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1.
以3座北京市某区代表性区级污水处理厂为研究对象,综合《城镇水务系统碳核算与减排路径技术指南》、《污水处理厂低碳运行评价技术规范》和《IPCC 2006 年国家温室气体清单指南 2019 修订版》碳排放核算方法,采用定量统计、相关性分析及敏感性分析等手段对污水处理厂正常运行状态下碳排放核算和影响因素进行特征分析和规律识别,并提出针对性减排路径建议。结果表明:C厂C-TECH工艺的吨水碳排放强度为三厂最低1.35 kg CO2eq·m−3,处于我国较低水平,接近“双碳”目标要求;而B厂改良SBR工艺的单位污染去除碳排放强度较小,其COD碳排放强度为3.16 t CO2eq·t−1,TN碳排放强度为36.44 t CO2eq)·t−1,TP碳排放强度为176.69 t CO2eq·t−1,处于我国中上水平,从效能角度更接近“双碳”目标要求。不同工艺产生的温室气体、进水水质波动及用电消耗导致三厂碳排放强度上存在差异,但各工艺的主排碳因子均为间接碳排放 (A厂、B厂和C厂中分别占73%、59%和59%) ,间接碳排放的主贡献因子为电力消耗 (A厂、B厂和C厂中分别占33%、40%和40%) 。相关性分析发现,各水厂碳排放强度还与N2O造成的直接碳排放有较大相关性,3座水厂年排放N2O 2.48×104 t CO2eq,A厂、B厂和C厂中相关性系数值分别达到0.68、0.87、0.66。敏感性分析表明,整体碳排放强度对电力消耗、N2O排放和药耗的变化更为敏感,药耗中葡萄糖溶液和多效高分子除磷剂对碳排放强度影响较大。以上结果表明,北京区级污水处理厂应从优化曝气系统、水泵效能等节电措施和调整水厂加药模式等节药措施上实现减排。  相似文献   
2.
森林资源资产存量变化核算是建立森林资源资产管理绩效考核制度、遏制森林资源资产流失的必要前提与基础。在基于3S技术构建区域森林资源资产存量变化核算方案的基础上,对2000—2010年北京市森林资源资产存量数量、质量及其变化展开核算与分析。结果显示:在数量方面,除落叶阔叶林减少以外,其余各类森林数量都有不同程度增加,其中平谷区、顺义区果园林与海淀区、朝阳区城市绿地森林以及密云县、延庆县、门头沟区的落叶阔叶灌木林增幅最为显著;在质量方面,森林资源资产综合质量差、中2种等级森林面积都呈小幅减少趋势,质优森林面积大幅增加,其中平谷区、密云县增加最为显著;总体而言,2000—2010年间北京市森林资源资产存量数量大面积增加、森林质量大幅度提高,总体呈累积增加态势。  相似文献   
3.
北京10个常绿树种颗粒物吸附能力研究   总被引:9,自引:3,他引:9  
王兵  张维康  牛香  王晓燕 《环境科学》2015,36(2):408-414
大气中颗粒物PM(particulate matter)不仅造成环境污染,还对人体造成严重的危害.城市绿色植物作为大气过滤器,能够有效地提高城市空气质量,保护人体健康.因此了解不同树种对空气颗粒物的吸附滞纳作用是必要的.以北京植物园10种常绿植被为研究对象,应用空气气溶胶再发生器(QRJZFSQ-I)测定了北京市常见6种乔木和4种灌木叶片对空气总悬浮颗粒物(TSP)、PM10、PM2.5和PM1.0的吸附能力.结果表明:1不同树种叶片表面附着颗粒物的能力差异明显,最高的是雪松(Cedrus deodara)和油松(Pinus tabuliformis),吸附量分别是(18.95±0.71)μg·cm-2和(14.61±0.78)μg·cm-2,冷杉(Abies fabri)最小,为(8.02±0.4)μg·cm-2;2不同树种叶片单位面积对不同颗粒物的附着能力也存在差异,附着PM10能力最强的是油松和雪松,附着PM2.5能力最强的是雪松、铺地柏(Juniperus procumbens)、龙柏(Juniperus chinensis cv.kaizuka)和油松,附着PM1.0能力最强的是雪松、铺地柏、冷杉和油松;3不同月份叶片上附着的各粒级颗粒物(PM10、PM2.5)占TSP的比例不同.其中PM10在4~6月之间主要表现两种变化趋势,一是先上升后下降,主要为灌木树种;二是逐渐上升,主要的树种是乔木树种.而PM2.5则没有这种明显的变化趋势.  相似文献   
4.
介绍了北京市近几年来生活垃圾的产量及其变化趋势,对北京市近年来生活垃圾处理状况,垃圾处理场建设情况作了简要介绍。最后针对北京市生活垃圾处理面临的问题提出了建议,为北京市垃圾处理可持续发展提供理论依据。  相似文献   
5.
The spatial variability in the concentrations of 1,2,3,4,5,6-hexachlorocyclohexane (HCH) and 1,1,1-trichloro-2,2-bis-(p-chlorophenyl) ethane (DDT) in surface soils was studied on the basis of the analysis of 131 soil samples collected from the surface layer (0-20 cm depth) of the alluvial region of Beijing, China. The concentrations of total HCHs (including α-, β-, γ-, and δ-isomers) and total DDTs (i ncluding p,p'-DDT, p,p'-DDD, p,p'-DDE, and o,p'-DDT) in the surface soils tested were in the range from nondetectable to 31.72 μg/kg dry soil, with a mean value of 0.91, and from nondetectable to 5910.83 μg/kg dry soil, with a mean value of 32.13,respectively. It was observed that concentrations of HCHs in all soil samples and concentrations of DDTs in 112 soil samples were much lower than the first grade (50 μg/kg) permitted in "Environment quality standard for soils in China (GB15618-1995)". This suggests that the pollution due to organochlorine pesticides was generally not significant in the farmland soils in the Beijing alluvial region. In this study, the spatial distribution and trend of HCHs and DDTs were analyzed using Geostatistical Analyst and GS (513).Spatial distribution indicated how these pesticides had been applied in the past. Trend analysis showed that the concentrations of HCHs,DDTs, and their related metabolites followed an obvious distribution trend in the surface soils from the alluvial region of Beijing.  相似文献   
6.
