第一作者: [1] Kong, Z.*; Xue, Y.; Hao, T.; Wu, J.; Zhang, Y.; Rong, C.; Chen, H.; Song, L.; Li, D.; Pan, Y.; Li, Y.-Y. Carbon-Neutral Treatment of N, N-Dimethylformamide-Containing Wastewater by up-Flow Anaerobic Sludge Blanket: CO2 Reduction and Bio-Energy Cleaner Production. Journal of Cleaner Production,2022, 380, 134880. [2] Kong, Z. *; Hao, T.; Chen, H.; Xue, Y.; Li, D.; Pan, Y.; Li, Y.; Li, Y.-Y.; Huang, Y. Anaerobic Membrane Bioreactor for Carbon-Neutral Treatment of Industrial Wastewater Containing N, N-Dimethylformamide: Evaluation of Electricity, Bio-Energy Production and Carbon Emission. Environmental Research,2023, 216, 114615. [3] Kong, Z.; Xue, Y.; Hao, T.; Zhang, Y.; Wu, J.; Chen, H.; Song, L.; Rong, C.; Li, D.; Pan, Y.; Li, Y.; Li, Y.-Y. Carbon-Neutral Treatment of N, N-Dimethylformamide-Containing Industrial Wastewater by Anaerobic Membrane Bioreactor (AnMBR): Bio-Energy Recovery and CO2 Emission Reduction. Bioresource Technology,2022, 358, 127396. [4] Kong, Z.*; Xue, Y.; Zhang, Y.; Hao, T.; Chen, H.; Sun, J.; Pan, Y.; Li, D.; Li, Y.; Huang, Y. Insights into the Carbon Neutrality for the Treatment Process Engineering of Municipal Wastewater by Anaerobic Membrane Bioreactor Integrated with Partial Nitritation-Anammox: CO2 Reduction and Energy Recovery. Journal of Water Process Engineering,2022, 49, 102996. [5] Kong, Z.*; Li, L.; Wu, J.; Rong, C.; Wang, T.; Chen, R.; Sano, D.; Li, Y.-Y. Unveiling the Characterization and Development of Prokaryotic Community during the Start-up and Long-Term Operation of a Pilot-Scale Anaerobic Membrane Bioreactor for the Treatment of Real Municipal Wastewater. Science of The Total Environment,2022, 813, 152643. [6] Kong, Z.; Li, L.; Wu, J.; Wang, T.; Rong, C.; Luo, Z.; Pan, Y.; Li, D.; Li, Y.; Huang, Y.; Li, Y.-Y. Evaluation of Bio-Energy Recovery from the Anaerobic Treatment of Municipal Wastewater by a Pilot-Scale Submerged Anaerobic Membrane Bioreactor (AnMBR) at Ambient Temperature. Bioresource Technology,2021, 339, 125551. [7] Kong, Z.; Wu, J.; Rong, C.; Wang, T.; Li, L.; Luo, Z.; Ji, J.; Hanaoka, T.; Sakemi, S.; Ito, M.; Kobayashi, S.; Kobayashi, M.; Qin, Y.; Li, Y.-Y. Sludge Yield and Degradation of Suspended Solids by a Large Pilot-Scale Anaerobic Membrane Bioreactor for the Treatment of Real Municipal Wastewater at 25 °C. Science of The Total Environment,2021, 759, 143526. [8] Kong, Z.; Wu, J.; Rong, C.; Wang, T.; Li, L.; Luo, Z.; Ji, J.; Hanaoka, T.; Sakemi, S.; Ito, M.; Kobayashi, S.; Kobayashi, M.; Qin, Y.; Li, Y.-Y. Large Pilot-Scale Submerged Anaerobic Membrane Bioreactor for the Treatment of Municipal Wastewater and Biogas Production at 25 °C. Bioresource Technology,2021, 319, 124123. (2022年入选ESI高被引论文,生物领域前1%) [9] Kong, Z.; Li, L.; Wang, T.; Rong, C.; Xue, Y.; Zhang, T.; Wu, J.; Li, Y.-Y. New Insights into the Cultivation of N, N-Dimethylformamide-Degrading Methanogenic Consortium: A Long-Term Investigation on the Variation of Prokaryotic Community Inoculated with Activated Sludge. Environmental Research,2020, 182, 109060. [10] Kong, Z.; Li, L.; Xue, Y.; Yang, M.; Li, Y.-Y. Challenges and Prospects for the Anaerobic Treatment of Chemical-Industrial Organic Wastewater: A Review. Journal of Cleaner Production,2019, 231, 913–927.(2021年入选ESI热点论文与高被引论文,工程领域前0.1%) [11] Kong, Z.; Li, L.; Kato, H.; Zhang, T.; Xue, Y.; Li, Y.-Y. Dissection and Characterization of the Prokaryotic Community during the Long-Term Operation of a Submerged Anaerobic Membrane Bioreactor for the Anaerobic Treatment of N, N-Dimethylformamide-Containing Wastewater with a Co-Cultured Inoculum. Bioresource Technology,2019, 282, 482–493. [12] Kong, Z.; Li, L.; Kurihara, R.; Zhang, T.; Li, Y.