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Heat exchanger/catalytic system for reducing the exhaust emissions from diesel engines

机译:减少柴油机废气排放的热交换器/催化系统

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摘要

A system has been researched over the past 3 years for reducing the exhaust pollutants from diesel engines for light commercial vehicles. The system researched achieves Euro 6 standards for reduction of polluting gases (CO, HC, PM, NO). It consists of 4 main sections: 1. A heater and heat exchanger (HE); 2. A CO/HC oxidising catalyst (D°C); 3. Pt catalyst on a diesel particulate filter (DPF); 4. A NO reducing reaction (SCR) within the DPF. The system operates as follows. The exhaust gas contains oxidising gases, namely both O2 and NO2. The levels of CO and HC are oxidised by O2 to CO2 for temperatures above 200°C. Carbon (PM) is oxidised to CO2 by NO2 but requires a temperature above 250°C. The operating exhaust temperature of 300°C is ideal for the removal of NO by using the Pt catalyst and the CO generated within the DPF. The heater is required to be able to raise the exhaust temperature at any time to 300°C in order to optimise the performance of the system, since diesel engine exhaust temperatures vary between 160°C (slow speeds) to 350°C (high speeds). Considerable heat is required (∼3 kW) to maintain the exhaust gas for a 2l engine at 300°C for engine idle conditions. Therefore a heat exchanger is required to re-circulate the input heat and thereby reduce the maximum power consumption to a maximum of 500W over the engine full operating test cycle. This energy is supplied by the engine battery and alternator. Experimental results have been obtained for the exhaust from a Kubota diesel engine and the reductions in exhaust emissions of 83% (CO/ HC), 58% (NOx) and 99% (PM) were obtained. The PM was continuously cleaned so that there was no build up of back pressure.
机译:在过去的三年中,已经研究了一种系统,用于减少轻型商用车的柴油机排放的污染物。所研究的系统达到了减少污染气体(CO,HC,PM,NO)的欧6标准。它由4个主要部分组成:1.加热器和热交换器(HE); 2.CO/HC氧化催化剂(D℃); 3.柴油微粒过滤器(DPF)上的铂催化剂; 4. DPF中的NO还原反应(SCR)。系统操作如下。废气中包含氧化气体,即O2 和NO2 。温度超过200°C时,CO和HC的含量会被O2 氧化为CO2 。碳(PM)被NO2 氧化为CO2 ,但需要高于250°C的温度。 300°C的工作排气温度非常适合通过使用Pt催化剂和DPF内生成的CO去除NO。由于柴油机的排气温度在160°C(低速)到350°C(高速)之间变化,因此要求加热器能够随时将排气温度提高到300°C以优化系统性能。 )。在发动机怠速工况下,需要相当多的热量(约3 kW)才能将2l发动机的废气保持在300°C。因此,需要热交换器使输入的热量再循环,从而在发动机整个运行测试周期内将最大功耗降低到最大500W。该能量由发动机电池和交流发电机提供。获得了久保田柴油机废气的实验结果,废气排放量减少了83%(CO / HC),58%(NOx)和99%(PM)。对PM进行连续清洁,以免背压升高。

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