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首页> 外文期刊>International journal of hydrogen energy >Production of dimethyl ether and hydrogen by methanol reforming for an HCCI engine system with waste heat recovery - Continuous control of fuel ignitability and utilization of exhaust gas heat
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Production of dimethyl ether and hydrogen by methanol reforming for an HCCI engine system with waste heat recovery - Continuous control of fuel ignitability and utilization of exhaust gas heat

机译:带有余热回收的HCCI发动机系统通过甲醇重整生产二甲醚和氢气-连续控制燃料的可燃性和废气热的利用

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摘要

Homogeneous charge compression ignition (HCCI) is a promising technique to achieve high thermal efficiency and clean exhaust with internal combustion engines. However, the difficulty in ensuring optimal ignition timing control prevents its practical application. Previous research has shown that adjusting the proportion of dimethyl ether (DME) and hydrogen-containing methanol-reformed gas (MRG) can control the ignition timing in an HCCI combustion engine fueled with the two fuels. As both DME and MRG can be produced in endothermic methanol reforming reactions, onboard reforming utilizing the exhaust gas heat can recover the waste heat from the engine. A very high overall thermal efficiency can be achieved by combining the high engine efficiency with HCCI and the waste heat recovery. This research investigates the basic characteristics of methanol reforming in a reactor tube with different catalysts with the aim to produce fuels for the HCCI combustion system.
机译:均质充量压缩点火(HCCI)是一种有前途的技术,可通过内燃机实现高热效率和清洁排气。但是,确保最佳点火正时控制的困难阻碍了其实际应用。先前的研究表明,调节以二甲醚(DME)和含氢的甲醇重整气体(MRG)的比例可以控制以两种燃料为燃料的HCCI内燃机的点火正时。由于DME和MRG均可在吸热的甲醇重整反应中生产,因此利用废气热量进行的机载重整可回收发动机的废热。通过将高发动机效率与HCCI和废热回收相结合,可以实现很高的整体热效率。这项研究调查了在具有不同催化剂的反应堆管中甲醇重整的基本特征,目的是为HCCI燃烧系统生产燃料。

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