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[1] Zhang, Z., Zhu, Q., Huang, C., Yang, M.*, Li, J., Chen, Y., Yang, B., Zhao, X. (2020). Comparative cytotoxicity of halogenated aromatic DBPs and implications of the corresponding developed QSAR model to toxicity mechanisms of those DBPs: Binding interactions between aromatic DBPs and catalase play an important role. Water Research, 170, 115283.
[2] Yang, J., Li, W., Zhu, Q., Yang, M.*, Li, J., Zhang, J., Yang, B., Zhao, X. (2019). Identification, formation and predictedtoxicity of halogenated DBPs derived from tannic acid and its biodegradation products. Environmental Science & Technology,53, 12961-13546.
[3] Yang, M., Zhang, X.*, Liang, Q., Yang, B. (2019). Application of (LC/) MS/MS precursor ion scan for evaluating the occurrence, formation and control of polar halogenated DBPs in disinfected waters: A review. Water Research, 158, 322-337.
[4] Bu, Y., Song, M., Han, J., Zhang, Z., Chen, B.*, Zhang, X., Yang, M.* (2018). A facile and green pretreatment method for nonionic total organic halogen (NTOX) analysis in water–Step II. Using photolysis to convert NTOX completely into halides. Water Research, 145, 579-587.
[5] Li, Y., Yang, M.*, Zhang, X.*, Jiang, J., Liu, J., Yau, C. F., Graham, N. J. D., Li, X. (2017). Two-step chlorination: A new approach to disinfection of a primary sewage effluent. Water Research, 108, 339-347.
[6] Yang, M., Liu, J., Zhang, X.*, Richardson, S. D.* (2015). Comparative toxicity of chlorinated saline and freshwater wastewater effluents to marine organisms. Environmental Science & Technology, 49(24), 14475-14483.
[7] Yang, M., Zhang, X.* (2014). Halopyrroles: a new group of highly toxic disinfection byproducts formed in chlorinated saline wastewater. Environmental Science & Technology, 48(20), 11846-11852.
[8] Yang, M., Zhang, X.* (2013). Comparative developmental toxicity of new aromatic halogenated DBPs in a chlorinated saline sewage effluent to the marine polychaete Platynereis dumerilii. Environmental Science & Technology, 47(19), 10868-10876.
[9] Yang, M.*, Zhang, X.* (2016). Current trends in the analysis and identification of emerging disinfection byproducts. Trends in Environmental Analytical Chemistry, 10, 24-34.
[10] Pan, L., Zhang, X.*, Yang, M.*, Han, J., Jiang, J., Li, W., Yang, B., Li, X. (2019). Effects of dechlorination conditions on the developmental toxicity of a chlorinated saline primary sewage effluent: Excessive dechlorination is better than not enough. Science of The Total Environment, 692, 117-126.
[11] Li, Y., Zhang, X.*, Yang, M.*, Liu, J., Li, W., Graham, N. J. D., Li, X., Yang, B. (2017). Three-step effluent chlorination increases disinfection efficiency and reduces DBP formation and toxicity. Chemosphere, 168, 1302-1308.
[12] Hong, N., Liu, A.*, Zhu, P., Zhan, Y., Yang, M.*, Zhang, Z., Yang, B., Guan, Y. (2019). Comparative toxicity of organic mixture attached to road deposited sediments: Inadequacy of conventionally using individual pollutants to assess comprehensive hazard effects. Ecotoxicology and Environmental Safety, 180, 357-365.
[13] Yang, M., Liberatore, H. K., Zhang, X.* (2019). Current methods for analyzing drinking water disinfection byproducts. Current Opinion in Environmental Science & Health, 7, 98-107.
[14] Zhang, Z., Yang, M.*, Yi, J., Zhu, Q., Huang, C., Chen, Y., Li, J., Yang, B., Zhao, X. (2019). Comprehensive insights into the interactions of two emerging bromophenolic DBPs with human serum albumin by multispectroscopy and molecular docking. ACS Omega, 4(1), 563-572.
[15] Ding, T., Lin, K., Yang, B., Yang, M., Li, J.* (2019). Toxic effects and metabolic fate of carbamazepine in diatom Navicula sp. as influenced by humic acid and nitrogen species. Journal of Hazardous Materials, 120763.
[16] Ding, T., Li, W., Cai, M., Jia, X., Yang, M., Yang, B., Li, J.* (2019). Algal toxicity, accumulation and metabolic pathways of galaxolide. Journal of Hazardous Materials, 121360.
[17] Zhang, Y., Bu, Y., Han, J., Liu, Y., Chen, B.*, Zhang, X., Yang, M., Sui, Y. (2018). A facile and green pretreatment method for nonionic total organic halogen (NTOX) analysis in water–Step I. Using electrodialysis to separate NTOX and halides. Water Research, 145, 631-639.
[18] Ding, T., Lin, K., Yang, M., Bao, L., Li, J.*, Yang, B., Gan, J. (2018). Biodegradation of triclosan in diatom Navicula sp.: Kinetics, transformation products, toxicity evaluation and the effects of pH and potassium permanganate. Journal of Hazardous Materials, 344, 200-209.
[19] Ding, T., Lin, K., Bao, L., Yang, M., Li, J.*, Yang, B., Gan, J. (2018). Biouptake, toxicity and biotransformation of triclosan in diatom Cymbella sp. and the influence of humic acid. Environmental Pollution, 234, 231-242.
[20] Hong, N., Liu, A.*, Zhu, P., Zhao, X., Guan, Y., Yang, M., Wang, H. (2018). Modelling benzene series pollutants (BTEX) build-up loads on urban roads and their human health risks: Implications for stormwater reuse safety. Ecotoxicology and Environmental Safety, 164, 234-242.
[21] Ding, T., Yang, M., Zhang, J., Yang, B., Lin, K., Li, J.*, Gan, J. (2017). Toxicity, degradation and metabolic fate of ibuprofen on freshwater diatom Navicula sp. Journal of Hazardous Materials, 330, 127-134.
[22] Ding, T., Lin, K., Yang, B., Yang, M., Li, J.*, Li, W., Gan, J. (2017). Biodegradation of naproxen by freshwater algae Cymbella sp. and Scenedesmus quadricauda and the comparative toxicity. Bioresource Technology, 238, 164-173.
[23] Ding, G., Zhang, X.*, Yang, M., Pan, Y. (2013). Formation of new brominated disinfection byproducts during chlorination of saline sewage effluents. Water Research, 47(8), 2710-2718.
[24] Xiao, F., Zhang, X.*, Zhai, H., Lo, I. M., Tipoe, G. L., Yang, M., Pan, Y., Chen, G. (2012). New halogenated disinfection byproducts in swimming pool water and their permeability across skin. Environmental Science & Technology, 46(13), 7112-7119.
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[26] Xiao, F., Zhang, X.*, Zhai, H., Yang, M., Lo, I. M. (2010). Effects of enhanced coagulation on polar halogenated disinfection byproducts in drinking water. Separation and Purification Technology, 76(1), 26-32