[1] V. Perumal, M. Ilangkumaran, Fuel, 232, 791-802, (2018).
[2] K.Nanthagopal, R.S. Kishna, Atabani, A.E., Ala’a, H., Kumar, G. Ashok, B., Energy Conversion and Management, 203, (2020).
[3] M.E.M. Soudagar, Nik-Ghazali, N.N., Kalam, M.A., Badruddin, I.A., Banapurmath, N.R. and Akram, N., Energy Conversion and Management, 178, 146-177 (2018).
[4] S. Agarwal, S. Kumari, A. Mudgal, and S. Khan, Renew. Energy, 147, 1836–1844, (2020).
[5] E. Khalife, Tabatabaei, M., Demirbas, A. and Aghbashlo, M., Progress in energy and Combustion Science, 59, 32-78 (2017).
[6] D. Singh, Sharma, D., Soni, S.L., Sharma, S., Sharma, P.K. and Jhalani, A., Fuel, 262, (2020).
[7] H. Hosseinzadeh-Bandbafha, M. Tabatabaei, M. Aghbashlo, M. Khanali, and A. Demirbas, Energy Convers. Manag., 174, 579–614, (2018).
[8] J. Diefenderfer, Arora, V. Singer, L.E., Doe/Eia-0484, 202-586, (2016).
[9] A. E. Atabani, A. S. Silitonga, I. A. Badruddin, T. M. I. Mahlia, H. H. Masjuki, and S. Mekhilef, Renew. Sustain. Energy Rev., 16, 2070–2093, (2012).
[10] K. J. Godri Pollitt, D. Chhan, K. Rais, K. Pan, and J. S. Wallace, Sci. Total Environ., 688, 1036–1055, (2019).
[11] S. Simsek, Fuel, 265, (2020).
[12] M. M. Hasan and M. M. Rahman, Renew. Sustain. Energy Rev., 74, 938–948, (2017).
[13] M.S.M. Zaharin, Abdullah, N.R., Najafi, G., Sharudin, H. Yusaf, T., Renewable and Sustainable energy reviews, 79, 475-493 (2017).
[14] N. Nirmala, Dawn, S.S. and Harindra, C., Renewable Energy, 147, 284-292 (2020).
[15] F.S. Mirhashemi Sadrnia, H., Journal of the Energy Institute 93, 129-151, (2020):.
[16] M. A. Rajaeifar, R. Abdi, and M. Tabatabaei, Renew. Sustain. Energy Rev., 74, 278–298, (2017).
[17] V. Saxena, N. Kumar, and V. K. Saxena, Renew. Sustain. Energy Rev., 70, 563–588, (2017).
[18] D. Sundaram, V. Yang, and R. A. Yetter, Prog. Energy Combust. Sci., 61, 293–365, (2017).
[19] P.K. Rai, Kumar, V., Lee, S., Raza, N., Kim, K.H., Ok, Y.S. and Tsang, D.C., Environment international, 119, 1-19 (2018).
[20] L. Farzin, M. Shamsipur, L. Samandari, and S. Sheibani, Talanta, 206, (2019).
[21] F. Gao, C. Gao, S. He, Q. Wang, and A. Wu, Biosens. Bioelectron., 81, 15–22, (2016).
[22] S. Kumar, P. Dinesha, and I. Bran, Energy, 140, 98–105, (2017).
[23] M. Ghanbari, L. Mozafari-Vanani, M. Dehghani-Soufi, A. Jahanbakhshi, Energy Convers. Manag. 100091, (2021).
[24] G. Vairamuthu, Sundarapandian, S., Kailasanathan, C. Thangagiri, B., Journal of the Energy Institute 89, 668-682, (2016).
[25] M. Mirzajanzadeh Tabatabaei, M., Ardjmand, M., Rashidi, A., Ghobadian, B., Barkhi, M. and Pazouki, M., Fuel, 139, 374-382, (2015).
[26] K. Nanthagopal Ashok, B., Tamilarasu, A., Johny, A. Mohan, A., Energy Conversion and Management, 146, 8-19 (2017).
[27] H. Hosseinzadeh-Bandbafha, Tabatabaei, M., Aghbashlo, M., Khanali, M., Khalife, E., Shojaei, T.R. and Mohammadi, P., Fuel 267, (2020.
[28] D. Ganesh Gowrishankar, G., IEEE, 3453-3459(2011).
[29] S. Javed, Y. V. V. Satyanarayana Murthy, M. R. S. Satyanarayana, R. Rajeswara Reddy, and K. Rajagopal, J. Clean. Prod., 137, 490–506, (2016).
[30] B. Prabakaran Udhoji, A., Alexandria Engineering Journal 55, 3355-3362 (2016).
[31] T. Shaafi R. Velraj, Renew. Energy, 80, 655–663 (2015).
[32] A.I., El-Seesy Attia, A.M. El-Batsh, H.M., Fuel, 224, 147-166 (2018).
[33] Q. Wu, X. Xie, Y. Wang, and T. Roskilly, Appl. Energy, 221, 597–604, (2018).
