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A novel electrostatic method of ultrafine PM control suitable for low exhaust temperature applications

机译:一种新型超细PM控制静电方法,适用于低排气温度应用

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A novel type of electrostatic diesel particulate reduction device has been developed which is intended for use in low exhaust temperature applications. Tests were conducted to assess the performance of the technology with particular emphasis on temperature dependence and ultrafine particle removal efficiency. Rolling road dyno tests were used to enable the tests to be performed with conditions as close as possible to real on road driving. The device works by electrostatically ionizing the particulate matter which is then attracted onto an earthed surface where agglomeration occurs. This process results in a reduction in ultrafine particles which combine together with other particles to form larger agglomerates. Larger agglomerated particles are less of a health risk and are easier to remove by filtration or other means. The device was tested over a range of operating conditions on a number of vehicles and it was found in all of the tests that the device significantly reduced the emission of ultrafine particles (85 - 99%). These results were consistent over the entire drive cycle from engine cold start proving the non-temperature dependence of the technology and its suitability to low exhaust temperature applications such as urban driving where catalysis can be less effective. Conventional forecourt diesel fuel was used in all of these tests. This paper presents a selection of the test results, gives an introduction to the technology, an explanation of the ionization and agglomeration processes and details the test methods used to obtain the results.
机译:已经开发了一种新型的静电柴油颗粒减少装置,用于低排气温度应用。进行测试以评估技术的性能,特别强调温度依赖性和超细颗粒去除效率。滚动道路Dyno测试用于使测试能够在道路驾驶中尽可能接近真实地进行。该装置通过静电电离颗粒物质,然后将其吸引到接地表面上,其中发生聚集。该方法导致超细颗粒的减少,其与其他颗粒组合在一起以形成较大的附聚物。较大的附聚颗粒的健康风险较小,并且更容易通过过滤或其他方式除去。该装置在多个车辆上的一系列操作条件下进行测试,并且在所有测试中发现该装置显着降低超细颗粒的发射(85-99%)。这些结果在发动机冷启动中的整个驱动周期中一致,证明了技术的非温度依赖性及其对低排气温度应用(如城市驾驶)的适用性,在那里催化较低。在所有这些测试中使用常规的前院柴油燃料。本文介绍了测试结果,介绍了该技术,对电离和聚集过程的说明,并详细说明了用于获得结果的测试方法。

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