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1.
流化床焚烧含盐苯胺废液的NOx排放特性   总被引:2,自引:1,他引:1  
在流化床焚烧实验装置上进行含盐苯胺(C6H5NH2)废液的焚烧实验研究,用IMR-IMR2800P废气分析仪对焚烧尾气成分进行了在线监测,考察了焚烧工艺条件对NOx排放浓度的影响规律.结果显示:采用分级燃烧工艺和提高焚烧温度,可以降低NOx浓度;增大进料速率却导致NOx排放浓度的增加.当过剩空气系数(α)低于1.0时,NOx排放浓度随着α的增大急剧上升;大于1.1时,NOx排放浓度随α增加而减小.苯胺废液高温焚烧时添加氯化钠能降低NOx排放.  相似文献   

2.
本文对我国城市有机混合垃圾经模化后,在过剩空气系数α?2,温度在700~900℃条件下焚烧的气态排放物进行了定性和定量分析.实验结果表明:烟气呈碱性,主要污染物NH_2的排放浓度最高.HCl次之,NO_x<100ppm,SO_x<1ppm,H_2S<10ppm.  相似文献   

3.
针对现今高浓度有机废液处理困难的状况,开展了利用管式炉焚烧处理高浓度有机废液实验。研究了工业废液及苯酚溶液在不同气氛、温度下的燃烧效率、COD去除率、NO_x及SO_2等排放特性。研究表明:焚烧法对高浓度有机废液中有机物的去除效果明显,温度越高,燃烧效率和COD去除率越高;在实验温度范围内生成的NOx主要是快速型NO_x。  相似文献   

4.
针对现阶段高浓度有机废水处理困难的问题,提出了一种基于浸没燃烧技术的处理方法,设计制作了1台浸没燃烧装置,并开展了高浓度有机废水浸没燃烧实验研究,探究了过量空气系数、二次风量、燃烧温度等参数对燃烧尾气中CO、NOx排放的影响,以及浸没深度、燃烧温度对高浓度有机废水COD去除的影响。实验结果表明:该工艺对高浓度有机废水中的有机物去除效果明显,温度在900℃以上,浸没深度达到20 cm时,COD去除率可达90%以上。该方法可作为废水处理设备,与生物法等处理技术联用,应用前景广阔。  相似文献   

5.
在内径32mm的鼓泡流化床焚烧炉中,以含三氯乙醛有机废水为研究对象,在700-900℃的温度范围内,进行了含氯有机废水的焚烧及脱氯试验。研究了有机氯转化为HCI的转化率随温度的变化规律,发现随温度的升高,CI-HCI的转化率增加,900℃时CI-HCI的转化率达到98.5%,进行了高温下加CaO脱除HCI的实验研究,结果表明,温度升高,HCI脱率下降;在相同温度下,随着Ca/CI比的增中,HCI脱除率增加。通过对生成产物进行X射线能谱分析(EDAX)及扫描电子显微镜(SEM)分析的结果,解释了高温下CaO脱除HCI的效果差的原因。  相似文献   

6.
钠添加剂对NOxOUT工艺影响的研究   总被引:1,自引:0,他引:1  
在苯胺废液流化床焚烧实验装置上进行了以尿素做还原剂的选择性非催化还原脱硝(NOxOUT)试验,研究了不同钠添加剂(Na2CO3、NaOH和NaCl)对脱硝率以及温度窗口的影响.结果显示:微量的钠添加剂即可明显促进脱硝反应,脱硝率随着钠添加剂用量的增加而升高,钠添加剂通过产生·OH活性基团从而促进脱硝反应,3种钠添加剂对脱硝效果促进作用大小依次为NaOH、Na2CO3、NaCl,在温度为900~950℃,氨氮比为1.5,空气过剩系数为1.0~1.2时,NOxOUT脱硝率达到最大值.利用热力学原理计算出NOxOUT脱硝反应的摩尔反应焓、摩尔反应吉布斯函数、化学平衡常数等热力学参数,结果表明NOxOUT脱硝是热力学可行的.  相似文献   

