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1.
玉环电厂1 000 MW机组降低Nox排放的技术分析与环境评价   总被引:1,自引:0,他引:1  
介绍了玉环电厂采用PM型燃烧器和MACT分级燃烧技术,降低了NOx生成量.预测不同负荷下的NOx排放浓度,对照《火电厂大气污染物排放标准》,分析玉环电厂的环境性能,为其他电厂降低NOx排放提供借鉴.  相似文献   

2.
鉴于PM2.5对人体的危害,为了提前预测PM2.5浓度值并及时通过降雨方法降低其浓度,开展了PM2.5浓度综合预测研究。通过对西安市一个空气质量监测点收集到观测数据分析与PM2.5浓度强相关的因素,随后综合考虑天气、温度、风力风向对PM2.5浓度观测值的影响,通过添加虚拟变量及因子分析提取因子的方法,将强相关因素、提取的天气、温度、风力风向因子与PM2.5浓度观测值进行回归预测,最终得到较好预测效果。  相似文献   

3.
燃煤电厂锅炉烟气PM10排放控制技术与应用   总被引:3,自引:2,他引:3  
介绍了目前中国燃煤电厂锅炉烟气微细粒子的污染状况,提出了对微细粒子排放采用袋式除尘的控制技术,并在河南焦作电厂220 MW机组上成功运行20000 h.实践表明,直通均流式脉冲袋式除尘器可以有效控制燃煤电厂锅炉烟气PM10、PM2.5的排放,满足环保新标准的要求.  相似文献   

4.
中美两国火电厂SO2排放要求与控制措施比较   总被引:4,自引:0,他引:4  
系统地比较了中美两国火电厂的SO2排状况、标准及控制要求,火电厂控制SO2排放的对策与措施;介绍了了火电厂SO2排放对大气环境及酸雨的不同影响;对我国火电厂SO2排放标准的修改及电厂SO2的排放控制提出建议。  相似文献   

5.
国电九江发电厂“上大压小”扩建工程2 x 660 MW超超临界燃煤机组配套采用旋转式低压脉冲袋式除尘器,对袋式除尘器进出口烟气中PM2.5、SO2、NO、SO3、氯化物、汞等浓度进行了现场测试,结果表明,该袋式除尘器能有效脱除烟气中的PM2.5,其PM2.5数浓度和质量浓度脱除效率可分别高达98.9%和99.7%,同时还可脱除富集在PM2.5表面的颗粒态汞。  相似文献   

6.
《化工环保》2004,24(6):466-466
为贯彻实施新修订的《火电厂大气污染物排放标》(GB13223-2003)(以下简称《排放标准》),有效控制火电厂大气污染物排放,2004年5月21日国家环保总局就有关要求通知如下:  相似文献   

7.
我国火电厂废水排放与利用   总被引:1,自引:0,他引:1  
朱法华 《电力环境保护》2001,17(4):19-21,35
从火电厂的用水情况、排水组成及超标原因等方面简述了我国火电厂废水治理的现状及存在问题,并分析了节水、减少废水排放和废水再用途径,在此基础上提出了我国火电厂2005年废水排放及回用目标。  相似文献   

8.
基于乌鲁木齐市各类非金属矿物制品业的活动水平数据及其排放因子,建立了2015年乌鲁木齐市3种大气污染物的排放清单。2015年乌鲁木齐市非金属矿物制品业大气污染物NOx、SO2和PM2.5的排放总量分别为1.17×104 t、1.63×104 t和8.35×103 t。混凝土配料行业是NOx和SO2的主要排放源,占比分别为56.77%和71.72%;PM2.5的排放源主要是水泥(干法)行业,占比为70.23%。米东区是对NOx、SO2和PM2.5排放量的最大贡献区域,头屯河区是NOx和SO2的第二大贡献区域,达坂城区是PM2.5的第二大贡献区域。污染物在5~9月处于排放高峰期。蒙特卡罗法模拟结果表明,混凝土配料制品行业95%置信区间的不确定性最高,为-72%~157%。  相似文献   

