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101.
选取我国1990-2009年相关数据,首先对环境遥化成本进行估计,发现我国环境退化成本呈现不断上升的趋势,而水污染、空气污染是导致环境退化成本产生的主要原因.其次,以环境退化成本作为污染指标,结合环境库兹涅茨曲线的特征,并以能否有效地将污染指标降低到相对较低的水平,作为政策路径选择的标准,分析协调我国环境污染与经济增长冲突的路径.实证研究结果表明:在不考虑政策因素的影响下,我国目前国内生产总值水平仍处在环境库兹涅茨曲线拐点的左端,经济持续增长有可能导致环境状况进一步恶化;多项环境治理政策的同步实施,致使个别政策出现低效率甚至是无效率;在当前产出水平条件下,既要保证经济平稳增长,又要降低环境退化成本,政策路径的选择首先应注重产业结构的调整,适当保持第二产业比重,但在发展第三产业的过程中,应加大对污染企业的监管与治理,其次是调整国际贸易进出口比例,积极扩大出口,而采用吸引外商直接投资与加大污染治理投资等政策在我国现阶段均不能有效降低环境退化成本.  相似文献   
102.
包容性区域创新体系研究   总被引:1,自引:0,他引:1  
实现包容性增长是中国未来发展的必然选择,其关键在于为长期处于社会网络边缘的贫困人群提供平等参与的机会.包容性创新充分利用贫困人群中蕴藏的巨大消费、生产、创业潜力,既为企业带来难以模仿的竞争优势,又让穷人参与到价值创造的过程中,帮助其公平合理地分享经济增长.但包容性创新活动面临着市场信息匮乏、知识和技能不足、制度体系不完善、基础设施落后、金融服务欠缺等特殊挑战,需要包容性区域创新体系为其提供支撑.包容性区域创新体系由创新主体子系统、创新支撑子系统、创新环境子系统三个子系统构成,在技术选择、改进与扩散,当地信息获取,知识传播和吸收,信任合作关系确立等方面发挥作用,并为包容性创新活动提供完善的基础设施,教育与培训体系,健全有效的制度环境以及必要的金融服务.为构建一个以消除贫困为导向的包容性区域创新体系,政府需要从提供有益于包容性创新的制度框架,消除包容性创新面临的特有障碍,提高包容性区域创新提供的效率与扩散范围以及增加贫困群体能力等四个方面入手.  相似文献   
103.
富营养化水体中铵态氮对金鱼藻生长的影响   总被引:3,自引:0,他引:3  
通过控制pH(7和9)范围以区分分子态氨(NH3)和离子态氨(NH+4),研究了不同浓度铵态氮(NH+4 N)对金鱼藻生长的影响。研究结果表明:金鱼藻〖JP+1〗相对生长速率的变化范围为每天-010~003。在分子态氨浓度小于022 mg/L时,铵态氮对金鱼藻的毒性是由离子态氨和分子态氨共同作用。在分子态氨达到最大浓度439 mg/L时,〖JP〗金鱼藻的生长速率显著减少,直至死亡。随着铵态氮浓度的增加和胁迫时间的延长,金鱼藻体内碳氮比下降,叶绿素含量下降,光合作用减弱,相对生长速率下降。试验结果为合理利用金鱼藻来改善水质提供科学依据,同时也为研究分子态氨对沉水植物的胁迫作用提供参考。  相似文献   
104.
选取金鱼藻(Ceratophyllum demersum)、轮叶黑藻(Hydrilla verticillata)、水盾草(Cabombacaroliniana)、苦草(Vallisneria gigantean)为试验材料,研究不同水层的光照强度对其存活率、株高、生物量等的影响,旨在找出这4种沉水植物在自然条件下的最...  相似文献   
105.
