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On-line analysis of individual aromatic hydrocarbons in automotive exhaust: dealkylation of the aromatic hydrocarbons in the catalytic converter

机译:汽车排气中各种芳烃的在线分析:催化转化器中芳烃的诸如诸如芳烃的癸烷基化

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The real-time concentrations of benzene, toluene, xylene, trimethyl-benzene and naphthalene in vehicle exhaust have been monitored during the FTP cycle with a time resolution of 20 ms and a sensitivity of 50 ppb. Using a laser mass spectrometer, the aromatic hydrocarbons in unconditioned exhaust gas at sampling positions behind the exhaust valve, before and behind the catalytic converter have been analyzed. The comparison of the emissions sampled before and behind the catalytic converter reveals the effect of dealkylation of the aromatic hydrocarbons in the catalytic converter. Whereas most of the aromatic hydrocarbons are burned in the hot catalytic converter, however, bursts of aromatic hydrocarbons are released at transient motor operation. In these moments, which can be attributed to phases of closed throttle valve and very low engine load at gear changes, a significant part of the C{sub}1-, C{sub}2-, and C{sub}3-benzenes has been converted into benzene. Naphthalene as a double ring molecule without alkyl groups being itself the product of other dealkylation reactions is also emitted with slightly increasing concentration after catalyst over the FTP cycle.
机译:在FTP循环期间在FTP循环期间监测了苯,甲苯,二甲苯,三甲基 - 苯和萘的实时浓度,具有20ms的时间分辨率和50ppb的灵敏度。使用激光质谱仪,已经分析了在排气阀后面和后面和后面的采样位置处的无条件废气中的芳烃。在催化转化器之前和后面采样的排放的比较揭示了诸如催化转化器中芳烃的癸烷基化的作用。然而,大多数芳烃在热催化转化器中燃烧,然而,在瞬态电动机操作下释放芳烃的爆裂。在这些瞬间,可以归因于闭合节流阀的相位,并且在齿轮变化时非常低发动机负荷,C {Sub} 1-,C {sub} 2-和C {sub} 3-苯并的很大一部分已被转化为苯。萘作为没有烷基的双环分子本身的双环分子本身在FTP循环上催化剂后略微增加,在催化剂后略微增加。

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