JOIN LOGIN MYPAGE

한국응용과학기술학회 논문 검색

파일럿 플랜트 반응기에서 생산된 페플라스틱 열분해유의 활용을 위한 분획별 특성분석 연구

간행물 정보 : Vol. 41 No. 5, 2024년,
파일형식 : pdf

page01_1.jpeg

 

page02_1.jpeg

 

page03_1.jpeg

 

page04_1.jpeg

 

page05_1.jpeg

 

page06_1.jpeg

 

page07_1.jpeg

 

page08_1.jpeg

 

page09_1.jpeg

 

page10_1.jpeg

page11_1.jpeg

 

page12_1.jpeg

 

page13_1.jpeg

 

page14_1.jpeg

 

page15_1.jpeg

 

page16_1.jpeg

 

page17_1.jpeg

 

page18_1.jpeg

1. OECD(2022), Global Plastic Outlook,

https://www.oecd-ilibrary.org/environment/global-plastics-outlook_de747aef-en

(accessed Oct, 10, 2024)

2. Z. Hu, T. Zhou, H. Tian, L. Feng, C. Yao, Y. Yin, D. Chen,“Effects of Pyrolysis Parameters on the Distribution of Pyrolysis products of miscanthus,” Prog. React. Kinet. Mech., Vol.46, pp. 1-13, (2021). https://doi.org/10.1177/14686783211010970

3. Council of the European Union : Report on the ministerial conference on marine litter and plastic pollution at Geneva co-convened by Ecuador, Germany, Ghana and Vietnam with support of the UNEP secretariat,

https://data.consilium.europa.eu/doc/document/ST-12362-2021-INIT/en/pdf

(accessed Oct 18, 2024)

4. Environmental Protection Agency : National recycling strategy: part one of a series on building a circular economy for all,

https://www.epa.gov/system/files/documents/2021-11/final-national-recyclin g-strategy.pdf

(accessed Oct, 10, 2024)

5. S. H. Lee, “Current Status and Implications of Plastic Regulations in the International Community”, KIEP World Economy Focus, Vol.5, No.13, (2022).

6. C. Park, H. J. Kim S. C. Oh, “A Study on the Characteristics of Non-catalytic Pyrolysis of Polypropylene(PP), Polyethylene (PE) Waste Plastics”, J. Env.Energ. Engi., Vol.17, No.1 pp. 48-63, (2022).

7. J. H. Jang, G. B. Han, C. K. Park, C. H. Jeon, J. -K. Kim, “Study on basic characteristics for utilization of bituminous pyrolysis by-products”, J. Korean Appl. Sci. Techn., Vol.34,No.4, pp.892-898. (2017). https://doi.org/10.12925/jkocs.2017.34.4.892

8. Korea Ministry of Government Legislation : Wastes control act, https://www.law.go.kr(accessed Sep, 30, 2024).

9. Korea Ministry of Government Legislation : Enforcement decree of the wastes control act, https://www.law.go.kr

(accessed Sep, 30, 2024).

10. https://s-oil.com/relation/NewsView.aspx? BoardDataIndex=14970

(accessed Oct, 18, 2024).

11. S. Kumagai, Y. Toshiaki, “Feedstock Recycling via Waste Plastic Pyrolysis”, J. Jpn. Petrol. Inst., Vol.59, No.6, pp. 243-253, (2016). https://doi.org/10.1627/jpi.59.243

12. B. H. Lee, S. H. Kim, H. J. Choi, “Liquefaction Characteristics Polyethylene-polystyrene Mixture of by Pyrolysis at Low Temperature”, J. Korean Appl. Sci. Techn., Vol.25, No.4, pp.495- 502. (2008). https://doi.org/10.12925/jkocs.2008.25.4.10

13. J. G. Park, J. -K. Kim, B. H. Lee, “The Study on Characteristics of Polystyrene byLow Temperature Pyrolysis by using Co and Mo Dispersed Catalysts”, J. Korean Appl. Sci. Techn., pp.676-685, (2016). Vol..33, No.4, https://doi.org/10.12925/jkocs.2016.33.4.676

14. M., Rehan, A. S. Nizami, K., Shahzad, O. K. M. Ouda, I. M. I. Ismail, T. Almeelbi, T. Iqbal, A. Demirbas, “Pyrolytic Liquid Fuel: a Source of Renewable Energy in Makkah”, Energ. Source., Part A, Vol.38, pp. 2598-2603, (2016).

