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1.
羊角月芽藻摄取磷形态的动力学研究   总被引:4,自引:0,他引:4  
吴重华  王晓蓉 《环境化学》1998,17(5):417-421
将湖水中的磷分成总溶解磷,溶解反应磷,总反应磷、溶解的水解性磷,溶解的光解性磷。研究其在羊角月芽过程中的变化。  相似文献   
2.
南四湖微山湖区沉积物磷形态分布特征   总被引:15,自引:8,他引:15  
为了解南四湖污染底泥磷形态分布规律,对南四湖微山湖区0~25 cm沉积物分层进行了磷形态连续提取.结果表明,湖区沉积物中Ex-P、Al-P、Fe-P、Oc-P、Ca-P、De-P和Org-P平均含量分别为5.62、 4.08、 12.25、 13.34、 116.67、 232.36和396.79 mg/kg,不同形态磷含量次序为:Al-P<Ex-P<Fe-P<Oc-P<Ca-P<De-P<Org-P.沉积物中各形态磷含量在垂直方向上呈现明显的规律性,易交换态磷(Ex-P)、铁结合态磷(Fe-P)、闭蓄态磷(Oc-P)、有机磷(Org-P)含量随深度增加而逐渐降低,而铝结合态磷(Al-P)、钙结合态磷(Ca-P)、碎屑磷(De-P)含量则呈逐渐增加趋势.Sum1(Ex-P、Al-P、Fe-P之和)与上覆水PO3-4浓度呈显著正相关,其中Fe-P与水体磷酸盐含量关系相对比较密切,其相关系数高达0.72.沉积物磷形态在空间分布上,Oc-P、Ca-P、De-P 等惰性磷的差异性小于Ex-P、Al-P、Fe-P等潜在活性磷,Org-P介于二者之间.  相似文献   
3.
三江平原水田灌溉-排水过程中铁形态变化及输出贡献   总被引:4,自引:1,他引:4  
采集三江平原农田灌溉地下水、稻田积水、渠系排水、土壤侧渗水,并采用切向超滤技术分离水体中不同形态铁,分析在灌溉排水及地下侧渗水中铁的迁移特征,并估算水田排水中铁的输出贡献.结果表明,在灌溉排水过程中,铁主要以低分子量形态和酸性不稳定形态迁移,地下水中Fe2+含量占可溶态铁的80.45%;地下水抽取到稻田后Fe2+含量显著降低,络合态铁含量升高,稻田积水中络合态铁占可溶态铁的75.50%;稻田积水排入渠系后,络合态铁中不稳定弱配位铁含量降低13.58%,其他铁形态变化不大.稻田积水通过地下侧渗进入渠系,随侧渗水体深度加深,Fe2+含量升高,络合态和胶体态铁含量降低,地下侧渗水向渠系水主要提供络合态和胶体态铁.三江平原湿地水田化改变了水体中铁的输出形态,同时,排水过程中铁的输出也对河流形成补给,水田灌溉排水过程可溶态铁的输出通量约为390kg.a-.1km-2,输出系数为0.186,灌溉-排水过程中残留在稻田土壤中铁的量约为1460kg.a-.1km-2,残留在排水渠系土壤中铁的量约为250kg.a-.1km-2,这对三江平原水土环境产生了深远影响.  相似文献   
4.
中美淡水生物区系中汞物种敏感度分布比较   总被引:6,自引:1,他引:6  
通过收集无机汞对中国与美国淡水水生生物的毒性数据,构建了脊椎动物(包括鱼类)、无脊椎动物(包括节肢动物和非节肢无脊椎动物)及所有物种对汞的物种敏感度分布(SSD:species sensitivity distributions)曲线,并在此基础上对中国和美国不同类别生物对汞的敏感性分布进行了分析.结果表明:中国与美国各类生物及所有物种对汞的SSD敏感性分布曲线没有显著差异.然而,中国淡水水生物种对汞短期暴露的HC5(hazardous concentration for 5% of the species)较美国淡水物种的阈值小,尤其是非节肢无脊椎动物,汞对美国非节肢动物的HC5值是我国对应物种的7.4倍.在保护95%的物种水平下,中国不同类别试验生物对汞的敏感性排序为无脊椎动物>脊椎动物,其中节肢动物>非节肢无脊椎动物>鱼类;而对应的美国生物对汞的敏感性排序无脊椎动物>脊椎动物,其中节肢动物>鱼类>非节肢无脊椎动物.另外,中美所有节肢动物对汞的敏感性要强于所有鱼类和所有非节肢无脊椎动物.所以在使用所有物种推导水质基准时应考虑其中各类别物种敏感度分布的影响,且需要注意采用美国淡水水生物种推导的水质基准可能会对我国淡水水生物种造成"保护不足".  相似文献   
5.
水生生物对三唑磷的物种敏感度分布研究   总被引:1,自引:0,他引:1  
针对水环境中日益严重的有机磷农药污染问题,选择广泛使用的三唑磷作为研究对象,利用其对水生生态系统中不同营养层次生物物种的半数效应浓度(median effective concentration, EC50),建立了基于对数-逻辑斯蒂分布的水生生物物种敏感度分布(species sensitivity distribution, SSD)模型,并采用概率图和吻合度检验方法对该模型进行了检验和评价.结果表明,水生生物对三唑磷的 SSD 服从对数-逻辑斯蒂分布,其参数为 α=-0.4788±0.2381,β=0.7546±0.1078.基于该 SSD 模型,获得三唑磷的 5% 危害浓度(hazardous concentration for 5% of the species, HC5)值为 1.992×10-3 mg/L,并推导出三唑磷的最大浓度基准值(criteria maximum concentration, CMC)值为 9.96×10-4 mg/L.对 HC5、CMC 与单一物种的安全浓度的比较研究指出,基于 SSD 方法制定环境质量标准更为严格,也更接近于真实的生态环境.另外,根据渤海莱州湾海域中三唑磷的监测数据,预测了其对物种的潜在影响比例(potentially affected fraction, PAF)为 0.36%,对该水域生态环境的影响处于较低风险水平.  相似文献   
6.
