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1.
前置DOC对SCR系统柴油机NO_x排放的影响   总被引:1,自引:0,他引:1  
对装配前置DOC和无DOC的SCR系统柴油机进行稳态和瞬态试验,研究了前置DOC在不同循环状态下对NOx排放的影响。结果表明:前置DOC能显著提高SCR入口处NO2与NOx的体积比V(NO2)∶V(NOx),加速SCR反应,提高NOx转化效率,改善NOx排放;在ESC非怠速工况下,DOC对V(NO2)∶V(NOx)的影响会随着排气中氧含量和排气温度、空速的提高逐渐降低;温度超过一定范围时,NH3对O2的选择性突然提高,V(NO2)∶V(NOx)对NOx转化效率的影响将减小;DOC内氧化反应产生的热量有限,不足以提高SCR入口处排气温度,而DOC陶瓷载体的储热特性在瞬态循环下会对SCR入口温度产生一定影响,但这并不是改善NOx排放的主要原因。  相似文献   

2.
柴油机排气管长度对排气温度影响的试验研究   总被引:1,自引:0,他引:1  
柴油机增压器出口到后处理装置之间的排气管长度影响排气温度,从而影响了SCR后处理装置的工作效率。在发动机台架上进行了排气管长度对排气温度影响的试验研究,结合ETC和WHTC排放循环,对比了排气管是否包裹保温材料对排气温度的影响。试验表明:排气管长度越长,排气温度下降越快,最大温降高达19%,对NOx排放影响也越大,NOx排放相对国家标准增加59%;增加保温材料能维持一定的排气温度,但温降最大也达到8%,NOx排放相对国家标准增加23%。  相似文献   

3.
In this study, the effect of hydrothermal aging over a commercial diesel oxidation catalyst (DOC) on deterioration in nitrogen dioxide (NO2) production activity has been experimentally investigated based on a micro-reactor DOC experiment. Through this experimental result, the NO2 to nitrogen oxides (NOx) ratio at DOC outlet has been mathematically expressed as a function of DOC temperature according to various aging conditions. The current study reveals that the catalyst aging temperature is a more dominant factor than the aging duration in terms of the decrease in NO2 production performance through DOC. The DOC sample hydrothermally aged for 25 h at 750 °C has displayed the lowest NO2 to NOx ratio compared to the samples aged for 25 ~ 100 h at 650 °C. Also, in this study, the impact of hydrothermal aging of a DOC on the selective catalytic reduction (SCR) efficiency in a ‘DOC + SCR’ aftertreatment system was predicted by using transient SCR simulations. To validate the SCR simulation, this study has conducted a dynamometer test of a non-road heavy-duty diesel engine with employing a commercial ‘DOC + SCR’ system on the exhaust line. The current study has quantitatively estimated the effect of the variation in NO2 to NOx ratio due to the hydrothermal aging of DOC on the NOx removal efficiency of SCR.  相似文献   

4.
商用车柴油机多采用DOC+SCR的后处理系统来满足国Ⅳ、国Ⅴ排放标准的要求,而不同类型SCR的催化特性对最终污染物排放影响也不同。试验获取了一支铜基分子筛型SCR,基于1台2.8L柴油机和一支钒基SCR,运行了车用柴油机稳态循环(ESC)和瞬态排放循环(ETC),研究并分析了其对柴油机污染物的减排特性。结果表明,相较于钒基SCR,运行ETC循环时分子筛型SCR对发动机NOx和PM排放的减排效率分别提升19%和33%;分子筛型SCR对NOx的低温转化效率更高,且由于对排气流量不敏感,在高空速工况下其转化效率显著高于钒基SCR;分子筛型SCR对颗粒物个数的减排效率弱于钒基SCR,达7%以上,容易将大质量颗粒物分解为小质量颗粒物;两种SCR均对CO和HC具有一定的减排效果,减排率可达20%左右。  相似文献   

5.
This study was conducted for the experimental comparison of particulate emission characteristics between the European and World-Harmonized test cycles for a heavy-duty diesel engine as part of the UN/ECE PMP ILCE of the Korea Particulate Measurement Program. To verify the particulate mass and particle number concentrations from various operating modes, ETC/ESC and WHTC/WHSC, were evaluated. Both will be enacted in Euro VI emission legislation. The real-time particle emissions from a Mercedes OM501 heavy-duty golden engine with a catalyst based uncoated golden DPF were measured with CPC and DMS during daily test protocol. Real-time particle formation of the transient cycles ETC and WHTC were strongly correlated with engine operating conditions and after-treatment device temperature. The higher particle number concentration during the ESC #7 to #10 mode was ascribed to passive DPF regeneration and the thermal release of low volatile particles at high exhaust temperature conditions. The detailed average particle number concentration equipped for golden DPF reached approximately 4.783E+11 #/kWh (weighted WHTC), 6.087E+10 #/kWh (WHSC), 4.596E+10 #/kWh (ETC), and 3.389E+12 #/kWh (ESC). Particle masses ranged from 0.0011 g/kWh (WHSC) to 0.0031 g/kWh (ESC). The particle number concentration and mass reduction of DPF reached about 99%, except for an ESC with a reduction of 95%.  相似文献   

