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Evaluation of the International Vehicle Emission (IVE) model with on-road remote sensing measurements
作者姓名:GUO Hui  ZHANG Qing-yu  SHI Yao  WANG Da-hui
作者单位:[1]Institute of Environmental Engineering, Zhejiang University, Hang zhou 310027, China. [2]Institute of Environmental Science, Zhejiang University, Hangzhou 310027, China
摘    要:Intemational Vehicle Emissions (IVE) model funded by U.S. Environmental Protection Agency (USEPA) is designed to estimate emissions from motor vehicles in developing countries. In this study, the IVE model was evaluated by utilizing a dataset available from the remote sensing measurements on a large number of vehicles at five different sites in Hangzhou, China, in 2004 and 2005. Average fuel-based emission factors derived from the remote sensing measurements were compared with corresponding emission factors derived from IVE calculations for urban, hot stabilized condition. The results show a good agreement between the two methods for gasoline passenger cars' HC emission for all 1VE subsectors and technology classes. In the case of CO emissions, the modeled results were reasonably good, although systematically underestimate the emissions by almost 12%-50% for different technology classes. However, the model totally overestimated NOx emissions. The IVE NOx emission factors were 1.5-3.5 times of the remote sensing measured ones. The IVE model was also evaluated for light duty gasoline truck, heavy duty gasoline vehicles and motor cycles. A notable result was observed that the decrease in emissions from technology class State II to State I were overestimated by the IVE model compared to remote sensing measurements for all the three pollutants. Finally, in order to improve emission estimation, the adjusted base emission factors from local studies are strongly recommended to be used in the IVE model.

关 键 词:遥感技术  国际车辆排放场模式  评价  燃料发射因数
收稿时间:8/2/2006 12:00:00 AM
修稿时间:2006-08-022007-03-27

Evaluation of the International Vehicle Emission (IVE) model with on-road remote sensing measurements
GUO Hui,ZHANG Qing-yu,SHI Yao,WANG Da-hui.Evaluation of the International Vehicle Emission (IVE) model with on-road remote sensing measurements[J].Journal of Environmental Sciences,2007,19(7):818-826.
Authors:GUO Hui  ZHANG Qing-yu  SHI Yao and WANG Da-hui
Institution:1. Institute of Environmental Engineering, Zhejiang University, Hangzhou 310027, China
2. Institute of Environmental Science, Zhejiang University, Hangzhou 310027, China
Abstract:International Vehicle Emissions (IVE) model funded by U.S. Environmental Protection (USEPA) is designed to estimate emissions from motor vehicles in developing countries. In this study, the IVE model was evaluated by utilizing a dataset available from the remote sensing measurements on a large number of vehicles at five different sites in Hangzhou, China, in 2004 and 2005. Average fuel-based emission factors derived from the remote sensing measurements were compared with corresponding emission factors derived from IVE calculations for urban, hot stabilized condition. The results show a good agreement between the two methods for gasoline passenger cars' HC emission for all IVE subsectors and technology classes. In the case of CO emissions, the modeled results were reasonably good, although systematically underestimate the emissions by almost 12%-50% for different technology classes. However, the model totally overestimated NOx emissions. The IVE NOx emission factors were 1.5-3.5 times of the remote sensing measured ones. The IVE model was also evaluated for light duty gasoline truck (LDGT), heavy duty gasoline vehicles (HDGV) and motor cycles (MC). A notable result was observed that the decrease in emissions from technology class State Ⅱ to State Ⅰ were overestimated by the IVE model compared to remote sensing measurements for all the three pollutants. Finally, in order to improve emission estimation, the adjusted base emission factors from local studies are strongly recommended to be used in the IVE model.
Keywords:remote sensing  IVE model  fuel-based emission factor  evaluation  vehicle emission  international  Evaluation  measurements  remote sensing  base  local  studies  used  order  improve  estimation  pollutants  result  decrease  class  State  cycles  light  truck
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