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排序方式: 共有522条查询结果,搜索用时 898 毫秒
1.
期权理论在排污权初始分配中的应用 总被引:16,自引:0,他引:16
排污权交易是当前总量控制目标下最具潜力的环境政策,它兼有环境质量保障和成本效率优化的特点.在对国内外排污权交易和初始分配充分考察的基础上,提出了在排污权初次分配中引入期权机制的尝试,并对这种方法的理论基础作了分析和讨论. 相似文献
2.
黄河流域水资源价值的计算与分析 总被引:2,自引:0,他引:2
利用经济杠杆的调节作用促使水资源的高效利用,是缓和水资源供需矛盾的有效措施之一。本文以水资源价值理论为基础,从黄河全流域水资源优化配置角度出发,以利用水资源获得最大经济效益为目标,测算了黄河水资源的理论价值,为制定黄河水资源费的征收标准提供科学的理论依据。 相似文献
3.
通过相关指数在广东省城市大气环境监测省控站优化组筛选中的实践和探究,表明相关分析是个简单、实用、有效的方法,具有参考和应用价值。 相似文献
4.
无顺市水污染物总量分配探讨 总被引:1,自引:0,他引:1
根据抚顺市地表水系和水域功能区划的分布情况,采用了定额达标分配、治理费用最小,及按现有排污总量进行达标分配的方法对水污染物进行总量分配,从而对减少污染物排放,控制水体污染提供了技术支持。 相似文献
5.
科技情报检索是科研工作中的重要环节,也是科研成果评价的必要手段.课题研究必须了解国内外发展动态,进行可行性和经济效益分析.本文通过国际联机情报检索的两个应用实例,阐明了情报检索不仅提高了科研工作效率,而且在课题研究的方法、深度和广度、最终结果方面都能得到很大益处. 相似文献
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7.
WAHG Ren-zhong 《环境科学学报(英文版)》2002,14(1):20-26
Population demography, seed production, biomassallocation, net photosynthesis and transpiration of two Leymus chinensis divergence populations and between two years in Songnenplain, northeast China were compared. Strong differences betweenthe dry 1997 and moist 1998 occurred in vegetative shoot and sexualshoot densities, sexual differentiation and tiller densities, aswell as in the lengths of inflorescence, seed numbers perinflorescence, seed weights and biomass allocation in eachpopulation respectively (P<0.01). While strong differences betweenthe two populations occurred in vegetative shoot densities, sexualshoot densities, sexual differentiation and seed weights in eachyear (P<0.01). The differences between the two populations intiller densities and in biomass allocation to sexual shoots were significant (P<0.05). But there were no significant differences between the two populations in the lengths of inflorescence, seed numbers per inflorescence and biomass allocation to rhizomes and vegetative shoots (P>0.05). Excepting the transpiration rate in the early June, the differences between the two populations in net photosynthesis and transpiration rate of vegetative shoots and sexual shoots were strongly significant in the early June and July respectively (P<0.01). Relative stable variations in population demography and physiological traits between the two populations indicated that they are divergently in the Songnen Plain. 相似文献
8.
GametheoryapproachtooptimalcapitalcostalocationinpolutioncontrolChenWenyingInstituteofNuclearEnergyTechnology,TsinghuaUniver... 相似文献
9.
Based on the China high resolution emission gridded data (1 km spatial resolution), this article is aimed to create a Chinese city carbon dioxide (CO2) emission data set using consolidated data sources as well as normalized and standardized data processing methods. Standard methods were used to calculate city CO2 emissions, including scope 1 and scope 2. Cities with higher CO2 emissions are mostly in north, northeast, and eastern coastal areas. Cities with lower CO2 emissions are in the western region. Cites with higher CO2 emissions are clustered in the Jing-Jin-Ji Region (such as Beijing, Tianjin, and Tangshan), and the Yangtze River Delta region (such as Shanghai and Suzhou). The city per capita CO2 emission is larger in the north than the south. There are obvious aggregations of cities with high per capita CO2 emission in the north. Four cities among the top 10 per capita emissions (Erdos, Wuhai, Shizuishan, and Yinchuan) cluster in the main coal production areas of northern China. This indicates the significant impact of coal resources endowment on city industry and CO2 emissions. The majority (77%) of cities have annual CO2 emissions below 50 million tons. The mean annual emission, among all cities, is 37 million tons. Emissions from service-based cities, which include the smallest number of cities, are the highest. Industrial cities are the largest category and the emission distribution from these cities is close to the normal distribution. Emissions and degree of dispersion, in the other cities (excluding industrial cities and service-based cities), are in the lowest level. Per capita CO2 emissions in these cities are generally below 20 t/person (89%) with a mean value of 11 t/person. The distribution interval of per capita CO2 emission within industrial cities is the largest among the three city categories. This indicates greater differences among per capita CO2 emissions of industrial cities. The distribution interval of per capita CO2 emission of other cities is the lowest, indicating smaller differences of per capita CO2 emissions among this city category. Three policy suggestions are proposed: first, city CO2 emission inventory data in China should be increased, especially for prefecture level cities. Second, city responsibility for emission reduction, and partitioning the national goal should be established, using a bottom-up approach based on specific CO2 emission levels and potential for emission reductions in each city. Third, comparative and benchmarking research on city CO2 emissions should be conducted, and a Top Runner system of city CO2 emission reduction should be established. 相似文献