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101.
102.
With the help of regression analysis,the relationships were detected between aerosol's contribution to apparent reflectance(ACR) derived from Moderate Resolution Imaging Spectroradiometer(MODIS)on board Terra and hourly PM_(10)mass concentration measured at 30 ground-based locations in Beijing for the August of 2003 and 2004.It was shown that there was a good correlation between the ACR and PM_(10)(linear correlation coefficient,R=0.56).On the basis of this relationship,spatial distribution and possible sources of PM_(10)derived from MODIS were analyzed and two frequently heavily-polluted regions were found,namely downtown of the city and the district near Xishan Mountain.These two regions coincidently are also urban heat island centers.The foundings of this paper will be greatly useful for environmental monitoring and urban planning for Beijing,especially for the 2008 Olympic game to be held in Beijing. 相似文献
103.
Assessing field vulnerability to phosphorus loss in Beijing agricultural area
using Revised Field Phosphorus Ranking Scheme 总被引:1,自引:0,他引:1
Guanting Reservoir,one of the drinking water supply sources of Beijing,suffers from water eutrophication.It is mainly supplied by Guishui River.Thus,to investigate the reasons of phosphorus(P)loss and improve the P management strategies in Guishui River watershed are important for the safety of drinking water in this region.In this study,a Revised Field P Ranking Scheme(PRS)was developed to reflect the field vulnerability of P loss at the field scale based on the Field PRS.In this new scheme,six factors are included, and each one was assigned a relative weight and a determination method.The affecting factors were classified into transport factors and source factors,and,the standards of environmental quality on surface water and soil erosion classification and degradation of the China were used in this scheme.By the new scheme,thirty-four fields in the Guishui River were categorized as"low","medium"or"high"potential for P loss into the runoff.The results showed that the P loss risks of orchard and vegetable fields were higher than that of corn and soybean fields.The source factors were the main factors to affect P loss from the study area.In the study area,controlling P input and improving P usage efficiency are critical to decrease P loss.Based on the results,it was suggested that more attention should be paid on the fields of vegetable and orchard since they have extremely high usage rate of P and high soil test of E Compared with P surplus by field measurements,the Revised Field PRS was more suitable for reflecting the characteristics of fields,and had higher potential capacity to identify critical source areas of P loss than PRS. 相似文献
104.
北京山区小流域治理措施综述 总被引:1,自引:0,他引:1
山区小流域综合治理,是中国治理水土流失的主要形式.近10年来,随着可持续发展概念的引入,山区小流域治理与经济开发、资源保护相结合的战略思想逐渐被人们认识和接受,实现流域的可持续发展,已成为当今小流域治理活动的准则.综述主要对北京山区小流域治理措施进行了总结,并指出小流域治理需要综合运用多种措施;小流域治理必须充分考虑流域特征,因地制宜,分类治理. 相似文献
105.
基于卫星遥感与地面监测分析北京大气NO_2污染特征 总被引:5,自引:2,他引:3
分析了1999—2010年北京大气NO2地面质量浓度、2004年以来北京及周边NO2柱浓度的变化.结果表明:1999—2007年来北京大气NO2质量浓度以升高为主.2008年实施奥运空气质量保障措施极大地缓解了北京NO2污染状况,地面质量浓度与垂直柱浓度都出现不同程度的回落.2009年北京大气NO2污染又有所反弹,但低... 相似文献
106.
为了解北京城区大气干沉降中水溶性离子的化学组成与时间变化特征,连续进行了4年多的干沉降采样与分析.结果表明,在222个有效干沉降样品中,存在不同程度的阴离子缺失. SO42-与Ca2+分别是含量最丰富的阴、阳离子组分,其次是NO3-和NH4+. SO42-、NO3-和NH4+呈现相似的季节变化特征,即其浓度在夏季最高,冬季最低. 干沉降基本呈中性,其pH值月变化幅度小,但季节变化明显,夏季低而春季高. 相似文献
107.
