首页> 外文期刊>Journal of Chemical Engineering of Japan >Evaluation of SO2 Emissions and Health Effects Following the Installation of Desulfurization Facilities and Coal Bio-Briquette Technology in China
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Evaluation of SO2 Emissions and Health Effects Following the Installation of Desulfurization Facilities and Coal Bio-Briquette Technology in China

机译:在中国安装脱硫设施和煤生物煤浆技术后,SO2排放和健康影响的评估

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Environmental and health problems due to sulfur dioxide (SO2) emission are serious issues in China. In this study, we developed a model to assess the total economic and environmental impact on an area subsequent to installation of desulfurization facilities. A model based on the number of new patients with respiratory illness in Shenyang City, China and the corresponding environmental SO2 concentration was first constructed and subsequently integrated into an air diffusion model for SO2. Changes in the SO2 concentration and the number of patients were then simulated, and the effects of desulfurization by-products on salt-affected soil amelioration were assessed in a number of scenarios where desulfurization facilities were installed in combustion plants. From the data, it is projected that the introduction of a wet limestone-gypsum process in large plants, an integrated desulfurization and water-film dust collection process in medium-and small-scale plants, and coal bio-briquettes in households should result in SO2 concentrations below the stipulated SO2 limit for urban residential areas in China. Moreover, a large decrease in the number of new patients and in the total number of patients at the year-end was forecasted for the years following the introduction of these facilities. Additionally, the present findings indicate that amelioration of salt-affected soil using desulfurization by-products is a prospectively effective method for increasing corn and rice production for potential alleviation of food shortages in China.
机译:在中国,由于二氧化硫(SO2)排放引起的环境和健康问题是严重的问题。在这项研究中,我们开发了一个模型来评估安装脱硫设施后对该地区的总体经济和环境影响。首先建立了一个基于中国沉阳市新增呼吸系统疾病患者人数和相应的环境二氧化硫浓度的模型,然后将其集成到二氧化硫的空气扩散模型中。然后模拟了SO2浓度和患者人数的变化,并在燃烧厂安装了脱硫设施的许多情况下,评估了脱硫副产物对盐影响的土壤改良的影响。根据这些数据,预计在大型工厂中采用湿石灰石-石膏工艺,在中小型工厂中采用集成的脱硫和水膜集尘工艺,以及在家庭中使用煤生物煤浆,都将导致:中国城市居民区的SO2浓度低于规定的SO2限​​值。此外,在引入这些设施之后的几年中,预计到年底的新病人数和病人总数将大大减少。此外,目前的发现表明,使用脱硫副产物改善盐分土壤是增加玉米和大米产量以减轻中国粮食短缺的潜在有效方法。

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