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The Mutagenic Potential Caused by the Emissions from Combustion of Crude Glycerin and Diesel Fuel

机译:甘油和柴油燃料燃烧排放引起的致突变性。

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摘要

This study evaluated the use of crude glycerin as an alternative of energy generation to replace the traditional fuels. The Tradescantia stamen hair mutation assay (Trad-SH) was applied to study the mutagenic effects caused by the emissions generated in the direct combustion of diesel oil and glycerin in a flame tube furnace. Tradescantia inflorescences were exposed to gaseous emissions from the combustion tests in a fumigation chamber for 30-40 min. The analysis of variance and the Tukey test were applied to compare the differences between six test groups (intoxicated with emissions from glycerin and diesel oil combustion) and a control group. Only one glycerin group showed statistical differences (0.05), possibly due to the complexity of the burning process and impurities, besides the acrolein present in its emissions. The high heating value (HHV) of crude glycerin (25.5 MJ/kg) was lower than diesel oil (45.19 MJ/kg), but it was comparable to other fuels. Although the use of glycerin as a biofuel could be an important aspect to be considered, the results showed that the glycerin had a substantial mutagenic potential similar to that of diesel oil.
机译:这项研究评估了使用粗甘油作为替代传统燃料的能源生产方式。 scan桐雄蕊毛突变试验(Trad-SH)用于研究在火焰管式炉中柴油和甘油直接燃烧产生的排放物引起的诱变效应。紫scan花序在熏蒸室内暴露于燃烧试验产生的气体排放中30-40分钟。应用方差分析和Tukey检验比较了六个测试组(因甘油和柴油燃烧产生的排放而中毒)与对照组之间的差异。只有一个甘油组显示统计学差异(0.05),这可能是由于燃烧过程和杂质的复杂性,以及其排放物中存在的丙烯醛。粗甘油的高发热量(HHV)(25.5 MJ / kg)低于柴油(45.19 MJ / kg),但与其他燃料相当。尽管使用甘油作为生物燃料可能是一个重要的考虑因素,但结果表明,甘油具有与柴油相似的诱变潜力。

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