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中国成都六家典型企业的烟气脱硫脱硝技术综合评价。

Comprehensive evaluation of flue gas desulfurization and denitrification technologies of six typical enterprises in Chengdu, China.

机构信息

College of Architecture and Environment, Sichuan University, Chengdu, 610065, China.

Key Laboratory of Air Pollution Research, Chengdu Academy of Environmental Sciences, Chengdu, 610072, China.

出版信息

Environ Sci Pollut Res Int. 2020 Dec;27(36):45824-45835. doi: 10.1007/s11356-020-10460-5. Epub 2020 Aug 15.

Abstract

Post-combustion flue gas desulfurization and denitrification technologies are essential in achieving the full compliance of fine particulate matter (PM, aerodynamic diameter less than 2.5 μm) air quality standards by 2030 in China as sulfur dioxide (SO) and nitrogen oxides (NO) are the main precursors of PM. Some studies have addressed the performance evaluation of desulfurization technology, but none included the water-soluble ions (sulfate (SO), nitrate (NO), etc.) as an indicator nor accounted for uncertainty involved. In this study, we present a multilevel fuzzy method that integrates the analytic hierarchy process with fuzzy theory, defines SOconcentration as a new environmental indicator, and is supplemented with an uncertainly analysis and apply the method for the techno-economic and environmental evaluation of desulfurization and denitrification technologies in six typical enterprises (including two power plants and three industrial production plants and a waste incineration plant) in Chengdu, China. The evaluation shows that first, the fluctuating desulfurization rate and the dosage leads to changed ranking of the economic and technical secondary evaluation results, with the overall comprehensive evaluation ranks unchanged. Second, from the perspective of environmental protection agency and the public, if the environmental indicators are empowered, the lower the SOconcentration of an enterprise, the better its evaluation ranking will be and vice versa. Third, if we re-empower from the perspective of the enterprise, under the condition that the technical feasibility is met and the environmental indicators are basically up to standard, the low-cost removing process is more likely to be the tendency of the enterprise. In summary, the findings of the study have led to the conclusions that (1) for the power industry, the integration of desulfurization, denitrification, and dedusting technologies should be promoted rigorously; (2) the non-power industry should continue the end-of-pipe treatment and environmental protection regulatory policies of the power industry; and (3) the energy industry structure should be optimized with enhanced end-of-pipe control technologies to achieve deep reduction of air pollutants.

摘要

燃烧后烟气脱硫脱硝技术对于实现 2030 年中国细颗粒物(PM,空气动力学直径小于 2.5μm)空气质量标准的全面达标至关重要,因为二氧化硫(SO)和氮氧化物(NO)是 PM 的主要前体。一些研究已经对脱硫技术的性能评价进行了研究,但没有一个研究将水溶性离子(硫酸盐(SO)、硝酸盐(NO)等)作为一个指标,也没有考虑到所涉及的不确定性。在本研究中,我们提出了一种多层次模糊方法,将层次分析法与模糊理论相结合,定义 SO 浓度为新的环境指标,并补充不确定性分析,应用于中国成都六个典型企业(包括两个电厂和三个工业生产厂以及一个垃圾焚烧厂)的脱硫脱硝技术的技术经济和环境评价。评价结果表明:首先,脱硫率波动和剂量会导致经济和技术二级评价结果的排名发生变化,整体综合评价排名不变。其次,从环保部门和公众的角度来看,如果赋予环境指标更多的权重,企业的 SO 浓度越低,其评价排名就越高,反之亦然。第三,如果从企业的角度重新赋予权重,在技术可行性得到满足且环境指标基本达标前提下,低成本去除工艺更可能成为企业的趋势。综上所述,本研究得出的结论是:(1)对于电力行业,应严格推进脱硫、脱硝、除尘技术的集成;(2)非电力行业应继续执行电力行业的末端治理和环保监管政策;(3)应优化能源产业结构,加强末端治理技术,实现空气污染物的深度减排。

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