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Particulate matter emissions over the oil sands regions in Alberta, Canada

机译:加拿大艾伯塔省油砂地区的微粒物质排放

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Particulate matter (PM) emissions from the expanded oil sands development in Alberta are becoming a focus among the aerosol science community because of its significant negative impact on the regional air quality and climate change. Open-pit mining, petroleum coke (petcoke) dust, and the transportation of oil sands and waste materials by heavy-duty trucks on unpaved roads could release PM into the air. Incomplete combustion of fossil fuels by engines and stationary boilers leads to the formation of carbonaceous aerosols. In addition, wildfire and biogenic emissions surrounding the oil sands regions also have the potential to contribute primary PM to the ambient air. Secondary organic aerosol formation has been revealed as an important source of PM over nearby and distant areas from the oil sands regions. This review summarizes the primary PM sources and some secondary aerosol formation mechanisms that are linked to oil sands development. It also reviews the approaches that can be applied in aerosol source apportionment. Meteorological condition is an important factor that may influence the primary PM emission and secondary aerosol formation in Alberta's oil sands regions. Current concern should not be limited to the primary emission of atmospheric PM. Secondary formation of aerosols, especially secondary organic aerosol originating from photochemical reaction, should also be taken into consideration. To obtain a more comprehensive understanding of the sources and amount of PM emissions based on the bottom-up emission inventory approach, investigations on how to reduce the uncertainty in determination of real-world PM emission factors for the variable sources are needed. Long-range transport trajectories of fine PM from Alberta's oil sands regions remain unknown.
机译:颗粒物质(PM)艾伯塔省膨胀油砂发育的排放正在成为气溶胶科学界的重点,因为它对区域空气质量和气候变化的显着负面影响。 Open-Pit Mining,石油焦炭(Petcoke)灰尘以及未铺砌的道路上的重型卡车的石油砂和废料的运输可以释放PM进入空中。通过发动机和固定锅炉对化石燃料的不完全燃烧导致碳质气溶胶的形成。此外,围绕油砂区域的野火和生物发射也有可能将主要PM贡献到环境空气中。二次有机气溶胶形成已被揭示为来自油砂区域附近和远处区域的重要来源。本综述总结了主要PM源和一些与油砂开发有关的二级气溶胶形成机制。它还审查了可用于气溶胶源分配的方法。气象状况是可能影响艾伯塔省油砂地区的主要PM发射和二次气溶胶形成的重要因素。目前的问题不应限于大气下午的主要排放。还应考虑源自光化学反应的次要气溶胶,特别是来自光化学反应的二次有机气溶胶的二次形成。为了基于自下而上排放库存方法获得对PM排放来源和PM排放量的更全面的理解,需要对如何降低确定变量来源的现实PM排放因子的不确定性的调查。来自艾伯塔省油砂地区的优美PM的远程运输轨迹仍然未知。

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