不同氮磷比对多年生水生植物生长特性影响的研究   总被引:1,自引:0,他引:1  
从氮、磷等植物生长的环境因子出发,研究了高低氮磷营养水平下,不同氮/磷比例的富营养化水体对聚草(Myriophyllum spicatum)、黄花水龙(Jussiaea stipulacea Ohwi)、喜旱莲子草(Alternanthera philoxeroides)生长特性的影响。结果表明,聚草在氮磷比2:1时生物量最大,且生物量在高浓度水平处理明显大于低浓度水平处理(P〈0.01);黄花水龙在氮磷比10:1~20:1时生物量最大,高低浓度水平处理问生物量无显著性差异;喜旱莲子草在较高氮磷比20:l~40:1时生物量最大,高浓度水平处理时生物量显著性高于低浓度水平处理(P〈0.05)。在低浓度水平处理时,氮为黄花水龙和喜旱莲子草生长的主要限制因子,磷为聚草生长的主要限制因子,且喜早莲子草叶绿素增长期较其他处理提前,而黄花水龙的叶绿素变化在高低营养水平下差异不显著。营养盐水平对聚草茎长和生物量的影响较对黄花水龙和喜旱莲子草的影响明显。  相似文献   
106.
A multi-trophic, multi-exposure phase assessment approach was applied to characterize the toxicity of sediments collected from two rivers in Guiyu, China, an e-waste recycling centre. Elutriate toxicity tests (bacterium Vibrio fischeri and microalga Selenastrum capricornutum) and whole sediment toxicity test (crustacean Heterocypris incongruens) showed that most sediments exhibited acute toxicity, due to elevated heavy metals and PAHs levels, and low pH caused by uncontrolled acid discharge. The survival rates of crustaceans were negatively (p < 0.05) correlated with total PAHs in sediments (411-1755 mg kg−1); EC50s of V. fischeri on the elutriates were significantly correlated with elutriate pH (p < 0.01). Significant (p < 0.05) correlations between the induction of hepatic metallothionein in tilapia (Oreochromis mossambicus) and metal concentrations (Cu, Zn, Pb) in sediments were also observed, when fish were fed with diets containing sediment. The results showed that uncontrolled e-waste recycling activities may bring adverse effects to local aquatic ecosystem.  相似文献   
107.
Forest ecosystems may be actively managed toward heterogeneous stand structures to provide both economic (e.g., wood production and carbon credits) and environmental benefits (e.g., invasive pest resistance). In order to facilitate wider adoption of possibly more sustainable forest stand structures, defining growth expectations among alternative management scenarios is crucial. To estimate the effect of tree size and spatial distributions on growth for forest structures commonly considered in uneven-aged forest stand management, large (0.2 ha+) plots were established in 14 uneven-aged ponderosa pine stands in eastern Montana. All study trees were stem-mapped and measured for diameter and 10-year sapwood and basal area increment. A generalized growth model was developed to predict both total and merchantable 10-year basal area increment for nine hypothetical stand structures [three diameter distributions (reverse-J, irregular, flat) × three spatial distributions (clumpy, partial clumpy, uniform)]. Results indicate that the size and spatial distributions of individual trees have a considerable effect on overall stand growth. The greatest total stand growth was in stands with reverse “J” shaped tree size distributions, while the greatest merchantable stand growth was in stands with “flat” diameter distributions and uniform spatial distributions. Through better comprehension of generalized uneven-aged stand growth dynamics, forest managers may better assess the effects of alternative stand structures on stand growth while providing forest stand structures that may be more resilient in a changing climate.  相似文献   
108.