7.
通过开展残渣与有机污染土壤的混合焚烧实验,分析了炉渣、烟气中多环芳烃和重金属的含量及浓度,明确了残渣焚烧的适用工艺及条件。结果表明,在一段炉焚烧温度600~900℃、二段炉出口温度≥1 100℃、烟气停留时间≥2s、急冷器出口温度≤150℃的条件下,炉渣中重金属含量较高,少部分进入到尾气中,多环芳烃含量极少,大部分被焚烧破坏和尾气净化设施去除。实验结果表明,在残渣掺入量为30%条件下,尾气排放能够满足标准要求。  相似文献   

8.
焚烧是医疗废物处置的主要方法,但在医疗废物焚烧过程中会产生大量的持久性剧毒有机污染物如多环芳烃(PAHs)、二噁英等。提出利用多孔氧化铝替代传统石英砂作为流化床焚烧炉床料,研究了流化床不同运行工况下多孔氧化铝对医疗废物焚烧过程中PAHs生成的影响规律,获得了多孔氧化铝床料抑制医疗废物焚烧过程中PAHs生成的最优工艺参数,并从传热、催化和吸附角度揭示了多孔氧化铝抑制医疗废物焚烧过程中PAHs生成的机理。结果表明:采用多孔氧化铝床料替代传统石英砂床料后,医疗废物焚烧烟气中PAHs浓度和其毒性当量浓度均可以降低50%以上;多孔氧化铝床料主要通过传热、催化和吸附作用降低了烟气中PAHs前驱物的浓度,削减了PAHs的生成;当焚烧温度为800℃、过剩空气系数为1.50时,多孔氧化铝床料抑制烟气中PAHs生成的效果最佳。  相似文献   

9.
比较了医疗废物焚烧飞灰在温度200~450℃,流动氮气和静态空气气氛中二噁英气固相行为变化.在流动氮气条件下,固相二噁英随温度升高逐渐增加,350℃下飞灰二噁英浓度升至最高,毒性当量浓度和总浓度分别增加了46.0%和26.0%,随后随着温度升高,二噁英含量逐渐降低,450℃条件下浓度减少至最低,分别减少了86.8%和80.5%.在静态空气下,固相二噁英随温度至250℃条件下,飞灰二噁英浓度升至最高,毒性当量浓度和总浓度分别增加了20.7%和28.7%,随着温度进一步升高,二噁英含量逐渐降低,450℃条件下浓度减至最低,分别减少了99.5%和99.5%.气相只有少量二噁英产生,仅占总产生量的0.11%~2.16%.本实验研究飞灰的最佳热处置条件为:静态空气条件下,450℃处置1 h.本研究中,分解反应在PCDDs与PCDFs的降解过程起到主要作用,而脱氯与脱附仅为次要作用.  相似文献   

10.
日本高崎工厂最近建成了焚烧有机废液的波形烟管锅炉。该燃烧装置用C重油助燃,在800℃以上的温度下,用蒸汽喷雾有机废液(2000kg/h)能完全把有机废液氧化分解。  相似文献   

11.
Rice husk with high volatile content was burned in a pilot scale vortexing fluidized bed incinerator. The fluidized bed incinerator was constructed of 6 mm stainless steel with 0.45 m in diameter and 5 m in height. The emission characteristics of CO, NO, and SO2 were studied. The effects of operating parameters, such as primary air flow rate, secondary air flow rate, and excess air ratio on the pollutant emissions were also investigated. The results show that a large proportion of combustion occurs at the bed surface and the freeboard zone. The SO2 concentration in the flue gas decreases with increasing excess air ratio, while the NOx concentration shows reverse trend. The flow rate of secondary air has a significant impact on the CO emission. For a fixed primary air flowrate, CO emission decreases with the secondary air flowrate. For a fixed excess air ratio, CO emission decreases with the ratio of secondary to primary air flow. The minimum CO emission of 72 ppm is attained at the operating condition of 40% excess air ratio and 0.6 partition air ratio. The NOx and SO2 concentrations in the flue gas at this condition are 159 and 36 ppm, which conform to the EPA regulation of Taiwan.  相似文献   

