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Gasoline evaporative emissions ethanol effects on vapor control canister sorbent performance

机译:汽油蒸发排放乙醇对蒸汽控制罐吸附性能的影响

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Tests were performed at the University of North Dakota Energy & Environmental Research Center (EERC) to compare the evaporation rate of 10 volume percent ethanol-blended gasoline (E10) with the evaporation rate of its base gasoline. Averaged results of the tests demonstrated that at 70°F (21.1°C), the E10 fuel lost more total weight to evaporation than its base fuel, but less gasoline. The increased weight was due to ethanol, which was present in the E10 evaporative emissions at concentrations of about 13 weight percent. Subsequently, a test system was designed to investigate how the presence of ethanol in the evaporative emission affects the fuel evaporation canister sorbent performance. The system is equipped with a Fourier transform infrared spectrometer (FT-IR) to monitor sorbent breakthrough emission concentrations and compound types. Preliminary data obtained using sorbent from commercial canisters have shown that ethanol vapor breakthrough occurs significantly later than gasoline hydrocarbon vapor breakthrough.
机译:在北达科他州能源与环境研究中心(EERC)大学进行了测试,将10体积%的乙醇混合汽油(E10)的蒸发速率与其基础汽油的蒸发速率进行比较。测试的平均结果证明,在70°F(21.1°C)时,E10燃料比其基础燃料更重量蒸发,但汽油较少。增加的重量是由于乙醇,其在E10蒸发排放中以约13重量%的浓度存在。随后,设计测试系统以研究蒸发排放中乙醇的存在影响燃料蒸发罐的吸附剂性能。该系统配备了傅里叶变换红外光谱仪(FT-IR),以监测吸附剂突破发射浓度和复合类型。使用来自商业宿潮的吸附剂获得的初步数据表明,乙醇蒸汽突破比汽油烃蒸汽突破显着发生。

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