6.
为了提高尿素选择性催化还原技术(selective catalytic reduction,SCR)系统对柴油机尾气中的氮氧化物(NOx)的转化效率,通过使用软件模拟仿真改变尿素水溶液喷嘴的安装位置、数量、安装方向的方法,研究尿素喷嘴参数对系统性能的影响。结果表明:随着喷嘴和尾气进口之间距离的增大,NH3的均匀性系数和平均质量分数均逐渐地减小;随着喷嘴数目的增加、喷射方向与尾气流动方向夹角的增加,载体前端NH3分布均匀性均呈现先增大后减小的趋势。  相似文献   

7.
为选择性催化还原技术提出了还原剂喷射的控制策略。它根据原机NOx排放浓度脉谱、排气温度和空速脉谱等计算还原剂的喷射速率。分别通过试验研究了NH3/NOx比值、排气温度和空速对NOx转化率和氨泄漏浓度的影响以及SCR催化剂的氨吸附和脱附特性,并根据研究结果,分别确定稳态和瞬态工况下尿素溶液喷射的控制方案,因而实现了ESC稳态循环和ETC瞬态循环下的控制目标。此外,冷机起动试验表明,该阶段的排气温度低,NOx排放浓度较高,故应采取措施减少低温工况下NOx的排放。  相似文献   

8.
使用商业钒基SCR催化转化器和某国Ⅳ重型柴油机,在AVL发动机台架上对3种国产车用尿素进行了相互替代性试验,研究中考虑了不同尿素对SCR催化转换器的起燃特性、动态响应、NOx转化率和NH3泄漏等性能的影响。试验排气温度为160~440℃,n(NOx)∶n(NH3)(物质的量之比)从0.8变化到1.2。研究发现:相同条件下3种尿素对SCR系统起燃温度基本没有影响,ESC和ETC循环NOx转化率都在70%以上,同时对其他常规气态排放和NH3泄漏没有明显影响,可以互相替代使用;相同条件下,单位体积尿素溶液中尿素含量越高,SCR系统动态响应越快,ESC和ETC循环NOx转化率越高。  相似文献   

9.
将柴油机改造为点燃式单点集中喷射预混天然气发动机.该发动机采用无废气再循环EGR的当量比燃烧+三元催化器的技术路线,通过匹配增压器、三元催化器和电控系统的优化标定,按全球统一瞬态循环WHTC进行排放试验.结果表明,所开发的国六天然气发动机动力性和燃料经济性达到设计指标,排放满足GB17691—2018《重型柴油车污染物...  相似文献   

10.
在柴油机上加装节流阀是提升小负荷工况排温、改善排放的途径之一,但会对柴油机的其他性能造成影响。本研究通过给柴油机加装节流阀,研究了进气节流对柴油机小负荷工况性能的影响。试验结果表明:进气节流对柴油机的排温和NOx排放提升明显;柴油机进气节流后缸内压力下降,缸内平均燃烧温度、机械效率升高,滞燃期延长,燃烧始点后移;中低转速小负荷工况,随着节流程度的增加,燃油消耗率和烟度增加;高转速小负荷工况,一定范围内通过进气节流可以实现燃油消耗率和烟度的降低。2 500r/min,29N·m工况,保持EGR阀全开,随着节流程度的增加,NOx和烟度出现同时下降趋势,当空气流量由191.4kg/h降至140.6kg/h时,燃油消耗率、NOx、烟度分别下降了7.9%,58.1%,27.3%,排温提升了42.5%。  相似文献   

11.
Lean NOx trap (LNT) catalyst has been used to reduce NOx emissions from diesel engines. The LNT absorbs NOx in lean condition and discharges N2 by reducing NOx in rich conditions. Thus, it is necessary to make exhaust gas lean or rich conditions for controlling LNT system. For making a rich condition, a secondary injector was adopted to inject a diesel fuel into the exhaust pipe. In the case of secondary injector, the behavior of spray is easily affected by high temperature (i.e., 250 ~ 350 °C) occurred in the exhaust manifold. Therefore, it is needed to investigate the spray behavior of diesel fuel injected into an exhaust manifold, as well as the conversion characteristics for a lean NOx trap of a diesel engine with LNT catalyst. The characteristics of exhaust emissions in NEDC (New European Driving Cycle) mode were analyzed and spray behaviors were visualized in various exhaust gas conditions. The results show that as the exhaust gas mass flow increases, the spray cone angle becomes broad and the fuel is directed to the flow field. Besides, the cone angle of spray is decreased by centrifugal force caused in exhaust gas flow field. In addition, the effects of nozzle installation degree, injection quantity, and exhaust gas flow on NOx conversion performance were clarified.  相似文献   

