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Costs of IQ Loss from Leaded Aviation Gasoline Emissions

机译:含铅航空汽油排放导致智商损失的成本

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摘要

In the United States, general aviation piston-driven aircraft are now the largest source of lead emitted to the atmosphere. Elevated lead concentrations impair children’s IQ and can lead to lower earnings potentials. This study is the first assessment of the nationwide annual costs of IQ losses from aircraft lead emissions. We develop a general aviation emissions inventory for the continental United States and model its impact on atmospheric concentrations using the Community Multi-Scale Air Quality Model (CMAQ). We use these concentrations to quantify the impacts of annual aviation lead emissions on the U.S. population using two methods: through static estimates of cohort-wide IQ deficits and through dynamic economy-wide effects using a computational general equilibrium model. We also examine the sensitivity of these damage estimates to different background lead concentrations, showing the impact of lead controls and regulations on marginal costs. We find that aircraft-attributable lead contributes to $1.06 billion 2006 USD ($0.01 – $11.6) in annual damages from lifetime earnings reductions, and that dynamic economy-wide methods result in damage estimates that are 54% larger. Because the marginal costs of lead are dependent on background concentration, the costs of piston-driven aircraft lead emissions are expected to increase over time as regulations on other emissions sources are tightened.
机译:在美国,通用航空活塞驱动飞机现在是释放到大气中的最大铅源。铅浓度升高会损害儿童的智商,并可能导致潜在的收入下降。这项研究是对飞机铅排放引起的智商损失的全国年度成本的首次评估。我们开发了美国本土的通用航空排放清单,并使用“社区多尺度空气质量模型”(CMAQ)对大气浓度的影响进行了建模。我们使用以下两种方法使用这些浓度来量化年度航空铅排放对美国人口的影响:通过对整个队列范围内的智商赤字进行静态估计,以及通过使用计算通用均衡模型对整个经济范围内的动态变化进行影响。我们还检查了这些损害估计对不同背景铅浓度的敏感性,显示了铅控制和法规对边际成本的影响。我们发现,归因于飞机的铅导致终身收益减少,从而为2006年的年度损失贡献了10.6亿美元(0.01 – 11.6美元),而动态的全经济方法得出的损失估计要大54%。由于铅的边际成本取决于本底浓度,因此随着其他排放源法规的严格,预计活塞驱动的飞机铅排放成本会随着时间增加。

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