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Babbitt, H. E. (2021). Sewerage and sewage treatment. Good Press.BabbittH. E. (2021). Sewerage and sewage treatment. Good Press.Search in Google Scholar
Demirbas, A., Edris, G., & Alalayah, W. M. (2017). Sludge production from municipal wastewater treatment in sewage treatment plant. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 39(10), 999-1006.DemirbasA.EdrisG. & AlalayahW. M. (2017). Sludge production from municipal wastewater treatment in sewage treatment plant. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 39(10), 999-1006.Search in Google Scholar
Gatidou, G., Arvaniti, O. S., & Stasinakis, A. S. (2019). Review on the occurrence and fate of microplastics in Sewage Treatment Plants. Journal of hazardous materials, 367, 504-512.GatidouG.ArvanitiO. S. & StasinakisA. S. (2019). Review on the occurrence and fate of microplastics in Sewage Treatment Plants. Journal of hazardous materials, 367, 504-512.Search in Google Scholar
Ayoub, M., Afify, H., & Abdelfattah, A. (2017). Chemically enhanced primary treatment of sewage using the recovered alum from water treatment sludge in a model of hydraulic clari-flocculator. Journal of Water Process Engineering, 19, 133-138.AyoubM.AfifyH. & AbdelfattahA. (2017). Chemically enhanced primary treatment of sewage using the recovered alum from water treatment sludge in a model of hydraulic clari-flocculator. Journal of Water Process Engineering, 19, 133-138.Search in Google Scholar
Taboada-Santos, A., Rivadulla, E., Paredes, L., Carballa, M., Romalde, J., & Lema, J. M. (2020). Comprehensive comparison of chemically enhanced primary treatment and high-rate activated sludge in novel wastewater treatment plant configurations. Water research, 169, 115258.Taboada-SantosA.RivadullaE.ParedesL.CarballaM.RomaldeJ. & LemaJ. M. (2020). Comprehensive comparison of chemically enhanced primary treatment and high-rate activated sludge in novel wastewater treatment plant configurations. Water research, 169, 115258.Search in Google Scholar
Mak, C. W., Tsang, Y. Y., Leung, M. M. L., Fang, J. K. H., & Chan, K. M. (2020). Microplastics from effluents of sewage treatment works and stormwater discharging into the Victoria Harbor, Hong Kong. Marine Pollution Bulletin, 157, 111181.MakC. W.TsangY. Y.LeungM. M. L.FangJ. K. H. & ChanK. M. (2020). Microplastics from effluents of sewage treatment works and stormwater discharging into the Victoria Harbor, Hong Kong. Marine Pollution Bulletin, 157, 111181.Search in Google Scholar
Lee, H., & Kim, Y. (2018). Treatment characteristics of microplastics at biological sewage treatment facilities in Korea. Marine Pollution Bulletin, 137, 1-8.LeeH. & KimY. (2018). Treatment characteristics of microplastics at biological sewage treatment facilities in Korea. Marine Pollution Bulletin, 137, 1-8.Search in Google Scholar
Ramos, M. D. N., Gomes, T. M., de Aquino, S. F., & Aguiar, A. (2023). Sewage treatment in cities of the state of Minas Gerais, Brazil, that use the UASB reactor as the only biological treatment: A case study. Journal of Water Process Engineering, 56, 104509.RamosM. D. N.GomesT. M.de AquinoS. F. & AguiarA. (2023). Sewage treatment in cities of the state of Minas Gerais, Brazil, that use the UASB reactor as the only biological treatment: A case study. Journal of Water Process Engineering, 56, 104509.Search in Google Scholar
Li, M., Liu, Y., Zhou, X., Wang, N., & Yuan, B. (2023). A Study on The Carriers Compound Multi-Stage MBBR Biological Treatment Process for Domestic Sewage. Sustainability, 15(10), 7922.LiM.LiuY.ZhouX.WangN. & YuanB. (2023). A Study on The Carriers Compound Multi-Stage MBBR Biological Treatment Process for Domestic Sewage. Sustainability, 15(10), 7922.Search in Google Scholar
Alvarino, T., Lema, J., Omil, F., & Suárez, S. (2018). Trends in organic micropollutants removal in secondary treatment of sewage. Reviews in Environmental Science and Bio/Technology, 17, 447-469.AlvarinoT.LemaJ.OmilF. & SuárezS. (2018). Trends in organic micropollutants removal in secondary treatment of sewage. Reviews in Environmental Science and Bio/Technology, 17, 447-469.Search in Google Scholar