The perils of unplanned urbanization and increasing pressure of human activities on hydro-geomorphologic system often result in modification of the existing recharge mechanism, which leads to many environmental consequences. In the present research, an attempt has been made to investigate the applicability of remote sensing and geographical information system (GIS) in dealing with spatial and temporal variability of dynamic phenomena, like urbanization and its impact on groundwater. This paper covers primarily, quantitative and qualitative impacts of urban growth on the behavior of aquifer in Ajmer city (India). Urban growth of the Ajmer city in last 17 years has been estimated from the satellite images. Database related to urbanization and groundwater has been created in GIS. Groundwater recharge has been computed using a water balance approach known as Water Level Fluctuation Methodology. Recharge estimation methodology has been implemented in GIS to introduce the spatial variability of hydro-geological characteristics. Further, temporal and spatial variations in groundwater quality and quantity have been correlated with urban growth using overlay analysis in GIS. The study reveals a general decline in water table and quality with urbanization. Further, remote sensing and GIS technologies have been found useful in assessment of spatial and temporal phenomena of urbanization and its impact on groundwater system.  相似文献   
109.
Coal-fired power generation is a principal energy source throughout the world. Approximately, 70-75% of coal combustion residues are fly ash and its utilization worldwide is only slightly above 30%. The remainder is disposed of in landfills and fly ash basins. It is desirable to revegetate these sites for aesthetic purposes, to stabilize the surface ash against wind and water erosion and to reduce the quantity of water leaching through the deposit. Limitations to plant establishment and growth in fly ash can include a high pH (and consequent deficiencies of Fe, Mn, Cu, Zn and P), high soluble salts, toxic levels of elements such as B, pozzalanic properties of ash resulting in cemented/compacted layers and lack of microbial activity. An integrated organic/biotechnological approach to revegetation seems appropriate and should be investigated further. This would include incorporation of organic matter into the surface layer of ash, mycorrhizal inoculation of establishing vegetation and use of inoculated legumes to add N. Leaching losses from ash disposal sites are likely to be site-specific but a sparse number of studies have revealed enriched concentrations of elements such as Ca, Fe, Cd, Pb, and Sb in surrounding groundwater. This aspect deserves further study particularly in the longer-term. In addition, during weathering of the ash and deposition of organic matter during plant growth, a soil will form with properties vastly different to that of the parent ash. In turn, this will influence the effect that the disposal site has on the surrounding environment. Nevertheless, the effects of ash weathering and organic matter accumulation over time on the chemical, physical and biological properties of the developing ash-derived soil are not well understood and require further study.  相似文献   
110.
Cyanobacterial blooms in Lake Taihu occurred at the end of April 2007 and had crucial impacts on the livelihood of millions of people living there. Excessive nutrients may promote bloom formation. Atmospheric nitrogen (N) and phosphorus (P) deposition appears to play an important role in algal bloom formation. Bulk deposition and rain water samples were collected respectively from May 1 to November 30, 2007, the period of optimal algal growth, to measure the bulk atmospheric deposition rate, wet deposition rate, and dry deposition rate for total nitrogen (TN; i.e., all species of nitrogen), and total phosphorus (TP; i.e., all species of phosphorus), in northern Lake Taihu, China. The trends of the bulk atmospheric deposition rate for TN and the wet deposition rate for TN showed double peaks during the observation period and distinct influence with plum rains and typhoons. Meanwhile, monthly bulk atmospheric deposition rates for TP showed little influence of annual precipitation. However, excessive rain may lead to high atmospheric N and P deposition rates. In bulk deposition samples, the average percentage of total dissolved nitrogen accounting for TN was 91.2% and changed little with time. However, the average percentage of total dissolved phosphorus accounting for TP was 65.6% and changed substantially with time. Annual bulk atmospheric deposition rates of TN and TP during 2007 in Lake Taihu were estimated to be 2,976 and 84 kg km−2 a−1, respectively. The results showed decreases of 34.4% and 78.7%, respectively, compared to 2002–2003. Annual bulk deposition load of TN for Lake Taihu was estimated at 6,958 t a−1 in 2007 including 4,642 t a−1 of wet deposition, lower than the values obtained in 2002–2003. This may be due to measures taken to save energy and emission control regulations in the Yangtze River Delta. Nevertheless, high atmospheric N and P deposition loads helped support cyanobacterial blooms in northern Lake Taihu during summer and autumn, the period of favorable algal growth.  相似文献   
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