-Y. Anaerobic Treatment of N,N-Dimethylformamide-Containing High-Strength Wastewater by Submerged Anaerobic Membrane Bioreactor with a Co-Cultured Inoculum. Science of The Total Environment,2019, 663, 696–708. [13] Kong, Z.; Li, L.; Li, Y.-Y. Long-Term Performance of UASB in Treating N, N-Dimethylformamide-Containing Wastewater with a Rapid Start-up by Inoculating Mixed Sludge. Science of The Total Environment,2019, 648, 1141–1150. [14] Kong, Z.; Li, L.; Wu, J.; Zhang, T.; Li, Y.-Y. Insights into the Methanogenic Degradation of N, N-Dimethylformamide: The Functional Microorganisms and Their Ecological Relationships. Bioresource Technology,2019, 271, 37–47. [15] Kong, Z.; Li, L.; Li, Y.-Y. Characterization and Variation of Microbial Community Structure during the Anaerobic Treatment of N, N-Dimethylformamide-Containing Wastewater by UASB with Artificially Mixed Consortium. Bioresource Technology,2018, 268, 434–444. [16] Kong, Z.; Li, L.; Kurihara, R.; Kubota, K.; Li, Y.-Y. Anaerobic Treatment of N, N-Dimethylformamide-Containing Wastewater by Co-Culturing Two Sources of Inoculum. Water Research,2018, 139, 228–239.(获2020年日本水环境学会年度优秀论文赏:https://www.jswe.or.jp/pdf/2020_hyousyo40sokai.pdf) [17] Kong, Z.; Li, L.; Feng, C.; Dong, S.; Chen, N. Comparative Investigation on Integrated Vertical-Flow Biofilters Applying Sulfur-Based and Pyrite-Based Autotrophic Denitrification for Domestic Wastewater Treatment. Bioresource Technology,2016, 211, 125–135. [18] Kong, Z.; Li, L.; Feng, C.; Chen, N.; Dong, S.; Hu, W. Soil Infiltration Bioreactor Incorporated with Pyrite-Based (Mixotrophic) Denitrification for Domestic Wastewater Treatment. Bioresource Technology,2015, 187, 14–22. [19] Kong, Z.; Feng, C.; Chen, N.; Tong, S.; Zhang, B.; Hao, C.; Chen, K. A Soil Infiltration System Incorporated with Sulfur-Utilizing Autotrophic Denitrification (SISSAD) for Domestic Wastewater Treatment. Bioresource Technology,2014, 159, 272–279. [20] 孔哲,吴江,荣超,王添颉,黄勇,李玉友. 大型中试厌氧膜生物反应器处理城市污水的稳定运行与物料平衡研究[J]. 环境工程,2021,39(7): 68-74 通讯作者: [1] Fan, Y.; Tan, X.; Huang, Y.; Hao, T.; Chen, H.; Xue, Y.; Li, D.; Pan, Y.; Li, Y.; Kong, Z*. Chemical Oxygen Demand and Nitrogen Removal from Real Membrane-manufacturing Wastewater by a Pilot-Scale Internal Circulation Reactor Integrated with Partial Nitritation-Anammox. Bioresource Technology,2022, 364,128116. [2] Tan, X.; Fan, Y.; Zhang, X.; Hao, T.; Chen, R.; Zhang, T.; Lu, R.; Sun, J.; Li, D.; Pan, Y.; Li, Y.-Y.; Kong, Z*.Carbon-Neutral Potential in Treatment of N, N-Dimethylformamide-Containing Industrial Wastewater: Comparative Investigation of Energy Conservation, Carbon Reduction and Expenditure between UASB and Fenton Process. Journal of Water Process Engineering,2023, 56, 104325. [3] Zhang, X.; Fan, Y.; Hao, T.; Chen, R.; Zhang, T.; Hu, Y.; Li, D.; Pan, Y.; Li, Y.-Y.; Kong, Z*.Insights into Current Bio-Processes and Future Perspectives of Carbon-Neutral Treatment of Industrial Organic Wastewater: A Critical Review. Environmental Research,2024, 241, 117630. [4] Zhang, X.; Ma, G.; Chen, T.; Yan, C.; Chen, Y.; Wang, Q.; Peng, X.; Xu, W.; Hao, T.; Zhang, T.; Lu, R.; Li, D.; Pan, Y.; Li, Y.-Y.; Kong, Z*.Towards Carbon-Neutral Biotechnologies for Rural Wastewater: A Review of Current Treatment Processes and Future Perspectives. Journal of Water Process Engineering,2024, 58, 104773. [5] Zhang, X.; Hao, T.; Zhang, T.; Hu, Y.; Lu, R.; Li, D.; Pan, Y.; Li, Y.-Y.; Kong, Z*. Towards Energy Conservation and Carbon Reduction for Wastewater Treatment Processes: A Review of Carbon-Neutral Anaerobic Biotechnologies. Journal of Water Process Engineering,2024, 59, 105026. [6] 张新政,范煜秦,薛意,张涛,陈荣,李大鹏,潘杨,李玉友,孔哲*. 厌氧膜生物反应器处理酰胺工业废水的碳中和潜力——能源回收与碳减排[J],环境工程学报,2024 [7] 张新政,邓紫萱,张涛,胡勇,陈荣,李玉友,李大鹏,潘杨,孔哲*. 升流式厌氧污泥床针对二甲基甲酰胺废水的碳中和处理研究[J],能源环境保护,2024,38(1): 159-166 |