《北京市生活垃圾管理条例》实施以来,北京垃圾分类工作取得"六升两降"八项成效.基于现阶段北京垃圾分类工作推进情况与存在的痛点、难点问题,提出通过购买第三方服务、借助科技手段与工具、多种渠道多种方式相结合、建立长效监督评价机制等方式,为顺利推进北京垃圾分类工作提供参考.  相似文献   
7.
This paper aims to identify the main driving force for changes of total primary energy consumption in Beijing during the period of 1981-2005. Sectoral energy use was investigated when regional economic structure changed significantly. The changes of total primary energy consumption in Beijing are decomposed into production effects, structural effects and intensity effects using the additive version of the logarithmic mean Divisia index (LMDI) method. Aggregate decomposition analysis showed that the major contributor of total effect was made by the production effect followed by the intensity effect, and the structural effect was relatively insignificant. The total and production effects were all positive. In contrast, the structural effect and intensity effect were all negative. Sectoral decomposition investigation indicated that the most effective way to slow down the growth rate of total primary energy consumption (TPEC) was to reduce the production of the energy-intensive industrial sectors and improving industrial energy intensity. The results show that in this period, Beijing's economy has undergone a transformation from an industrial to a service economy. However, the structures of sectoral energy use have not been changed yet, and energy demand should be increasing until the energy-intensive industrial production to be reduced and energy intensity of the region reaches a peak. As sequence energy consumption data of sub-sectors are not available, only the fundamental three sectors are considered: agriculture, industry and service. However, further decomposition into secondary and tertiary sectors is definitely needed for detailed investigations.  相似文献   
8.
1 BACKGROUND OF FLOATING POPULATIONIN CHINAChina's urbanization process was influenced mainly bythe government interventions before the adoption of thesocial and economic reform started in 1978. Since thefoundation of the People's Republic of China, thegovernment had strictly controlled the internal migration,especially from rural to urban areas. The ability of thegovernment to make a strong impact on the migrationand urbanization was realized by the household registrationsyste…  相似文献   
9.
The five central cities-Beijing,Tianjin,Shanghai,Guangzhou and Shenzhen-of the three most important strategic regions in China,namely Beijing-Tianjin-Hebei metropolitan region,the Yangtze River Delta and the Pearl River Delta,are taken as a comparative analysis on urban producer services’ competitiveness,especially focusing on the comparative advantages and disadvantages of producer services in Beijing.Firstly,based on an integrated indicator system including one objective hierarchy,four standard hierarchies and 35 indicator hierarchies,the study applies factor analysis model and analytic hierarchy process model reformed by entropy technology to measure the comprehensive competitiveness of producer services in the above five cities.Secondly,Beijing has comparative advantages of capital resource,industrial base,scientific research resource and market scale,since it takes the first place of the five cities in the comprehensive competitiveness of producer services,the competitiveness of industrial development,business environment and living environment,only inferior to Shanghai in the competitiveness of talent capital.Thirdly,Beijing has comparative disadvantages in the level of producer services development,urban innovation capability and living environment.Finally,five proposals are put forth to enhance the competitiveness of producer services in Beijing,namely perfecting the system of laws and statutes,supporting the development of industry association,implementing scientific development planning,introducing preferential fiscal and taxation policies and strengthening human capital reserve.  相似文献   
10.
为探究北京地区不同季节大气O3浓度垂直分布特征,于2010年12月1日—2011年3月31日(冬春季)和2011年5月7日—6月9日(夏初),在北京北部地区的中国环境科学研究院内,利用第三代移动式大气环境激光雷达系统,对$\varphi $(SO2)、$\varphi $(NO2)以及$\varphi $(O3)和气溶胶后向散射系数垂直方向和垂直剖面进行试验观测,并结合天气要素的变化进行了分析研究.结果表明:①$\varphi $(O3)存在明显的季节变化,表现为夏季>春季>冬季,同时晴天、微风、逆温条件等气象背景是O3污染过程出现的主要气象因素,在微风和南风的情况下,会出现高$\varphi $(O3)带,在北风影响情况下,$\varphi $(O3)相对较低,雨水冲洗的作用对$\varphi $(O3)分布也有明显的影响;②$\varphi $(O3)的日变化曲线呈单峰单谷型,$\varphi $(O3)峰值一般出现在14:00—18:00之间,谷值则出现在22:00—翌日09:00之间;③$\varphi $(O3)垂直分布呈现单峰、双峰、多峰型分布等多种垂直分布特征,10 km以上高空这3种分布特征均有出现,但是在5 km以下的近地面$\varphi $(O3)垂直和斜程分布基本呈现多峰型,斜程方向上$\varphi $(O3)的高低与下垫面及其所排放的O3前体物有密切的关系;④$\varphi $(O3)垂直分布呈现一定的不均匀性,其数值范围浮动比较小,最大值之间相差30×10-9.研究显示,$\varphi $(O3)垂直规律主要表现出两种分布特征,一种是在3~5 km处有高浓度的堆积区,另一种则没有明显高值堆积区.   相似文献   
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