近几年已发表的代表性论著 |
1.Sun H W, Peng Y Z, Shi X N. Advanced treatment of landfill leachate using anaerobic–aerobic process: Organic removal by simultaneous denitritation and methanogenesis and nitrogen removal via nitrite. Bioresource Technology, 2015, 177: 337-345.(SCI,IF=4.494) 2.Sun H W, Peng Y Z, Wang S Y, Ma J. Achieving nitritation at low temperatures using free ammonia inhibition on Nitrobacter and real-time control in an SBR treating landfill leachate. Journal of Environmental Sciences, 2015, 30,157-163. (SCI,IF=2.002) 3.Sun H W, Zhao H N, Chen Y Y, Yang Q, Peng Y Z, Advanced removal of organic and nitrogen from ammonium-rich landfill leachate using an anaerobic-aerobic system, Chinese Journal of Chemical Engineering,2015,23,1047-1051. (SCI,IF=1.098) 4.Sun H W, LÜ X T, Peng Y Z, Wang S Y, Ma J. Long-term nitritation performance of ammonium-rich landfill leachate. Chinese Journal of Chemical Engineering, 2015, 23, 1888-1893. (SCI,IF=1.098) 5.Sun H W, Bai Y, Peng Y Z, Xie H G, Shi X N. Achieving nitrogen removal via nitrite pathway from urban landfill leachate using the synergetic inhibition of free ammonia and free nitrous acid on nitrifying bacteria activity. Water Science & Technology 2013, 68(9):2035-2041. (SCI,IF=1.106) 6.Hongwei Sun, Qing Yang, Yongzhen Peng, et al., Advanced landfill leachate treatment using a two-stage UASB-SBR system at low temperature. Journal of Environmental Sciences, 2010, 22(4) :481-485. (SCI, IF=1.412) 7.SUN Hong Wei, YANG Qing, Dong Guo Ri, et al., Achieving the nitrite pathway using FA inhibition and process contro in UASB-SBR system removing nitrogen from landfill leachate. Science China Chemistry, 2010, 53(5):1210-1216. (SCI, IF=1.327) 8.SUN Hong wei, YANG Qing, PENG Yong zhen, et al., Nitrite accumulation during the denitrification process in SBR for the treatment of pre-treated landfill leachate. Chinese Journal of Chemical Engineering, 2009, 17(6):1027-1031. (SCI, IF=0.92) 9.孙洪伟,等.游离亚硝酸抑制硝化杆菌属(Nitrobacter)活性动力学研究[J]. 中国环境科学,2018,38(11):4246~4254. (EI) 10.孙洪伟,等.游离氨抑制Nitrobacter活性动力学试验[J]. 化工学报,2018,69(10): 4386-4393. (EI) 11.孙洪伟,等.游离氨(FA)对氨氧化菌(AOB)活性抑制动力学试验[J].环境科学,2018,39(9):4294-4301. (EI) 12.孙洪伟,等.碳氮比对活性污泥胞外聚合物的长期影响[J].中国环境科学,2018,38(3):950-958. (EI) 13.孙洪伟,等.交替好氧/缺氧运行模式对生物脱氮效能及活性污泥胞外聚合物的影响[J].环境科学,2018(01):1-8. (EI) 14.孙洪伟, 等.游离氨(FA)对氨氧化过程氨逃逸影响试验[J].环境科学,2017,38(12):5169-5173. (EI) 15.孙洪伟,等.温度对SBR生物脱氮效能及胞外聚合物的影响[J].环境科学,2017,38(11):4648-4655. (EI) 16.孙洪伟, 等.游离氨(FA)耦合曝气时间对硝化菌活性的抑制影响[J]. 环境科学, 2016, 37(3): 1075-1081. (EI) 17.孙洪伟, 等. 游离氨对硝化菌活性的抑制及可逆性影响[J]. 中国环境科学, 2015, 35(1):95-100. (EI) 18.孙洪伟, 等.脉冲式 SBR 处理垃圾渗滤液短程深度脱氮工艺特性[J]. 中国环境科学, 2014, 34(5): 1139-1144. (EI) 19.孙洪伟, 等. 实际垃圾渗滤液短程生物脱氮的常温实现及低温维持[J]. 中国环境科学, 2013, 33(11): 1972-1977. (EI) 20.Sun H W, You Y Y, Guo Y. Biological treatment of high ammonia content urban landfill leachate using an anaerobic-aerobic process, Advanced Materials Research, 2013.781-784:2095-2099. (EI) 21.孙洪伟,等. 以ORP作为SBR反硝化过程亚硝态氮积累的过程控制参数. 北京工业大学学报, 2010, 36(10): 1396-1401. (EI) 22.孙洪伟,等. 单一缺氧/厌氧UASB同步反硝化产甲烷与A/O组合工艺处理实际晚期渗滤液. 化工学报, 2009, 60(11): 2891-2896.(EI) 23.孙洪伟,等. 高氨氮垃圾渗滤液SBR法短程深度生物脱氮. 化工学报, 2009, 60(7): 1806-1811. (EI) |