[1] Y.H. Zhang, H. Wang, J.M. Xu, X. Su, M.C. Lu, Z.Y. Wang, Y.J. Zhang, Occurrence and characteristics of microplastics in a wastewater treatment plant, Bull. Environ. Contam. Toxicol. 107 (4) (2021) 677-683. [2] A. Azari, M. Abtahi, R. Saeedi, A.R. Yari, M.H. Vaziri, G. Mohammadi, Integrated ultrasound-assisted magnetic solid-phase extraction for efficient determination and pre-concentration of polycyclic aromatic hydrocarbons from high-consumption soft drinks and non-alcoholic beers in Iran, J. Sep. Sci. 45 (16) (2022) 3139-3149. [3] F. Gharibzadeh, R.R. Kalantary, A. Esrafili, M. Ravanipour, A. Azari, Desorption kinetics and isotherms of phenanthrene from contaminated soil, J. Environ. Health Sci. Eng. 17 (1) (2019) 171-181. [4] H. Kamani, M. Baniasadi, H. Abdipour, L. Mohammadi, S. Rayegannakhost, H. Moein, A. Azari, Health risk assessment of BTEX compounds (benzene, toluene, ethylbenzene and xylene) in different indoor air using Monte Carlo simulation in Zahedan city, Iran, Heliyon 9 (9) (2023) e20294. [5] A. Azari, H. Kamani, M. Sarkhosh, N. Vatankhah, M. Yousefi, H. Mahmoudi-Moghaddam, S.A. Razavinasab, M.R. Masoudi, R. Sadeghi, N. Sharifi, K. Yaghmaeain, Nectarine core-derived magnetite biochar for ultrasound-assisted preconcentration of polycyclic aromatic hydrocarbons (PAHs) in tomato paste: a cost-effective and sustainable approach, Food Chem. X 24 (2024) 101810. [6] Q.N. Xie, S.Y. Li, Y.T. Lian, M.D. Yang, F.Z. Wang, C.Z. Ye, H.Y. Liu, Y.Y. Lu, C.R. Fang, Mechanism of enhanced degradation of antibiotic wastewater by three-dimensional electrocatalytic oxidation system: Coconut shell biochar as particle electrode, J. Water Process. Eng. 64 (2024) 105749. [7] A. Rafique, M. Irfan, M. Mumtaz, A. Qadir, Spatial distribution of microplastics in soil with context to human activities: a case study from the urban center, Environ. Monit. Assess. 192 (11) (2020) 671. [8] H. Li, Y.T. Lian, S.Y. Li, M.D. Yang, Q.N. Xie, L.B. Qiu, H.Y. Liu, Y.Y. Long, L.F. Hu, C.R. Fang, The stress response of tetracycline resistance genes and bacterial communities under the existence of microplastics in typical leachate biological treatment system, J. Environ. Manage. 366 (2024) 121865. [9] Z.H. Hu, Y.J. Sun, J. Zhou, W.Q. Sun, K.J. Shah, Microplastics in wastewater plants: a review of sources, characteristics, distribution and removal technologies, J. Contam. Hydrol. 267 (2024) 104448. [10] B.J. Liu, Y. Lu, H.Q. Deng, H.F. Huang, N. Wei, Y.L. Jiang, Y.X. Jiang, L. Liu, K.F. Sun, H. Zheng, Occurrence of microplastics in the seawater and atmosphere of the South China Sea: pollution patterns and interrelationship, Sci. Total Environ. 889 (2023) 164173. [11] B.J. Liu, K.M. Ye, Y. Lu, H.Q. Deng, J. Yang, K.M. Li, L. Liu, H. Zheng, K.F. Sun, Y.X. Jiang, Occurrence and risk assessment of microplastics on the Shenzhen coast, South China, Ecotoxicol. Environ. Saf. 286 (2024) 117227. [12] L.M. Wang, M. Chen, Y.F. Wu, X. Chen, H. Jin, J. Huang, Spatial distribution and vertical characteristics of microplastics in the urban river: The case of Qinhuai River in Nanjing, China, Mar. Pollut. Bull. 199 (2024) 115973. [13] R.L. Li, L.J. Zhu, K. Yang, H.Z. Li, Y.G. Zhu, L. Cui, Impact of urbanization on antibiotic resistome in different microplastics: evidence from a large-scale whole river analysis, Environ. Sci. Technol. 