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81.
作为化学品风险管理中的重要环境行为参数,生物蓄积性不仅是分类、标签、评价和控制环境风险的基本指标,也是鉴别化学物质持久性和环境危害性的重要标准。2012年OECD颁布了新的生物蓄积测试方法,由此给生物蓄积优化策略带来了全新的挑战,原有的判别优化策略的方法需要作出新的发展与调整。针对新生物蓄积测试方法引发的优化策略挑战,通过层次研究及文献分析,归纳了基于OECD新305生物蓄积测试标准的优化测试策略,为优化、简化测试及化学品安全管理提供了科学基础。  相似文献   
82.
珠江三角洲养殖鱼塘水体中重金属污染特征和评估   总被引:2,自引:0,他引:2  
为了解珠江三角洲主要养殖环境中重金属含量及潜在生态危害程度,用电感藕合等离子质谱法和原子荧光法测定了肇庆、广州、惠州和茂名4市14个样点沉积物中7种元素的水体及底泥总量,并对底泥中主要重金属污染状况及潜在生态风险进行了评价。结果表明:养殖鱼塘水体中Cr质量浓度范围是nd-0.1011 mg·L-1,超标率为7.1%,Cu质量浓度范围为nd-0.1438 mg·L-1,超标率为64.3%,As质量浓度范围是0.0112-0.0812 mg·L-1,超标率为24.1%,Hg质量浓度范围是0.00004-0.00458 mg·L^-1,超标率为35.7%,Pb质量浓度范围为nd-0.0973 mg·L^-1,超标率为6.8%,其余Ni、Zn和Cd质量浓度范围分别为nd-0.0218、nd-0.0232和nd-0.00319 mg·L^-1,均未超渔业水质标准;底泥中重金属元素Cr、Cu、Zn、As、Hg、Cd和Pb的平均值分别为83.86、46.19、242.16、32.38、0.64、1.00和60.06 mg·kg^-1,地积累指数评价结果显示,表层沉积物重金属污染程度顺序为Cd>Hg>Zn>Pb>As>Cu>Cr,其中,Cd污染程度为中-强,是底泥污染最严重的元素。潜在生态风险指数分析,单项潜在生态风险指数生态风险均值排列顺序为 Hg>As>Cd>Pb>Cu>Zn>Cr。对区域综合潜在生态风险指数RI的贡献率最大的元素为Hg、As和Cd。4个市底泥潜在生态风险综合指数(RI)比较,惠州(290.13)>广州(240.54)>茂名(193.23)>肇庆(116.40)。Hg和Cd是该水域污染和潜在生态风险最大的元素。  相似文献   
83.
长江下游重点江段水质污染及对鱼类的毒性影响   总被引:6,自引:0,他引:6  
通过对长江下游安庆、南京、镇江、南通4江段水质污染及其对鱼类毒性影响的调查监测可发现,长江下游江段主航道水质较好,符合国家地面水Ⅱ类水质标准.但近岸带水质由于受污染带的影响,水质污染较严重,其主要污染物为石油类和挥发酚等.上述这些污染物质对鱼类具有一定的毒性影响,其不但可引起鱼类的急性中毒,而且可诱发鱼类产生微核,并对鼠伤寒沙门氏菌TA98菌株表现出一定的致突变性.同时在上述几个江段鱼体内可检出较高的蓄积性污染物的残留量.研究结果显示,长江下游江段正在遭受沿江诸多工业废水的污染,尤其是污染带的作用,并且这种污染对区域性渔业有一定的影响  相似文献   
84.
基塘水产养殖对水域氮磷的影响   总被引:1,自引:0,他引:1  
基塘系统是一种相对封闭的人工生态系统,其鱼塘子系统中的营养盐-氮、磷既是鱼类生长的必需元素,又是水体中的限制性元素。氮、磷的变化受塘中水生生物活动(如光合作用、呼吸、排泄)、鱼类粪便、饲料投加、底泥等的影响,文中对基塘中氮磷的变化及影响因子进行探讨。  相似文献   
85.
