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1.
以东北地区某350 MW火电机组为研究对象,对其超低排放改造后的脱硝系统择性催化还原(selective catalytic reduction,SCR)反应器进行性能测试,利用所获数据绘制等高线图和折线图,研究并分析了SCR反应器出、入口烟气流场和NO_x浓度场的分布特性。结果显示,脱硝系统平均效率为97.37%,SCR反应器出口NO_x平均浓度为13.31 mg·m~(-3),均达设计要求(脱硝效率≥91.1%,出口浓度≤40mg·m~(-3)),总体脱硝性能表现良好。结果表明:入口NO_x均匀度较好;甲、乙侧反应器出口烟道NO_x浓度的离散度分别为31.49%、56.90%,高于设计值(≤15%),出口NO_x分布不均匀。技术改造使得该机组SCR反应器出口NO_x浓度满足了超低排放限值的要求(≤50 mg·m~(-3)),却在喷氨优化调整、喷氨格栅清理以及催化剂压差控制等方面存在不足。在增加新催化剂层的基础上,对于催化剂层结构疏通、喷氨自动控制、烟气流场的校核与改造等方面仍有提升的空间。  相似文献   

2.
选择性催化还原SCR烟气脱硝技术以其脱硝效率高、技术成熟等优点在大型燃煤电厂获得广泛的应用。采用CFD软件对双鸭山电厂200 MW燃煤机组SCR烟气脱硝反应器内烟气气流进行了数值模拟,在原有模型的基础上,通过添加导流板、微调几何模型形状等方法,达到对烟道内气流优化、提高SCR脱硝效率的目的。  相似文献   

3.
通过实验考察了快速SCR反应对商用V2O5-WO3/Ti O2催化剂脱硝特性的影响。在250~375℃的实验温度区间内,快速SCR反应能适应更宽的温度窗口而保持较高的效率;快速SCR反应在高空间速度(SV=12 400 h-1)的脱硝效率甚至要高于标准SCR反应在低空间速度(SV=7 400 h-1)时的脱硝效率;快速SCR反应在410~820 mg·m-3的NOx质量浓度内脱硝效率波动不大。通过快速SCR反应和标准SCR反应条件下的催化剂活性分析和体积量计算,快速SCR反应相较标准SCR反应可以提高活性1.4倍,减少催化剂用量28.57%,同时通过催化剂寿命计算,快速SCR反应可以延长现有SCR脱硝系统V2O5-WO3/Ti O2催化剂寿命22 582 h,延长催化剂的更换周期941 d。  相似文献   

4.
对燃煤电厂静电除尘设备协同控制汞排放影响因素展开深入研究,主要分析除尘器前后烟气中汞形态浓度的变化情况、除尘器内部飞灰对烟气汞的吸附及SCR脱硝反应器对除尘器脱汞的影响。采用安大略法和Lumex汞分析仪分别对我国8家电厂烟气、煤和灰中汞含量进行了测试,并对某电厂SCR反应器前后飞灰汞含量进行了测试对比。  相似文献   

5.
水泥工业是NOx的高排放行业,现有的燃烧控制技术难以满足日益提高的环保要求,因此烟气脱硝技术在水泥工业的应用将势在必行.选择性催化还原(SCR)脱硝技术是脱硝率最高的烟气脱硝技术,在燃煤电厂已有较大规模的应用,但是在水泥工业中的研究和应用相对滞后.简要介绍了SCR脱硝技术工作原理及其在水泥窑炉的应用现状,总结了催化材料研究和应用进展,探讨了水泥窑炉NOx减排用SCR脱硝技术和催化材料的研究方向.  相似文献   

6.
平板玻璃工业窑炉烟气中低温SCR脱硝中试研究   总被引:2,自引:0,他引:2  
我国平板玻璃工业正面临严峻的NOx控制形势,研究并推广玻璃窑炉高效脱硝技术对玻璃工业发展及大气环境保护均具有重要意义。选择性催化还原(SCR)脱硝技术是国内外公认效率最高的脱硝技术,然而该技术在玻璃窑炉中推广应用还面临诸多技术问题。本研究设计并建设了10 000 Nm3/h的平板玻璃工业窑炉中低温SCR脱硝中试装置,分析了玻璃窑炉烟气组分波动规律及其对SCR脱硝系统的潜在影响,考察了烟气温度、喷氨量控制和烟气处理量等工艺参数,开展了为期6 d的连续运行实验。这些在实际烟气中开展的研究为玻璃窑炉SCR脱硝技术研究分享了大量一手数据和经验。  相似文献   