Ahmed, W., Hamilton, K. A., Lobos, A., Hughes, B., Staley, C., Sadowsky, M. J., & Harwood, V. J. (2018). Quantitative microbial risk assessment of microbial source tracking markers in recreational water contaminated with fresh untreated and secondary treated sewage. Environment international, 117, 243-249.AhmedW.HamiltonK. A.LobosA.HughesB.StaleyC.SadowskyM. J. & HarwoodV. J. (2018). Quantitative microbial risk assessment of microbial source tracking markers in recreational water contaminated with fresh untreated and secondary treated sewage. Environment international, 117, 243-249.Search in Google Scholar
Alvim, C. B., Bes-Piá, M. A., & Mendoza-Roca, J. A. (2020). Separation and identification of microplastics from primary and secondary effluents and activated sludge from wastewater treatment plants. Chemical Engineering Journal, 402, 126293.AlvimC. B.Bes-PiáM. A. & Mendoza-RocaJ. A. (2020). Separation and identification of microplastics from primary and secondary effluents and activated sludge from wastewater treatment plants. Chemical Engineering Journal, 402, 126293.Search in Google Scholar
Wang, J., Tian, Z., Huo, Y., Yang, M., Zheng, X., & Zhang, Y. (2018). Monitoring of 943 organic micropollutants in wastewater from municipal wastewater treatment plants with secondary and advanced treatment processes. Journal of Environmental Sciences, 67, 309-317.WangJ.TianZ.HuoY.YangM.ZhengX. & ZhangY. (2018). Monitoring of 943 organic micropollutants in wastewater from municipal wastewater treatment plants with secondary and advanced treatment processes. Journal of Environmental Sciences, 67, 309-317.Search in Google Scholar
Tarpani, R. R. Z., & Azapagic, A. (2018). Life cycle costs of advanced treatment techniques for wastewater reuse and resource recovery from sewage sludge. Journal of Cleaner Production, 204, 832-847.TarpaniR. R. Z. & AzapagicA. (2018). Life cycle costs of advanced treatment techniques for wastewater reuse and resource recovery from sewage sludge. Journal of Cleaner Production, 204, 832-847.Search in Google Scholar
Khan, A. H., Khan, N. A., Ahmed, S., Dhingra, A., Singh, C. P., Khan, S. U., ... & Ali, I. (2020). Application of advanced oxidation processes followed by different treatment technologies for hospital wastewater treatment. Journal of Cleaner Production, 269, 122411.KhanA. H.KhanN. A.AhmedS.DhingraA.SinghC. P.KhanS. U. ... & AliI. (2020). Application of advanced oxidation processes followed by different treatment technologies for hospital wastewater treatment. Journal of Cleaner Production, 269, 122411.Search in Google Scholar
Rizzo, L., Malato, S., Antakyali, D., Beretsou, V. G., Đolić, M. B., Gernjak, W., ... & Fatta-Kassinos, D. (2019). Consolidated vs new advanced treatment methods for the removal of contaminants of emerging concern from urban wastewater. Science of the Total Environment, 655, 986-1008.RizzoL.MalatoS.AntakyaliD.BeretsouV. G.ĐolićM. B.GernjakW. ... & Fatta-KassinosD. (2019). Consolidated vs new advanced treatment methods for the removal of contaminants of emerging concern from urban wastewater. Science of the Total Environment, 655, 986-1008.Search in Google Scholar
Li, Y., Yang, M., Zhang, X., Jiang, J., Liu, J., Yau, C. F., ... & Li, X. (2017). Two-step chlorination: A new approach to disinfection of a primary sewage effluent. Water Research, 108, 339-347.LiY.YangM.ZhangX.JiangJ.LiuJ.YauC. F. ... & LiX. (2017). Two-step chlorination: A new approach to disinfection of a primary sewage effluent. Water Research, 108, 339-347.Search in Google Scholar
Mazuki, N. I. M., Teow, Y. H., Ho, K. C., & Mohammad, A. W. (2020). Techno-economic analysis of single disinfection units and integrated disinfection systems for sewage effluent reclamation. Journal of Water Process Engineering, 36, 101398.MazukiN. I. M.TeowY. H.HoK. C. & MohammadA. W. (2020). Techno-economic analysis of single disinfection units and integrated disinfection systems for sewage effluent reclamation. Journal of Water Process Engineering, 36, 101398.Search in Google Scholar
Boudjabi, S., Ababsa, N., & Chenchouni, H. (2023). Sewage and sewage treatment. In The Palgrave handbook of global sustainability (pp. 719-745). Cham: Springer International Publishing.BoudjabiS.AbabsaN. & ChenchouniH. (2023). Sewage and sewage treatment. In The Palgrave handbook of global sustainability (pp. 719-745). Cham: Springer International Publishing.Search in Google Scholar
Collivignarelli, M. C., Abbà, A., Carnevale Miino, M., & Torretta, V. (2019). What advanced treatments can be used to minimize the production of sewage sludge in WWTPs?. Applied Sciences, 9(13), 2650.CollivignarelliM. C.AbbàA.Carnevale MiinoM. & TorrettaV. (2019). What advanced treatments can be used to minimize the production of sewage sludge in WWTPs?. Applied Sciences, 9(13), 2650.Search in Google Scholar
