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首页> 外文期刊>Mechanical engineering research >Control of Exhaust Emissions from Copper Coated Gasohol Run Two Stroke Spark Ignition Engine with Catalytic Converter
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Control of Exhaust Emissions from Copper Coated Gasohol Run Two Stroke Spark Ignition Engine with Catalytic Converter

机译:带有催化转化器的铜包汽油运行二冲程火花点火发动机的尾气排放控制

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The major pollutants emitted from spark ignition (SI) engine are carbon mono oxide (CO) and un-burnt hydrocarbons (UBHC). If the engine is run with alcohol, aldehydes have to be checked also. These are hazardous and cause health problems to human beings but also have impact on environment. Hence control of these pollutants call for immediate attention. Copper of thickness 300 microns is coated over piston crown, and indie portion of cylinder liner and cylinder head of the spark ignition engine. Investigations have been carried out for controlling pollutants from two strokes, 2.2 kW brake power at the rated speed of 3000 rpm, copper coated spark ignition engine fitted with catalytic converter with different catalysts such as sponge iron and manganese ore run with gasohol (blend of 20% ethanol and 80% gasoline by volume). The influence of parameters of catalytic converter (such as void ratio, mass of catalyst, airflow rate, temperature of injected air) and parameters of engine (such as brake power and equivalence ratio) on these emissions are studied. A microprocessor-based analyzer is used for the measurement of CO/UBHC in the exhaust of the engine. Aldehydes are measured by DNPH (dinitrophenyl hydrazine) method. Catalytic parameters are found to show strong influence on reduction of the pollutants in the exhaust. Copper coated spark ignition engine (CCE) with gasohol operation reduced the exhaust emissions considerably when compared to conventional engine (CE) with pure gasoline operation.
机译:火花点火(SI)发动机排放的主要污染物是一氧化碳(CO)和未燃烧的碳氢化合物(UBHC)。如果发动机使用酒精运转,则还必须检查醛。这些都是危险的,会给人类带来健康问题,但也会对环境造成影响。因此,控制这些污染物需要立即引起注意。活塞顶部,火花塞发动机的气缸套和气缸盖的独立部分上覆盖了300微米厚的铜。已经进行了研究,以控制两个冲程中的污染物,额定转速为3000 rpm时的2.2 kW制动功率,装有催化转换器的铜涂层火花点火发动机,该催化转换器具有不同的催化剂,例如海绵铁和锰汽油和汽油(混合20) %的乙醇和80%的汽油)。研究了催化转化器参数(如空隙率,催化剂质量,气流速率,注入空气的温度)和发动机参数(如制动功率和当量比)对这些排放的影响。基于微处理器的分析仪用于测量发动机排气中的CO / UBHC。醛通过DNPH(二硝基苯基肼)法测定。发现催化参数显示出对减少废气中污染物的强烈影响。与具有纯汽油运行的传统发动机(CE)相比,具有汽油运行的铜涂层火花点火发动机(CCE)大大减少了废气排放。

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