7.
张蕊  张艳艳 《污染防治技术》2010,23(3):15-17,40
介绍了SCR、SNCR等脱硝技术,着重介绍了SCR烟气脱硝技术中催化剂的基本知识及常用的催化剂种类,阐述了燃煤电厂应用SCR技术对催化剂的要求,并分析了影响催化剂钝化的主要因素。  相似文献   

8.
低温选择性催化还原(SCR)脱硝是国内外脱硝技术研发的热点,但目前主要集中在实验室小试范围,无法完全反映催化剂在实际烟气中的运行状况。在30 t/h循环流化床燃煤锅炉脱硫除尘装置后建设了2 000~5 000 m3/h的SCR脱硝中试装置,经系统研究发现,中试使用的蜂窝式催化剂对SO2和NO具有很强的吸附能力,且反应温度、喷氨速率和气体空速均会影响催化脱硝效率。为期5 d的连续运行实验结果表明,催化剂的脱硝效率一直稳定在30%~50%,并未发现明显的失活,这证明设计除雾除尘器、较大的混合器、混合器与反应器间较长的管路均有利于缓解催化剂因SO2、H2O和飞灰中的碱性金属导致的失活。  相似文献   

9.
低温选择性催化还原脱除NOx的催化剂的研究进展   总被引:2,自引:0,他引:2  
选择性催化还原(SCR)法是目前世界上应用较为成熟的烟气脱硝技术之一,由于传统的适用催化剂的起活温度偏高,因此开发低温高效、性能稳定的催化剂已成为该技术成功运用的关键.分析了SCR法的脱硝原理,对目前广泛研究的低温SCR催化剂的分类及其运用进行了综述,提出了研究中尚需解决的问题,最后展望了未来的研究方向.  相似文献   

10.
选取国内10台典型燃煤电厂发电机组,对其主要烟气控制设备进出口SO_3浓度进行实测。结果发现,选择性催化还原(SCR)反应器的主要功能是脱硝,而低低温电除尘器、湿法脱硫装置和湿式静电除尘器具有很好的脱硫效果。实测得到某典型发电机组负荷率分别为75%、100%的工况下,SO_3综合脱除率可达89.67%、93.98%。因此,SCR反应器/低低温电除尘器/湿法脱硫装置/湿式静电除尘器联用是良好的脱硫脱硝烟气协同控制技术。  相似文献   

11.
The advanced computational fluid dynamics (CFD) software STAR-CCM+ was used to simulate a denitrification (De-NOx) project for a boiler in this paper, and the simulation result was verified based on a physical model. Two selective catalytic reduction (SCR) reactors were developed: reactor 1 was optimized and reactor 2 was developed based on reactor 1. Various indicators, including gas flow field, ammonia concentration distribution, temperature distribution, gas incident angle, and system pressure drop were analyzed. The analysis indicated that reactor 2 was of outstanding performance and could simplify developing greatly. Ammonia injection grid (AIG), the core component of the reactor, was studied; three AIGs were developed and their performances were compared and analyzed. The result indicated that AIG 3 was of the best performance. The technical indicators were proposed for SCR reactor based on the study.