9.
湿式电除尘技术及其在电厂的应用前景探讨   总被引:4,自引:0,他引:4  
作为大气复合污染物控制系统的终瑞精处理技术装备,湿式电除尘器可用于控制PM2.5、酸雾、气溶胶、亚微米颗粒物、汞、重金属及二恶英等污染物的排放。论述了湿式电除尘器的工作原理、技术特点、结构及设计形式,探讨了湿式电除尘器在我国燃煤电厂的应用前景。  相似文献   

10.
以20台沸腾炉(功率小于等于60 MW)的燃料特性分析数据和大气污染物的排放实测数据为基础,利用统计分析方法,研究了燃烧过程中排放的颗粒物(PM)、SO_2和NO_x初始排放浓度的影响因素,分析了沸腾炉PM、SO_2和NO_x排放现状,探讨了我国中小型沸腾炉PM、SO_2和NO_x排放管理控制的潜力和可行性.实验结果表明:在锅炉运行负荷大于等于80%的条件下,中小型沸腾炉PM的初始排放浓度基本上不受锅炉出力、过量空气系数和燃煤灰分含量的影响;燃煤的硫含量越高,SO_2初始排放浓度越高;过量空气系数越大,燃煤挥发分越低,NO_x初始排放浓度越高.  相似文献   

11.
Emissions from open burning of military food waste and ration packaging compositions were characterized in response to health concerns from open burning disposal of waste, such as at military forward operating bases. Emissions from current and prototype Meals, Ready-to-Eat (MREs), and material options for their associated fiberboard packaging were quantified to assess contributions of the individual components. MREs account for 67–100% of the particulate matter (PM), volatile organic compounds (VOCs), polycyclic aromatic hydrocarbons (PAHs), and polychlorinated dibenzo-p-dioxins and -furans (PCDDs/PCDFs) emissions when burned in unison with the current fiberboard container and liner. The majority of the particles emitted from these burns are of median diameter 2.5 µm (PM2.5). Metal emission factors were similar regardless of waste composition. Measurements of VOCs and PAHs indicate that targeted replacement of MRE components may be more effective in reducing emissions than variation of fiberboard-packaging types. Despite MRE composition variation, equivalent emission factors for PM, PAH, VOC, and PCDD/PCDF were seen. Similarly, for fiberboard packaging, composition variations exhibited essentially equivalent PM, PAH, VOC, and PCDD/PCDF emission factors amongst themselves. This study demonstrated a composition-specific analysis of waste burn emissions, assessing the impact of waste component substitution using military rations.  相似文献   

12.
Air emissions and residual ash samples were collected and analyzed during experiments of open, uncontrolled combustion of electronic waste (e-waste), simulating practices associated with rudimentary e-waste recycling operations. Circuit boards and insulated wires were handled separately to simulate processes associated with metal recovery. The average emissions of polychlorinated dibenzodioxins and dibenzofurans (PCDD/PCDFs) were 92 ng toxic equivalency (TEQ)/kg [n = 2, relative standard deviation (RSD) = 98%] and 11 900 ng TEQ/kg (n = 3, RSD = 50%) of the initial mass of the circuit boards and insulated wire, respectively. The value for the insulated wire is about 100 times higher than that for backyard barrel burning of domestic waste. The emission concentrations of polybrominated dibenzodioxins and dibenzofurans (PBDD/PBDFs) from the combustion of circuit boards were 100 times higher than for their polychlorinated counterparts. Particulate matter (PM) sampling of the fly ash emissions indicated PM emission factors of approximately 15 and 17 g/kg of the initial mass for the circuit boards and insulated wire, respectively. Fly ash samples from both types of e-waste contained considerable amounts of several metallic elements and halogens; lead concentrations were more than 200 times the United States regulatory limits for municipal waste combustors and 20 times those for secondary lead smelters. Leaching tests of the residual bottom ash showed that lead concentrations exceeded U.S. Environmental Protection Agency landfill limits, designating this ash as a hazardous waste.  相似文献   

