交换的分段模式的合理性由矩形海湾数值计算结果得到验证,并被应用于象山港海湾水的更新周期估算  相似文献   
12.
Kuo 和 Neilson 的分区段潮交换模式基于 Ketchum 潮冲程理论划分区段,并以各断面的回流系数来反映区段间的交换特征,是一个适合于狭长小潮湾沿程水交换近似估算的简捷有效的模式。本研究对该模式中的混合过程物理简化方式作了更为合理的修正,即引进了“内湾各相邻区段间水体混合交换同时发生”的设定。同时,基于对交换率概念的系统分析,本文还对模式中最重要的特征参数回流系数的特性及其简化确定方法作了进一步探讨  相似文献   
13.
长江口岛屿湿地的底栖动物资源研究   总被引:31,自引:1,他引:31  
调查了长江口3个岛屿湿地的底栖动物资源及其生态特征和环境功能。经鉴定底栖无脊椎动物有41种,优势种为河蚬(Corbiculafluminea)、焦河蓝蛤(Potamocorbulaustulata)、缢蛏(Sinonovaculaconstricta)、麂眼螺(Rissoinasp.)、光滑狭口螺(Stenothyraglabra)、谭氏泥蟹(Ilyrplaxdeschampsi)、无齿相手蟹(Sesarmadenaani)和天津厚蟹(Helicetridenstientsinensis)。讨论了底栖动物资源的主要生态学特征及其环境功能,提出了对底栖动物资源合理利用与保护的建议。  相似文献   
14.
中国主要河口沉积物污染及潜在生态风险评价   总被引:102,自引:3,他引:102       下载免费PDF全文
采用单因子指数法和Hakanson生态风险指数法,通过分析长江口、珠江口、鸭绿江口和辽河口沉积物中典型污染要素PCB,Hg,Cd,Pb和As的含量,评价了上述河口沉积物的质量现状,定量确定了诸河口的潜在生态风险程度,结果表明,综合污染程度,长江口<鸭绿江口<珠江口<辽河口,长江口和鸭绿江口典型污染物的平均综合指数Cd分别为0.91和1.02,海域沉积物质量良好;而辽河口Cd污染程度较高(平均污染指数C if为3.38),珠江口As为中等污染参数(平均污染指数C if为1.57),潜在生态风险由低到高的排列顺序为鸭绿江口<长江口<珠江口<辽河口,Cd在辽河口具有较高的潜在生态风险(平均潜在风险参数E ir达101.53),而Hg在珠江口的局部海域具有中等潜在生态风险(潜在风险参数E ir达51.20).  相似文献   
15.
长江南通段污染带影响因素研究   总被引:1,自引:0,他引:1  
通过建立应用贴体坐标系和有限体积法求解的二维水流-水质方程的模型,对潮汐河口南通段污染带的影响因素进行研究。揭示了水深、水面比降、纵向及横向混合系数以及污染物的排放时段与污染带范围的相关关系,并进行了各影响因素的灵敏度分析,对灵敏度大小进行了排序:水深>水面比降>横向混合系数>纵向混合系数>排放时段。  相似文献   
16.
林洁 《交通环保》2004,25(5):29-30
主要介绍了广州港南沙护岸围堰及试挖工程陆域场地软基处理工程及其施工工艺对珠江口水质的影响,以及在施工过程中采取的一些预防措施。  相似文献   
17.
中外大河河口湿地保护与利用初探   总被引:2,自引:0,他引:2  
在分析研究河口湿地形成与演变、河口湿地生态系统特征的基础上 ,对中外大河河口湿地保护与利用现状进行了初步研究 ,以期为中国河口湿地保护与利用提供一定的借鉴和启示  相似文献   
18.
陈祥华 《环境科技》2007,20(1):9-12
运用A Tessier逐步化学连续提取法,研究了珠江口沉积物中各种生物有效性硅:Ⅰ-可交换离子态、Ⅱ-碳酸盐结合态、Ⅲ-铁锰氧化物结合态、Ⅳ-有机质和硫化物结合态.研究表明:表层沉积物中,Ⅲ为优势赋存态.在沉积柱C2中,Ⅲ>Ⅳ>Ⅱ>Ⅰ,Ⅰ、Ⅱ随深度变化无规律性,Ⅲ随深度先升高后下降,Ⅳ表层含量较高,到达一定深度(18 cm左右)后骤降.释放试验表明:振荡在一定时间内有利于硅释放;而盐度对硅释放的影响比较复杂,低盐度(5%以内),随盐度升高,释放量下降.当盐度继续升高时释放量又增加,但高盐度对硅释放影响不大;硅的释放在pH值=3~8范围内随着pH值升高而减少.  相似文献   
19.
The spatial and temporal variations of some trace metals in the surface sediments of Cochin Estuary were analyzed along with their geochemical associations to identify the possible sources, bioavailability and the health risks posed by them. The dominance of kaolinite and suggested that clay minerals distribution is influenced by sediment sorting. Total metal analysis revealed enrichment for Cd, Pb and Zn due to anthropogenic activities. The speciation analysis established that notwithstanding the large availability, carbonate as well as organic and sulfides bound fractions showed negligible associations with most of the metals. Hydrous Fe–Mn oxides appeared to play a major role in controlling the fate and transport of these metals in the sediments of Cochin Estuary. Lower contribution of the residual fractions for Cd (21%–26%), Pb (<60%) and Zn (24%–42%) indicated an obvious increase of other geochemical fractions. Risk assessment analysis revealed that regardless of total concentration, none of the analyzed metals were at safe levels in the estuary as appreciable percentages were found to be associated with mobile geochemical forms. The speciation study conspicuously established that the metals originating from non-geogenic sources are largely associated with the labile fractions and hence are more detrimental to the aquatic biota.  相似文献   
20.
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   
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