Implications: Flow filed distribution, gas incident angle, and temperature distribution are subjected to SCR reactor shape to a great extent, and reactor 2 proposed in this paper was of outstanding performance; ammonia concentration distribution is subjected to ammonia injection grid (AIG) shape, and AIG 3 could meet the technical indicator of ammonia concentration without mounting ammonia mixer. The developments above on the reactor and the AIG are both of great application value and social efficiency.  相似文献   


12.
Abstract

A study was conducted to investigate the effect of selective catalytic reduction (SCR) catalyst on mercury (Hg) speciation in bituminous and subbituminous coal combustion flue gases. Three different Illinois Basin bituminous coals (from high to low sulfur [S] and chlorine [Cl]) and one Powder River Basin (PRB) subbituminous coal with very low S and very low Cl were tested in a pilot-scale combustor equipped with an SCR reactor for controlling nitrogen oxides (NOx) emissions. The SCR catalyst induced high oxidation of elemental Hg (Hg0), decreasing the percentage of Hg0 at the outlet of the SCR to values <12% for the three Illinois coal tests. The PRB coal test indicated a low oxidation of Hg0 by the SCR catalyst, with the percentage of Hg0 decreasing from ~96% at the inlet of the reactor to ~80% at the outlet. The low Cl content of the PRB coal and corresponding low level of available flue gas Cl species were believed to be responsible for low SCR Hg oxidation for this coal type. The test results indicated a strong effect of coal type on the extent of Hg oxidation.  相似文献   

13.
Abstract

Emissions of sulfur trioxide (SO3) are a key component of plume opacity and acid deposition. Consequently, these emissions need to be low enough to not cause opacity violations and acid deposition. Generally, a small fraction of sulfur (S) in coal is converted to SO3 in coal-fired combustion devices such as electric utility boilers. The emissions of SO3 from such a boiler depend on coal S content, combustion conditions, flue gas characteristics, and air pollution devices being used. It is well known that the catalyst used in the selective catalytic reduction (SCR) technology for nitrogen oxides control oxidizes a small fraction of sulfur dioxide in the flue gas to SO3. The extent of this oxidation depends on the catalyst formulation and SCR operating conditions. Gas-phase SO3 and sulfuric acid, on being quenched in plant equipment (e.g., air preheater and wet scrubber), result in fine acidic mist, which can cause increased plume opacity and undesirable emissions. Recently, such effects have been observed at plants firing high-S coal and equipped with SCR systems and wet scrubbers. This paper investigates the factors that affect acidic mist production in coal-fired electric utility boilers and discusses approaches for mitigating emission of this mist.  相似文献   

14.
ABSTRACT

Step tracer tests were carried out on lab-scale biofilters to determine the residence time distributions (RTDs) of gases passing through two types of biofilters: a standard biofilter with vertical gas flow and a modified biofilter with horizontal gas flow. Results were used to define the flow patterns in the reactors. “Non-ideal flow” indicates that the flow reactors did not behave like either type of ideal reactor: the perfectly stirred reactor [often called a "continuously stirred tank reactor" (CSTR)] or the plug-flow reactor.

The horizontal biofilter with back-mixing was able to accommodate a shorter residence time without the usual requirement of greater biofilter surface area for increased biofiltration efficiency. Experimental results indicated that the first bed of the modified biofilter behaved like two CSTRs in series, while the second bed may be represented by two or three CSTRs in series. Because of the flow baffles used in the horizontal biofilter system, its performance was more similar to completely mixed systems, and hence, it could not be modeled as a plug-flow reactor. For the standard biofilter, the number of CSTRs was found to be between 2 and 9 depending on the airflow rate. In terms of NH3 removal efficiency and elimination capacity, the standard biofilter was not as good as the modified system; moreover, the second bed of the modified biofilter exhibited greater removal efficiency than the first bed. The elimination rate increased as biofilter load increased. An opposite trend was exhibited with respect to removal efficiency.  相似文献   

15.
Goo JH  Irfan MF  Kim SD  Hong SC 《Chemosphere》2007,67(4):718-723
The selective catalytic reduction (SCR) characteristics of NO and NO(2) over V(2)O(5)-WO(3)-MnO(2)/TiO(2) catalyst using ammonia as a reducing agent have been determined in a fixed-bed reactor at 200-400 degrees C. The presence of NO(2) enhances the SCR activity at lower temperatures and the optimum ratio of NO(2)/NO(x) is found to be 0.5. During the SCR reactions, there are some side reactions occurred such as ammonia oxidation and N(2)O formation. At higher temperatures, the selective catalytic oxidation of ammonia and the nitrous oxide formation compete with the SCR reactions. The denitrification (DeNO(x)) conversion decreases at lower temperatures but it increases at higher temperatures with increasing SO(2) concentration. The presence of SO(2) in the feeds inhibits N(2)O formation.  相似文献   

