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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Evaluation of portable dilution system for aerosol measurement from stationary and mobile combustion sources
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Evaluation of portable dilution system for aerosol measurement from stationary and mobile combustion sources

机译:便携式稀释系统评估,用于从固定和移动燃烧源进行气溶胶测量

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This study presents the emission factor of PM2.5, elemental carbon (EC), organic carbon (OC), and water-soluble ions for biomass-fired-induced downdraft gasifier and light duty diesel vehicle (LDDV). A portable dilution system (PDS) developed for on-field measurement of aerosol and their precursors from combustion sources were used for quenching of aerosol at near-atmospheric condition before collection on filters. PDS consists of a heated duct and particle sampling probe, dilution tunnel, zero air assembly, and a power supply unit. PDS was evaluated under controlled conditions in laboratory for gasifier cookstove and LDDV over wide range of dilution ratios to understand the effect of dilution on mixing, particle formation, and loss. The invariability in CO2, recorded along the length and at radial distances of cross-section of dilution tunnel, confirmed the rapid and homogenous mixing inside the dilution tunnel. The particle loss and nucleation inside the dilution tunnel accounted for 6-20% at different dilution ratios (30:1-90:1). PM2.5 emission factors for wood combustion in gasifier cookstove showed mild decrease (13%) with increasing dilution ratio from 75:1 to 108:1. However, a considerable decrease of 37% (221-139 mg km(-1)) was observed for LDDV with increase in dilution ratio from 39:1 to 144:1. Similar decrease in particulate organic carbon emission rates were observed indicating scarcity of sorptive organics, and insufficient residence time for condensation limited the particle formation from vapor phase organic compounds at high dilution ratios.
机译:这项研究提出了PM2.5,元素碳(EC),有机碳(OC)和水溶性离子的排放因子,这些排放用于生物质燃烧诱导的下浮气化炉和轻型柴油车(LDDV)。开发用于现场测量气溶胶及其燃烧源前体的便携式稀释系统(PDS),用于在收集过滤器之前在接近大气压的条件下对气溶胶进行淬火。 PDS由加热导管和颗粒采样探头,稀释通道,零空气组件和电源单元组成。在实验室的受控条件下,针对气化炉灶具和LDDV在较宽的稀释比范围内对PDS进行了评估,以了解稀释对混合,颗粒形成和损失的影响。沿稀释隧道横截面的长度和径向距离记录的CO2不变性证实了稀释隧道内部的快速均匀混合。在不同的稀释比例(30:1-90:1)下,稀释通道内的颗粒损失和成核作用占6-20%。气化炉灶中木材燃烧的PM2.5排放因子随着稀释比从75:1到108:1的增加而显示出轻微的下降(13%)。但是,随着稀释比从39:1增加到144:1,LDDV下降了37%(221-139 mg km(-1))。观察到颗粒有机碳排放速率的相似下降,表明缺乏吸收性有机物,并且凝结的停留时间不足限制了在高稀释比下由气相有机化合物形成的颗粒。

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