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2023 Journal Article Impact of electrochemically generated iron on the performance of an anaerobic wastewater treatment processHu, Zhetai, Hu, Shihu, Hong, Pei-Ying, Zhang, Xueqin, Prodanovic, Veljko, Zhang, Kefeng, Ye, Liu, Deletic, Ana, Yuan, Zhiguo and Zheng, Min (2023). Impact of electrochemically generated iron on the performance of an anaerobic wastewater treatment process. Science of the Total Environment, 875 162628, 1-7. doi: 10.1016/j.scitotenv.2023.162628 |
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2023 Journal Article Novel use of a ferric salt to enhance mainstream nitrogen removal from anaerobically pretreated wastewaterHu, Zhetai, Hu, Shihu, Ye, Liu, Duan, Haoran, Wu, Ziping, Hong, Pei-Ying, Yuan, Zhiguo and Zheng, Min (2023). Novel use of a ferric salt to enhance mainstream nitrogen removal from anaerobically pretreated wastewater. Environmental Science and Technology, 57 (16), 6712-6722. doi: 10.1021/acs.est.2c08325 |
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2023 Journal Article Significant production of nitric oxide by aerobic nitrite reduction at acidic pHLu, Xi, Wang, Zhiyao, Duan, Haoran, Wu, Ziping, Hu, Shihu, Ye, Liu, Yuan, Zhiguo and Zheng, Min (2023). Significant production of nitric oxide by aerobic nitrite reduction at acidic pH. Water Research, 230 119542, 1-9. doi: 10.1016/j.watres.2022.119542 |
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2023 Journal Article High hydraulic loading rates favored mainstream partial nitritation: experimental demonstration and model-based analysisDuan, Haoran, Zheng, Min, Li, Jiyun, Liu, Tao, Wang, Zhiyao, Shrestha, Sohan, Wang, Bingzheng, Ye, Liu, Hu, Shihu and Yuan, Zhiguo (2023). High hydraulic loading rates favored mainstream partial nitritation: experimental demonstration and model-based analysis. ACS ES and T Water, 3 (2), 556-564. doi: 10.1021/acsestwater.2c00569 |
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2022 Journal Article A comprehensive carbon footprint analysis of different wastewater treatment plant configurationsWu, Ziping, Duan, Haoran, Li, Kaili and Ye, Liu (2022). A comprehensive carbon footprint analysis of different wastewater treatment plant configurations. Environmental Research, 214 (Pt 2) 113818, 1-11. doi: 10.1016/j.envres.2022.113818 |
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2022 Conference Publication Hybridizing mechanistic and deep learning approaches to model and mitigate greenhouse gas emissions from full-scale wastewater treatment plantsLi , Kaili, Duan, Haoran, Yuan, Zhiguo and Ye, Liu (2022). Hybridizing mechanistic and deep learning approaches to model and mitigate greenhouse gas emissions from full-scale wastewater treatment plants. 13th IWA Conference on Instrumentation, Control and Automation, Virtual, Beijing, China, 17 - 21 October 2022. |
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2022 Journal Article Electrochemical iron production to enhance anaerobic membrane treatment of wastewaterHu, Zhetai, Zheng, Min, Hu, Shihu, Hong, Pei-Ying, Zhang, Xueqing, Prodanovic, Veljko, Zhang, Kefeng, Pikaar, Ilje, Ye, Liu, Deletic, Ana and Yuan, Zhiguo (2022). Electrochemical iron production to enhance anaerobic membrane treatment of wastewater. Water Research, 225 119202, 119202. doi: 10.1016/j.watres.2022.119202 |
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2022 Conference Publication Novel PAOs play the key role to achieve combined biological short-cut N and P removal in the one-sludge system with side-stream sludge treatmentLu, Xuanyu , Oehmen, Adrian , Zhao, Jing , Duan, Haoran , Carvalho, Gilda , Yuan, Zhiguo and Ye, Liu (2022). Novel PAOs play the key role to achieve combined biological short-cut N and P removal in the one-sludge system with side-stream sludge treatment. IWA World Water Congress & Exhibition, Copenhagen, Denmark, 11-15 September 2022. IWA. |
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2022 Conference Publication Modelling and mitigating greenhouse gas emissions from sewage treatment plants using an integrated mechanistic and deep learning approachLi, Kaili, Duan, Haoran, Liu, Linfeng, Qiu, Ruihong, Yuan, Zhiguo and Ye, Liu (2022). Modelling and mitigating greenhouse gas emissions from sewage treatment plants using an integrated mechanistic and deep learning approach. World Water Congress and Exhibition 2022, Copenhagen, Denmark, 11 – 15 September 2022. |