12.
选取CH4、O2、CO2、Ar、NO、NH3,等气体,作为混合气和煤粉一起送入一维沉降炉内,以模拟O2/CO2气氛下煤中燃料氮、循环NO以及二者的相互作用对NO排放的影响,结果显示,在还原性气氛下NH3、HCN、CH4、CO与循环NO间的反应是NO排放下降的主要因素,且煤焦与NO的异相反应、吸附反应对NO的降解效果要明显高于氧化性气氛,同时,CO2体积分数的增加使得燃料中氮的氧化率升高,循环NO的降解率下降;氧化性气氛下随CO2体积分数的增加,燃料中氮的氧化率也增加,但循环NO的降解率升高.当CO2体积分数不变时,其对NO降解的作用随循环NO体积分数的增加愈加明显,在循环NO也不变且CO2体积分数较低时,随过量空气系数的增加,循环NO的降解率下降,而CO2体积分数较高时则出现相反情况。  相似文献   

13.
烧结烟气湿式氨法同时脱硫脱硝实验研究   总被引:1,自引:1,他引:0  
在鼓泡反应器中进行烧结烟气湿式氨法同时脱硫脱硝的实验研究,考察了添加剂/NO物质的量比、吸收液NH3-NH+4浓度和烟气性质对烧结烟气脱硫脱硝的影响。实验结果表明:随着添加剂/NO物质的量比、烟气温度和NO浓度的增加,脱硝率均呈现先增大后减小的趋势。脱硝率随着吸收液中NH3-NH+4浓度的增大而增大。随着SO2浓度的增大,脱硝率逐渐减小。在所有实验条件下,脱硫率均接近或达到100%。在最佳实验条件下,脱硝率可达61.49%。通过添加添加剂部分氧化烧结烟气,可使烧结烟气湿式氨法脱硫工艺的脱硝率提高20%~30%。  相似文献   

14.
Some municipal solid waste (MSW) can be used as the fuel. Combustion of MSW with high nitrogen content is successfully conducted in a lab-scale vortexing fluidized-bed incinerator (VFBI). Pigskin with 16.5 wt.% nitrogen content was used to simulate the high nitrogen content kitchen waste, and silica sand was used as the bed material. The effects of operating conditions, such as the bed temperature, freeboard temperature, excess oxygen ratio, and static bed height on the CO and NO concentrations at the exit of combustor and cyclone were investigated. The experimental results show that the freeboard temperature is the most important factor for CO emission. The order of operating conditions impact on the NO emission is: (1) excess oxygen ratio; (2) bed temperature; (3) freeboard temperature; and (4) static bed height. Utilizing cyclone can significantly reduce the CO emission concentration when the CO concentration released from the freeboard is higher than 50 ppm. On the other hand, the cyclone has no significant effect on the NO emission. Despite having high nitrogen content, a low conversion from fuel-N to NO was attained. Compared with other types of combustors, VFBI reduces the CO and NO emission concentrations much better when burning MSW with high nitrogen content.  相似文献   

15.
文章采用计算流体力学软件Fluent数值模拟了1 025 t/h四角切圆煤粉炉内的湍流扩散燃烧,分析了空气过量系数对炉内烟气速度、烟气温度和氮氧化物组分的影响。结果表明:空气过量系数会对炉内流场的空气动力学特性和温度场分布均匀性产生显著影响。煤粉炉膛最佳空气过量系数为1.07,此时炉内温度场、速度场和浓度场的分布可使燃烧中间产物HCN和NH_3较好的将燃料型NO还原为N_2,来充分发挥空气分级燃烧降低NO排放的功效。  相似文献   

