Cummins Inc., 1801 U.S. Highway 51, Stoughton, Wisconsin 53589, United States.
Environ Sci Technol. 2011 Apr 1;45(7):2965-72. doi: 10.1021/es103933e. Epub 2011 Feb 28.
This study investigated the impact of copper zeolite selective catalytic reduction (SCR) catalysts and exhaust aftertreatment configurations on the emissions of polychlorinated dibenzo-p-dioxins (PCDDs) and polychlorinated dibenzofurans (PCDFs) from mobile source diesel engines. Emissions of PCDD/Fs, reported as the weighted sum of 17 congeners called the toxic equivalency quotient (TEQ), were measured using a modified EPA Method 0023A in the absence and presence of exhaust aftertreatment. Engine-out emissions were measured as a reference, while aftertreatment configurations included various combinations of diesel oxidation catalyst (DOC), diesel particulate filter (DPF), Cu-zeolite SCR, Fe-zeolite SCR, ammonia oxidation catalyst (AMOX), and aqueous urea dosing. In addition, different chlorine concentrations were evaluated. Results showed that all aftertreatment configurations reduced PCDD/F emissions in comparison to the engine-out reference, consistent with reduction mechanisms such as thermal decomposition or combined trapping and hydrogenolysis reported in the literature. Similarly low PCDD/F emissions from the DOC-DPF and the DOC-DPF-SCR configurations indicated that PCDD/F reduction primarily occurred in the DOC-DPF with no noticeable contribution from either the Cu- or Fe-zeolite SCR systems. Furthermore, experiments performed with high chlorine concentration provided no evidence that chlorine content has an impact on the catalytic synthesis of PCDD/Fs for the chlorine levels investigated in this study.
本研究调查了铜沸石选择性催化还原(SCR)催化剂和排气后处理配置对来自移动源柴油机的多氯二苯并对二恶英(PCDDs)和多氯二苯并呋喃(PCDFs)排放的影响。使用改良的 EPA 方法 0023A 在不存在和存在排气后处理的情况下测量了 PCDD/Fs 的排放,报告为称为毒性当量因数(TEQ)的 17 种同系物的加权总和。发动机排放被测量作为参考,而后处理配置包括各种柴油氧化催化剂(DOC)、柴油颗粒过滤器(DPF)、Cu-沸石 SCR、Fe-沸石 SCR、氨氧化催化剂(AMOX)和水基尿素计量的组合。此外,还评估了不同的氯浓度。结果表明,与发动机排放参考相比,所有后处理配置都降低了 PCDD/F 的排放,这与文献中报道的热分解或组合捕集和氢解等减少机制一致。同样,DOC-DPF 和 DOC-DPF-SCR 配置也产生了低 PCDD/F 排放,表明 PCDD/F 的减少主要发生在 DOC-DPF 中,Cu-或 Fe-沸石 SCR 系统没有明显贡献。此外,在高氯浓度下进行的实验没有表明氯含量对本研究中研究的氯水平下 PCDD/F 的催化合成有影响。