Pham, Q. B., Gaya, M. S., Abba, S. I., Abdulkadir, R. A., Esmaili, P., Linh, N. T. T., ... & Dung, T. D. (2020). Modeling of Bunus regional sewage treatment plant using machine learning approaches. Desalination and Water Treatment, 203, 80-90.PhamQ. B.GayaM. S.AbbaS. I.AbdulkadirR. A.EsmailiP.LinhN. T. T. ... & DungT. D. (2020). Modeling of Bunus regional sewage treatment plant using machine learning approaches. Desalination and Water Treatment, 203, 80-90.Search in Google Scholar
Su, B., Lin, Y., Wang, J., Quan, X., Chang, Z., & Rui, C. (2022). Sewage treatment system for improving energy efficiency based on particle swarm optimization algorithm. Energy Reports, 8, 8701-8708.SuB.LinY.WangJ.QuanX.ChangZ. & RuiC. (2022). Sewage treatment system for improving energy efficiency based on particle swarm optimization algorithm. Energy Reports, 8, 8701-8708.Search in Google Scholar
Dai, H., Wang, Z., Zhao, J., Jia, X., Liu, L., Wang, J., ... & Wang, X. (2023). Modeling and optimizing of an actual municipal sewage plant: A comparison of diverse multi-objective optimization methods. Journal of Environmental Management, 328, 116924.DaiH.WangZ.ZhaoJ.JiaX.LiuL.WangJ. ... & WangX. (2023). Modeling and optimizing of an actual municipal sewage plant: A comparison of diverse multi-objective optimization methods. Journal of Environmental Management, 328, 116924.Search in Google Scholar
Lu, L., Zheng, H., Jie, J., Zhang, M., & Dai, R. (2021). Reinforcement learning-based particle swarm optimization for sewage treatment control. Complex & Intelligent Systems, 7(5), 2199-2210.LuL.ZhengH.JieJ.ZhangM. & DaiR. (2021). Reinforcement learning-based particle swarm optimization for sewage treatment control. Complex & Intelligent Systems, 7(5), 2199-2210.Search in Google Scholar
Dai, H., Zhao, J., Wang, Z., Chen, C., Liu, X., Guo, Z., ... & Wang, X. (2023). Optimal control of sewage treatment process using a dynamic multi-objective particle swarm optimization based on crowding distance. Journal of Environmental Chemical Engineering, 11(2), 109484.DaiH.ZhaoJ.WangZ.ChenC.LiuX.GuoZ. ... & WangX. (2023). Optimal control of sewage treatment process using a dynamic multi-objective particle swarm optimization based on crowding distance. Journal of Environmental Chemical Engineering, 11(2), 109484.Search in Google Scholar
Shen, B., Li, D., Qian, F., & Jiang, J. (2023). Optimal design and simulation for the intelligent control of sewage treatment based on multi-objective particle swarm optimization. Applied Sciences, 13(2), 735.ShenB.LiD.QianF. & JiangJ. (2023). Optimal design and simulation for the intelligent control of sewage treatment based on multi-objective particle swarm optimization. Applied Sciences, 13(2), 735.Search in Google Scholar
Tao Chen,Parker Wayne & Bérubé Pierre. (2021). Characterization and modelling of soluble microbial products in activated sludge systems treating municipal wastewater with special emphasis on temperature effect. Science of the Total Environment146471-146471.ChenTaoWayneParker & PierreBérubé. (2021). Characterization and modelling of soluble microbial products in activated sludge systems treating municipal wastewater with special emphasis on temperature effect. Science of the Total Environment146471-146471.Search in Google Scholar
Xia Zhang & Hui Chen. (2024). An improved NSGA-III integrating a good point set for multi-objective optimal design of power inductors. Journal of the Brazilian Society of Mechanical Sciences and Engineering(10),586-586.ZhangXia & ChenHui. (2024). An improved NSGA-III integrating a good point set for multi-objective optimal design of power inductors. Journal of the Brazilian Society of Mechanical Sciences and Engineering(10),586-586.Search in Google Scholar
An Baichuan,Chen Jianwen,Sun Hao,Yin Minghuan,Song Zicheng,Zhuang Chao. & Liu Minghe. (2023). Optimization of fracture reduction robot controller based on improved sparrow algorithm. Biomimetic Intelligence and Robotics(4).BaichuanAnJianwenChenHaoSunMinghuanYinZichengSongChaoZhuang. & MingheLiu. (2023). Optimization of fracture reduction robot controller based on improved sparrow algorithm. Biomimetic Intelligence and Robotics(4).Search in Google Scholar