论文著作:
[1] Y. Chen, X. Dai*, H. Wang, et al., Insights into the mitigative effects of microbial electrolysis cell on anaerobic digestion under high ammonia condition, Chemical Engineering Journal, 2023, (SCI, JCR1区, 中科院1区, IF=15.100);
[2] Y. Chen, D. Yang, X. Dai*, et al., Thermophilic anaerobic digestion of kitchen waste driven by microbial electrolysis cell (MEC): digestion performances, anodic microorganisms’ distribution and current utilization efficiency, Energy Conversion and Management, 2023, (SCI, JCR1区, 中科院1区, IF=10.400);
[3] Y. Chen, L. Li, X. Dai*, et al., Regulating effects of Fe/C materials on thermophilic anaerobic digestion of kitchen waste: Digestive performances and methanogenic pathways, Fuel, 2023, (SCI, JCR1区, 中科院1区, IF=7.400);
[4] Y. Chen, H. Yang, L. Gu*, et al., Effects of acid/alkali pretreatments on wheat straw mono-digestion and co-digestion with activated sludge, Journal of Cleaner Production, 2021, (SCI, JCR1区, 中科院1区, IF=11.100);
[5] W. Tian1, Y. Chen1, L. Gu*, et al., Effects of hydrothermal pretreatment on the mono- and co-digestion of waste sludge and wheat straw, Science of the Total Environment, 2020, (SCI, JCR1区, 中科院1区, IF=10.700);
[6] Y. Chen, H. Yang, L. Gu*, et al., Comprehensively evaluating the digestive performance of sludge with different lignocellulosic components in mesophilic digester, Bioresource Technology, 2019, (SCI, JCR1区, 中科院1区, IF=11.400);
[7] Y. Chen, Z. Zhao, L. Gu*, et al., Digestive performance of sludge with different crop straws in mesophilic anaerobic digester, Bioresource Technology, 2019, (SCI, JCR1区, 中科院1区, IF=11.400);
[8] Y. Chen, R. Zhu, L. Gu*, et al., Effects of green waste participation on the co-digestion of residual sludge and kitchen waste: a preliminary study, Science of the Total Environment, 2019, (SCI, JCR1区, 中科院1区, IF=10.700);
[9] Y. Chen, H. Wang, X. Dai*, et al., Electronic regulation to achieve efficient anaerobic digestion of organic fraction of municipal solid waste (OFMSW): strategies, challenges and potential solutions, Frontiers of Environmental Science & Engineering, 2024, (SCI, JCR1区, 中科院2区, IF=6.400);
[10]Y. Chen, Q. Jiang, L. Gu*, et al., Effects of green waste addition on co-digestion of waste sludge/Fat, oil and grease in mesophilic batch digester, Environmental Technology, 2020, (SCI, JCR3区, 中科院4区, IF=2.800).
发明专利:
[1] 戴晓虎, 陈永栋等, 一种强化有机固废厌氧消化能力的MEC反应器, 授权;
[2] 戴晓虎, 陈永栋等, 一种MEC-AnSBR污水处理自动控制一体化设备, 授权;
[3] 高猛, 陈永栋等, 一种用于处理农村生活污水的新型管道, 授权;
[4] 杨海峰, 陈永栋等, 一种沉水植物种植基质和使用该基质种植沉水植物的方法, 授权;
[5] 戴晓虎, 李磊, 陈永栋等, 一种用于强化厌氧消化的MEC反应系统, 授权;
[6] 戴晓虎, 李磊, 陈永栋等, 两相微生物电解池耦合厌氧SBR反应器系统及其应用, 授权;
[7] 戴晓虎, 李磊, 陈永栋等, 一种用于强化厌氧消化的填料反应系统, 授权;
[8] 祝瑞麟, 古励, 陈永栋等, 一种初期雨水智能分流系统, 授权;
[9] 古励, 杨海峰, 陈永栋等, 一种水动力快速除藻机械装置, 授权;
[10]古励, 杨海峰, 陈永栋等, 一种静滞水面水动力抑制藻类的方法和实施该方法的装置, 授权;
[11]戴晓虎, 陈永栋等, 一种侧流微曝气耦合主流电驱动的厌氧消化系统, 实审;
[12]戴晓虎, 陈永栋等, 一种基于ORP控制的微曝气厌氧消化反应器, 实审;
[13]戴晓虎, 陈永栋等, 一种利用生物填料强化有机固废厌氧消化能力的反应器, 实审;