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1.
通过烟雾箱实验,研究了SO2-NO2-NH3-H2O四元反应体系在气-粒转化过程中新形成颗粒物数浓度与粒径分布的变化.研究发现,SO2-NO2-NH3-H2O四元反应体系具有显著的成核能力,且其成核强度大,持续时间短.当SO2、NO2浓度为200mg/m3,NH3浓度为12x10-6时,反应体系的气溶胶总个数浓度在2min时达到峰值2.5x106cm-3.缺少任一种气体均会使气溶胶成核强度下降.SO2、NO2及NH3浓度分别为0的工况下气溶胶总个数浓度峰值分别下降了41.0%、83.6%及98.5%.在电厂污染气体排放浓度区间内,NO2对气溶胶生成影响大于SO2.燃煤电厂控制NOx排放浓度对改善烟囱出口气溶胶数浓度更有效.在实验基础上,对颗粒物成核特性进行拟合,反应体系在气-粒转化过程中产生的新颗粒物总个数浓度及中值粒径与气态前体物浓度线性相关;采用布朗团聚模型对气溶胶成核后的团聚过程总个数浓度及粒径变化进行模拟计算,根据给定的燃煤电厂SO2、NO2、NH3排放浓度,给出预测气溶胶颗粒成核速率、粒径分布及总个数浓度变化的方法.  相似文献   

2.
株洲市工业区大气中SO2转化速率的研究   总被引:2,自引:0,他引:2  
在湖南省株洲市工业区的下风向布点,同时测定大气中SO2的浓度、TSP和<0.25μm细粒子中SO2-4的浓度.结果表明,大气中SO2浓度随着离污染源距离的增加迅速下降,和SO2相比,颗粒物中SO2-4浓度随距离的增加而降低的程度要慢得多.同步测定的SO2浓度和细粒子SO2-4浓度有显著的相关关系.根据风向、风速和新产生的细粒子中的SO2-4浓度及大气中SO2的浓度计算了株洲教育学院处SO2的转化速率,春季湿度大,SO2转化速率也大,为4.8%/h,秋季湿度小,SO2的转化速率变低,为1.5%/h.春季中路铺SO2转化速率为3.1%/h.  相似文献   

3.
本研究采用烟雾箱模拟的方法,在不同NOx条件下,对二甲胺、三甲胺、二乙胺、苯胺、乙醇胺与OH自由基光氧化生成二次气溶胶(SA)的过程及其云凝结核(CCN)活性进行了测定.结果表明,当不添加NOx时,乙醇胺的SA生成系数(FAC)最高(0.22),而三甲胺与苯胺的FAC较低(≤0.05),二甲胺与二乙胺的FAC则趋于0,且该条件下生成的气溶胶CCN活性较弱,三甲胺、苯胺与乙醇胺生成的SA吸湿性参数(κSA)值为0.10~0.22,符合典型有机物κ值.当添加NOx后,各有机胺生成的SA粒径、密度变大,且SA的生成系数均有提高,在高NOx浓度条件下按SA的生成系数对有机胺排序:乙醇胺>苯胺>二甲胺>三甲胺>二乙胺;同时添加NOx后SA的CCN活性变强,在高NOx浓度条件下按其CCN活性对有机胺排序:乙醇胺>二甲胺>苯胺>二乙胺>三甲胺,其中,乙醇胺最高(κSA=0.65)...  相似文献   

4.
为研究NO2对SO2/H2O/空气体系气溶胶成核过程的影响,采用纳米扫描迁移率粒子粒径谱仪(Nano-SMPS),对NO2/SO2/H2O/空气混合气体在X-射线作用下生成粒子的粒径和浓度进行测量. 结果表明,粒子的粒径在2.0~63.8 nm之间,最高数浓度可达到1.4×107 cm-3. 成核粒子谱的分布呈双峰模式,其中一个谱峰中心位置在4.0 nm附近,另一个在7.0~14.6 nm之间,分别对应于均相成核和离子诱导成核两种过程. 在均相成核方面,NO2和SO2均能参与气溶胶成核,而对气溶胶的生长没有明显影响,粒子的粒径主要集中在4.0 nm附近. 在离子诱导成核方面,当混合气体中φ(SO2)低于2.12×10-6时,加入NO2可促进粒子生成;而当超过该值时,NO2的加入反而会降低气溶胶成核粒子的总数浓度. 当φ(SO2)为3.61×10-6时,在φ(NO2)分别为0.13×10-6、0.18×10-6和0.84×10-6的条件下,气溶胶成核粒子的总数浓度比不含NO2下分别减少了25.9%、33.1%和49.0%. 研究显示,NO2和SO2对·OH的反应竞争作用是影响NO2/SO2/H2O/空气体系气溶胶成核的重要机制.   相似文献   

