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Modeling and analysis of PM2.5 generation for key factors identification in China

机译:中国关键因子识别的PM2.5生成建模与分析

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Recently, the PM2.5 pollution in China has occurred frequently and caused widely concern. In order to identify the key factors for PM2.5 generation, the formation characteristics of PM2.5 would be revealed. A property of electric neutrality of PM2.5 was proposed under the least-energy principle and verified through electricity-charge calculation in this paper. It indicated that PM2.5 is formed by the effect of electromagnetic force, including the effect of ionic bond, hydrogen bond and polarization. According to the analysis of interactive forces among different chemical components, a simulation model is developed for describing the random process of PM2.5 generation. In addition, an orthogonal test with two levels and four factors has been designed and carried out through the proposed model. From the text analysis, PM2.5 would be looser and suspend longer in atmosphere due to Organic Compound (OC) existing (OC can reduce about 67% of PM2.5 density). Considering that NH4+ is the only cation in the main chemical components of PM2.5, it would be vital for anions (such as SO42- and NO3-) to aggregate together for facilitating PM2.5 growing. Therefore, in order to relieve PM2.5 pollution, control strategies for OC and NH4+ would be enhanced by government through improving the quality of oils and solvent products, decreasing the amount of nitrogenous fertilizer utilization, or changing the fertilizing environment from dry condition to wet condition. (C) 2016 Elsevier Ltd. All rights reserved.
机译:最近,中国的PM2.5污染频繁发生,引起了广泛关注。为了确定产生PM2.5的关键因素,将揭示PM2.5的形成特征。提出了基于最小能量原理的PM2.5电中性特性,并通过电荷计算验证了该特性。表明PM2.5是由电磁力作用形成的,包括离子键,氢键和极化作用。通过对不同化学成分之间相互作用力的分析,建立了一个描述PM2.5生成随机过程的仿真模型。此外,通过所提出的模型设计并执行了具有两个级别和四个因素的正交测试。根据文本分析,由于存在有机化合物(OC),PM2.5会更松散,并在大气中悬浮更长的时间(OC可以降低PM2.5密度约67%)。考虑到NH4 +是PM2.5主要化学成分中的唯一阳离子,因此阴离子(如SO42-和NO3-)聚集在一起以促进PM2.5生长至关重要。因此,为减轻PM2.5的污染,政府将通过改善油和溶剂产品的质量,减少氮肥的利用量或将施肥环境从干燥改为湿润,加强对OC和NH4 +的控制策略。健康)状况。 (C)2016 Elsevier Ltd.保留所有权利。

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