[34] G. Knothe and L. F. Razon, Prog. Energy Combust. Sci., 58, 36–59, (2017).
[35] E. Jiaqiang, Zhang, Z., Chen, J., Pham, M., Zhao, X., Peng, Q., Zhang, B. Yin, Z., Energy Convers. Manag., 169, 194–205, (2018).
[36] H. Hosseinzadeh-Bandbafha, Khalife, E., Tabatabaei, M., Aghbashlo, M., Khanali, M., Mohammadi, P., Shojaei, T.R. Soltanian, S., Energy Convers. Manag., 196, 1153–1166, (2019).
[37] M. Nadeem, Rangkuti, C., Anuar, K., Haq, M.R.U., Tan, I.B. and Shah, S.S, Fuel, 85, 2111-2119, (2006).
[38] A.K. Hasannuddin, Yahya, W.J., Sarah, S., Ithnin, A.M., Syahrullail, S., Sidik, N.A.C., Kassim, K.A., Ahmad, Y., Hirofumi, N., Ahmad, M.A. Sugeng, D.A, Energy Convers. Management, 291–314, (2018).
[39] D. Singh, Sharma, D., Soni, S.L., Sharma, S. and Kumari, D. Fuel 253, 60-71, (2019).
[40] V. W. Khond and V. M. Kriplani, Renew. Sustain. Energy Rev., 59, 1338–1348, (2016).
[41] K. Varatharajan and M. Cheralathan, Fuel Process. Technol., 106, 526–532 (2013).
[42] I. M. R. Fattah, H. H. Masjuki, M. A. Kalam, M. A. Wakil, H. K. Rashedul, M. J. Abedin, Ind. Crops Prod., 57, 132–140 (2014).
[43] M. Arya, A. K. Rout, S. Samanta, Advancement in Materials, Manufacturing and Energy Engineering, 1, 389-401 (2022).
[44] M.G. Bidir, Millerjothi, N.K., Adaramola, M.S. Hagos, F.Y., Energy Reports, 7, 3614-3627 (2021).
[45] J.C. Ge, H. Y. Kim, S. K. Yoon, N. J. Choi, Fuel, 218, 266–274, (2018).
[46] S. Dharma, Hassan, M.H., Ong, H.C., Sebayang, A.H., Silitonga, A.S., Kusumo, F. Milano, J.,. Journal of cleaner production, 164, 618-633 (2017).
[47] S.M. Palash, Kalam, M.A., Masjuki, H.H., Arbab, M.I., Masum, B.M. Sanjid, A., Energy Conversion and Management 77, 577-585 (2014).
[48] H.K. Imdadul, Masjuki, H.H., Kalam, M.A., Zulkifli, N.W.M., Alabdulkarem, A., Kamruzzaman, M. and Rashed, M.M., Fuel, 179 281-288, (2016).
[49] S. Senthur Prabu, M. A. Asokan, R. Roy, S. Francis, and M. K. Sreelekh, Energy, 122, 638–648, (2016).
[50] G. Labeckas and S. Slavinskas, Energy Conversion and Management, 11 (2021).
[51] H.K. Imdadul, Rashed, M.M., Shahin, M.M., Masjuki, H.H., Kalam, M.A., Kamruzzaman, M. and Rashedul, H.K, Energy Convers. Manag., 138, 327–337, (2017).
[52] A. Gharehghani, M. Mirsalim, and R. Hosseini, Renew. Energy, 101, 930–936, (2017).
[53] A. Devaraj, M. Nagappan, D. Yogaraj, O. Prakash, Y.A. Rao, & A. Sharma Materials Today: Proceedings, 62, 2266-2270, (2022).
[54] S. Karmakar, Acharya, S. Dooley, K.M., ASME International Mechanical Engineering Congress and Exposition, 44298, 691-698, (2010).
[55] B. Gantt, Hoque, et al., Aerosol Science and Technology, 49, 371-380, (2015).
[56] G.R. Kannan, R. Karvembu, and R. Anand, Appl. Energy, 88, 3694–3703, (2011).
[57] E. Aneggi, De Leitenburg, C., Dolcetti, G. Trovarelli, A., Catalysis Today 114, 40-47. (2006).
[58] A.M. Gatti, Biomaterials, 25, 385–392, (2004).
[59] R. Lei, , Wu, C., Yang, B., Ma, H., Shi, C., Wang, Q., Wang, Q., Yuan, Y. Liao, M., Toxicology and applied pharmacology, 232, 292-301 (2008).
[60] I. Passagne, M. Morille, M. Rousset, I. Pujalté, B. L’Azou, Toxicology, 299, 112–124, (2012).
[61] M. Ahanchi, Tabatabaei, M., Aghbashlo, M., Rezaei, K., Talebi, A.F., Ghaffari, A., Khoshnevisan, B. Khounani, Z., Journal of Cleaner Production, 185, 852-859, (2018).
[62] M.N. Owaid, Environ. Nanotechnology, Monit. Manag., 12, (2019).
[63] S. Ganesan, S. lakshmisankar, S. Deepak, S. et al. Nanotechnol. Environ. Eng. 1-15, (2023).