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Investigation of Deposits in Urea-SCR After-Treatment Systems for Heavy-Duty Diesel Engines

机译:重型柴油机尿素-SCR后处理系统中沉积物的调查

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摘要

To ensure SCR system normal application, one of the basic requirements is to avoid the deposition of urea droplets including crystallization in the exhaust stream. Design and calibration principles are the main causes of urea deposition. Unreasonable structure design, machining and installation can lead to urea crystallization phenomenon inside the bore of the nozzle, on the exhaust pipe wall and the front end surface of the catalyst because of the insufficient atomization and decomposition of urea droplets. In addition, unreasonable calibration strategy can also deteriorate this condition. The components of the urea deposits were tested and analyzed by thermo-gravimetry-FTIR technology indicating that the urea deposits are the urea and cyanuric acid. On this basis, the modified structure of integral nozzle mounting is provided to improve the design. The engine dynamometer test and the vehicle road test were conducted showing that the optimal design and calibration strategy can effectively avoid crystallization and sedimentation in the system.
机译:为了确保SCR系统的正常使用,基本要求之一是避免尿素滴的沉积,包括废气流中的结晶。设计和校准原理是尿素沉积的主要原因。不合理的结构设计,加工和安装会导致尿素液滴的雾化和分解不足,从而导致喷嘴孔内,排气管壁和催化剂前端表面上的尿素结晶现象。另外,不合理的校准策略也会使这种情况恶化。通过热重-FTIR技术对尿素沉积物的成分进行了测试和分析,表明尿素沉积物是尿素和氰尿酸。在此基础上,提供了改进的整体式喷嘴安装结构,以改善设计。进行了发动机测功机测试和车辆道路测试,结果表明,最佳的设计和校准策略可以有效避免系统中的结晶和沉淀。

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