Literature DB >> 19136242

Analysis of potential RDF resources from solid waste and their energy values in the largest industrial city of Korea.

Trang T T Dong1, Byeong-Kyu Lee.   

Abstract

The production potential of refuse derived fuel (RDF) in the largest industrial city of Korea is discussed. The purpose of this study is to evaluate the energy potential of the RDF obtained from utilizing combustible solid waste as a fuel resource. The total amount of generated solid waste in the industrial city was more than 3.3 million tonnes, which is equivalent to 3.0tonnes per capita in a single year. The highest amount of solid waste was generated in the city district with the largest population and the biggest petrochemical industrial complex (IC) in Korea. Industrial waste accounted for 89% of the total amount of the solid waste in the city. Potential RDF resources based on combustible solid wastes including wastepaper, wood, rubber, plastic, synthetic resins and industrial sludge were identified. The amount of combustible solid waste that can be used to produce RDF was 635,552tonnes/yr, consisting of three types of RDF: 116,083tonnes/yr of RDF-MS (RDF from municipal solid waste); 146,621tonnes/yr of RDF-IMC (RDF from industrial, municipal and construction wastes); and 372,848tonnes/yr of RDF-IS (RDF from industrial sludge). The total obtainable energy value from the RDF resources in the industrial city was more than 2,240,000x10(6)kcal/yr, with the following proportions: RDF-MS of 25.6%, RDF-IMC of 43.5%, and RDF-IS of 30.9%. If 50% or 100% of the RDF resources are utilized as fuel resources, the industrial city can save approximately 17.6% and 35.2%, respectively, of the current total disposal costs.

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Year:  2009        PMID: 19136242     DOI: 10.1016/j.wasman.2008.11.022

Source DB:  PubMed          Journal:  Waste Manag        ISSN: 0956-053X            Impact factor:   7.145


  1 in total

1.  Numerical and experimental analysis of pyrolysis process of RDF containing a high percentage of plastic waste.

Authors:  Monika Zajemska; Aneta Magdziarz; Józef Iwaszko; Magdalena Skrzyniarz; Anna Poskart
Journal:  Fuel (Lond)       Date:  2022-03-28       Impact factor: 8.035

  1 in total

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