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Continuous regeneration of an electrically heated diesel particulate trap

机译:电加热柴油颗粒捕集器的连续再生

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A wall-flow type diesel particulate trap using electrostatic field (E-DPT) was proposed to remove soot particles exhausted from diesel engines. This device was capable of trapping soot particles by electrostatic effect by applying a direct current electric field between two electro-plates separated by 1.5 mm. Soot trapped on the plates formed bridges of soot clusters in a narrow space between the electro-plates and it was burned by Joule heating owing to the direct electrification through the bridges. When the applied voltage to the E-DPT was lower than the critical value (E{sub}p = 200 V), only the soot accumulation was observed. Its accumulation mechanism looked like a kind of electrostatic precipitator, and soot burning caused by the electrification through soot bridges was observed at higher applied voltages at 250-300 V When soot accumulation and burning were balanced, a stable operation of E-DPT at 60-80 per cent removal efficiency was attained. An analysis of the experimental data on soot removal efficiency, power consumption, and heat balance during steady operation showed that the E-DPT developed is a potential system for practical application to actual diesel engines.
机译:提出了利用静电场(E-DPT)的壁流式柴油机颗粒捕集器,以去除从柴油机排出的烟尘颗粒。通过在两个相距1.5 mm的电板之间施加直流电场,该设备能够通过静电作用捕获烟尘颗粒。捕获在板上的烟灰在电板之间的狭窄空间中形成烟灰簇的桥,由于通过桥的直接带电,焦耳加热将其燃烧。当施加到E-DPT的电压低于临界值(E {sub} p = 200V)时,仅观察到烟灰累积。它的累积机制看起来像一种静电除尘器,在较高的施加电压(250-300 V)下观察到由碳烟桥带电引起的碳烟燃烧。当碳烟的累积和燃烧达到平衡时,E-DPT在60-300 V时稳定运行。去除率达到80%。对稳定运行期间烟灰去除效率,功耗和热平衡的实验数据的分析表明,开发的E-DPT是实际应用于实际柴油发动机的潜在系统。

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