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Sorption and phase distribution of ethanol and butanol blended gasoline vapours in the vadose zone after release

机译:释放后渗流区内乙醇和丁醇混合汽油蒸气的吸附和相分布

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摘要

The sorption and phase distribution of 20% ethanol and butanol blended gasoline (E20 and B20) vapours have been examined in soils with varying soil organic matter (SOM) and water contents via laboratory microcosm experiments. The presence of 20% alcohol reduced the sorption of gasoline compounds by soil as well as the mass distribution of the compounds to soil solids. This effect was greater for ethanol than butanol. Compared with the sorption coefficient (K_d) of unblended gasoline compounds, the K_d of E20 gasoline compounds decreased by 54% for pentane, 54% for methylcyclopentane (MCP) and 63% for benzene, while the Kd of B20 gasoline compounds decreased by 39% for pentane, 38% for MCP and 49% for benzene. The retardation factor (R) of E20 gasoline compounds decreased by 53% for pentane, 53% for MCP and 48% for benzene, while the R of B20 gasoline compounds decreased by 39% for pentane, 37% for MCP and 38% for benzene. For all SOM and water contents tested, the Kd and R of all gasoline compounds were in the order of unblended gasoline > B20 > E20, indicating that the use of high ethanol volume in gasoline to combat climate change could put the groundwater at greater risk of contamination.
机译:通过实验室缩影实验,研究了土壤有机质(SOM)和水含量变化的土壤中20%乙醇和丁醇混合汽油(E20和B20)蒸气的吸附和相分布。 20%酒精的存在降低了土壤对汽油化合物的吸附以及化合物在土壤固体中的质量分布。乙醇的效果比丁醇大。与未混合汽油化合物的吸附系数(K_d)相比,戊烷E20汽油化合物的K_d降低了54%,甲基环戊烷(MCP)的K_d降低了,苯降低了63%,而B20汽油化合物的Kd降低了39%。戊烷,MCP为38%,苯为49%。 E20汽油化合物的阻滞因子(R)戊烷降低53%,MCP降低53%,苯降低48%,而B20汽油化合物的戊烷的R降低戊烷39%,MCP降低37%,苯降低38% 。对于所有测试的SOM和水含量,所有汽油化合物的Kd和R均按未混合汽油> B20> E20的顺序排列,这表明在汽油中使用高乙醇量来应对气候变化可能使地下水处于更大风险中。污染。

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