| 1 | 中华人民共和国生态环境部办公厅. 关于发布《第二次全国污染源普查公报》的公告[EB/OL]. [2020-06-10].  | 
																													
																						|  | General Office of the Ministry of ecological environment of the people’s Republic of China. Announcement on the release of the second national census of pollution sources[EB/OL]. [2020-06-10].  | 
																													
																						| 2 |  | 
																													
																						|  |  SUN Yuan, WEI Xinyu , DING Yi . Application and research progress of constructed wetland in restoration of eutrophic water body[J]. Industrial Water Treatment ,2021 ,41 (2):8-14. doi:10.11894/iwt.2020-0325 | 
																													
																						| 3 |  WU Haiming, ZHANG Jian , NGO H H ,et al. A review on the sustainability of constructed wetlands for wastewater treatment:Design and operation[J]. Bioresource Technology ,2015 ,175 :594-601. doi:10.1016/j.biortech.2014.10.068 | 
																													
																						| 4 |  VYMAZAL J, KRÖPFELOVÁ L . A three-stage experimental constructed wetland for treatment of domestic sewage:First 2 years of operation[J]. Ecological Engineering ,2011 ,37 (1):90-98. doi:10.1016/j.ecoleng.2010.03.004 | 
																													
																						| 5 |  IBEKWE A M,  LYON S R,  LEDDY M,et al. Impact of plant density and microbial composition on water quality from a free water surface constructed wetland[J]. Journal of Applied Microbiology,2007,102(4):921-936. | 
																													
																						| 6 |  FAULWETTER J L, GAGNON V , SUNDBERG C ,et al. Microbial processes influencing performance of treatment wetlands:A review[J]. Ecological Engineering ,2009 ,35 (6):987-1004. doi:10.1016/j.ecoleng.2008.12.030 | 
																													
																						| 7 |  HU Yun, HE Feng , MA Lin ,et al. Microbial nitrogen removal pathways in integrated vertical-flow constructed wetland systems[J]. Bioresource Technology ,2016 ,207 :339-345. doi:10.1016/j.biortech.2016.01.106 | 
																													
																						| 8 |  XIE En, DING Aizhong , ZHENG Lei ,et al. Seasonal variation in populations of nitrogen-transforming bacteria and correlation with nitrogen removal in a full-scale horizontal flow constructed wetland treating polluted river water[J]. Geomicrobiology Journal ,2016 ,33 (3/4):338-346. doi:10.1080/01490451.2015.1052115 | 
																													
																						| 9 |  ZHAO Yufeng, CAO Xin , SONG Xinshan ,et al. Montmorillonite supported nanoscale zero-valent iron immobilized in sodium alginate(SA/Mt-nZVI) enhanced the nitrogen removal in vertical flow constructed wetlands(VFCWs)[J]. Bioresource Technology ,2018 ,267 :608-617. doi:10.1016/j.biortech.2018.07.072 | 
																													
																						| 10 |  XU Ming, LIU Weijing , LI Chao ,et al. Evaluation of the treatment performance and microbial communities of a combined constructed wetland used to treat industrial park wastewater[J]. Environmental Science and Pollution Research International ,2016 ,23 (11):10990-11001. doi:10.1007/s11356-016-6181-8 | 
																													
																						| 11 |  BELLINI M I, GUTIÉRREZ L , TARLERA S ,et al. Isolation and functional analysis of denitrifiers in an aquifer with high potential for denitrification[J]. Systematic and Applied Microbiology ,2013 ,36 (7):505-516. doi:10.1016/j.syapm.2013.07.001 | 
																													
																						| 12 |  KANG Yan, ZHANG Jian , XIE Huijun ,et al. Enhanced nutrient removal and mechanisms study in benthic fauna added surface-flow constructed wetlands:The role of Tubifex tubifex[J]. Bioresource Technology ,2017 ,224 :157-165. doi:10.1016/j.biortech.2016.11.035 | 
																													
																						| 13 |  DALAHMEH S S, JÖNSSON H , HYLANDER L D ,et al. Dynamics and functions of bacterial communities in bark,charcoal and sand filters treating greywater[J]. Water Research ,2014 ,54 :21-32. doi:10.1016/j.watres.2014.01.019 | 
																													
																						| 14 |  SI Zhihao, SONG Xinshan , WANG Yuhui ,et al. Intensified heterotrophic denitrification in constructed wetlands using four solid carbon sources:Denitrification efficiency and bacterial community structure[J]. Bioresource Technology ,2018 ,267 :416-425. doi:10.1016/j.biortech.2018.07.029 | 
																													
																						| 15 |  SHI Xia, FAN Jinlin , ZHANG Jian ,et al. Enhanced phosphorus removal in intermittently aerated constructed wetlands filled with various construction wastes[J]. Environmental Science and Pollution Research International ,2017 ,24 (28):22524-22534. doi:10.1007/s11356-017-9870-z | 
																													