16.
The body of information presented in this paper is directed to those individuals concerned with the catalytic NOx removal reactor for a dirty (containing dust) flue gas. In the case of treating a dirty flue gas, the concentration of dust is the most important factor. While the dirty gas passes through the catalytic reactor, dust particles deposit and plug up the catalyst causing the reactor pressure loss to rise. As a result, the NOx reduction efficiency decreases more and more, and continuous operation becomes impossible. A new type of NOx removal reactor for dirty flue gas, the intermittent moving bed reactor, has been developed. The following characteristics have been evaluated: (1) method of calculating reactor pressure loss caused by dust particles, (2) static pressure distribution across the catalyst bed in the reactor, (3) method of evaluating uniform movement of catalyst and (4) reentrainment pattern of dust by catalyst movement. After carrying out various successful pilot plant tests, the information needed for construction and operation of a commercial plant has been developed.  相似文献   

17.

Introduction

Solar wastewater treatment based on photocatalytic reactions is a green process that utilizes renewable energy resources and minimizes secondary pollution. Reactor design plays an important role in promoting treatment efficiency and throughput density (based on unit volume of the reactor).

Experimental

A rotating disk reactor that significantly increases the process efficiency has been designed and evaluated for application to photocatalytic decomposition of dye pollutants in aqueous solutions. In this process, a novel multi-layer rotating disk reactor (MLRDR) was presented. Photocatalyst (TiO2) particles are immobilized on the surfaces of disks. Within each layer of the reactor, methyl orange aqueous solution is allowed to flow from the center of the disk in a radial direction along the surface of the disk, which is rotating at high speed and is irradiated with UV lamps. The effluent is then directed to the center of another layer that lies underneath. Up to four stacked layers have been tested in this study, and the effects due to the number of the layers and volumetric flow rate on reaction conversion are investigated.

Results and discussion

The efficiency of this photocatalytic reactor exhibits complex dependence on these parameters. With selected operating conditions, conversions greater than 95% can be achieved within seconds of residence time. Design equations of the reactor have been derived based on fluid dynamics and kinetic models, and the simulation results show promising scale-up potential of the reactor.  相似文献   

18.
混合固定化硝化菌和好氧反硝化菌处理焦化废水   总被引:4,自引:1,他引:3  
蔡昌凤  梁磊 《环境工程学报》2009,3(8):1391-1394
对传统的聚乙烯醇(PVA)固定化方法进行了改进,试制了加入麦秸粉末的固定化球和以活性炭纤维膜为载体膜固定化细胞产品。混合固定化硝化细菌和好氧反硝化细菌对经过厌氧折流板反应器酸化后的焦化废水进行脱氮,焦化废水在厌氧折流板反应器中经过18 h的酸化后,pH在8.0左右,开始进入好氧槽进行脱氮。在有效容积为5 L好氧槽中经过12 h的曝气处理,加入麦秸粉末的固定化球对氨氮的去除率高达94.3%;纤维膜固定化细胞产品对氨氮的去除率为85%。整个脱氮过程无NO-2-N和NO-2-N的积累,实现了好氧条件下的同时硝化和反硝化。  相似文献   

19.
采用同时硝化反硝化对某垃圾填埋场渗滤液进行处理,并对有机物去除效果进行分析。实验结果表明,反应器对渗滤液中COD、氨氮、总氮和部分有机物具有较好的处理效果,COD、氨氮和总氮的平均去除率为82.34%、99.82%和65.31%。GC-MS分析总共检测出53种主要有机污染物,其中邻苯二甲酸二丁酯等29种有机物的去除率达100%,乙基苯等5种有机物的去除率高于90%,邻苯二甲酸二异辛酯等8种有机物的去除率介于60%和90%之间,此外还有4-苯基戊醇等5种有机物去除率低于60%。反应器内存在亚硝氮途径的脱氮反应形式。  相似文献   

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