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Investigation of Crystalline Powder Precipitates Observed in Engine Exhaust Emission Measurement Systems and NOx Exhaust Gas Analyzers

机译:在发动机排气测量系统和NOx废气分析仪中观察到结晶粉末沉淀物的研究

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The application of Selective Catalytic Reduction (SCR) to control nitric oxides (NOx) in diesel engines (2010, Tier 2, Bin5) introduced significant amounts of Ammonia (NH_3) and Urea to the NOx exhaust gas analyzers and sampling systems. Under some test conditions, reactions in the sampling system precipitate a white powder, which can accumulate to block sample lines, rendering the exhaust emission sampling inoperable. NOx gas analyzers used for exhaust measurement are also susceptible to precipitation within the sample path and detector components. The contamination requires immediate maintenance for powder removal to restore baseline performance. The results of experiments to eliminate the powder are presented. Analysis of the powder identifies it as ammonium nitrate (NH4NO3) and ammonium sulfate ((NH4)2SO4), which is consistent with the white crystalline precipitate. Techniques to eliminate or minimize the condensation of the ammonia salts are presented, including removing gaseous ammonia on a phosphoric acid (scrubbing) filter, and maintaining the NOx analyzer and sample lines at a temperature greater than the melting point of the ammonia salts. A review of the temperature dependent crystallization of ammonium nitrate provides an estimate of the condensation rate based on gas concentrations and temperatures.
机译:选择性催化还原(SCR)在柴油发动机(2010,Tier 2,Bin5)中将一氧化氮(NOx)的应用引入NOx废​​气分析仪和采样系统的大量氨(NH_3)和尿素。在一些测试条件下,采样系统中的反应沉淀着白色粉末,其可以积聚以阻止样品管线,使排气排放量不可操作。用于排气测量的NOx气体分析仪也易于在样品路径和检测器组分内沉淀。污染需要立即维护粉末去除以恢复基线性能。提出了消除粉末的实验结果。粉末的分析将其鉴定为硝酸铵(NH 4 NO 3)和硫酸铵((NH 4)2SO4),其与白色结晶沉淀一致。提出了消除或最小化氨盐的缩合的技术,包括在磷酸(擦洗)过滤器上除去气态氨,并在大于氨盐的熔点的温度下保持NOx分析仪和样品管线。对硝酸铵的温度依赖性结晶的综述提供了基于气体浓度和温度的缩合速率的估计。

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