12.
柴油机尿素 SCR 反应特性的试验研究   总被引:2,自引:1,他引:1  
利用可独立控制尿素喷射量的SCR系统,通过柴油机台架试验,研究了钒基催化剂温度和空速对SCR催化还原反应NOx 转化效率和反应速率的影响,以及尿素喷嘴安装位置对转化效率的影响。结果表明:NOx 转化率随着氨氮比(NH3与NOx 物质的量之比)的升高而逐渐升高,由于尿素水解和热解不完全等因素,氨氮比上升到2时NOx 转化率才可达到最大;NOx 转化率随着催化剂温度升高而升高,到400℃时基本趋于稳定,NOx 转化率随空速升高略有下降;SCR反应速率随温度的升高而升高,随空速的变化不明显;相同氨氮比时,尿素喷嘴与催化剂的距离增加,有利于NOx 转化率的升高。  相似文献   

13.
This article presents a two-stage turbocharged heavy-duty diesel (HDD) engine designed to fulfil the US2007 anti-pollution directive. This directive imposes very restrictive limits on the NOx and particle emissions of HDD engines. In this work, the possibility of combining particle traps in the exhaust line to reduce soot emissions with very high EGR rates to reduce NOx emissions is considered. This new generation engine implements two-stage turbocharging in order to improve the bsfc when the engine is working on steady conditions as well as to optimize the engine transient response. After carrying out the tests, the results were analyzed and the engine settings were adjusted to maximise its behaviour and minimise pollutant emissions. NOx and soot emission peaks were also analyzed at engine transient conditions in order to keep them under certain levels, and thus maintain the overall pollutant emissions to a level that is as low as possible. In summary, a double-stage turbocharging configuration can greatly improve engine driveability (between 23% and 36% depending on engine speed), while reducing NOx emissions during transient evolution without increasing opacity peaks beyond the stated limits.  相似文献   

14.
蜂窝载体负载V_2O_5-WO_3/TiO_2NH_3-SCR试验研究   总被引:1,自引:3,他引:1  
针对一使用SCR技术满足欧Ⅳ排放标准的柴油机排气特征,在连续流动固定床反应器上利用NH3作还原剂对一纳米级V2O5-WO3/TiO2催化剂的选择性催化还原NO进行了试验研究,分析了不同温度、空速、NH3与NO物质的量比对NOx转化性能的影响。试验结果表明,温度对催化还原性能的影响最大。在低温下,NOx的转化效率很低,随着反应温度的升高,NOx转化率随之急剧升高,在300℃~450℃范围内达到较高的NOx转化效率;随着NH3与NO物质的量比的增加,还原效率并未明显增加,但NH3的氧化和泄漏越来越严重;空速对低温还原效率也存在影响。  相似文献   

15.
Environmental problems have become a major issue for diesel engine development. Although emission aftertreatment systems such as DPFs (diesel particulate filters), LNTs (lean NOx traps) and SCR (selective catalytic reduction) have been used in diesel vehicles, the manufacturing cost increase caused by this equipment can be hard to be control. Thus, it is better for engine emissions to be reduced by improving the combustion system. A dual-fuel combustion concept is a recommended method to improve a combustion system and effectively reduce emissions. Low reactivity fuel including gasoline and natural gas, which was supplied to the intake port by the FPI (port fuel injector), improved the premixed air-fuel mixture conditions before ignition. Additionally, a small amount of high reactivity fuel, in this case diesel, was injected into the cylinder directly as an ignition source. This dual-fuel combustion promises lower levels of NOx (nitrogen oxide) and PM (particulate matter) emissions due to the elimination of local rich regions in the cylinder. However, it is challenging to control the dual-fuel combustion because the combustion stability and efficiency deteriorate due to the lack of ignition source and reactivity. Thus, it is important to establish an appropriate dual-fuel operating strategy to achieve stable, high efficiency and low emission operation. As a result of this research, a detailed operating method of dual-fuel PCI (premixed compression ignition) was introduced in detail at a low speed and low load condition by using a single cylinder diesel engine. Engine operating parameters including the gasoline ratio, a diesel injection strategy consisting of multiple injectors and timing, the EGR (exhaust gas recirculation) rate and the intake pressure were controlled to satisfy the low ISNOx (indicated specific NOx) and PM emissions levels (0.21 g/kWh and 0.1 FSN, 0.040 g/kWh, respectively) as per the EURO-6 regulation without any after-treatment systems. The results emphasized that a well-constructed dual-fuel PCI operating strategy showed low NOx and PM emissions and high GIE (gross indicated fuel conversion efficiency) with excellent combustion stability.  相似文献   

