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Application of banana peels waste as adsorbents for the removal of CO2, NO, NOx, and SO2 gases from motorcycle emissions

机译:香蕉剥离废物作为吸附剂,用于从摩托车排放中除去CO2,NO,NOx和SO2气体

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The aims of the study were to investigate the application of banana peels as adsorbent for the removal of CO, NO, NOx and SO2 gases from motorcycles emissions. The effect of differents thermal activation on the characteristics of banana peels adsorbent (BPA) such as moisture content, ash content, volatile matter and fixed carbon has been studied using proximate analysis. The study of Iodine adsorption capacity of BPA was obtained at 952 mg/g adsorbent. Structure and morphology of BPA were characterized by Fourier transform infrared (FTIR) and field emission scanning electron microscopy (SEM). The results showed that BPA could significantly adsorbed the CO and SO2 gases emissions from motorcycles, but not applicable for NO, NOx gases. After 10 minutes of flue gas analysis at idle mode using BPA adsorption tube, CO gas could be totally removed, from initial 19618 ppm to 0 ppm, while SO2 gas could also be totally removed from 24523 ppm to 0 ppm. SEM test showed that temperature of activation had significant effect on the size of pores of BPA formed. BPA was suitable for application in removing CO and SO2 gases emissions from motorcycles and it helps to reduce the green house gas effects of fossil fuel to the environment.
机译:该研究的目的是调查香蕉皮作为吸附剂,用于从摩托车排放中除去CO,NO,NOX和SO2气体的吸附剂。使用近分析研究了不同热激活对香蕉剥离吸附剂(BPA)的特性的影响,例如水分含量,灰分,挥发物质和固定碳。在952mg / g吸附剂中获得BPA碘吸附能力的研究。 BPA的结构和形态的特征在于傅里叶变换红外(FTIR)和场发射扫描电子显微镜(SEM)。结果表明,BPA可以显着吸附来自摩托车的CO和SO2气体排放,但不适用于NO,NOx气体。在使用BPA吸附管的空转模式下烟气分析10分钟后,可以完全除去CO气体,从初始19618ppm到0 ppm,而SO2气体也可以完全从24523ppm到0 ppm去除。 SEM测试表明,活化温度对形成的BPA孔的尺寸有显着影响。 BPA适用于从摩托车中除去CO和SO2气体排放的应用,并有助于减少化石燃料对环境的绿色房屋气体影响。

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