55 (13) (2021) 8760-8770. [14] Y.L. Luo, H.M. Xie, H.Y. Xu, C.S. Zhou, P. Wang, Z.M. Liu, Y. Yang, J. Huang, C. Wang, X.J. Zhao, Wastewater treatment plant serves as a potentially controllable source of microplastic: Association of microplastic removal and operational parameters and water quality data, J. Hazard. Mater. 441 (2023) 129974. [15] R.Q. Bao, Z.Z. Wang, H.Y. Qi, T. Mehmood, M.G. Cai, Y.M. Zhang, R.L. Yang, L.C. Peng, F.J. Liu, Occurrence and distribution of microplastics in wastewater treatment plant in a tropical region of China, J. Clean. Prod. 349 (2022) 131454. [16] H. Abdipour, A. Azari, H. Kamani, K. Pirasteh, F.K. Mostafapour, S. Rayegnnakhost, Human health risk assessment for fluoride and nitrate contamination in drinking water of municipal and rural areas of Zahedan, Iran, Appl. Water Sci. 15 (3) (2025) 47. [17] M. Moradi, O.B. Naeej, A. Azari, A.M. Bandpei, A.J. Jafari, A. Esrafili, R.R. Kalantary, A comparative study of nitrate removal from aqueous solutions using zeolite, nZVI-zeolite, nZVI and iron powder adsorbents, Desalin. Water Treat. 74 (2017) 278-288. [18] H. Kamani, M. Hosseinzehi, M. Ghayebzadeh, A. Azari, S.D. Ashrafi, H. Abdipour, Degradation of reactive red 198 dye from aqueous solutions by combined technology advanced sonofenton with zero valent iron: Characteristics/effect of parameters/kinetic studies, Heliyon 10 (1) (2023) e23667. [19] M. Hasanzadeh, Z. Ghaedrahmat, N. Kayedi, N.J. Haghighi Fard, A. Azari, M. Afsharizadeh, Persulfate-assisted heterogeneous photocatalytic degradation of furfural from aqueous solutions using TiO2-ZnO/biochar composite, Heliyon 9 (11) (2023) e21421. [20] S.Y. Li, Q.N. Xie, M.D. Yang, N.R. Wu, Y.T. Lian, C.R. Fang, Degradation of leachate and high concentration emerging pollutant tetracycline through electro oxidation, J. Environ. Sci., https://doi.org/10.1016/j.jes.2025.03.059. [21] Z.Y. Yang, S.X. Li, S.R. Ma, P. Liu, D. Peng, Z.Z. Ouyang, X.T. Guo, Characteristics and removal efficiency of microplastics in sewage treatment plant of Xi’an City, northwest China, Sci. Total Environ. 771 (2021) 145377. [22] B.R. Zhang, Q.X. Wu, S.L. Gao, Y.J. Ruan, G.Z. Qi, K. Guo, J. Zeng, Distribution and removal mechanism of microplastics in urban wastewater plants systems via different processes, Environ. Pollut. 320 (2023) 121076. [23] X.Y. Cai, H.L. Chen, J. Cheng, B. Huang, B.S. Jin, J.B. Lu, Coupling of microplastic contamination in organisms and the environment: Evidence from the tidal flat ecosystem of Hangzhou Bay, China, J. Hazard. Mater. 457 (2023) 131838. [24] Z.X. Long, Z. Pan, W.L. Wang, J.Y. Ren, X.G. Yu, L.Y. Lin, H. Lin, H.Z. Chen, X.L. Jin, Microplastic abundance, characteristics, and removal in wastewater treatment plants in a coastal city of China, Water Res. 155 (2019) 255-265. [25] L. Pawlowski, Standard methods for the examination of water and wastewater, 18th edition, 1967. [26] H. Li, H.Y. Liu, L.B. Qiu, Q.N. Xie, B.H. Chen, H. Wang, Y.Y. Long, L.F. Hu, C.R. Fang, Mechanism of antibiotic resistance development in an activated sludge system under tetracycline pressure, Environ. Sci. Pollut. Res. Int. 30 (39) (2023) 90844-90857. [27] N. Zhang, D.S. Shen, C.R. Fang, L.F. Hu, Y.Y. Long, Effect of microplastics on sulfate reduction in landfill leachate-saturated zone, J. Hazard. Mater. 491 (2025) 137928. [28] S.L. Guo, Z.X. Wu, X.H. Li, D.S. Shen, J.L. Shentu, L. Lu, S.Q. Qi, M. Zhu, Y.Y. Long, Microplastic, a possible trigger of landfill sulfate reduction process, Sci. Total Environ. 