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761.
生物安全领域的环境风险包括科技风险、生态风险和环境健康风险三种类型。我国目前尚未形成健全的生物安全风险规制制度体系,科技风险规制机制不健全、生态风险规制忽视生物多样性保护、环境健康风险规制领域尚存空白等问题依然存在。为此,应确立多元化的立法目的体系,推动风险规制的类型化制度安排,有效衔接生物安全立法与环境保护法律规范,以最大限度地预防和降低生物安全风险可能带来的损害。  相似文献   
762.
滇池人工湿地的植物群落学特征研究   总被引:12,自引:1,他引:12  
用植物群落生态学方法,研究了滇池小河口的天然湿地以及表流和潜流两种人工湿地的植被群落学特征。研究区内调查发现有12种植物群落,包含有植物17种。结果表明:表流人工湿地的群落多样性大于潜流人工湿地,甚至也大于天然湿地;在两种人工湿地中,植物群落中的层次数比较接近;从植被群落结构来看,在物种多样性和shannon wiener指数方面表现为潜流人工湿地大于表流人工湿地,天然湿地居中。从天然湿地到表流湿地,再到潜流湿地,随着湿地环境水文条件的变化,植物群落组成与分布状况也在变化,表现出从湿地植物向陆生植物演替的趋势。研究表明两种人工湿地中的芦苇(Phragmites australis)群落长势不同。在人工湿地中适宜构建芦苇群落,在表面流人工湿地植物选择中可以考虑水芹菜(Oenanthe stolonifera)和慈菇(Sagittaria sagittifolia)。人工湿地的水文条件与湿地植物之间的相互关系是人工湿地进一步研究的重要方面。  相似文献   
763.
Herbicides pose a significant threat to the natural environment, in particular in soils that are most exposed to plant protection agents. Prolonged herbicide use leads to changes in soil metabolism and decreases soil productive potential. In this study, the influence of carfentrazone-ethyl (CE) on the microbiological and biochemical properties of soil and the yield of Triticum aestivum L. was evaluated. Carfentrazone-ethyl was applied to sandy loam (pHKCl – 7.0) in doses of 0.000, 0.264, 5.280, 10.56, 21.18, 42.24, 84.48 and 168.96 µg kg?1 DM soil. Soil samples were subjected to microbiological and biochemical analyses on experimental days 30 and 60. Carfentrazone-ethyl disrupted the biological equilibrium in soil by decreasing the abundance and biodiversity of soil-dwelling microorganisms, the activity of soil enzymes, the values of the biochemical activity indicator and spring wheat yields. Carfentrazone-ethyl had the most adverse effects when applied in doses many fold higher than those recommended by the manufacturer. The toxic effects of CE were also determined by its soil retention time. Soil treated with CE was characterized by higher counts of oligotrophic bacteria, organotrophic bacteria, bacteria of the genus Azotobacter, actinomycetes and fungi on day 60, and spore-forming oligotrophic bacteria on day 30. The activity of dehydrogenases, urease, alkaline phosphatase and β-glucosidase was higher on day 30 than on day 60.  相似文献   
764.
土地是生存的根本,日趋严重的重金属污染不仅污染了地下水,对食品安全也带来了严峻的影响。文章基于此,首先从监测工作、污染源头、修复技术、质量评估四个角度分析了农田土壤重金属防治中的挑战,然后就如何应对农田土壤重金属污染提出了对策,包括健全土壤污染监测制度、加强土壤污染源头管控、创新土壤污染修复技术、完善土壤修复质量评估等。  相似文献   
765.
中国农业生物多样性及其保护   总被引:1,自引:0,他引:1  
对我国农业生物多样性现状与变化态势进行了评述,分析了农业生物多样性丧失的原因,认为生境丧失、退化与破碎化、农业单一化耕作与驯养、农业物种的过度开发利用、外来物种的引进或入侵、环境污染以及全球气候变化等是造成农业生物多样性减少的主要威胁,同时提出一系列相应的保护对策。  相似文献   
766.
