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客观理解京津冀大气污染传输通道城市(“2+26”城市)空气污染时空格局对于区域大气污染联合防治具有重要意义.本研究采用遥感数据反演的PM2.5浓度产品,利用趋势分析法和重心分析法,揭示了京津冀城市大气污染传输通道区2000~2015年大气污染时空格局演化特征.结果表明:(1)区域PM2.5平均浓度整体呈现出太行山脉区域较低,太行山脉以东较高的格局,城镇地区明显高于周边地区.(2)2000~2015年区域PM2.5年均浓度总体呈增加趋势,主要表现在2000~2007年,呈显著增加趋势的面积占全区的88.48%,之后呈稳定状态.(3)区域PM2.5污染重心位于衡水、邢台和德州3市交界处,区域北部大气污染较严重.本研究可为京津冀及周边地区大气污染防治政策制定和措施实施提供参考与支持. 相似文献
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安乐 《辽宁城乡环境科技》2006,26(2):23-24,49
阐述了可持续发展指标体系的概念及国内外可持续发展指标体系的研究状况,详细介绍了辽宁省建立可持续发展指标体系应遵循的原则,并提出了指标综合评价法,为实现区域可持续发展提供了技术依据。 相似文献
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本文根据鄂尔多斯高原逆温天气的形成,讨论了高原地区中小城镇大气污染的时空分布及控制污染的可行性途径。 相似文献
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The diagram constructed for selection of sampling methods indicates that, for a systematic error, E ≤ 13%, grab sampling (GS) may be used to characterize effluents with variation coefficient of flow ≤ 120% and of contaminant concentrations ≤ 10%. For the whole studied range of variation coefficient of contaminant concentrations (2–82%), time-proportional compositing (TC) method may be applied with E ≤ 10% for effluents characterized by variation coefficients in flow < 90%. The more complicated flow-proportional compositing (FC) method is required only for effluents with larger variation coefficients or to produce more precise results. The diagram constructed for selection of sampling frequencies indicates that sequential sampling at intervals of approximately 60 min may be applied with E ≤ 10% for effluents characterized by variation coefficients ≤ 30%. Practical application of the diagrams, constructed using normal series, was checked against monitoring data from two pulp and paper mills in Vietnam. The two diagrams provided results on sampling methods and frequencies in good agreement with those obtained from actual monitoring data with percentages of agreement cases of 80 and 75%, respectively. The approach was applied in design of a monitoring program at the Bai Bang integrated pulp and paper mill in Vietnam. 相似文献
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Armando A. Apan Andrew Le Brocque Geoff Cockfield 《Journal of Environmental Planning and Management》2004,47(6):811-825
To address the limited application of analytical and modelling techniques in prioritizing revegetation sites for dryland salinity (saline land) management, a case study of the Hodgson Creek catchment in Queensland, Australia, was conducted. An analytical framework was developed, incorporating the use of spatial datasets (Landsat 7 image, DEM, soil map, and salinity map), which were processed using digital image processing techniques and a geographic information system (GIS). Revegetation sites were mapped and their priority determined based on recharge area, land use/cover and sub‐catchment salinity. The analytical framework presented here enhances the systematic use of land information, widens the scope for scenario testing, and improves the testing of alternative revegetation options. The spatial patterns of revegetation sites could provide an additional set of information relevant in the design of revegetation strategies. 相似文献
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Philippe Le Goffe 《Journal of Environmental Planning and Management》2005,48(5):651-664
In France, freshwater recreational fishing management does not sufficiently satisfy anglers. Fishing effort is too high creating congestion costs and environmental quality is low while there is a positive willingness-to-pay for improvements. These inefficiencies are explained by three phenomena. First, private property rights are attenuated under institutional pressure. Second, recreational fishing is managed as an open access resource over the whole territory. Finally, halieutic policies focus on the protection of environmental resources and are inefficient at maximizing the social rent provided by recreational fisheries. Fishing effort regulation and environmental services provision following the beneficiary-pays principle could improve collective welfare. Social pricing could ensure equity in access to the resource. 相似文献
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Dung Tran Thi Thu Vassilieva Elvira Golreihan Asefeh Phung Nguyen Ky Swennen Rudy Cappuyns Valérie 《Journal of Material Cycles and Waste Management》2017,19(3):1194-1203
Journal of Material Cycles and Waste Management - Understanding the chemical and mineralogical characteristics of bottom ash (BA) containing Potentially Toxic Elements (PTEs, e.g., As, Cd, Co, Cu,... 相似文献