																						| 16 |  HUANG Juan, XIAO Jun , GUO Yang ,et al. Long-term effects of silver nanoparticles on performance of phosphorus removal in a laboratory-scale vertical flow constructed wetland[J]. Journal of Environmental Sciences ,2020 ,87 :319-330. doi:10.1016/j.jes.2019.07.012 | 
																													
																						| 17 |  WEI Fang, ZHOU Qingwei , WU Weihong ,et al. Investigating the influence of iron-carbon microelectrolysis on the performance and microbial community of constructed wetlands[J]. Water and Environment Journal ,2020 ,34 (S1):414-424. doi:10.1111/wej.12538 | 
																													
																						| 18 |  LI Xi, LI Yuyuan , Dianqing LÜ ,et al. Nitrogen and phosphorus removal performance and bacterial communities in a multi-stage surface flow constructed wetland treating rural domestic sewage[J]. Science of the Total Environment ,2020 ,709 :136235. doi:10.1016/j.scitotenv.2019.136235 | 
																													
																						| 19 | 姚燃,刘锋,吴露,等. 三级绿狐尾藻表面流人工湿地对养殖废水处理效应研究[J]. 地球与环境,2018,46(5):475-481. | 
																													
																						|  |  YAO Ran,  LIU Feng,  WU Lu,et al. Performance of three-stage surface flow constructed wetlands planted with myriophyllum aquaticum gaudich for swine wastewater treatment[J]. Earth and Environment,2018,46(5):475-481. | 
																													
																						| 20 | 隗岚琳,刘东升,廖雪珂,等. 垂直潜流人工湿地低温净化效果及其与微生物作用关系[J]. 环境科学学报,2021,41(10):4039-4048. | 
																													
																						|  |  KUI Lanlin,  LIU Dongsheng,  LIAO Xueke,et al. Low temperature purification performance and the microbial activity in the vertical subsurface flow constructed wetland[J]. Acta Scientiae Circumstantiae,2021,41(10):4039-4048. | 
																													
																						| 21 | 霍玉洁. 翅碱蓬人工湿地对COD等污染物消减能力研究[D]. 大连:大连海洋大学,2022. | 
																													
																						|  |  HUO Yujie. Study on the removal ability of COD and other pollutants by constructed wetland of suaeda Heteroptera[D]. Dalian:Dalian Ocean University,2022. | 
																													
																						| 22 | 张飞剑,彭云清,章茹. 潮汐流人工湿地处理南方农村黑臭水体实验研究[J]. 水处理技术,2022,48(4):114-118. | 
																													
																						|  |  ZHANG Feijian,  PENG Yunqing,  ZHANG Ru. Experimental study on the black and odorous water body in southern rural areas by tidal flow constructed wetland[J]. Technology of Water Treatment,2022,48(4):114-118. | 
																													
																						| 23 |  AYAZ S Ç, AKTAŞ Ö , FıNDıK N ,et al. Effect of recirculation on nitrogen removal in a hybrid constructed wetland system[J]. Ecological Engineering ,2012 ,40 :1-5. doi:10.1016/j.ecoleng.2011.12.028 | 
																													
																						| 24 | 余俊霞,陈双荣,刘凌言,等. 复合人工湿地系统对低污染水总氮的净化效果及其微生物群落结构特征[J]. 环境工程,2022,40(1):13-20. | 
																													
																						|  |  YU Junxia,  CHEN Shuangrong,  LIU Lingyan,et al. Purification effect of total nitrogen in low-polluted water by a composite constructed wetland system and its microbial community structure[J]. Environmental Engineering,2022,40(1):13-20. | 
																													
																						| 25 |  LI Xi, LI Yuyuan , WU Jinshui . Bacterial community response to different nitrogen gradients of swine wastewater in surface flow constructed wetlands[J]. Chemosphere ,2021 ,265 :129106. doi:10.1016/j.chemosphere.2020.129106 | 
																													
																						| 26 | 夏国栋,朱四喜,赵伟,等. 复合流垂直流人工湿地基质细菌群落特征变化分析[J]. 工业水处理,2022,42(11):113-121. | 
																													
																						|  |  XIA Guodong,  ZHU Sixi,  ZHAO Wei,et al. Characterization of bacterial community variations in composite vertical flow constructed wetland substrates[J]. Industrial Water Treatment,2022,42(11):113-121. | 
																													
																						| 27 |  | 
																													
																						|  |  PAN Ao, ZHANG Zhi , SUN Lei ,et al. Purification effects and microbial community differences of the surface-flow constructed wetlands with different vegetation plantation[J]. Chinese Journal of Environmental Engineering ,2019 ,13 (8):1918-1929. doi:10.12030/j.cjee.201812182 | 
																													