5.
中国是一个以煤为主要燃料的国家,粉煤灰的综合利用问题早已受到人们的关注。褐煤粉煤灰中含有较多的碱性物质,它是一种优良且价廉的低浓度二氧化硫烟气脱硫吸收剂。试验研究结果表明,采用粉煤炭吸收液碱法脱硫在技术上是可行的,控制吸收液pH值大于6即可获得良好的脱硫效果。试验中考察了固液比、pH、温度、SO2浓度和气体流墓等因素对粉煤灰吸收液净化效率的影响情况。粉煤灰碱法脱硫在经济性方面优于石灰/石灰石法。   相似文献   

6.
微生物法液相氧化SO2   总被引:6,自引:0,他引:6  
通过对酸性水溶液、含Fe3+水溶液、含Fe2+水溶液、细菌菌液和细菌培养基水溶液脱除二氧化硫的实验,探讨了微生物液相氧化二氧化硫的途径.以液相中SO42-浓度考察了Fe3+浓度、Fe2+浓度、进口SO2浓度以及温度对脱硫成酸的影响.微生物脱硫有2种机制:一是直接氧化作用,即氧化亚铁硫杆菌(Thiobacillus ferrooxidans)将S(IV)氧化成S(VI);二是间接催化氧化,氧化亚铁硫杆菌在酸性条件下具有快速氧化Fe2+成Fe3+,增强Fe3+对SO2的液相催化氧化能力,研究表明微生物脱硫以间接催化氧化为主.在浓度0~1.2g/L之间,Fe3+和Fe2+浓度越高,脱硫效果越好,氧化亚铁硫杆菌表现出对Fe3+/Fe2+体系氧化SO2的强化效果.入口SO2浓度越高,细菌脱硫效率越低,但液相中SO42-浓度随进口SO2浓度增加变化不大.温度对微生物脱硫影响较大,最佳脱硫温度为30~40℃.  相似文献   

7.
NO2是大气中常见污染气体,影响大气二次有机气溶胶(Secondary organic aerosol,SOA)的形成.运用实验室烟雾箱模拟二甲苯大气光氧化反应过程,研究NO2对二甲苯SOA生成量、光学特性和化学组成的影响.结果显示,NO2促进二甲苯SOA的形成,NO2浓度从0增长到900×10-9,二甲苯SOA的质量浓度增长2倍左右,并且邻二甲苯SOA质量浓度大于对二甲苯SOA.这是因为邻位取代基相比于对位取代基更倾向于形成醛,有利于聚合反应形成低聚物,促进SOA形成.此外,NO2浓度增加显著提高所生成SOA的单位质量吸光度(Mass absorption coefficients,MAC),这是由于前体物邻二甲苯和对二甲苯化学结构不同,邻二甲苯所生成的含氮有机物具有更强吸光性,从而导致邻二甲苯SOA的MACλ=365 nm大于对二甲苯SOA的MACλ=365 nm.在线气溶胶质谱仪分析结果进一步显示:二者光化...  相似文献   

8.
利用自制气溶胶反应器研究了NO_x和/或NH_3气氛下SO_2在高岭土表面的非均相转化过程,应用扫描电镜(SEM)对高岭土颗粒物形貌进行了表征.结果表明:高岭土颗粒表面的SO_2非均相转化致使其成分和形貌产生了较大变化.相同实验条件下,SO_2转化的协同作用程度由高到低依次为NH_3、NO_x/NH_3和NO_x气氛,相对湿度40%、有光照条件下,SO_2转化量增幅最高可分别达125%、75%和50%.所有气氛下,协同作用在无光照时在高相对湿度(40%~70%)区间更为突出,有光照时其显著性则体现在低相对湿度(20%~40%)区间.SO_2、NO_x、NH_3三者共存时,在高岭土颗粒表面发生的非均相反应过程既有协同作用又存在竞争反应.  相似文献   

