Influences of temperature, waste size and residence time on the generation of polycyclic aromatic hydrocarbons during the fast pyrolysis of medical waste

سال انتشار: 1399
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 24

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شناسه ملی سند علمی:

JR_CJES-18-1_005

تاریخ نمایه سازی: 31 خرداد 1403

چکیده مقاله:

Mismanagement of Medical wastes can lead to human health and environmental risks. Currently, new pyrolysis technologies are being used to treat medical waste that can reduce the amount of landfilled waste, make it safe, and eventually convert it to a hydrocarbon fuel. Polycyclic aromatic hydrocarbons (PAHs) are pyrolysis by-products and major environmental pollutants. In this study, hazardous medical wastes were pyrolyzed using a semi-industrial pilot scale fast pyrolysis reactor with the purpose of improving the quality of the char for its recovery or use as fuel. The generation of total ۴-۶ rings PAHs was studied in char product from hazardous medical waste fast pyrolysis under different pyrolysis conditions variables including a vast temperature range (۳۰۰-۷۰۰°C), different residence times (۱۰۰-۱۹۰ s) and various waste particle sizes (۱-۳ cm). GC analyzer coupled with a FID detector was used to detect and measure the PAH compounds in char residues. The results demonstrated that the PAHs are present in significant concentrations in char product (۵۴-۱۱۸۴ mg kg-۱). Generation of total ۴-۶ rings PAHs varied by temperature, residence time and waste size. Significant interaction was observed between residence time and temperature that influenced the PAHs generation. By optimizing the pyrolysis operating conditions it is possible to minimize the amount of PAHs generation in the char.

کلیدواژه ها:

Fast pyrolysis ، Polycyclic aromatic hydrocarbons (PAHs) ، Char ، Medical waste

نویسندگان

H.R. Zolfagharpour

Department of Civil Engineering Science and Reasearch Branch, Islamic Azad University, Tehran, Iran

P. Nowrouz

Department of Environmental Health Engineering, School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran

A. Mohseni‐Bandpei

Department of Environmental Health Engineering, School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran

M. Majlesi

Department of Environmental Health Engineering, School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran

M. Rafiee

Department of Environmental Health Engineering, School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran

F. Khalili

Department of Environmental Health Engineering, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran

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  • Alavi, N, Eslami, A & Saghi, MH ۲۰۱۸, Measurement and ...
  • Ali, M, Wang, W, Chaudhry, N & Geng, Y ۲۰۱۷, ...
  • Buss, W, Graham, MC, Mackinnon, G & Mašek, O ۲۰۱۶, ...
  • Cass, GR ۱۹۹۸, Organic molecular tracers for particulate air pollution ...
  • Chang, F, Wang, C, Wang, Q, Jia, J & Wang, ...
  • Chartier, Y ۲۰۱۴, Safe management of wastes from health-care activities. ...
  • Cunliffe, AM & Williams, PT ۱۹۹۸, Composition of oils derived ...
  • Delmonico, DV, Santos, HH, Pinheiro, MA, De Castro, R & ...
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  • Devi, P & Saroha, AK ۲۰۱۵, Effect of pyrolysis temperature ...
  • Guedes, RE, Luna, AS & Torres, AR ۲۰۱۸, Operating parameters ...
  • Hilber, I, Blum, F, Leifeld, J, Schmidt, HP & Bucheli, ...
  • Horii, Y, Ok, Ohura, T & Kannan, K ۲۰۰۸, Occurrence ...
  • Initiative, IB ۲۰۱۲, Standardized product definition and product testing guidelines ...
  • Keiluweit, M, Kleber, M, Sparrow, MA, Simoneit, BR & Prahl, ...
  • Kim, KH, Jahan, SA, Kabir, E & Brown, RJ ۲۰۱۳, ...
  • Kwon, EE, Oh, JI & Kim, KH ۲۰۱۵, Polycyclic aromatic ...
  • Lundstedt, S, White, PA, Lemieux, CL, Lynes, KD, Lambert, IB, ...
  • Martínez, JD, Veses, A, Mastral, AM, Murillo, R, Navarro, MV, ...
  • Mcgrath, TE, Chan, WG & Hajaligol, MR ۲۰۰۳, Low temperature ...
  • Mmereki, D, Baldwin, ALiB & Liu, M ۲۰۱۷, Healthcare waste ...
  • Nakajima, D, Nagame, S, Kuramochi, H, Sugita, K, Kageyama, S, ...
  • Pacyna, EG, Pacyna, JM, Steenhuisen, F & Wilson, S ۲۰۰۶, ...
  • Ravindra, K, Sokhi, R & Van Grieken, R ۲۰۰۸, Atmospheric ...
  • Sánchez, N, Callejas, A, Millera, A, Bilbao, R & Alzueta, ...
  • Sánchez, NE, Callejas, A, Millera, A, Bilbao, R & Alzueta, ...
  • Schimmelpfennig, S & Glaser, B ۲۰۱۲, One step forward toward ...
  • Shi, W, Guo, Y, Ning, G, Li, C, Li, Y, ...
  • Stanković, A, Nikić, D & Nikolić, M ۲۰۰۸, Report: Treatment ...
  • Stark, AK & Ghoniem, AF ۲۰۱۷, Quantification of the influence ...
  • Tripathi, M, Sahu, JN & Ganesan, P ۲۰۱۶, Effect of ...
  • Verma, R ۲۰۱۴, Medical Waste Disposal: Incineration and Non Incineration ...
  • Viteri, F, Salinas, J, Millera, Á, Bilbao, R & Alzueta, ...
  • Wang, C, Wang, Y & Herath, HM ۲۰۱۷, Polycyclic aromatic ...
  • Windfeld, ES & Brooks, M ۲۰۱۵, Medical waste management–A review. ...
  • Zhou, H, Wu, C, Onwudili, JA, Meng, A, Zhang, Y ...
  • Zhurinsh, A, Zandersons, J & Dobele, G ۲۰۰۵, Slow pyrolysis ...
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