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The study on biomass fraction estimate methodology of municipal solid waste incinerator in Korea

机译:韩国城市生活垃圾焚烧炉生物质分率估算方法研究

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摘要

In Korea, the amount of greenhouse gases released due to waste materials was 14,800,000 t CO_2eq in 2012, which increased from 5,000,000 t CO_2eq in 2010. This included the amount released due to incineration, which has gradually increased since 2010. Incineration was found to be the biggest contributor to greenhouse gases, with 7,400,000 t CO_2eq released in 2012. Therefore, with regards to the trading of greenhouse gases emissions initiated in 2015 and the writing of the national inventory report, it is important to increase the reliability of the measurements related to the incineration of waste materials. This research explored methods for estimating the biomass fraction at Korean MSW incinerator facilities and compared the biomass fractions obtained with the different biomass fraction estimation methods. The biomass fraction was estimated by the method using default values of fossil carbon fraction suggested by IPCC, the method using the solid waste composition, and the method using incinerator flue gas. The highest biomass fractions in Korean municipal solid waste incinerator facilities were estimated by the IPCC Default method, followed by the MSW analysis method and the Flue gas analysis method. Therefore, the difference in the biomass fraction estimate was the greatest between the IPCC Default and the Flue gas analysis methods. The difference between the MSW analysis and the flue gas analysis methods was smaller than the difference with IPCC Default method. This suggested that the use of the tPCC default method cannot reflect the characteristics of Korean waste incinerator facilities and Korean MSW. Implications: Incineration is one of most effective methods for disposal of municipal solid waste (MSW). This paper investigates the applicability of using biomass content to estimate the amount of CO_2 released, and compares the biomass contents determined by different methods in order to establish a method for estimating biomass in the MSW incinerator facilities of Korea. After analyzing the biomass contents of the collected solid waste samples and the flue gas samples, the results were compared with the Intergovernmental Panel on Climate Change (IPCC) method, and it seems that to calculate the biomass fraction it is better to use the flue gas analysis method than the IPCC method, it is valuable to design and operate a real new incineration power plant, especially for the estimation of greenhouse gas emissions.
机译:在韩国,废物产生的温室气体排放量从2010年的500万吨二氧化碳当量增加到2012年的1,480万吨二氧化碳当量。2010年以来,焚化产生的温室气体排放量自2010年以来逐渐增加。温室气体的最大贡献者,2012年释放了7,400,000吨CO_2eq。因此,关于2015年启动的温室气体排放交易和国家清单报告的撰写,重要的是提高与焚烧废料。这项研究探索了估计韩国垃圾焚化炉设施中生物质分数的方法,并比较了使用不同生物质分数估算方法获得的生物质分数。通过使用IPCC建议的化石碳组分的默认值的方法,使用固体废物成分的方法和使用焚化炉烟气的方法,估算生物量组分。通过IPCC默认方法估算了韩国城市固体废物焚化炉设施中最高的生物质分数,然后采用MSW分析方法和烟气分析方法进行了估算。因此,在IPCC默认值和烟气分析方法之间,生物质分数估计值的差异最大。 MSW分析和烟气分析方法之间的差异小于IPCC Default方法的差异。这表明使用tPCC默认方法不能反映韩国垃圾焚化炉设施和韩国MSW的特征。含义:焚化是处理城市固体废物(MSW)的最有效方法之一。本文研究了利用生物量含量估算释放的CO_2量的适用性,并比较了用不同方法测定的生物量含量,从而建立了估算生活垃圾焚烧炉设施中生物量的方法。在分析了收集的固体废物样品和烟气样品中的生物量含量之后,将结果与政府间气候变化专门委员会(IPCC)的方法进行了比较,看来计算生物质分数最好使用烟气。与IPCC方法相比,这种分析方法对设计和运行真正的新型焚烧发电厂非常有价值,特别是对于温室气体排放的估算。

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    Department of Environment & Energy, Sejong University, Seoul, Korea;

    Cooperative Course for Climate Change, Sejong University, Seoul, Korea;

    Department of Earth and Environmental Sciences, Sejong University, Seoul, Korea;

    Department of Environment & Energy, Sejong University, Seoul, Korea;

    Department of Civil & Environmental Engineering at Hanyang University, Seoul, Korea;

    Department of Environment & Energy, Sejong University, 98 Gunja-dong, Gwangjin-gu, Seoul 143-747, Korea;

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  • 入库时间 2022-08-17 13:30:42

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