9.
我国SO2减排构想与经济分析   总被引:8,自引:3,他引:8       下载免费PDF全文
对我国未来燃煤SO2排放数量进行了测算,设计了一个SO2减排方案,并对减排成本进行了经济分析。据测算,2000年燃煤SO2排放量将达到2163万t,减排44万t,减排成本为12.99亿元;2010年燃煤SO2排放量将达到2613万t,减排1448万t,减排成本为285.10亿元。   相似文献   

10.
基于WRF-Chem模式模拟了关中盆地2019年1月2—14日一次颗粒物污染事件,评估了NOx和SO2减排及其在颗粒物污染中的协同作用对PM2.5污染的影响。敏感性实验结果表明:NOx减排可使PM2.5中硝酸盐含量下降,但大气中O3浓度上升,大气氧化能力增强,其他二次组分上升,导致PM2.5下降不明显;SO2人为源减排可使硫酸盐质量浓度下降,但由于硫酸盐在PM2.5中占比较低,当SO2减排75%时,PM2.5仅下降1.74%;当减排比例较高时,NOx和SO2同时减排更有利于颗粒物污染防治。PM2.5质量浓度在NOx和SO2同时减排75%时比分开减排75%时多下降0.75%,主要是硫酸盐下降所致;对气溶胶含水量进行分析,发现NOx<...  相似文献   

11.
将稳定同位素方法应用于闽南地区SO2在潮湿气溶胶表面氧化动力学研究中,在对大气中SO2的稳定硫同位素及大气气溶胶中可溶性硫的硫稳定同位素丰度的测定的基础上,用硫稳定同位素动力学方程计算SO2在潮湿气溶胶表面氧化速率与均相氧化速率比?结果表明:漳州地区潮湿气溶胶表面SO2非均相和均相氧化速率之比:K非/K均为1.13,厦门地区SO2非均相和均相氧化速率之比:K/K为0.36,这种差异主要是由相对湿度不同引起的。   相似文献   

12.
HCl and SO_2 emission is one of the major concerns related to municipal solid waste incinerator(MSWI). In this study, a material flow analysis model was developed to estimate the HCl and SO_2 concentrations in the MSWI flue gases(FGs), and their concentrations in the full-scale MSWI were monitored. The calculated concentrations of HCl and SO_2 in the FG were 770–1300 mg/Nm~3 and 150–640 mg/Nm~3, respectively, in close agreement with the monitored values. More than 99% of Cl and 92% of S from the FG were captured into solid residues by the air pollution control(APC) systems. Moreover, since only 48.4%–67.5% of Cl and 21.3%–53.4% of S were transferred to the FG from the municipal solid waste(MSW), it was more reliable to estimate the source strengths and release amounts of HCl and SO_2 in the FG based on the amounts of Cl and S in the APC residues(AR) and exhaust gas rather than in the MSW. This simple method is easily applicable and the estimated results could provide scientific basis for the appropriate design and operation of the APC systems as well as corrosion control of heat recovery systems.  相似文献   

13.
The conversion rates of SO2 to SO2-4 and NO2 to HNO3+NO3- are estimated from the field-data obtained in Beijing in summer, 1988. The results show that the conversion rate of NO2 is about four times as much as that of SO2; The conversion rates have a diurnal variation in a day. On the average, the rate of SO2 is estimated to be 4.7% h-1 during the daytime and 3.4% h-1 during the nighttime. Similarly, the rate of NO2 is estimated to be 17.2% h-1 and 12% h-1 respectively.  相似文献   

14.
Sulfur poisoning of V_2O_5/BaSO_4–TiO_2(VBT),V_2O_5/WO_3–TiO_2(VWT) and V_2O_5/BaSO_4–WO_3–TiO_2(VBWT) catalysts was performed in wet air at 350℃ for 3 hr,and activities for the selective catalytic reduction of NO_x with NH_3 were evaluated for 200–500℃.The VBT catalyst showed higher NO_x conversions after sulfur poisoning than the other two catalysts.The introduction of barium sulfate contributed to strong acid sites for the as-received catalyst,and eliminated the redox cycle of active vanadium oxide to some extent,which resulted in a certain loss of activity.Readily decomposable sulfate species formed on VBT-S instead of inactive sulfates on VWT-S.These decomposable sulfates increased the number of strong acid sites significantly.Some sulfate species escaped during catalyst preparation and barium sulfate was reproduced during sulfur poisoning,which protects vanadia from sulfur oxide attachment to a great extent.Consequently,the VBT catalyst exhibited the best resistance to sulfur poisoning.  相似文献   