15. S. M. Al-Salem, Y. Yang, J. Wang, G. A. Leeke, “Pyro-oil and Wax Recovery from Reclaimed Plastic Waste in a Continuous Auger Pyrolysis Reactor”. Energies, Vol.13, No.8, 2040, (2020). https://doi.org/10.3390/en13082040

16. S. E. Yin, P. Dong, R. S. Bie, “Basic Study on Plastic Pyrolysis in Fluidized Bed with Continuous-feeding”, Springer Berlin Heidelberg, pp. 123-127, (2007). https://doi.org/10.1007/978-3-540-76694-0_22

17. A. K. Panda, R. K. Singh, D. K. Mishra, “Thermolysis of Waste Plastics to Liquid Fuel: A Suitable Method for Plastic Waste Management and Manufacture of Value Added ProductsA World Prospective”, Renew. Sust. Energ. Rev., Vol.14, No.1, pp. 233-248, (2010). https://doi.org/10.1016/j.rser.2009.07.005

18. M. Kusenberg, A. Eschenbacher, M. R. Djokic, A. Zayoud, K. Ragaert, S. De Meester, K. M. Van Geem, “Opportunities and Challenges for the Application of Post-consumer Plastic Waste Pyrolysis Oils as Steam Cracker Feedstocks: To Decontaminate or Not to Deconta- minate?”, Waste manage., Vol.138, pp. 83-115, (2022). https://doi.org/10.1016/j.wasman.2021.11. 009

19. O. Dogu, M. Pelucchi, R. Van de Vijver, P. H. Van Steenberge D. R., D'hooge, A. Cuoci, K. M. Van Geem, “The Chemistry of Chemical Recycling of Solid Plastic Waste Via Pyrolysis and Gasification: State-of-the-art, Challenges, and Future Directions”, Prog. Vol.84, 100901, (2021). Energ. Combust., https://doi.org/10.1016/j.pecs.2020.100901

20. M. Kusenberg, M. Roosen, A.Zayoud, M. R. Djokic, H. D. Thi, S. De Meester, K. M. Van Geem, “Assessing the Feasibility of Chemical Recycling Via Steam Cracking of Untreated Plastic Waste Pyrolysis Oils: Feedstock Impurities, Product Yields and Coke Formation”, Waste manage., Vol.141, pp. 104-114, (2022). https://doi.org/10.1016/j.wasman.2022.01. 033

21. E. Rodriguez, G. Elordi, J. Valecillos, S. Izaddoust, J. Bilbao, J. M. Arandes, P. Castaño, “Coke Deposition and Product Distribution in the Co-cracking of Waste Polyolefin Derived Streams and Vacuum Gas Oil under FCC Unit Conditions”, Fuel Process. Technol., Vol.192, pp. 130-139. (2019). https://doi.org/10.1016/j.fuproc.2019.04.012

22. H., Jeon, M. -Y. Kim, J. W. Lee, J. -K. Kim, “Study on the Application of Environmental Assessment of Recycling of Domestic Waste Plastic Pyrolyis Oil for Naphtha Utilization”, J. Korean S. Waste Manage., Vol.39, No.5, pp. 418-430, (2022).

