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Vent pipe emissions from storage tanks at gas stations: Implications for setback distances

机译:气体站储罐的排气管道排放:对挫折距离的影响

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At gas stations, fuel vapors are released into the atmosphere from storage tanks through vent pipes. Little is known about when releases occur, their magnitude, and their potential health consequences. Our goals were to quantify vent pipe releases and examine exceedance of short-term exposure limits to benzene around gas stations. At two US gas stations, we measured volumetric vent pipe flow rates and pressure in the storage tank head-space at high temporal resolution for approximately three weeks. Based on the measured vent emission and meteorological data, we performed air dispersion modeling to obtain hourly atmospheric benzene levels. For the two gas stations, average vent emission factors were 0.17 and 0.21 kg of gasoline per 1000 L dispensed. Modeling suggests that at one gas station, a 1-hour Reference Exposure Level (REL) for benzene for the general population (8 ppb) was exceeded only closer than 50 m from the station's center. At the other gas station, the REL was exceeded on two different days and up to 160 m from the center, likely due to non-compliant bulk fuel deliveries. A minimum risk level for intermediate duration (>14-364 days) benzene exposure (6 ppb) was exceeded at the elevation of the vent pipe opening up to 7 and 8 m from the two gas stations. Recorded vent emission factors were >10 times higher than estimates used to derive setback distances for gas stations. Setback distances should be revisited to address temporal variability and pollution controls in vent emissions.
机译:在加油站,燃料蒸汽通过排气管从储罐释放到大气中。何时发生释放,其幅度及其潜在的健康后果知之甚少。我们的目标是量化排气管释放,并检查气体站周围苯的短期暴露限值。在两个美国加油站,我们在高时的储存罐头空间中测量了容量的通风管道流量和压力,约为3周。基于测量的通风发射和气象数据,我们进行了空气分散建模,以获得每小时大气苯水平。对于两个加油站,平均排放因子为0.17和0.21千克汽油,每1000升分配。建模表明,在一个加油站,一般群体的1小时参考曝光水平(rel)超过距离车站中心的50米。在其他加油站,rel被距离在两天不同的日子里,距离中心高达160米,可能是由于不合规的散装燃料输送。中间持续时间(> 14-364天)的最低风险水平超过了从两个加油站的通风管道高达7和8米的升高处超过了苯暴露(6ppb)。录制的通风发射因子>高于用于衍生燃气站的挫折距离的估计值的10倍。应重新预订挫折距离以解决通风口排放中的时间变异性和污染控制。

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