																						| 28 |  HUGENHOLTZ P, GOEBEL B M , PACE N R . Impact of culture-independent studies on the emerging phylogenetic view of bacterial diversity[J]. Journal of Bacteriology ,1998 ,180 (18):4765-4774. doi:10.1128/jb.180.18.4765-4774.1998 | 
																													
																						| 29 |  HOU Luanfeng, ZHOU Qin , WU Qingping ,et al. Spatiotemporal changes in bacterial community and microbial activity in a full-scale drinking water treatment plant[J]. Science of the Total Environment ,2018 ,625 :449-459. doi:10.1016/j.scitotenv.2017.12.301 | 
																													
																						| 30 |  LIU Jing, LU Zhibo , ZHANG Jie ,et al. Phylogenetic characterization of microbial communities in a full-scale vermifilter treating rural domestic sewage[J]. Ecological Engineering ,2013 ,61 :100-109. doi:10.1016/j.ecoleng.2013.09.015 | 
																													
																						| 31 |  WU Yinghai, HAN Rui , YANG Xunan ,et al. Correlating microbial community with physicochemical indices and structures of a full-scale integrated constructed wetland system[J]. Applied Microbiology and Biotechnology ,2016 ,100 (15):6917-6926. doi:10.1007/s00253-016-7526-4 | 
																													
																						| 32 |  LI Luzhen, HE Chunguang , JI Guodong ,et al. Nitrogen removal pathways in a tidal flow constructed wetland under flooded time constraints[J]. Ecological Engineering ,2015 ,81 :266-271. doi:10.1016/j.ecoleng.2015.04.073 | 
																													
																						| 33 |  ZHONG Fei, WU Juan , DAI Yanran ,et al. Bacterial community analysis by PCR-DGGE and 454-pyrosequencing of horizontal subsurface flow constructed wetlands with front aeration[J]. Applied Microbiology and Biotechnology ,2015 ,99 (3):1499-1512. doi:10.1007/s00253-014-6063-2 | 
																													
																						| 34 |  SOROKIN D Y, LÜCKER S , VEJMELKOVA D ,et al. Nitrification expanded:Discovery,physiology and genomics of a nitrite-oxidizing bacterium from the Phylum chloroflexi[J]. The ISME Journal ,2012 ,6 (12):2245-2256. doi:10.1038/ismej.2012.70 | 
																													
																						| 35 |  SPEIRS L B M, RICE D T F , PETROVSKI S ,et al. The phylogeny,biodiversity,and ecology of the chloroflexi in activated sludge[J]. Frontiers in Microbiology ,2019 ,10 :2015. doi:10.3389/fmicb.2019.02015 | 
																													
																						| 36 |  LIU Hong, ZENG Wei , FAN Zhiwei ,et al. Effect of iron on enhanced nitrogen removal from wastewater by sulfur autotrophic denitrification coupled to heterotrophic denitrification under different substrate ratios[J]. Chemical Engineering Journal ,2021 ,421 :129828. doi:10.1016/j.cej.2021.129828 | 
																													
																						| 37 |  MINO T, VAN LOOSDRECHT M C M , HEIJNEN J J . Microbiology and biochemistry of the enhanced biological phosphate removal process[J]. Water Research ,1998 ,32 (11):3193-3207. doi:10.1016/s0043-1354(98)00129-8 | 
																													
																						| 38 |  | 
																													
																						|  |  SONG Zhoubing, YU Wei . Influence of disproportion of C/N/P ratios on biological removal of nitrogen and phosphorus from wastewater[J]. Sichuan Environment ,2008 ,27 (6):73-76. doi:10.3969/j.issn.1001-3644.2008.06.018 | 
																													
																						| 39 |  BROUGHTON A, PRATT S , SHILTON A . Enhanced biological phosphorus removal for high-strength wastewater with a low rbCOD∶P ratio[J]. Bioresource Technology ,2008 ,99 (5):1236-1241. doi:10.1016/j.biortech.2007.02.013 | 
																													
																						| 40 |  | 
																													
																						|  |  WANG Shuo, HU Zhen , LIU Zijun . Enhanced nitrogen removal of constructed wetland under low temperature based on cold resistant ammonia-oxidizing functional consortia[J]. China Environmental Science ,2020 ,40 (2):640-646. doi:10.3969/j.issn.1000-6923.2020.02.021 | 
																													
																						| 41 |  | 
																													
																						|  |  YANG Minghui, YUAN Yashu , LIU Rui . Preparation of low temperature resistant compound bacteria and its application in constructed wetlands in cold regions[J]. Liaoning Chemical Industry ,2021 ,50 (5):605-609. doi:10.3969/j.issn.1004-0935.2021.05.007 |