15.
Sulfide dioxide(SO2) is often released during the combustion processes of fossil fuels. An integrated bioreactor with two sections, namely, a suspended zone(SZ) and immobilized zone(IZ), was applied to treat SO2 for 6 months. Sampling ports were set in both sections to investigate the performance and microbial characteristics of the integrated bioreactor. SO2 was effectively removed by the synergistic effect of the SZ and IZ, and more than 85%removal efficiency was achieved at steady state. The average elimination capacity of SO2 in the bioreactor was 2.80 g/(m3·hr) for the SZ and 1.50 g/(m3· hr) for the IZ. Most SO2 was eliminated in the SZ. The liquid level of the SZ and the water content ratio of the packing material in the IZ affected SO2 removal efficiency. The SZ served a key function not only in SO2 elimination, but also in moisture maintenance for the IZ. The desired water content in IZ could be feasibly maintained without any additional pre-humidification facilities. Clone libraries of 16 S r DNA directly amplified from the DNA of each sample were constructed and sequenced to analyze the community composition and diversity in the individual zones.The desulfurization bacteria dominated both zones. Paenibacillus sp. was present in both zones, whereas Ralstonia sp. existed only in the SZ. The transfer of SO2 to the SZ involved dissolution in the nutrient solution and biodegradation by the sulfur-oxidizing bacteria.This work presents a potential biological treatment method for waste gases containing hydrophilic compounds.  相似文献   

16.
The performance of a biofilter relies on the activity of microorganisms during the gas contaminant treatment process. In this study, SO_2 was treated using a laboratory-scale biofilter packed with polyurethane foam cubes(PUFC), on which thermophilic desulfurization bacteria were attached. The thermophilic biofilter effectively reduced SO_2 within 10 months of operation time, with a maximum elimination capacity of 48.29 g/m~3/hr.Temporal shifts in the microbial population in the thermophilic biofilter were determined through polymerase chain reaction-denaturing gradient gel electrophoresis and deoxyribonucleic acid(DNA) sequence analysis. The substrate species and environmental conditions in the biofilter influenced the microbial population. Oxygen distribution in the PUFC was analyzed using a microelectrode. When the water-containing rate in PUFC was over 98%, the oxygen distribution presented aerobic–anoxic–aerobic states along the test route on the PUFC. The appearance of sulfate-reducing bacteria was caused by the anaerobic conditions and sulfate formation after 4 months of operation.  相似文献   

17.
通过对广州市上空SO2垂直分布数据的分析,揭示了广州市上空SO2垂直分布特征及垂直扩散规律。国内目前低空(1000m以下)污染物垂直分布观测较少,该文可作为一个研究实例。   相似文献   

18.
2000~2014年北京市SO2时空分布及一次污染过程分析   总被引:2,自引:2,他引:2  
根据2000~2014年北京市SO2监测数据,系统分析了SO2时空分布特征并采用数值模式(CAMx)模拟分析了一次重污染过程中北京市SO2来源.结果表明,2014年与2000年相比北京市SO2年均浓度累计约降低69%,SO2年均浓度的变化率为-3.5μg·(m3·a)-1;北京市SO2的月均浓度呈U型分布,季节分布上整体呈现出冬季春季秋季夏季的特征,采暖季SO2浓度明显高于非采暖季;空间分布上北部及西部山区SO2浓度水平明显低于中心城区及西南、东南部地区,受减排措施影响较大的石景山、东四、通州监测点的SO2浓度降低明显;在2014年1月14~18日一次重污染过程中北京SO2存在明显的区域输送,PAST源示踪技术初步计算显示外来源对北京SO2浓度的贡献率为83%,其中北京周边高架点源电厂贡献占21%,北京4家主要燃煤电厂对全市SO2浓度贡献率约为3.5%.  相似文献   

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