906 (2024) 167662. [29] Y.X. Chu, X. Zhang, X.D. Tang, L.H. Jiang, R. He, Uncovering anaerobic oxidation of methane and active microorganisms in landfills by using stable isotope probing, Environ. Res. 271 (2025) 121139. [30] S. Acarer, A review of microplastic removal from water and wastewater by membrane technologies, Water Sci. Technol. 88 (1) (2023) 199-219. [31] M. Lares, M.C. Ncibi, M. Sillanpaa, M. Sillanpaa, Occurrence, identification and removal of microplastic particles and fibers in conventional activated sludge process and advanced MBR technology, Water Res. 133 (2018) 236-246. [32] H.J. Park, M.J. Oh, P.G. Kim, G. Kim, D.H. Jeong, B.K. Ju, W.S. Lee, H.M. Chung, H.J. Kang, J.H. Kwon, National reconnaissance survey of microplastics in municipal wastewater treatment plants in Korea, Environ. Sci. Technol. 54 (3) (2020) 1503-1512. [33] L.B. Yang, K.X. Li, S. Cui, Y. Kang, L.H. An, K. Lei, Removal of microplastics in municipal sewage from China’s largest water reclamation plant, Water Res. 155 (2019) 175-181. [34] L.S. Zhang, J.Y. Liu, Y.S. Xie, S. Zhong, P. Gao, Occurrence and removal of microplastics from wastewater treatment plants in a typical tourist city in China, J. Clean. Prod. 291 (2021) 125968. [35] R. Dris, J. Gasperi, V. Rocher, M. Saad, N. Renault, B. Tassin, Microplastic contamination in an urban area: a case study in greater paris, Environ. Chem. 12 (5) (2015) 592. [36] S.M. Mintenig, I. Int-Veen, M.G.J. Loder, S. Primpke, G. Gerdts, Identification of microplastic in effluents of waste water treatment plants using focal plane array-based micro-Fourier-transform infrared imaging, Water Res. 108 (2017) 365-372. [37] X.M. Lv, Q. Dong, Z.Q. Zuo, Y.C. Liu, X. Huang, W.M. Wu, Microplastics in a municipal wastewater treatment plant: Fate, dynamic distribution, removal efficiencies, and control strategies, J. Clean. Prod. 225 (2019) 579-586. [38] S.D. Nkosi, S.P. Malinga, N. Mabuba, Microplastics and heavy metals removal from fresh water and wastewater systems using a membrane, Separations 9 (7) (2022) 166. [39] Y.X. Cao, M.J. Zhao, X.Y. Ma, Y.W. Song, S.H. Zuo, H.H. Li, W.Z. Deng, A critical review on the interactions of microplastics with heavy metals: Mechanism and their combined effect on organisms and humans, Sci. Total Environ. 788 (2021) 147620. [40] D.J. Sarkar, S. Das Sarkar, B.K. Das, B.K. Sahoo, A. Das, S.K. Nag, R.K. Manna, B.K. Behera, S. Samanta, Occurrence, fate and removal of microplastics as heavy metal vector in natural wastewater treatment wetland system, Water Res. 192 (2021) 116853. [41] G. Kutralam-Muniasamy, F. Perez-Guevara, I. Elizalde Martinez, V.C. Shruti, Overview of microplastics pollution with heavy metals: Analytical methods, occurrence, transfer risks and call for standardization, J. Hazard. Mater. 415 (2021) 125755. [42] S. Magni, A. Binelli, L. Pittura, C.G. Avio, C. Della Torre, C.C. Parenti, S. Gorbi, F. Regoli, The fate of microplastics in an Italian wastewater treatment plant, Sci. Total Environ. 652 (2019) 602-610. [43] H. Lee, Y. Kim, Treatment characteristics of microplastics at biological sewage treatment facilities in Korea, Mar. Pollut. Bull. 137 (2018) 1-8. [44] A. Talukdar, P. Kundu, S. Bhattacharya, N. Dutta, Microplastic contamination in wastewater: Sources, distribution, detection and remediation through physical and chemical-biological methods, Sci. Total Environ. 916 (2024) 170254. [45] P.C. Ojha, S.S. Satpathy, R. Ojha, J. Dash, D. Pradhan, Insight into the removal of nanoplastics and microplastics by physical, chemical, and biological techniques, Environ. Monit. Assess. 196 (11) (2024) 1055. |