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Installation Planning in Regional Thermal Power Industry for Emissions Reduction Based on an Emissions Inventory

机译:基于排放清单的区域火电行业安装计划以减少排放

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摘要

Exploring suitable strategies for air pollution control, while still maintaining sustainable development of the thermal power industry, is significant for the improvement of environmental quality and public health. This study aimed to establish a coupling relationship between installed capacity versus energy consumption and pollutant emissions, namely the installed efficiency, and to further provide ideas and methods for the control of regional air pollutants and installation planning. An inventory of 338 installed thermal power units in the Jing-Jin-Ji Region in 2013 was established as a case study, and comparisons were made by clustering classification based on the installed efficiencies of energy consumption and pollutant emissions. The results show that the thermal power units were divided into five classes by their installed capacity: 0–50, 50–200, 200–350, 350–600, and 600+ MW. Under the energy conservation and emissions reduction scenario, with the total installed capacity and the power generation generally kept constant, the coal consumption was reduced by 17.1 million tons (8.7%), and the total emissions were reduced by 79.8% (SO2), 84.9% (NOx), 60.9% (PM), and 59.5% (PM2.5).
机译:探索合适的空气污染控制策略,同时仍保持火电行业的可持续发展,对于改善环境质量和公共卫生具有重要意义。这项研究旨在建立装机容量与能耗和污染物排放之间的耦合关系,即装机效率,并进一步为控制区域性空气污染物和安装规划提供思路和方法。以个案为研究对象,建立了京津冀地区2013年338套火电机组的清单,并根据能耗和污染物排放的装机效率,通过聚类分类进行比较。结果表明,火电机组按装机容量分为五类:0–50、50–200、200–350、350–600和600+ MW。在节能减排的情况下,在总装机容量和发电量基本保持不变的情况下,煤炭消耗量减少了1,710万吨(8.7%),总排放量减少了79.8%(SO2),为84.9。 %(NOx),60.9%(PM)和59.5%(PM2.5)。

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