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城市交通机动车污染控制研究进展 总被引:3,自引:1,他引:3
城市交通机动车污染问题非常复杂,在许多不可控因素,城市交通是一个动态系统,污染物排放量始终处于变化之中,控制城市交通污染,必须严格控制机动车排放,该文介绍了国内外对城市机动车污染控制研究的概况,以及几种城市中污染物扩散的模型,展望了这方面研究前发展趋势,并提出了可持续发展的效能系统设计与管理的新概念。 相似文献
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分析了昆明市当前机动车尾气污染对城市空气质量的影响,针对昆明市机动车尾气污染状况及现行的防治措施,提出了机动车检测维修(I/M)制度的建立及其检测方法和方式的改进。 相似文献
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文中对PM10,SO2,NO2,CO四种污染因子,从时间、车流量、风力、气压、气温等方面进行影响分析,分析结果高浓度CO和NOx的污染出现在城市交通干道两侧和交通密集区域,上述四种污染园予在未来几年里仍然是环境空气中的主要污染物,危害城市人民正常生活的主要污染源,成为未来环境保护工作中的重点内容。 相似文献
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BP神经网络技术在交通工具火灾预警中的应用 总被引:2,自引:2,他引:2
通过对交通工具火灾成因机理以及现有典型交通工具火灾实例的分析研究,建立了预警评价指标体系。根据非线性理论和模式识别原理以及交通工具火灾的特点,采用基于BP神经网络的智能灾害诊断方法,对交通工具火灾发生的可能性和危险性进行评估和预测。研究表明:BP神经网络方法是解决非线性系统问题的一种有效方法,与传统的预警方法相比,该方法具有速度快、效率高、可信度好、自学能力强等特点。采用BP网络进行交通工具火灾预警时,只需输入影响交通工具火灾发生的相关指标因素,网络便可在较短的时间内得出可靠的预警结果。 相似文献
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Black liquor gasification–combined cycle (BLGCC) is a new technology that has the potential to increase electricity production of a chemical pulping mill. Increased electricity generation in combination with the potential to use biomass (e.g. bark, hog fuel) more efficiently can result in increased power output compared to the conventional Tomlinson-boiler. Because the BLGCC enables an integrated pulp and paper mill to produce excess power, it can offset electricity produced by power plants. This may lead to reduction of the net-CO2 emissions. The impact of BLGCC to offset CO2 emissions from the pulp and paper industry is studied. We focus on two different plant designs and compare the situation in Sweden and the US. The CO2 emissions are studied as function of the share of recycled fibre used to make the paper. The study shows that under specific conditions the production of “CO2-free paper” is possible. First, energy efficiency in pulp and paper mills needs to be improved to allow the export of sufficient power to offset emissions from fossil fuels used in boilers and other equipment. Secondly, the net-CO2 emission per ton of paper depends strongly on the emission reduction credits for electricity export, and hence on the country or grid to which the paper mill is connected. Thirdly, supplemental use of biomass to replace fossil fuel inputs is important to reduce the overall emissions of the pulp and paper industry. 相似文献
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汪文杰 《中国安全生产科学技术》2005,1(3):81-83
中国道路交通安全面临着前所未有的挑战.本文在分析车辆保险与投保人安全驾驶关系的基础上,提出推行车辆保险是解决我国当前道路交通安全、保障交通事故受害者合法权益的有效经济手段之一. 相似文献
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Summary The balance of evidence suggests a perceptible human influence on global ecosystems. Human activities are affecting the global
ecosystem, some directly and some indirectly. If researchers could clarify the extent to which specific human activities affect
global ecosystems, they would be in a much better position to suggest strategies for mitigating against the worst disturbances.
Sophisticated statistical analysis can help in interpreting the influence of specific human activities on global ecosystems
more carefully. This study aims at identifying significant or influential human activities (i.e. factors) on CO2 emissions using statistical analyses. The study was conducted for two cases: (i) developed countries and (ii) developing
countries. In developed countries, this study identified three influential human activities for CO2 emissions: (i) combustion of fossil fuels, (ii) population pressure on natural and terrestrial ecosystems, and (iii) land
use change. In developing countries, the significant human activities causing an upsurge of CO2 emissions are: (i) combustion of fossil fuels, (ii) terrestrial ecosystem strength and (iii) land use change. Among these
factors, combustion of fossil fuels is the most influential human activity for CO2 emissions both in developed and developing countries. Regression analysis based on the factor scores indicated that combustion
of fossil fuels has significant positive influence on CO2 emissions in both developed and developing countries. Terrestrial ecosystem strength has a significant negative influence
on CO2 emissions. Land use change and CO2 emissions are positively related, although regression analysis showed that the influence of land use change on CO2 emissions was still insignificant. It is anticipated, from the findings of this study, that CO2 emissions can be reduced by reducing fossil-fuel consumption and switching to alternative energy sources, preserving exiting
forests, planting trees on abandoned and degraded forest lands, or by planting trees by social/agroforestry on agricultural
lands. 相似文献