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Experimental investigation on four-stroke catalytic coated spark ignition engine to promote cleaner environment

机译:四冲程催化涂层火花点火发动机促进清洁环境的实验研究

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摘要

In the present scenario, automobile manufacturing industries face challenges in marketing vehicles with internal combustion (IC) engine to customers due to strict government regulation on emission norms and customers expectation on better engine performance. Hence, it is very important to identify some technique to reduce the emission level and also to improve the engine performance. The catalytic coating is one of the most suitable techniques for reduction of pollution level and increasing the engine performance. In this paper, the outcomes of investigations carried out on the emission control and engine performance of catalytic coated single cylinder four-stroke spark ignition (SI) engine is discussed in detail. The engine combustion chamber and piston crown were coated with copper (catalyst). The performance parameters of catalytic coated engine such as torque, brake power at different engine speed and load conditions were measured using two-wheeler chassis dynamometer. In this investigation, a comparative study was also done in parallel with conventional (un-coated) SI engine. The results showed that copper coated engine has significantly reduced levels of carbon monoxide (CO), hydrocarbon (HC) and carbon dioxide (CO_(2)) emission compared to conventional engine (un-coated).
机译:在目前的情景中,由于严格的政府对排放规范和客户对更好的发动机性能的预期,由于严格的政府监管,汽车制造业在营销车辆与内燃(IC)发动机的挑战面临挑战。因此,识别一些技术来减少发射水平并还非常重要,以提高发动机性能。催化涂层是用于减少污染水平并增加发动机性能的最合适技术之一。在本文中,详细讨论了催化涂层单缸四冲程火花点火(Si)发动机的排放控制和发动机性能的研究结果。发动机燃烧室和活塞冠涂有铜(催化剂)。使用两轮机底盘测功机测量诸如扭矩,不同发动机速度和负载条件下的扭矩,制动功率的催化涂层发动机的性能参数。在该研究中,比较研究也与常规(未涂层)Si发动机并行进行。结果表明,与常规发动机(未涂层)相比,铜涂覆发动机在与常规发动机(未涂层)相比的一氧化碳(CO),烃(HC),烃(HC)和二氧化碳(CO_(2))发射的水平显着降低。

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