16.
采用DTG(热重/差热分析仪)和GC-MS(气相色谱质谱联用仪)对鹤岗煤超细化煤粉进行燃烧试验,分析了粒径、氧气浓度、升温速率对NOx释放的影响.结果表明,不同粒径的鹤岗煤在氧气浓度为20%的燃烧条件下,NOx的析出均为单峰曲线;粒径对煤粉燃烧NOx释放有重要影响,超细化煤粉可以减少NOx的排放;在5、10、20 ℃/min升温条件下,随升温速率的增大NO和NO2的析出量也增加,并且NO的最大析出速率对应的温度随着升温速率的提高也提高;随着燃烧气氛氧气浓度的增高,NOx的析出量相应增加,并且NOx的最大析出速率对应温度相应降低.  相似文献   

17.
循环流化床二段燃烧燃煤过程中NO和N2O生成与控制研究   总被引:2,自引:0,他引:2  
在小型石英循环流化床燃煤装置上,进行NO和N2O生成与控制研究?研究结果表明:随着二次空气率的提高,NO明显下降,二次风口的位置高,NO的下降速率明显一些;随着二次空气率的提高,N2O开始升高,但升高到一定程度后,随着二次空气率的提高,反而开始下降?此外,二次风口的位置高,N2O随二次风变化曲线的上升段和下降段的斜率都略大?   相似文献   

18.
This paper presents the experimental investigations of the emissions of SO2, NO and N2O in a bench scale circulating fluidized bed combustor for coal combustion and co-firing coal and biomass. The thermal capacity of the combustor is 30 kW. The setup is electrically heated during startup. The influence of the excess air, the degree of the air staging, the biomass share and the feeding position of the fuels on the emissions of SO2, NO and N2O were studied. The results showed that an increase in the biomass shares resulted in an increase of the CO concentration in the flue gas, probably due to the high volatile content of the biomass. In co-firing, the emission of SO2 increased with increasing biomass share slightly, however, non-linear increase relationship between SO2 emission and fuel sulfur content was observed. Air staging significantly decreased the NO emission without raising the SO2 level. Although the change of the fuel feeding position from riser to downer resulted in a decrease in the NO emission level, no obvious change was observed for the SO2 level. Taking the coal feeding position R as a reference, the relative NO emission could significantly decrease during co-firing coal and biomass when feeding fuel at position D and keeping the first stage stoichiometry greater than 0.95. The possible mechanisms of the sulfur and nitrogen chemistry at these conditions were discussed and the ways of simultaneous reduction of SO2, NO and N2O were proposed.  相似文献   

19.
The monthly concentrations of NO2, NOx, SO2 and O3 measured by a passive sampler from February 2003 to January 2004 showed that the air pollution during the winter season in Kathmandu valley was higher than the summer season. The O3 level was found the highest during April, May and June due to strong radiation. The hourly concentrations of NO2, NOx, O3 and suspended particulate matter(SPM) were also measured by automatic instruments on December 2003. Temperature at the height of 60 m and 400 m at Raniban Mountain in the northwest of Kathmandu valley was measured on February 2001 in the winter season and the average potential temperature gradient was estimated from observed temperature. Wind speed was also measured at the department of hydrology, airport section, from 18 February to 6 March 2001. It was found that the stable layer and the calm condition in the atmosphere strongly affected the appearance of the maximum concentrations of NO2 and SPM in the morning, and that the unstable layer and the windy condition in the atmosphere was considerably relevant to the decrease of air pollution concentrations at daytime. The emission amounts of NOx, HCs and total suspended particle(TSP) from transport sector in 2003 were estimated from the increasing rate of vehicles on the basis of the emission amounts in 1993 to be 3751 t/a, 30570 t/a and 1317 t/a, respectively. The diurnal concentrations in 2003 calculated by the two-layers box model reproduced the characteristics of air pollution in Kathmandu valley such as the maximum value of O3 and its time, the maximum value of NO in the morning, and the decrease of NO and NO2 at daytime. The comparison with the concentrations in 1993 calculated suggested that the main cause of air pollution was the emission from transport sector.  相似文献   

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