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491.
介绍了系统安全评价的AHP方法,叙述了该方法的基本步骤,并以某公司热处理分厂评忏为实例,证明了该方法的有效性和实用性。 相似文献
492.
矿井重大灾害危险性评价的改进灰色统计法 总被引:1,自引:0,他引:1
用灰色统计理论[1]研究了矿井四大灾害即冒顶、水灾、火灾和瓦斯爆炸的危险性预评价问题,提出了一种新的评价方法──灰色统计综合法。同时,从应用的角度出发对灰色统计的算法作了改进,改进后的算法便于记忆和应用。 相似文献
493.
回顾了市场营销对企业发展的核心作用;讨论了环保意识的增强对营销活动的影响以及环保法规与经济调控对企业的巨大压力;介绍了适应时代要求的社会环境营销观的内容及对现代化工企业的影响,并对化工企业如何树立新型营销观进行了探讨。 相似文献
494.
用事故树分析法进行炼厂油罐爆炸事故的环境风险评价 总被引:5,自引:0,他引:5
论述了风险、风险评价、环境风险评价的概念及其主要内容,说明利用事故树分析法进行工程环境风险评价的程序和方法。并运用这种方法对某炼厂油罐爆炸事故进行了大气环境风险评价。 相似文献
495.
本文阐述了地下水污染潜势评估的重要性,介绍了三种方法,对其中的废物-土址-地点相互作用列表法作了详细介绍,并将WSSIM法用于四川省什邡县化工开发区地下不污染潜势估。 相似文献
496.
岷江都江堰段水环境容量计算及水质综合评价 总被引:3,自引:0,他引:3
岷江水域兼有灌溉,供水,发电等多重功能。本文对岷江都江堰段水环境现状进行了模糊综合评价,并计算了水环境容量。 相似文献
497.
Robert B. Olshansky 《Environmental management》1996,20(1):11-23
The California Environmental Quality Act (CEQA) has evolved from a mini-NEPA, first enacted in 1970, into a procedural act
that affects the approval process of all large developments in California. In 1990, California local governments produced
over 1600 environmental impact reports and 30,000 initial studies under CEQA. Because of its widespread use, CEQA has periodically
drawn the attention of the state legislature, most recently in 1993, when over 60 CEQA reform bills were introduced. This
paper describes the CEQA process and evaluates its success at meeting its explicit and implicit goals. The research includes
a statewide survey of CEQA practice, sent to the planning departments of all 513 local governments in California in 1991.
Survey respondents agreed that CEQA helps in evaluating environmental impacts, reducing impacts, informing the public, and
coordinating public agency review. It is effective in reducing the environmental impacts of individual projects, but is not
as effective in improving environmental quality on an areawide scale. This research concludes that CEQA has led to positive
outcomes and is not as deeply flawed as many of its critics claim. Still, CEQA as currently designed may not be the optimal
vehicle for ensuring environmental quality. 相似文献
498.
Mark A. Harwell John F. Long Ann M. Bartuska John H. Gentile Christine C. Harwell Victoria Myers John C. Ogden 《Environmental management》1996,20(4):497-521
The ecosystems of South Florida are unique in the world. The defining features of the natural Everglades (large spatial scale, temporal patterns of water storage and sheetflow, and low nutrient levels) historically allowed a mosaic of habitats with characteristic animals. Massive hydrological alterations have halved the Everglades, and ecological sustainability requires fundamental changes in management.The US Man and the Biosphere Human-Dominated Systems Directorate is conducting a case study of South Florida using ecosystem management as a framework for exploring options for mutually dependent sustainability of society and the environment. A new methodology was developed to specify sustainability goals, characterize human factors affecting the ecosystem, and conduct scenario/consequence analyses to examine ecological and societal implications. South Florida has sufficient water for urban, agricultural, and ecological needs, but most water drains to the sea through the system of canals; thus, the issue is not competition for resources but storage and management of water. The goal is to reestablish the natural system for water quantity, timing, and distribution over a sufficient area to restore the essence of the Everglades.The societal sustainability in the Everglades Agricultural Area (EAA) is at risk because of soil degradation, vulnerability of sugar price supports, policies affecting Cuban sugar imports, and political/economic forces aligned against sugar production. One scenario suggested using the EAA for water storage while under private sugar production, thereby linking sustainability of the ecological system with societal sustainability. Further analyses are needed, but the US MAB project suggests achieving ecological sustainability consistent with societal sustainability may be feasible. 相似文献
499.
The Finnish anthropogenic CH4 emissions in 1990 are estimated to be about 250 Gg, with an uncertainty range extending from 160 to 440 Gg. The most important sources are landfills and animal husbandry. The N2O emissions, which come mainly from agriculture and the nitric acid industry are about 20 Gg in 1990 (uncertainty range 10–30 Gg). The development of the emissions to the year 2010 is reviewed in two scenarios: the base and the reduction scenarios.According to the base scenario, the Finnish CH4 emissions will decrease in the near future. Emissions from landfills, energy production, and transportation will decrease because of already decided and partly realized volume and technical changes in these sectors. The average reduction potential of 50%, as assumed in the reduction scenario, is considered achievable.N2O emissions, on the other hand, are expected to increase as emissions from energy production and transportation will grow due to an increasing use of fluidized bed boilers and catalytic converters in cars. The average reduction potential of 50%, as assumed in the reduction scenario, is optimistic.Anthropogenic CH4 and N2O emissions presently cause about 30% of the direct radiative forcing due to Finnish anthropogenic greenhouse gas emissions. This share would be even larger if the indirect impacts of CH4 were included. The contribution of CH4 can be controlled due to its relatively short atmospheric lifetime and due to the existing emission reduction potential. Nitrous oxide has a long atmospheric lifetime and its emission control possiblities are limited consequently, the greenhouse impact of N2O seems to be increasing even if the emissions were limited somehow. 相似文献
500.
煤层气勘探开发和利用的环境影响分析 总被引:3,自引:0,他引:3
煤层气是煤层中自生自储的一种非常规天然气,其成分主要是甲烷。与煤和石油比较,煤层气是一种清洁能源,因此加快煤层气的开发和利用,能改善能源结构,缓和能源紧张状况,减少环境污染。根据煤层气的特点,详细分析了其对于大气环境、水环境以及土壤、植物的影响因素后指出:开发利用煤层气对大气环境的影响利大于弊,而对水体、土壤、农作物等则产生一系列不利影响。 相似文献