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91.
利用matlab模糊工具箱中自适应神经模糊推理系统(Anfis)方法,对大气环境质量评价作一个尝试性的工作。利用Anfis法对大气环境质量现状的评价,并与灰色聚类法作比较,得出Anfis法用于评价环境质量是可行的,且具有许多优点。 相似文献
92.
阐述了密切值法和污染损失率法的基本原理和分析评价步骤。通过实例分析,得出这两种方法的结论具有一致性;利用密切值法对各个决策目标进行质量排序,再利用污染损失率法计标出各污染物对环境的损害程度,并对决策目标进行等级划分。两种方法结合起来应用,能全面地进行环境评价。 相似文献
93.
废干电池中锌和汞的分布及其处理 总被引:1,自引:0,他引:1
由于民众缺乏环境意识和国家没有相应法规 ,大多数废干电池都随手丢弃 ,回收的废电池处于不同程度的腐蚀状态。介绍了锌、汞在废干电池中的分布状态以及腐蚀对其分布的影响 ,并根据它们的分布特点提出用真空法回收废干电池中的锌、汞。 相似文献
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Four types of floor covering have been investigated with respect to their environmental impact: linoleum, cushion vinyl, tufted carpet with a woollen pile and tufted carpet with a polyamide pile. The analysis relates to all stages in the life-cycle (from ‘cradle to grave’) and focuses on floor coverings for domestic use. The analysis is performed by means of the method for life-cycle assessment (Dutch approach). Each floor covering is assessed with regard to its environmental impact. This impact can be of various type: depletion of raw materials, cumulative energy requirement, global warming, acidification, tropospheric ozone creation, stratospheric ozone depletion, eutrophication, production of waste and human health. The inventory of environmental interventions (materials, energy requirements, waste and emissions to air, water and soil) was fairly complete. Most interventions relating to the processes that make up the life-cycle of the floor coverings in question could be quantified. A large part of the data is associated with the process energy requirement. In general these data are quite reliable. The results of the impact assessment for linoleum differs considerably from those for other types of floor coverings. Linoleum turns out to be the most environmentally favourable floor covering. It was not possible to differentiate between the environmental impact of cushion vinyl, tufted carpet with a woollen pile and tufted carpet with a polyamide pile. 相似文献
96.
对云南省主要风景区所在44个县,市的生态环境质量评价表明,优,良,中的县、市占总数的88.64%,总体良好。44个县中有27个,10个国家的风景区中有6个均在两个旅游资源区内, 局相对合理。但10个湖泊中已 有7个水质达不到水质的功能标准,相关的14个城镇中也9个的空气质量达不到三级标准。 相似文献
97.
Bagasse, a biomass fuel, is the waste generated by the sugar-making process from sugar cane. Sugar making is one of the most
important agricultural-produce processing industries for developing countries in Southeast Asia, Latin America and Africa.
As sugar producing plants need electric power and process steam, co-generation using bagasse as an alternate fuel for petroleum
has been in use for some time. Thailand recently became one of the largest sugar exporters by enlarging plant capacities and
improving equipment, thus reducing its production cost. In addition, the Thai government promotes power generation using bagasse
as a means to combat global warming by raising the purchase price of the surplus power. The industry is in the process of
further raising the plant capacity, and improving the power-generating efficiency. This will enable a plant to generate more
electric power than its in-plant need so that the surplus power can be sold to the commercial grid. It also plans to become
a local power supplier during off-season of sugar making by adding a condensing turbine generator. A typical Thai sugar plant
of the latest design generates steam of 4Mpa at the bagasse boiler outlet with the temperature of 400°C at 84% boiler efficiency.
With the bagasse LHV of 7,540 kJ/kg and that of fuel oil 41, 840 kJ/kg, and taking 90%as oil-burning boiler efficiency, 5.95
kg of bagasse would replace 1 kg of oil. The Kyoto Mechanism defines CO2 generation by fuel oil as 2.65 kg per liter. Using 0.85for the specific gravity of fuel oil, the amount of CO2 generation will be 3.12 kg-CO2/kg. Therefore, CO2reduction per ton of bagasse in terms of fuel oil will be: 3.12/5.95 =0.524 kg-CO2/kg-bagasse. As 1 kg of bagasse generates 2 kg of steam, the CO2reduction of a 100t/h steam boiler will be112,660 ton/year for an annual operation of4,300 hours, as follows. 0.524 × 100/2
= 26.2 t-CO2/h, 26.2 × 4,300 =112,660 t-CO2/year.
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献
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在地震观测中,环境保护是非常重要的,可是随着改革开放后我国经济的飞速发展,各级政府在进行经济建设的过程中,很多地方地震观测环境受到很大的影响。我们江苏省宿迁地震台的观测环境目前就处在这种境况之中,这给我们的数据采集带来了很大的影响。本文从我台环境受影响的现状、国家的法律法规、解决的思路等方面探讨问题的解决办法。 相似文献