Seasonal and diurnal variations of atmospheric peroxyacetyl nitrate, peroxypropionyl nitrate, and carbon tetrachloride in Beijing 总被引:1,自引:0,他引:1
Gen Zhang Yujing Mu Junfeng Liu Chenglong Zhang Yuanyuan Zhang Yujie Zhang Hongxing Zhang 《环境科学学报(英文版)》2014,26(1):65-74
Atmospheric peroxyacetyl nitrate(PAN), peroxypropionyl nitrate(PPN), and carbon tetrachloride(CCl4) were measured from September 2010 to August 2011 in Beijing. PAN exhibited low values from mid-autumn to early spring(October to March) with monthly average concentrations ranging from 0.28 to 0.73 ppbV, and increased from early spring to summer(March to August), ranging from 1.37–3.79 ppbV. The monthly variation of PPN was similar to PAN, with low values(below detection limit to 0.18 ppbV) from mid-autumn to early spring, and a monthly maximum in September(1.14 ppbV). The monthly variation of CCl4was tightly related to the variation of temperature, exhibiting a minimum in winter(69.3 pptV) and a maximum of 180.6 pptV in summer. Due to weak solar intensity and short duration, PAN and O3showed no distinct diurnal patterns from morning to night during winter, whereas for other seasons, they both exhibited maximal values in the late afternoon(ca. 15:00 to 16:00 local time) and minimal values during early morning and midnight. Good linear correlations between PAN and PPN were found in autumn(R = 0.91), spring(R = 0.94), and summer(R = 0.81), with slopes of 0.130, 0.222, and 0.133, respectively, suggesting that anthropogenic hydrocarbons dominated the photochemical formation of PANs in Beijing. Positive correlation between PAN and O3 in summer with the low slopes( O3 / PAN) ranging from 9.92 to 18.0 indicated serious air pollution in Beijing, and strong negative correlation in winter reflected strong O3consumption by NO titration and less thermal decompositin of PAN. 相似文献
108.
109.
雾霾重污染期间北京居民对高浓度PM2.5持续暴露的健康风险及其损害价值评估 总被引:31,自引:19,他引:12
开展短期内高浓度空气污染造成的人体健康风险评价以及健康经济损失研究,对推进城市大气污染防控,保证人民群众的健康水平具有重要的科学价值和实际意义.研究选择2013年1月发生的北京市雾霾重污染事件,采用泊松回归模型评价全市居民对10~15日高浓度PM2.5暴露的急性健康损害风险,并采用环境价值评估方法估算人群健康损害的经济损失.结果表明,短期高浓度PM2.5污染对人群健康风险较高,约造成早逝201例,呼吸系统疾病住院1 056例,心血管疾病住院545例,儿科门诊7 094例,内科门诊16 881例,急性支气管炎10 132例,哮喘7 643例.相关健康经济损失高达4.89亿元(95%CI:2.04~7.49),其中早逝与急性支气管炎、哮喘三者占总损失的90%以上.建议应针对不同人群不同健康终点的健康风险进行健康预警并开展及早医学干预,以降低类似空气重污染事件给居民健康带来的风险和损失. 相似文献
110.
北京地区冬夏季持续性雾-霾发生的环境气象条件对比分析 总被引:29,自引:14,他引:15
在北京地区,除冬季供暖期外盛夏也是雾-霾天气的高发季节,与我国南方不同.使用微波辐射仪、风廓线和常规气象探测资料、NCEP再分析资料以及大气成分观测结果,通过对比分析揭示了冬、夏季持续6 d的2个雾-霾过程形成和维持机制的异同.冬季雾-霾过程出现在高空西北气流、低层多短波活动的背景下,其形成和维持的主要机制是边界层内始终有逆温层、地面弱风场、底层湿度逐渐增大.逆温层昼高夜低、湿度昼小夜大是影响PM2.5质量浓度和能见度日变化的重要环境因子.在雾-霾天气持续期间地面弱风场能够维持主要源于冷空气势力弱、常不能影响到地面.此外,入夜后地面迅速辐射降温、边界层上层有暖平流以及空气过山后下沉增温在逆温层的形成中起了关键作用.然而,对于夏季持续性雾-霾天气,气溶胶区域输送、环境大气保持对流性稳定、空气的高饱和度是其发生的重要条件.在副热带高压长时间控制下对流层低层盛行偏南风,北京的PM2.5质量浓度随着偏南风风速增大升高.对流层底层系统性偏南风与北京附近的山谷风共同构成了从北京以南气溶胶累积地向北输送的机制.夏季雾-霾过程低层没有逆温,但是北京上空一直维持超过200 J·kG-1的对流抑制能量,它同样限制了污染物的垂直扩散.夏季自由对流高度也存在昼夜变化,其对PM2.5浓度和能见度的作用与逆温层高度升降相同.因此,冬、夏个例分别代表了2种不同类型的持续性雾-霾过程,导致差异的根本原因在于大气环流型. 相似文献