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141.
刘琴  吕锡武  王阿华 《环境科技》2005,18(4):19-20,23
江宁开发区污水处理厂建设规模为4万m^3/d,分两期建成,采用氧化沟处理工艺,污泥处理采用不经消化的带式脱水工艺。在此主要叙述了各工艺构筑物的设备配置、功能、设计参数及二期工程的试运行情况。  相似文献   
142.
Five new towns have been developed around the Seoul metropolitan area since 1996. However, these new towns generate lots of traffic and related problems in the areas including those new towns and Seoul as a result of increases in population and a lack of ecological-self-sufficiency. Currently, construction of another new town is under deliberation, and what should be a major consider is the notion that the new town be located within a wide, green zone. Many studies have revealed that green space can play an important role in improving urban eco-meteorological capability and air quality. In order to analyze the urban heat island which will be created by the new urban development, and to investigate the local thermal environment and its negative effects caused by a change of land use type and urbanization, Landsat TM images were used for extraction of urban surface temperature according to changes of land use over the last 15 years. These data are analyzed together with digital land use and topographic information. As a study result, it was found the urban heat island of the study area from 198.5 to 1999 rapidly developed which showed a difference of mean temperature above 2.0. Before the Bundang new town construction the temperature of the residential area was the same as a forest, but during the new town construction in 1991 analysis revealed the creation of an urban heat island. The temperature of a forest whose size is over 50% of the investigation area was lowest, and thus the presence of a forest is believed to have a direct cooling effect on the urban environment and its surroundings. The mean temperature of the residential and commercial areas in the study was found to be 4.5 higher than the forest, and therefore this part of land use is believed to be the main factor causing the temperature increase of the urban heat island.  相似文献   
143.
分析了2002年玉溪市各县区县城环境空气质量状况和污染特征 提出应采取措施,减轻SO2,对城市大气的污染。  相似文献   
144.
利用1995~1997和2000年资料,统计分析了呼市边界层气象条件和影响呼市地区的天气系统,寻找出了城市污染与天气的关系,据此研究制定了有利和不利于污染物扩散的天气形势和气象要素指标,给出了不同污染物的空气质量等级判据,从而建立了呼市污染潜势预报方法。  相似文献   
145.
对京津区域1980-1992年间能源利用状况进行分析,并通过模式计算该区域大气污染物的扩散规律,结果表明,大气污染物随能源利用增加而增加,其增加速率NOx大于OS2,经预测,至2004年京津地区SO2排放量增咖11.40%,NOx增加56.80%,由于气象和地形条件所致,该区域内不利于大气污染物远距离输送,这使箱型区域内物料平衡计算可以简化。  相似文献   
146.
云南空气中TSP的现状与控制   总被引:1,自引:1,他引:1  
云南省1990 ̄1996年17个城镇的TSP污染水平一直在0.20mg/m^3左右波动,比较平稳。将年平均浓度值与超标率相比较,历年来TSP的污染程度变化不大,但污染面有逐年扩大的趋势。因此,为提高空气质量达标率,必须加强管理和技术方面的措施。  相似文献   
147.
An integrated approach was developed to determine the critical levels of air pollution for ecological standard setting based on the unified index of biological response, by taking into account the effects of all pollution components simultaneously. An empirical model of plant productivity was taken as the dose response model for gaseous pollutant effect on the productivity of trees and the annual productivity of plants was used as the above mentioned index. The CO2 increase in the lower atmosphere was considered to potentially increase plant productivity and NO2 was estimated as neutral while being dangerous for plants as a chemical precursor of ozone or as a source of acidification. The maximum permissible chronic O3 and SO2 levels for trees were estimated and it was found that O3 is much more phytotoxic, as compared to SO2 , with a rather narrow range of permissible levels (27-33 ppb) which complicates its monitoring and control.  相似文献   
148.
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   
149.
This study represents the first quantitative evaluation of pollution transport budget within the boundary layer of typical cities in the Beijing-Tianjin-Hebei (BTH) region from the perspective of horizontal and vertical exchanges and further discusses the impact of the atmospheric boundary layer (ABL)-free troposphere (FT) exchange on concentration of fine particulate matter (PM2.5) within the ABL during heavy pollution. From the perspective of the transport flux balance relationship, differences in pollution transport characteristics between the two cities is mainly reflected in the ABL-FT exchange effect. The FT mainly flowed into the ABL in BJ, while in SJZ, the outflow from the ABL to the FT was more intense. Combined with an analysis of vertical wind profile distribution, BJ was found to be more susceptible to the influence of northwest cold high prevailing in winter, while sinking of strong cold air allowed the FT flowing into the ABL influence the vertical exchange over BJ. In addition, we selected a typical pollution event for targeted analysis to understand mechanistic details of the influence of ABL-FT exchange on the pollution event. These results showed that ABL-FT interaction played an important role in PM2.5 concentration within the ABL during heavy pollution. Especially in the early stage of heavy pollution, FT transport contributed as much as 82.74% of PM2.5 within the ABL. These findings are significant for improving our understanding of pollution transport characteristics within the boundary layer and the effect of ABL-FT exchange on air quality.  相似文献   
150.
草坪作为城市绿地的重要组成部分,其温室气体的吸收或排放不容忽视.然而当前对亚热带城市草坪温室气体通量的研究相对匮乏.采用静态箱-气相色谱法,对杭州市城区典型城市草坪的多种温室气体(CO2、CH4、N2O和CO)地气交换通量进行了连续观测研究.结果表明,城市草坪的温室气体月平均通量变化明显,而其日变化特征并不明显.城市草地和土壤(无植被生长的裸土)是大气N2O的源,平均通量分别为(0.66±0.17)μg·(m2·min)-1和(0.58±0.20)μg·(m2·min)-1;是CH4和CO的汇,其中CH4平均通量分别为(-0.21±0.078)μg·(m2·min)-1和(-0.26±0.10)μg·(m2·min)-1,CO分别为(-6.36±1.28)μg·(m2·min)-1和(-6.55±1.69)μg·(m2·min)-1.城市草地和土壤CO2平均通量分别为(5.28±0.75) mg·(m2·min)-1和(4.83±0.91) mg·(m2·min)-1.基于相关性分析研究发现,草地和土壤的CO2和N2O通量均与降水量呈显著的负相关,而CH4和CO通量与降水量呈显著的正相关;除草地CH4通量与土壤温度无显著相关、草地N2O通量与土壤温度呈显著负相关外,其余各温室气体通量与土壤温度均呈显著正相关.另外,城市草坪的草地和土壤CO2R2为0.371和0.314)和N2O (R2为0.371和0.284)通量季节变化受降水量的影响要大于其它温室气体,而土壤温度对CO通量的影响(R2为0.290和0.234)要显著于其它温室气体.  相似文献   
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