我国淡水生物氨氮基准研究   总被引:23,自引:4,他引:23  
闫振广  孟伟  刘征涛  余若祯 《环境科学》2011,32(6):1564-1570
主要采用美国水生生物基准技术,结合美国氨氮水质基准数学模型,利用我国水生生物的氨氮毒性数据,对我国淡水生物氨氮基准进行了研究.共搜集了35种淡水生物的氨氮急性毒性数据和7种慢性毒性数据,得出的氨氮水质基准表现为以水体pH值和温度为自变量的函数,在pH 6.5~9.0、温度0~30℃的取值范围内,我国氨氮急性和慢性基准的...  相似文献   
7.
喀喇昆仑-昆仑山昆虫区系   总被引:3,自引:0,他引:3  
喀喇昆仑-昆仑山昆虫区系属于典型的古北区性质,古北种占53.93%,中亚成分占16.85%,北坡受中亚成分影响大,南坡占有多数的高山成分。这一地域昆虫区系的形成和演替与其地质历史密切相关。由于印度板块不断向北挤压,喀喇昆仑-昆仑山强烈抬升,随着塔里木盆地的形成,地域性的昆虫区系便产生了,并有其特有成分的分化:亚种级的分化,种级的分化甚至属级的分化  相似文献   
8.
In the global campaign against biodiversity loss in forest ecosystems, land managers need to know the status of forest biodiversity, but practical guidelines for conserving biodiversity in forest management are lacking. A major obstacle is the incomplete understanding of the relationship between site primary productivity and plant diversity, due to insufficient ecosystem‐wide data, especially for taxonomically and structurally diverse forest ecosystems. We investigated the effects of site productivity (the site's inherent capacity to grow timber) on tree species richness across 19 types of forest ecosystems in North America and China through 3 ground‐sourced forest inventory data sets (U.S. Forest Inventory and Analysis, Cooperative Alaska Forest Inventory, and Chinese Forest Management Planning Inventory). All forest types conformed to a consistent and highly significant (P < 0.001) hump‐shaped unimodal relationship, of which the generalized coefficients of determination averaged 20.5% over all the forest types. That is, tree species richness first increased as productivity increased at a progressively slower rate, and, after reaching a maximum, richness started to decline. Our consistent findings suggest that forests of high productivity would sustain few species because they consist mostly of flat homogeneous areas lacking an environmental gradient along which a diversity of species with different habitats can coexist. The consistency of the productivity–biodiversity relationship among the 3 data sets we examined makes it possible to quantify the expected tree species richness that a forest stand is capable of sustaining, and a comparison between the actual species richness and the sustainable values can be useful in prioritizing conservation efforts.  相似文献   
9.
Conserving or restoring landscape connectivity between patches of breeding habitat is a common strategy to protect threatened species from habitat fragmentation. By managing connectivity for some species, usually charismatic vertebrates, it is often assumed that these species will serve as conservation umbrellas for other species. We tested this assumption by developing a quantitative method to measure overlap in dispersal habitat of 3 threatened species—a bird (the umbrella), a butterfly, and a frog—inhabiting the same fragmented landscape. Dispersal habitat was determined with Circuitscape, which was parameterized with movement data collected for each species. Despite differences in natural history and breeding habitat, we found substantial overlap in the spatial distributions of areas important for dispersal of this suite of taxa. However, the intuitive umbrella species (the bird) did not have the highest overlap with other species in terms of the areas that supported connectivity. Nevertheless, we contend that when there are no irreconcilable differences between the dispersal habitats of species that cohabitate on the landscape, managing for umbrella species can help conserve or restore connectivity simultaneously for multiple threatened species with different habitat requirements. Definición y Evaluación del Concepto de Especie Paraguas para Conservar y Restaurar la Conectividad de Paisajes  相似文献   
10.
Despite many studies showing that landscape corridors increase dispersal and species richness for disparate taxa, concerns persist that corridors can have unintended negative effects. In particular, some of the same mechanisms that underlie positive effects of corridors on species of conservation interest may also increase the spread and impact of antagonistic species (e.g., predators and pathogens), foster negative effects of edges, increase invasion by exotic species, increase the spread of unwanted disturbances such as fire, or increase population synchrony and thus reduce persistence. We conducted a literature review and meta‐analysis to evaluate the prevalence of each of these negative effects. We found no evidence that corridors increase unwanted disturbance or non‐native species invasion; however, these have not been well‐studied concerns (1 and 6 studies, respectively). Other effects of corridors were more often studied and yielded inconsistent results; mean effect sizes were indistinguishable from zero. The effect of edges on abundances of target species was as likely to be positive as negative. Corridors were as likely to have no effect on antagonists or population synchrony as they were to increase those negative effects. We found 3 deficiencies in the literature. First, despite studies on how corridors affect predators, there are few studies of related consequences for prey population size and persistence. Second, properly designed studies of negative corridor effects are needed in natural corridors at scales larger than those achievable in experimental systems. Third, studies are needed to test more targeted hypotheses about when corridor‐mediated effects on invasive species or disturbance may be negative for species of management concern. Overall, we found no overarching support for concerns that construction and maintenance of habitat corridors may result in unintended negative consequences. Negative edge effects may be mitigated by widening corridors or softening edges between corridors and the matrix. Other negative effects are relatively small and manageable compared with the large positive effects of facilitating dispersal and increasing diversity of native species. Efectos Negativos Potenciales de los Corredores  相似文献   
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