城市绿地系统生物多样性保护的策略探讨   总被引:57,自引:1,他引:56  
生物多样性是提高城市绿地系统生态功能的前提和城市多样化景观的基础。通过保护自然遗留地,建立绿色生态网络,开发利用地带性物种,尤其是乡土植物,并有节制地引进外域特色樾的,扩大多样性物种的种群增加绿地规模,促进公园和环城绿带的自然化,营造生物多样性高的复层群落结构,形成具有地域性植被征的城市生物多样性格局提高绿地系统的生物多样性。  相似文献   
767.
长白山自然保护区森林生态系统间接经济价值评估   总被引:166,自引:1,他引:165  
使用市场价值法、影子工程法、机会成本法和替代花费法等对长白山自然保护区森林牛态系统的功能价值进行了经济评估评价结果表明,保护区总的生态功能价值为176465.94万元,其中活立木生产量价值10777.43万元,涵养水源价值69741.2万元,保护土壤减少侵蚀的价值2307.02万元,固碳以减缓温室效应的价值87716.6万元,林分持留N、P、K分价值4338.88万元,降解SO2和防治病虫害价值1584.73万元  相似文献   
768.
The response of natural systems to atmospheric change may depend critically on species diversity and on the genetic diversity (variability) found within their respective populations. Yet, most surveys of aquatic invertebrates account for neither. This may be of particular concern for benthic populations in running waters because of the considerable variability and the fragmentary nature of these habitats (e.g. isolated watersheds). In such habitats, species with limited genetic variability and/or limited dispersal capabilities (genetically differentiated populations) may be unable to track rapid environmental change, and may be more susceptible to climatic perturbations. We present a conceptual framework to illustrate some of the potential problems of ignoring population genetics when considering the impacts of global atmospheric change. We then review a simple method to assess population genetic structure and we evaluate available data on the genetic structure of North American stream invertebrates. These data indicate that benthic taxa often consist of genetically differentiated local populations, or even previously unknown species. Accordingly, our limited knowledge of population structure among benthic invertebrates may result in the unwitting loss of genetic and/or species diversity. Enhanced taxonomic research incorporating molecular techniques is clearly warranted. Conservation strategies based on the preservation and remediation of a diversity of aquatic habitats are likely to be our best means of ensuring species and genetic diversity of invertebrate taxa.  相似文献   
769.
Predicted atmospheric change, mainly climate change, will have profound effects on the biodiversity of Canadian forests. Predictions derived from forest models, responses of species and ecosystems related to modern ecological characteristics and paleoecological studies suggest large-scale, wide-ranging changes from the biome to physiological levels. Paleoecological analogues in B.C. and other parts of Canada reveal that major changes must be expected in forest composition, range, structure and ecological processes. In B.C., past warmer and drier climates supported a different forest pattern, including forest types with no modern analogue. This produced dramatically different disturbance regimes, specifically more fires, and affected tree growth rates. The relationship of forests with non-forest habitats, especially wetlands and grasslands was different suggesting implications for wildlife biodiversity. British Columbia's Forest Practices Code prescribes guidelines for biodiversity objectives but ignores the issue of atmospheric change. This omission may result from a lack of understanding of the profound potential effects of atmospheric change on forest biodiversity in the next harvest cycle and lack of mechanisms to assess impacts and develop management strategies for specific sites. An example of a simple paleoecological assessment method involving pollen ratios is proposed.  相似文献   
770.
The Impact of Climate Change on Mammal Diversity in Canada   总被引:2,自引:0,他引:2  
Current large-scale mammalian diversity patterns in Canada can be accurately explained using various measurements of heat energy. Unfortunately, climatic change is predicted to alter the fundamental climatic basis for contemporary diversity gradients, with the expected consequence that much of the Canadian biota will need to migrate in order to remain within climatically suitable regions. We make predictions regarding future mammal diversity patterns in Canada, and therefore provide a preliminary indication of where management intervention should be directed in order to conserve mammal diversity as climate changes. We also examine the current distributions of individual mammal species in Canada in order to determine which taxa cannot migrate farther north because of the Arctic Ocean barrier. Of the 25 species that fall into this category, we examine the predicted loss of habitat in one keystone species – Dicrostonyx groenlandicus, the collared lemming – and find that this taxon is likely to lose approximately 60% of its habitat with unpredictable but likely detrimental consequences for the arctic biota. We discuss the implications of our findings briefly.  相似文献   
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