16.
提高柴油机尿素SCR系统氮氧化物转化效率的试验研究   总被引:3,自引:1,他引:2  
针对柴油机Urea-SCR后处理系统,为了有效提高NOx转化效率,考虑了包裹保温材料减少排气管散热从而提高载体温度、调整喷嘴位置、安装混合器等3种方法,并进行了不同温度和空速下SCR的NOx转化效率试验。试验结果表明:包裹保温材料能够在ETC循环中提高SCR载体温度20℃左右,从而使发动机更多工况处于SCR催化剂反应高效区域;喷嘴安装在更靠近发动机涡轮出口处(沿排气流反方向移动20 cm后),各工况下NOx转化效率均有所提高;安装混合器后在各工况下NOx的转化效率均有5%左右的提高,尤其在低温220℃时NOx的转化效率提高7%。  相似文献   

17.
等离子体辅助NH_3-SCR去除柴油机NO_x的试验研究   总被引:4,自引:0,他引:4  
为提高传统选择性催化还原(SCR)技术低温去除NOx的效率,设计了一套基于介质阻挡放电形式的低温等离子体反应器辅助NH3-SCR反应系统。通过改变放电电压及模拟气体组分,考察了反应温度和O2体积分数对低温等离子体辅助NH3-SCR去除NOx效率的影响。结果表明:低温下等离子体的促进作用显著,高温时促进作用较微弱;NOx去除效率随O2体积分数增大而先升高后降低,加入等离子体反应器能显著提升低温时NOx去除效率。  相似文献   

18.
Urea-SCR systems have been widely used in diesel vehicles according to the strengthened NOx (Nitrogen Oxides) emission standard. The NOx removal efficiencies of the latest well optimized urea-SCR system are above 90 % at moderate exhaust gas temperature of 250 ~ 450 °C. However, a large amount of NOx is emitted from diesel vehicles at cold start or urban driving conditions, when the exhaust gas temperature is not high enough for SCR catalyst activation. Although many researchs have been stuied to improve NOx conversion efficiency at these low temperature conditions, it is still one of important technical issues. In this study, the effect of UWS injection at low exhaust gas temperature conditions is studied. This study uses a 3.4 L diesel engine equipped with a commertial urea SCR system. As a result, it is found that about 5 % of NOx removal efficiency is improved in the NRTC test when UWS injection starts at the SCR inlet temperature of 150 °C compared to 200 °C. It is also found that urea deposits can be formed on the wall of exhaust pipe, when the local wall temperature is lower than temperature of urea decomposition.  相似文献   

19.
为了实现对柴油机尾气中PM和NOx的同步去除,将静电旋风捕集技术与等离子体协同烃类选择性催化还原技术(Plasma/HC-SCR)相结合开发了一套柴油机后处理原理性试验装置。该装置集柴油机PM的静电捕集、PM的氧化燃烧、NOx的选择性催化还原于一体,对在富氧条件下利用烃类选择还原催化和静电旋风捕集同步去除柴油机PM和NOx进行了利用可控标准气体的模拟试验研究,得到了净化效率随相关参数之间的变化规律。在单纯的等离子体环境下,NO浓度降低,NO2浓度增加,但总的NOx基本保持不变;使用催化剂的同时辅助等离子体可以使NO的峰值转化率所对应的温度向低温区偏移50℃左右;催化剂、等离子体、还原HC对于降低炭烟的起燃温度都有影响,同时使用可以使炭烟的起燃温度最低降低到280℃。此装置实现了柴油机PM和NOx的同步去除。  相似文献   

20.
对使用低温等离子体(NTP)辅助催化型颗粒物捕集器(CDPF)的多元催化净化系统对柴油机尾气污染物的净化作用进行了试验研究。结果表明,NTP可有效去除柴油机PM,最高净化效率可达67%,且受柴油机运行工况影响较小,但受能流密度影响较大,且NOx的浓度均有不同程度的增加;使用NTP/CDPF多元催化净化系统,两种净化措施能形成优势互补,对柴油机尾气中NOx、PM等污染物有良好催化净化性能,去除效率分别达82%、31%。  相似文献   

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