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Second generation chemical mass balance source apportionent of sulfur oxides and sulfate at the grand canyon during the project mohave 1992 summer intensive

机译:第二代化学质量平衡源在工程莫汉沃1992年夏季密集的大峡谷期间在大峡谷的硫酸和硫酸盐分配。

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Receptor based chemical mass balance analysis techniques are designed to apportion species which are conserved during pollutant transport using conserved source profiles. The techniques will fail if non-conservative species (or profiles) are not properly accounted for in the CMB model. The straightforward application of the CMB model developed BYU using regional profiles to the Project MOHAVE data resulted in a significant under-prediction of total sulfat oxides (SO_x, SO_2 plus fine particulate sulfate) for many samples at Meadview, AZ. In addition, for these samples the concentration of the inert tracer emitted from the Mohave Power Project, ocPDCH, was also under-predicted. A second generation model has been developed which assumes that separation of particles and SO_2 can occur in the MPP plume during night-time stable plume conditions.
机译:基于受体的化学质量平衡分析技术被设计成使用保守源轮廓在污染物运输过程中节约的分摊物种。 如果在CMB模型中没有适当地算法,则该技术将失败。 CMB模型的直接应用BYU使用区域型材对项目MOHAVE数据产生的,导致在MEADVIEW,AZ中的许多样品的总硫酸氧化物(SO_X,SO_2加细颗粒硫酸盐)显着预测。 此外,对于这些样品,还预测了从莫布拉夫电力项目,OCPDCH发出的惰性示踪剂的浓度。 已经开发了第二代模型,其假设在夜间稳定的羽流条件期间可以在MPP羽流中发生颗粒和SO_2的分离。

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