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2022 Journal Article Toward mainstream anammox by integrating sidestream treatmentCao, Shenbin, Koch, Konrad, Du, Rui, Wells, George F, Ye, Liu and Drewes, Jörg E. (2022). Toward mainstream anammox by integrating sidestream treatment. Environmental Science and Technology, 56 (15), 10553-10556. doi: 10.1021/acs.est.2c03256 |
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2022 Journal Article Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrificationZhao, Yingfen, Ab Hamid, Nur Hafizah, Reddy, Nichelle, Zheng, Min, Yuan, Zhiguo, Duan, Haoran and Ye, Liu (2022). Wastewater primary treatment using forward osmosis introduces inhibition to achieve stable mainstream partial nitrification. Environmental Science and Technology, 56 (12), 8663-8672. doi: 10.1021/acs.est.1c05672 |
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2022 Book Chapter IntroductionYe, Liu and Porro, Jose (2022). Introduction. Quantification and Modelling of Fugitive Greenhouse Gas Emissions from Urban Water Systems: A report from the IWA Task Group on GHG. (pp. 1-9) IWA Publishing. doi: 10.2166/9781789060461_001 |
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2022 Book Chapter Perspectives on fugitive GHGs reduction from urban wastewater systemsNopens, Ingmar, Porro, Jose and Ye, Liu (2022). Perspectives on fugitive GHGs reduction from urban wastewater systems. Quantification and modelling of fugitive greenhouse gas emissions from urban water systems. (pp. 245-257) edited by Liu Ye, Jose Porro and Ingmar Nopens. London, United Kingdom: IWA Publishing. doi: 10.2166/9781789060461_0245 |
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2022 Book Quantification and Modelling of Fugitive Greenhouse Gas Emissions from Urban Water SystemsYe, Liu, Porro, Jose and Nopen, Ingmar eds. (2022). Quantification and Modelling of Fugitive Greenhouse Gas Emissions from Urban Water Systems. London, United Kingdom: IWA Publishing. doi: 10.2166/9781789060461 |
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2022 Book Chapter IntroductionYe, Liu and Porro, Jose (2022). Introduction. Quantification and modelling of fugitive greenhouse gas emissions from urban water systems. (pp. 1-9) edited by Liu Ye, Jose Porro and Ingmar Nopens. London, United Kingdom: IWA Publishing. doi: 10.2166/9781789060461_0001 |
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2022 Journal Article An integrated first principal and deep learning approach for modeling nitrous oxide emissions from wastewater treatment plantsLi, Kaili, Duan, Haoran, Liu, Linfeng, Qiu, Ruihong, van den Akker, Ben, Ni, Bing-Jie, Chen, Tong, Yin, Hongzhi, Yuan, Zhiguo and Ye, Liu (2022). An integrated first principal and deep learning approach for modeling nitrous oxide emissions from wastewater treatment plants. Environmental Science and Technology, 56 (4) acs.est.1c05020, 2816-2826. doi: 10.1021/acs.est.1c05020 |
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2022 Journal Article A green, hybrid cleaning strategy for the mitigation of biofouling deposition in the elevated salinity forward osmosis membrane bioreactor (FOMBR) operationAb Hamid, Nur Hafizah, Wang, David K., Smart, Simon and Ye, Liu (2022). A green, hybrid cleaning strategy for the mitigation of biofouling deposition in the elevated salinity forward osmosis membrane bioreactor (FOMBR) operation. Chemosphere, 288 (Pt 3) 132612, 1-10. doi: 10.1016/j.chemosphere.2021.132612 |
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2021 Journal Article Adaptation and evolution of freshwater Anammox communities treating saline/brackish wastewaterLin, Limin, Pratt, Steven, Li, Zhiheng and Ye, Liu (2021). Adaptation and evolution of freshwater Anammox communities treating saline/brackish wastewater. Water Research, 207 117815, 117815. doi: 10.1016/j.watres.2021.117815 |
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2021 Conference Publication A comprehensive carbon footprint analysis of different wastewater treatment plant configurationsWu, Ziping, Duan, Haoran, Li, Kaili and Ye, Liu (2021). A comprehensive carbon footprint analysis of different wastewater treatment plant configurations. International conference on sustainable technology and development 2021, Shenzhen, China, 31 October - 2 November 2021. |
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2021 Journal Article Centralized iron-dosing into returned sludge brings multifaceted benefits to wastewater managementHu, Zhetai, Duan, Haoran, Wang, Zhiyao, Zhao, Jing, Ye, Liu, Yuan, Zhiguo, Zheng, Min and Hu, Shihu (2021). Centralized iron-dosing into returned sludge brings multifaceted benefits to wastewater management. Water Research, 203 117536, 1-9. doi: 10.1016/j.watres.2021.117536 |