在长沙县百倍冲水库进行多年的试验研究结果表明,开发利用库内长期荒芜的大片消落区种植黑麦草;荒山堤坝上种植扁穗牛鞭草、岸杂一号狗牙根、皇草、幼林间种植鸡脚草、拉丁鲁白三叶等饲草配套养鱼和防止水土流失、防淤减积试验获得成功。库内鲜鱼产量由种草前常年1000kg提高到7000~8000kg,泥砂淤积量每年减少0.516×104m3,经济生态效益显著。  相似文献   
86.
钱利红  王瑛  徐佳 《能源环境保护》2011,25(6):17-20,23
针对水体富营养化问题,通过单一暴露和联合暴露方式研究两种MCs四种暴露剂量(0.1,1,10,100μg/L)下对鱼体的免疫毒效应。结果发现,不同剂量MCLR和MCRR单一暴露都能使鲫鱼淋巴细胞发生死亡,呈现明显的剂量效应和时间效应关系。且MCLR对鱼体的毒性相对McRR要更显著;MCLR和McRR复合暴露对鱼体淋巴细胞的毒性效应表现为协同作用,且随着毒素浓度的增加,其毒性效应差异显著性也随之升高,故而鱼体的免疫系统造成重大的影响,因此应当加强控制藻毒素在水体中的复合污染。  相似文献   
87.
Small body size is generally correlated with r‐selected life‐history traits, including early maturation, short‐generation times, and rapid growth rates, that result in high population turnover and a reduced risk of extinction. Unlike other classes of vertebrates, however, small freshwater fishes appear to have an equal or greater risk of extinction than large fishes. We explored whether particular traits explain the International Union for Conservation of Nature (IUCN) Red List conservation status of small‐bodied freshwater fishes from 4 temperate river basins: Murray‐Darling, Australia; Danube, Europe; Mississippi‐Missouri, North America; and the Rio Grande, North America. Twenty‐three ecological and life‐history traits were collated for all 171 freshwater fishes of ≤120 mm total length. We used generalized linear mixed‐effects models to assess which combination of the 23 traits best explained whether a species was threatened or not threatened. We used the best models to predict the probability of 29 unclassified species being listed as threatened. With and without controlling for phylogeny at the family level, small body size—among small‐bodied species—was the most influential trait correlated with threatened species listings. The k‐folds cross‐validation demonstrated that body size and a random effect structure that included family predicted the threat status with an accuracy of 78% (SE 0.5). We identified 10 species likely to be threatened that are not listed as such on the IUCN Red List. Small body size is not a trait that provides universal resistance to extinction, particularly for vertebrates inhabiting environments affected by extreme habitat loss and fragmentation. We hypothesize that this is because small‐bodied species have smaller home ranges, lower dispersal capabilities, and heightened ecological specialization relative to larger vertebrates. Trait data and further model development are needed to predict the IUCN conservation status of the over 11,000 unclassified freshwater fishes, especially those under threat from proposed dam construction in the world's most biodiverse river basins.  相似文献   
88.
It has been frequently demonstrated that mercury (Hg) concentrations in fish rise in newly constructed hydroelectric reservoirs in the Northern Hemisphere. In the present work, we studied whether similar effects take place also in a tropical upland reservoir during impoundment and discuss possible causes and implications. Total Hg concentrations in fish and several soil and water parameters were determined before and after flooding at Rio Manso hydroelectric power plant in western Brazil. The Hg concentrations in soil and sediment were within the background levels in the region (22-35 ng g(-1) dry weight). There was a strong positive correlation between Hg and carbon and sulphur in sediment. Predatory fish had total Hg concentrations ranging between 70 and 210 ng g(-1) f.w. 7 years before flooding and between 72 and 755 ng g(-1) f.w. during flooding, but increased to between 216 and 938 ng g(-1) f.w. in the piscivorous and carnivorous species Pseudoplatystoma fasciatum, cachara, and Salminus brasiliensis, dourado, 3 years after flooding. At the same time, concentrations of organic carbon in the water increased and oxygen concentrations decreased, indicating increased decomposition and anoxia as contributing to the increased Hg concentrations in fish. The present fish Hg concentrations in commonly consumed piscivorous species are a threat to the health of the population dependent on fishing in the dam and downstream river for sustenance. Mercury exposure can be reduced by following fish consumption recommendations until fish Hg concentrations decrease to a safe level.  相似文献   
89.
