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估算乘用车发动机中汽油-乙醇混合燃料的城市环境影响。

Estimating the urban environmental impact of gasoline-ethanol blended fuels in a passenger vehicle engine.

机构信息

Graduate Program in Production Engineering, Paulista University, Rua Dr. Bacelar 1212- Vila Clementino, CEP 04043-200, Sao Paulo, SP, Brazil.

出版信息

Environ Sci Pollut Res Int. 2021 Dec;28(45):63977-63988. doi: 10.1007/s11356-021-13432-5. Epub 2021 Mar 23.

Abstract

A large portion of urban emissions in developing countries come from old gasoline vehicles driven in metropolitan areas. The present study aimed to develop models to estimate the environmental impact of different contents of gasoline and ethanol mixtures (pure gasoline; 25, 50, 75% ethanol blended to gasoline; and 100% ethanol) in a flex-fuel engine. We tested the blended fuel using three different speeds and recorded the GHG emissions and engine output data. The data mining approach was used to develop environmental impact predictive models. The ethanol content in gasoline; the engine rotational speed 900, 2000, and 3000 rpm; and λ were used as attributes. The classification target was the environmental impact concerning the CO emission ("low," "average," and "high"). We employed the Random forest algorithm to develop predictive models. The mean values of CO concentrations for all studied fuel content were above 2.47% of the volume. The trees' models (accuracy 73%, κ =0.61) showed three alternatives for predicting the environmental impact based on the ethanol blend, the engine rotation, λ, and the air-fuel ratio. Such models might help policymakers develop educational campaigns to reduce short- and medium-term urban commuter traffic pollution in countries that lack suitable urban transportation.

摘要

发展中国家大部分城市排放的污染物来自大都市地区行驶的老旧汽油车辆。本研究旨在为灵活燃料发动机中不同比例的汽油和乙醇混合物(纯汽油;25%、50%、75%乙醇混合汽油;100%乙醇)的环境影响开发模型。我们使用三种不同速度测试混合燃料,并记录温室气体排放和发动机输出数据。使用数据挖掘方法开发环境影响预测模型。汽油中的乙醇含量、发动机转速 900、2000 和 3000rpm 以及 λ 用作属性。分类目标是 CO 排放的环境影响(“低”、“中”和“高”)。我们采用随机森林算法来开发预测模型。所有研究燃料含量的 CO 浓度平均值均高于体积的 2.47%。树木模型(准确率为 73%,κ=0.61)显示了基于乙醇混合、发动机旋转、λ 和空燃比预测环境影响的三种选择。这些模型可能有助于政策制定者开展教育活动,以减少缺乏合适城市交通的国家的短期和中期城市通勤交通污染。

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