13.
As a first step to work out an abatement plan against air pollution, a local emission inventory with 1 hr temporal and 1 km spatial resolution in the city of Izmir and its surroundings was prepared. The study area consisted of a 200 × 170 km2 rectangle having the city of Izmir at the centre. The studied pollutants were total particulate matter (PM), sulfur oxides (SOx), nitrogen oxides (NOx), volatile organic compounds (VOC) and carbon monoxide (CO). Emissions of these pollutants were determined by estimation methods making use of suitable emission factors. Emission sources were evaluated in three categories; point, area and line sources. For year 2000 total emissions in the study area on an average day were estimated as 173 tons PM, 299 tons SOx, 136 tons NOx, 68 tons VOC and 320 tons CO. At the second part of the study, calculated emissions were transformed into air quality predictions in the area by using the Industrial Source Complex – Short Term (ISCST3) dispersion model. Model results were tested with monitoring data from urban air quality stations obtained during the year 2000. Results of the past, present and future air quality estimates in the region were discussed. In order to do so, future scenarios including various control technology applications were formulated and tested to see their effect on the future air quality.  相似文献   

14.
The mass, ionic and elemental size distributions of particulate matter (PM) measured indoors and outdoors in an apartment situated in a north–westward suburb of Prague are presented. The PM samples were collected by two Berner type low pressure impactors separating particles into 10 size fractions from 26 nm to 10 μm and were further analyzed by ion chromatography (IC) and proton induced X-ray emission (PIXE). Temperature, pressure and relative humidity were measured both indoors and outdoors parallel to PM sampling. The indoor and outdoor PM dynamics were recorded by two scanning mobility particle sizers (SMPS) and an aerodynamic particle sizer (APS). Finally, the ventilation rate was determined by a radon technique. Ion chromatography showed that the major inorganic components of the fine particle mode are sulfate, nitrate, and ammonium with very low indoor nitrate concentration. Crustal elements (Al, Si, Ca, Ti, Mn, and Fe) were associated with the coarse aerosol mode. The presence of people increased the mass concentration of coarse particles, whereas cooking, smoking, and burning of incense and candles contributed predominantly to the fine particle mode. Smoking and the burning of incense also increased the concentration of potassium, bromine and chlorine content in fine particles.  相似文献   

15.
A field study to evaluate the performance of three commercially available particulate matter (PM) continuous emission monitors (CEMs) was conducted in 1999-2000 at the US Department of Energy (DOE) Toxic Substances Control Act (TSCA) Incinerator. This study offers unique features that are believed to enhance the collective US experience with PM CEMs. The TSCA Incinerator is permitted to treat PCB-contaminated RCRA hazardous low-level radioactive wastes. The air pollution control system utilizes MACT control technology and is comprised of a rapid quench, venturi scrubber, packed bed scrubber, and two ionizing wet scrubbers in series, which create a saturated flue gas that must be conditioned by the CEMs prior to measurement. The incinerator routinely treats a wide variety of wastes including high and low BTU organic liquids, aqueous, and solid wastes. The various possible combinations for treating liquid and solid wastes may present a challenge in establishing a single, acceptable correlation relationship for individual CEMs. The effect of low-level radioactive material present in the waste is a unique site-specific factor not evaluated in previous tests. The three systems chosen for evaluation were two beta gauge devices and a light scattering device. The performance of the CEMs was evaluated using the requirements in draft Environmental Protection Agency (EPA) Performance Specification 11 (PS11) and Procedure 2. The results of Reference Method 5i stack tests for establishing statistical correlations between the reference method data and the CEMs responses are discussed.  相似文献   

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