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生物柴油、发动机负荷和柴油机颗粒过滤器对重型柴油机排气中非挥发性颗粒数尺寸分布的影响。

Effects of biodiesel, engine load and diesel particulate filter on nonvolatile particle number size distributions in heavy-duty diesel engine exhaust.

机构信息

Department of Occupational Safety and Health, China Medical University, 91, Hsueh-Shih Road, Taichung 40402, Taiwan.

出版信息

J Hazard Mater. 2012 Jan 15;199-200:282-9. doi: 10.1016/j.jhazmat.2011.11.014. Epub 2011 Nov 9.

DOI:10.1016/j.jhazmat.2011.11.014
PMID:22119306
Abstract

Diesel engine exhaust contains large numbers of submicrometer particles that degrade air quality and human health. This study examines the number emission characteristics of 10-1000 nm nonvolatile particles from a heavy-duty diesel engine, operating with various waste cooking oil biodiesel blends (B2, B10 and B20), engine loads (0%, 25%, 50% and 75%) and a diesel oxidation catalyst plus diesel particulate filter (DOC+DPF) under steady modes. For a given load, the total particle number concentrations (N(TOT)) decrease slightly, while the mode diameters show negligible changes with increasing biodiesel blends. For a given biodiesel blend, both the N(TOT) and mode diameters increase modestly with increasing load of above 25%. The N(TOT) at idle are highest and their size distributions are strongly affected by condensation and possible nucleation of semivolatile materials. Nonvolatile cores of diameters less than 16 nm are only observed at idle mode. The DOC+DPF shows remarkable filtration efficiency for both the core and soot particles, irrespective of the biodiesel blend and engine load under study. The N(TOT) post the DOC+DPF are comparable to typical ambient levels of ≈ 10(4)cm(-3). This implies that, without concurrent reductions of semivolatile materials, the formation of semivolatile nucleation mode particles post the after treatment is highly favored.

摘要

柴油机废气中含有大量亚微米颗粒,这些颗粒会降低空气质量并危害人类健康。本研究考察了在稳态模式下,使用不同比例的废食用油生物柴油(B2、B10 和 B20)、发动机负荷(0%、25%、50%和 75%)以及柴油机氧化催化剂加柴油机颗粒过滤器(DOC+DPF)运行时,10-1000nm 不可挥发颗粒的数量排放特性。对于给定的负荷,总颗粒数浓度(N(TOT))略有下降,而随着生物柴油混合物比例的增加,模式直径几乎没有变化。对于给定的生物柴油混合物,随着负荷的增加(高于 25%),N(TOT)和模式直径都会适度增加。在怠速时,N(TOT)最高,其粒径分布强烈受到半挥发性物质的凝结和可能的成核的影响。直径小于 16nm 的不可挥发核心仅在怠速模式下观察到。DOC+DPF 对核心和烟尘颗粒都具有显著的过滤效率,无论所研究的生物柴油混合物和发动机负荷如何。DOC+DPF 后的 N(TOT)与典型的环境水平(约 10(4)cm(-3))相当。这意味着,如果不同时减少半挥发性物质,后处理后半挥发性成核模式颗粒的形成将非常有利。

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