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CERAMIC COMPOSITE DIESEL FILTER TRAP

机译:陶瓷复合柴油滤清器

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摘要

Diesel engine is a major source of power of the future but the major growing concern is the emissions of nitrogen oxides and diesel particulates. This work deals with the paniculate emission control of diesel engine exhaust using ceramic filter. The selection ofCFTwith suitable size, geometry, cell density, wall thickness and microstructure becomes most important. In order to achieve required paniculate matter emission limits and lower backpressure, optimization of porosity, pore size distribution, mean pore size and pore connectivity in CFT is crucial. CFT are developed and tested on the basis of porosity, diameter and length of CFT with necessary recommended trials. Further experiments were carried out to understand the effect of porosity, diameter and length of CFT on the back pressure, rate of back pressure rise, filtration efficiency and break power of diesel engine. The investigation of the research work provides adequate relevant information about the development of ceramic type ceramic filter trap (CFT) with naturally available material and effect of CFT on paniculate matter concentration and on engine performance. Use of CFT reduced smoke drastically without increasing back pressure beyond tolerable back pressure limit. Performance of developed CFT was compared with established CFT and matches with it. Cost of developed CFT is the distinct advantage which will promote cottage industries in undeveloped nations, and provide rural employment.
机译:柴油发动机是未来的主要动力来源,但人们日益关注的主要问题是氮氧化物和柴油机微粒的排放。这项工作涉及使用陶瓷过滤器来控制柴油机废气的颗粒排放。选择具有合适尺寸,几何形状,孔密度,壁厚和微观结构的CFT变得尤为重要。为了达到所需的颗粒物排放限制和较低的背压,在CFT中优化孔隙率,孔径分布,平均孔径和孔连通性至关重要。 CFT是根据CFT的孔隙率,直径和长度开发并测试的,并进行了必要的推荐试验。进行了进一步的实验,以了解孔隙率,CFT的直径和长度对背压的影响,背压的上升速率,过滤效率和柴油机的破坏力。研究工作的调查提供了有关使用天然材料制造陶瓷型陶瓷滤池(CFT)的充分相关信息,以及CFT对颗粒物浓度和发动机性能的影响。使用CFT可以大大减少烟雾,而不会增加背压,而不会超过可承受的背压极限。将已开发的CFT的性能与已建立的CFT进行比较,并与之匹配。发展CFT的成本是其独特的优势,它将促进不发达国家的家庭手工业,并提供农村就业机会。

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