Conservation and management of marine biodiversity depends on biomonitoring of marine habitats, but current approaches are resource-intensive and require different approaches for different organisms. Environmental DNA (eDNA) extracted from water samples is an efficient and versatile approach to detecting aquatic animals. In the ocean, eDNA composition reflects local fauna at fine spatial scales, but little is known about the effectiveness of eDNA-based monitoring of marine communities at larger scales. We investigated the potential of eDNA to characterize and distinguish marine communities at large spatial scales by comparing vertebrate species composition among marine habitats in Qatar, the Arabian Gulf (also known as the Persian Gulf), based on eDNA metabarcoding of seawater samples. We conducted species accumulation analyses to estimate how much of the vertebrate diversity we detected. We obtained eDNA sequences from a diverse assemblage of marine vertebrates, spanning 191 taxa in 73 families. These included rare and endangered species and covered 36% of the bony fish genera previously recorded in the Gulf. Sites of similar habitat type were also similar in eDNA composition. The species accumulation analyses showed that the number of sample replicates was insufficient for some sampling sites but suggested that a few hundred eDNA samples could potentially capture >90% of the marine vertebrate diversity in the study area. Our results confirm that seawater samples contain habitat-characteristic molecular signatures and that eDNA monitoring can efficiently cover vertebrate diversity at scales relevant to national and regional conservation and management.  相似文献   
90.
Aquatic ecosystems around the world, lake, estuaries and coastal areas are increasingly impacted by anthropogenic pollutants through different sources such as agricultural, industrial and urban discharges, atmospheric deposition and terrestrial drainage. Lake Victoria is the second largest lake in the world and the largest tropical lake. Bordered by Tanzania, Uganda, and Kenya, it provides a livelihood for millions of Africans in the region. However, the lake is under threat from eutrophication, a huge decline in the number of native fish species caused by several factors including loss of biodiversity, over fishing and pollution has been recently documented. Increasing usage of pesticides and insecticides in the adjacent agricultural areas as well as mercury contamination from processing of gold ore on the southern shores are currently considered among the most emergent phenomena of chemical contamination in the lake. By the application of globally consistent and comprehensive geospatial data-sets based on remote sensing integrated with information on heavy metals accumulation and insecticides exposure in native and alien fish populations, the present study aims at assessing the environmental risk associated to the contamination of the Lake Victoria water body on fish health, land cover distribution, biodiversity and the agricultural area surrounding the lake. By the elaboration of Landsat 7 TM data of November 2002 and Landsat 7 TM 1986 we have calculated the agriculture area which borders the Lake Victoria bay, which is an upland plain. This process has greatly enhanced nutrient loading to the soil, which is subsequently transported to the lake by rain or as dry fall. All the data has been insert in the Geographical information System (ARCGIS) to be upgraded and consulted. Heavy metals in fish fillets showed concentrations rather low except for mercury being higher than others as already described in previous investigations. In the same tissue, cholinesterases activity (ChE) as an indicator of insecticides exposure showed significant differences among fish species in both activity and sensitivity of selected inhibitor insecticides. This integrated approach aims at identifying and quantifying selected aquatic environmental issues which integrated with monitoring techniques such as contaminant concentrations and biological responses to insecticides exposure in fish populations will provide a scientific basis for aquatic zones management and assist in policy formulations at the national and international levels.  相似文献   
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