23. S. Yui, “Producing Quality Synthetic Crude Oil from Canadian Oil Sands Bitumen”, Jpn. Petrol. Inst., Vol.51, No.1, pp. 1-13, (2008). https://doi.org/10.9786/kswm.2022.39.5.418

24. H. Jeon, C. H. Jeon, S. J. Park, J. W. Lee, J. -K. Kim, “Comparsion Anlysis on Characteristics and Components of Various Waste Plastic Pyrolysis Oils by Vacuum Distillation Method”, Clean Technolog,. Vol.29, No.4, pp. 262-271, (2023). https://doi.org/10.7464/ksct.2023.29.4.262

25. R. Palos, A. Gutiérrez, M. L. Fernández, M. J. Azkoiti, J. Bilbao, J. M. Arandes, “Taking Advantage of the Excess of Thermal Naphthas to Enhance the Quality of FCC Unit Products”, J. Anal. Appl. Pyrol., Vol.152, 104943, (2020). https://doi.org/10.1016/j.jaap.2020.104943

26. N. D. Ristic, M. R. Djokic, E. Delbeke, A. Gonzalez-Quiroga, C. V. Stevens, K. M. Van Geem, G. B. Marin, “Compositional Characterization of Pyrolysis Fuel Oil from Naphtha and Vacuum Gas Oil”, Energ. Fuel., Vol.2, No.2, pp. 1276-1286, (2018). https://doi.org/10.1021/acs.energyfuels.7b03242

27. M. Kusenberg, A. Zayoud, M. Roosen, H. D. Thi, M. S. Abbas-Abadi, A. Eschenbacher, K. M. Van Geem, “A Comprehensive Experimental Investigation of Plastic Waste Pyrolysis Oil Quality and its Dependence on the Plastic Waste Composition”, Fuel Process. Technol., Vol.227, 107090, (2022). https://doi.org/10.1016/j.fuproc.2021.107090

28. K. H. Lee, “Effects of the Types of Zeolites on Catalytic Upgrading of Pyrolysis Wax Oil”, J. Anal. Appl. Pyrol., Vol.94, pp. 209-214 (2012). https://doi.org/10.1016/j.jaap.2011.12.015

29. S. Wang, D. Lee, H. Kim, B. W. Hwang, H. Nam, H. J. Ryu, “Separation of MSW Pyrolysis Fuel Using 20 kg Scale Vacuum Distillation System and its Potential Application as Petro-Chemical Substitute”, J. Environ. Chem. Eng., Vol.10, No.5, 108416, (2022).https://doi.org/10.1016/j.jece.2022.108416

30. L. Bittorf, K. Pathak, N. Kockmann, “Spinning Band Distillation ColumnRotating Element Design and Vacuum Operation”, Ind. Eng. Chem. Res., Vol.60, No.30, pp. 10854-10862, (2021). https://doi.org/10.1021/acs.iecr.1c01326

31. H. Jeon, J. Y. Park, J. W. Lee, C. H. Oh, J. -K. Kim, J. Yoon, “Fractional Composition Analysis for Upgrading of Fast Pyrolysis Bio-oil Produced from Sawdust”, Energies, Vol.15, No.6, 2054, (2022). https://doi.org/10.3390/en15062054

32. Y. L. Kim, J. Kang, “Research on Preparing Quality Standards for Waste Plastic Pyrolysis Oil”, J. Env. Energ. Eng., Vol.18, No.1 pp. 9-20, (2023). https://doi.org/10.55079/jtee.2023.18.2.9

33. A. Demirbas, “Distillation Properties of Various Diesel Oils”, Energ. Source., Part A, Vol.30, No.16, pp. 1484-1490, (2008). https://doi.org/10.1080/15567030701258527

34. M. C. Sánchez-Lemus, F. Schoeggl, S. D. Taylor, H. W. Yarranton, “Physical Properties of Heavy Oil Distillation Cuts”, Fuel, Vol.180, pp. 457-472, (2016). https://doi.org/10.1016/j.fuel.2016.04.059



리스트
TOP