A Study of the Thermal Decomposition of Wastewater Sludge Using Gas Chromatography

Allerton Press - Tập 56 - Trang 220-224 - 2022
P. A. Maryandyshev1, A. I. Kangash1, S. A. Pokryshkin1, V. K. Lyubov1, G. Trouve2, A. Brillard2
1Northern Arctic Federal University, Arkhangelsk, Russia
2Laboratoire Gestion des Risques et Environnement, Institut de Recherche Jean-Baptiste Donnet, Universite de Haute-Alsace, Mulhouse, France

Tóm tắt

The process of the thermal decomposition of the samples of mixed industrial and municipal wastewater sludge was investigated using gas chromatography. The composition of pyrolysis products obtained at temperatures of 200, 250, 300, 400, 500, and 600°C was determined. The groups of organic compounds detected in the pyrolysis products were analyzed. The temperatures of the onset of the release of volatile organic components and the highest heat release were determined.

Tài liệu tham khảo

Hill, J., Nelson, E., Tilman, D., Polasky, S., and Tiffany, D., Proc. Natl. Acad. Sci. USA, 2006, vol. 103, p. 11206. Jamali, M.K., Kazi, T.G., Arain, M.B., Afridi, H.I., Jalbani, N., and Memon, A.R., J. Agron. Crop. Sci., 2007, vol. 193, p. 218. Raheem, A., Sikarwar, V., He, J., Dastyar, W., Dionysiou, D.D., Wang, W., and Zhao, M., Chem. Eng. J., 2018, vol. 337, p. 616. Manara, P. and Zabaniotou, A., Renew. Sust. Energ. Rev., 2012, vol. 16, p. 2566. Schnell, M., Horst, T., and Quicker, P., J. Environ. Manage., 2020, vol. 263, p. 110367. Sobgayda, N.A. and Solodkova, A.B., Int. J. Environ. Probl., 2015, vol. 1, p. 64. Fytili, D. and Zabaniotou, A., Renew. Sust. Energ. Rev., 2008, vol. 12, p. 116. Zhang, Q.H.J., Lee, D.J., Chang, Y., and Lee, Y.J, Bioresour. Technol., 2017, vol. 243, p. 1159. Joo, S.H., M, F.D., Antmann, E., and Chorath, P., J. Environ. Manage., 2015, vol. 158, p. 133. Kandasamy, J. and Gokalp, I., Energ. Convers. Manage., 2015, vol. 89, p. 83. Poerschmann, J., Weiner, B., Wedwitschka, H., Baskyr, I., Koehler, R., and Kopinke, F.D., Bioresour. Technol., 2014, vol. 164, p. 162. Funke, A. and Ziegler, F., Biofuel Bioprod. Biorefin., 2010, vol. 4, p. 160. Kruse, A. and Dahmen, N., J. Supercrit. Fluids, 2015, vol. 96, p. 36. Zhu, X., Liu, Y., Qian, F., Zhang, S., and Chen, J., Energ. Fuel, 2015, vol. 29, p. 5222. Shen, Y., Yu, S., Ge, S., Chen, X., Ge, X., and Chen, M., Energy, 2017, vol. 118, p. 312. Titirici, M.-M., White, R.J., Falco, C., and Sevilla, M., Energ. Environ. Sci., 2012, vol. 5, p. 6796. Libra, J.A., Ro, K.S., Kammann, C., Funke, A., Berge, N.D., Neubauer, Y., Titirici, M.-M., Fuhner, C., Bens, O., Kern, J., and Emmerich, K.-H., Biofuels, 2011, vol. 2, p. 71. Glinska, K., Ismail, M., Goma-Camps, J., Valencia, P., Stuber, F., Giralt, J., Fabregat, A., Torrens, E., Olkiewicz, M., and Bengoa, C., Ind. Crops. Prod., 2019, vol. 139, p. 111556. Glinska, K., Lerigoleur, C., Giralt, J., Torrens, E., and Bengoa, C., Catalysts, 2019, vol. 10, p. 1004. Fan, H., Zhou, H., and Wang, J., Energ. Convers. Manage., 2014, vol. 88, p. 1151. Fonts, I., Gea, G., Azuara, M., Abrego, J., and Arauzo, J., Renew. Sust. Energ. Rev., 2012, vol. 16, p. 2781. Gao, N., Kamran, K., Quan, C., and Williams, P.T., Prog. Energy Combust. Sci., vol. 79, p. 100843. Magdziarz, A. and Werle, S., Waste Manag., 2014, vol. 34, p. 174. Khiari, B., Marias, F., Zagrouba, F., and Vaxelaire, J., Desalination, 2004, vol. 167, p. 39. Conesa, J.A., Marcilla, A., Moral, R., Moreno-Caselles, J., and Perez-Espinosa, A., Thermochim. Acta, 1998, vol. 313, p. 63. Fonts, I., Juan, A., Gea, G., Murillo, M.B., and Sanchez, J.L., Ind. Eng. Chem. Res., 2008, vol. 47, p. 5376. Casajus, C., Abrego, J., Marias, F., Vaxelaire, J., Sanchez, J.L., and Gonzalo, A., Chem. Eng. J., 2009, vol. 145, p. 412. Chen, L., Wang, X., Yang, H., Lu, Q., Li, D., Yang, Q., and Chen, H., J. Anal. Appl. Pyrolys., 2015, vol. 113, p. 499. Liang, F., Wang, R., Hongzhong, X., Yang, X., Zhang, T., Hu, W., Mi, B., and Liu, Z., Bioresour. Technol., 2018, vol. 256, p. 53. Syarif, H., Abu, BakarM.S., Yang, Y., and Neeranuch, P., J. Anal. Appl. Pyrolys., 2018, vol. 134, p. 510. Chen, W-H., Wang, C-W., Kumar, G., Rousset, P., and Hsieh, T-H., Bioresour. Technol., 2018, vol. 259, p. 469. Kan, T., Strezov, V., and Evans, T., Energ. Fuels, 2016, vol. 30, p. 1564. Wu, J., Liao, Y., Lin, Y., Tian, Y., and Ma, X., Energy, 2019, vol. 185, p. 795. Ralph, J. and Hatfield, D., J. Agric. Food Chem., 1991, vol. 39, p. 1426. Maryandyshev, P., Chernov, A., Lyubov, V., Trouve, G., Brillard, A., and Brilhac, J.F., J. Therm. Anal. Calorim., 2015, vol. 122, p. 963.